Toe adjustment apparatus
Abstract
A toe adjustment assembly for adjusting the toe in the rear wheels of a vehicle having an independent rear suspension including: a cam device operatively associated with a lateral control arm, a slot provided in fixed relationship with the vehicle frame, and, cam engaging surfaces associated with the slot. When the cam device is rotated, it coacts with the cam engaging surfaces to cause relative lateral shifting of a shaft portion of the cam device. This lateral shifting of the cam device shaft portion causes lateral shifting of the associated control arm and thus toe adjustment of an associated wheel.
Claims
exact text as granted — not AI-modifiedWhat is claimed is: .[.
1. A toe adjustment assembly for use in a rear wheel mounting and control assembly, provided on a rear portion of an automotive vehicle frame and body assembly, of the type having at least one rear wheel mounting assembly including a shock strut for supporting a spindle means operatively attached to the vehicle frame and body assembly; a spindle fixedly mounted at a lower end portion of the shock strut for rotatably supporting a wheel; and a wheel rotatably mounted on the spindle about a laterally extending wheel axis whereby the toe of said wheel is dependent upon the relative lateral position of a portion of said spindle; and having a control assembly for controlling the toe of the wheel including at least one control arm for holding the lower end of the wheel strut at a predetermined lateral position relative the frame and body assembly, the control arm having a first end operatively associated with a centrally located control arm connection portion of the vehicle frame and body assembly and having a second end operatively associated with a portion of the spindle, the control arm extending generally transversely of a vehicle frame and body assembly central longitudinal axis; said toe adjustment assembly comprising: control arm adjustable lateral displacement means for adjustably displacing the control arm laterally inwardly and outwardly whereby a laterally movable portion of the spindle is adjustably displaced inwardly and outwardly with respect to a relatively nonmoveable portion thereof whereby the toe of the wheel is adjusted inwardly and outwardly..].
2. .Iadd.A toe adjustment assembly for use in a rear wheel mounting and control assembly, provided on a rear portion of an automotive vehicle frame and body assembly, of the type having at least one rear wheel mounting assembly including a shock strut for supporting a spindle means operatively attached to the vehicle frame and body assembly; a spindle fixedly mounted at a lower end portion of the shock strut for rotatably supporting a wheel; and a wheel rotatably mounted on the spindle about a laterally extending wheel axis whereby the toe of said wheel is dependent upon the relative lateral position of a portion of said spindle and having a control assembly for controlling the toe of the wheel including at least one control arm for holding the lower end of the wheel strut at a predetermined lateral position relative the frame and body assembly, the control arm having a first end operatively associated with a centrally located control arm connection portion of the vehicle frame and body assembly and having a second end operatively associated with a portion of the spindle, the control arm extending generally transversely of a vehicle frame and body assembly central longitudinal axis; said toe adjustment assembly comprising: control arm adjustable lateral displacement means for adjustably displacing the control arm laterally inwardly and outwardly whereby a laterally moveable portion of the spindle is adjustably displaced inwardly and outwardly with respect to a relatively nonmoveable portion thereof whereby the toe of the wheel is adjusted inwardly and outwardly; .[.The invention of claim 1.]. wherein said control arm adjustable lateral displacement mans comprises: adjustable cam means associated with said control arm; cam engagement means fixedly associated with said vehicle frame and body assembly and coacting with said cam means; and laterally extending slot means fixedly associated with said vehicle frame and body assembly and adapted to laterally, shiftably accept a portion of said cam means therewithin in substantially nondisplaceable vertical relationship therewithin.
3. The invention of claim 2 wherein said cam means comprises: an elongate shaft portion having a first end and a second end and a central longitudinal axis; a circular disc portion having a central longitudinal axis and having a cylindrical periphery adapted to engage said cam engagement means, said circular disc being fixedly mounted on said elongate shaft proximate said first end thereof, said longitudinal axes of said shaft and disc being positioned in parallel, offset relationship.
4. The invention of claim 3 said shaft having a tool receiving portion at said first end thereof adapted to matingly accept a tool adapted to supply rotating torque to said shaft.
5. The invention of claim 4 said control arm comprising a shaft receiving portion at said first end thereof adapted to longitudinally, slidingly accept said shaft portion of said cam means in transversely nondisplaceable relationship therewithin; said slot means in said frame and body assembly being adapted to receive said shaft portion of said cam means in laterally shiftable vertically nondisplaceable relationship therewithin.
6. The invention of claim 5 said cam means further comprising securing means for securing said first end of said control arm to said shaft portion of said slot means in substantially longitudinally nondisplaceable relationship.
7. The invention of claim 6 said securing means comprising a threaded portion on said second end of said cam shaft portion and a nut adapted to be threadingly mounted on said shaft threaded portion.
8. The invention of claim 2 said slot means comprising at least one laterally extending slot provided in a cross member portion of the vehicle frame and body assembly.
9. The invention of claim 2 wherein said slot means comprises a bracket member fixedly attached to a frame cross member portion of the vehicle frame and body assembly said bracket member having at least one laterally extending slot therein.
10. The invention of claim 3 wherein said cam engagement means comprises a pair of parallel, opposed, vertically extending surfaces separated by a distance approximately equal to the diameter of said cam circular disc said vertically extending surfaces being positioned on lateral sides of said circular disc whereby rotation of said cam means about said shaft central longitudinal axis causes relative vertical displacement of said cam means disc portion and lateral displacement of said cam means shaft portion.
11. The invention of claim 10 wherein said cam engagement means is provided on a separate plate member abuttingly engageable in nonmoving relationship with said vehicle frame and body assembly control arm connection portion by lateral stop portions fixedly associated with said frame and body assembly and by said cam means securing means, said plate member having at least one slot therein positionable opposite said slot means associated with the vehicle frame and body assembly and being substantially coextensive with said slot means.
12. A toe adjustment assembly for adjusting the toe of a rear wheel of an automotive vehicle comprising: (a) an elongated plate having a recessed portion therein defining two transversely extending parallel cam engaging surfaces and having a longitudinally extending slot provided in said recessed portion of substantially identical size and shape as a frame slot provided in a cross member portion of a vehicle frame, said frame slot extending laterally of the vehicle central longitudinal axis; (b) at least one cam assembly adapted to coact with said elongate plate, said frame slot and a vehicle control arm, said cam assembly comprising: (i) a shaft portion having a central longitudinal axis and being adapted to be received in laterally shiftable relationship in said cam plate slot and said frame slot and adapted to be received in laterally nonshiftable relationship in a bore portion of said vehicle control arm; said shaft portion having a torque tool engaging portion at a first end thereof and a threaded portion adapted to accept a nut at a second end thereof; (ii) a disc portion having a central longitudinal axis and a cylindrical periphery adapted to engage said cam engaging surfaces of said elongate plate and having a diameter slightly less than the distance between said cam engaging surfaces, said disc portion being affixed to said shaft portion proximate a first end thereof, said shaft portion passing through said disc portion; said shaft central longitudinal axis being positioned in parallel offset relationship with said disc central longitudinal axis; and (iii) a nut means mountable on said threaded portion for axially urging said elongate plate, an end portion of said control arm and a portion of said vehicle frame into longitudinally fixed relationship; (c) said elongate plate being adapted to be secured to and remain in laterally fixed relationship with said vehicle frame by said .[.means.]. .Iadd.assembly; said cam .[.means.]. .Iadd.assembly .Iaddend.being constructed and arranged whereby said cam disc portion is displaceable in a direction parallel said cam engagement surfaces and whereby said cam shaft portion is displaceable laterally along said frame slot and said plate slot by rotation of said cam assembly about said cam shaft central longitudinal axis; said lateral displacement of said cam shaft causing lateral displacement of said control arm relative the vehicle central longitudinal axis whereby the toe of an associated rear wheel assembly is selectively adjustable.
13. A method of controlling the toe of a rear wheel in an automotive vehicle of the type having a central longitudinal axis and a vertical axis, a forward steering assembly and a pair of independently mounted, non-steerable rear wheels comprising: providing a laterally extending slot in a cross member portion of the vehicle frame at an intermediate portion thereof; providing a cam assembly having a shaft portion adaptable to be longitudinally received through said slot and being laterally slideable within said slot; said cam assembly having a disc portion mounted eccentrically near one end of said shaft; providing parallel cam engagement surfaces in fixed relationship with said laterally extending slot on said frame at either end of said laterally extending slot spaced at a distance approximately equal to the diameter of said cam assembly disc portion; mounting said cam assembly on said vehicle by passing the shaft portion thereof through said laterally extending slot and through a bushing portion of a laterally extending control arm; urging said control arm and said frame into abutting contact by tightening of a nut on a threaded end portion of said cam assembly shaft; adjusting the toe of a wheel assembly pivotally connected to a second end of the control arm by rotating the cam assembly about the central longitudinal axis of the cam assembly shaft whereby the cam assembly shaft and the control arm are shifted laterally relative the vehicle central longitudinal axis. .[.14. A rear wheel mounting and control assembly mountable on a rear portion of an automotive vehicle frame and body assembly having a central longitudinal axis and a vertical axis comprising: (a) at least one rear wheel mounting assembly including: (i) a shock strut means for supporting a spindle means operatively attached to the vehicle frame and body assembly at an upper end thereof and laterally displaceable relative the central longitudinal axis of the vehicle frame and body assembly at the lower end thereof; (ii) a spindle means fixedly mounted at a lower end portion of said shock strut means for rotatably supporting a wheel; and (iii) a wheel rotatably mounted on said spindle means about a laterally extending wheel axis whereby the camber of said wheel is dependent upon the relative lateral position of the lower end of said shock strut means; (b) a control assembly for controlling the camber of said wheel comprising: at leasts one control arm means for holding the lower end of said wheel strut means at a predetermined lateral position relative said frame and body assembly, said control arm means having a first end operatively associated with a centrally located control arm connection portion of said vehicle frame and body assembly and having a second end operatively associated with said spindle means, said control arm means extending generally transversely of said vehicle frame and body assembly central longitudinal axis; and (c) control arm adjustable lateral displacement means for adjustably displacing said control arm means laterally inwardly and outwardly whereby said lower end of said shock strut means and said spindle means are adjustably displaced inwardly and outwardly whereby the camber of said wheel is adjusted inwardly and outwardly..]. .[.15. The invention of claim 14 wherein said control arm adjustable lateral displacement means comprises: adjustable cam means associated with said control arm means; cam engagement means fixedly associated with said vehicle frame and body assembly and coacting with said cam means; and laterally extending slot means fixedly associated with said vehicle frame and body assembly and adapted to laterally, shiftably accept a portion of said cam means therewithin in substantially nondisplaceable vertical relationship therewithin,.]. .[.16. The invention of claim 15 wherein said cam means comprises: an elongate shaft portion having a first end and a second end and a central longitudinal axis; a circular disc portion having a central longitudinal axis and having a cylindrical periphery adapted to engage said cam engagement means, said circular disc being fixedly mounted on said elongate shaft proximate said first end thereof, said longitudinal axes of said shaft and disc being positioned in parallel, offset relationship..]. .[.17. The invention of claim 16 said shaft having a tool receiving portion at said first end thereof adapted to matingly accept as tool adapted to apply rotating torque to said shaft..]. .[.18. The invention of claim 17 said control arm means comprising a shaft receiving portion at said first end thereof adapted to longitudinally, slidingly accept said shaft portion of said cam means in transversely nondisplaceable relationahip therewithin; said slot means in said frame and body assembly being adapted to receive said shaft portion of said cam means in laterally shiftable vertically nondisplaceable relationship therewithin..]. .[.19. The invention of claim 18 said cam means further comprising securing means for securing said first end of said control arm means said shaft portion of said cam means and a peripheral surface portion of said slot means in..]. .[.20. The invention of claim 19 said securing means comprising as threaded portion on said second end of said cam shaft portion and a nut adapted to be threadingly mounted on said shaft threaded portion..]. .[.21. The invention of claim 15 said slot means comprising at least one laterally extending slot provided in a cross member portion of the vehicle frame and body assembly..]. .[.22. The invention of claim 15 wherein said slot means comprises a bracket member fixedly attached to a frame cross member portion of the vehicle frame and body assembly said bracket member having at least one laterally extending slot therein..]. .[.23. The invention of claim 16 wherein said cam engagement means comprises a pair of parallel, opposed, vertically extending surfaces separated by a distance approximately equal to the diameter of said cam circular disc said vertically extending surfaces being positioned on lateral sides of said circular disc whereby rotation of said cam means about said shaft central longitudinal axis causes relative vertical displacement of said cam means disc portion and lateral displacement of said cam means shaft portion..]. .[.24. The invention of claim 23 wherein said cam engagement means is provided on a separate plate member abuttingly engageable in nonmoving relationship with said vehicle frame and body assembly control arm connection portion by by lateral stop portions fixedly associated with said frame and body assembly and said cam means securing means, said plate member having at least one slot therein positionable opposite said slot means associated with the vehicle frame and body assembly substantially coextensive with said slot means..]. .[.25. A camber adjustment assembly for use in a rear wheel mounting and control assembly, provided on a rear portion of an automotive vehicle frame and body assembly, of the type having at least one rear wheel mounting assembly including a shock strut for supporting a spindle means operatively attached to the vehicle frame and body assembly; a spindle fixedly mounted at a lower end portion of the shock strut for rotatably supporting a wheel; and a wheel rotatably mounted on the spindle about a laterally extending wheel axis whereby the camer of said wheel is dependent upon the relative lateral position of the lower end of the shock strut means; and having a control assembly for controlling the camber of the wheel including at least one control arm for holding the lower end of the wheel strut at a predetermined lateral position relative the frame and body assembly, the control arm having a first end operatively associated with a centrally located control arm connection portion of the vehicle frame and body assembly and having a second end operatively associated with the spindle, the control arm extending generally transversely of a vehicle frame and body assembly central longitudinal axis; said camber adjustment assembly comprising: control arm adjustably displacing the control arm laterally inwardly and outwardly whereby the lower end of the shock strut and the spindle are adjustably displaced inwardly and outwardly whereby the camber of the wheel is adjusted inwardly and outwardly..]. .[.26. The invention of claim 25 wherein said control arm adjustable lateral displacement means comprises: adjustable cam means associated with said control arm; cam engagement means fixedly associated with said vehicle frame and body assembly and coacting with said cam means; and laterally extending slot means fixedly associated with said vehicle frame and body assembly and adapted to laterally, shiftably accept a portion of said cam means therewithin in substantially nondisplaceable vertical relationship therewithin..]. .[.27. The invention of claim 26 wherein said cam means comprises: an elongate shaft portion having a first end and a second end and a central longitudinal axis; a circular disc portion having a central longitudinal axis and having a cylindrical periphery adapted to engage said cam engagement means, said circular disc being fixedly mounted on said elongate shaft proximate said first end thereof, said longitudinal axes of said shaft and disc being positioned in parallel, offset relationship..]. .[.28. The invention of claim 27 said shaft having a tool receiving portion at said first end thereof adapted to matingly accept a tool adapted to apply rotating torque to said shaft..]. .[.29. The invention of claim 28 said control arm comprising a shaft receiving portion at said first end thereof adapted to longitudinally, slidingly accept said shaft portion of said cam means in transversely nondisplaceable relationship therewithin; said slot means in said frame and body assembly being adapted to receive said shaft portion of said cam means in laterally shiftable vertically nondisplaceable relationship therewithin..]. .[.30. The invention of claim 29 said cam means further comprising securing means for securing said first end of said control arm said shaft portion of said cam means and a peripheral surface portion of said slot means in substantially longitudinally nondisplaceable relationship..]. .[.31. The invention of claim 30 said securing means comprising a threaded portion on said second end of said cam shaft portion and a nut adapted to be threadingly mounted on said shaft threaded portion..]. .[.32. The invention of claim 26 said slot means comprising at least one laterally extending slot provided in a cross member portion of the vehicle frame and body assembly..]. .[.33. The invention of claim 26 wherein said slot means comprises a bracket member fixedly attached to a frame cross member portion of the vehicle frame and body assembly said bracket member having at least one laterally extending slot therein..]. .[.34. The invention of claim 27 wherein said cam engagement means comprises a pair of parallel, opposed, vertically extending surfaces separated by a distance approximately equal to the diameter of said cam circular disc said vertically extending surfaces being positioned on lateral sides of said circular disc whereby rotation of said cam means about said shaft central longitudinal axis causes relative vertical displacement of said cam means disc portion and lateral displacement of said cam means shaft portion..]. .[.35. The invention of claim 34 wherein said cam engagement means is provided on a separate plate member abuttingly engageable in nonmoving relationship with said vehicle frame and body assembly control arm connection portion by lateral stop portions fixedly associated with said frame and body assembly and by said cam means securing means, said plate member having at least one slot therein positionable opposite said slot means associated with the vehicle frame and body assembly and being substantially coextensive with said slot
means..]. 36. A camber adjustment assembly for adjusting the camber of a rear wheel of an automotive vehicle comprising: an elongate plate having a recessed portion therein defining two transversely extending parallel cam engaging surfaces and having a longitudinally extending slot provided in said recessed portion of substantially identical size and shape as a frame slot provided in a cross member portion of a vehicle frame, said frame slot extending laterally of the vehicle central longitudinal axis; (b) at least one cam assembly adapted to coact with said elongate plate, said frame slot and a vehicle control arm, said cam assembly comprising: (i) a shaft portion having a central longitudinal axis and being adapted to be received in laterally shiftable relationship in said cam plate slot and said frame slot and adapted to be received in laterally nonshiftable relationship in a bore portion of said vehicle control arm; said shaft portion having a torque tool engaging portion at a first end thereof and a threaded portion adapted to accept a nut at a second end thereof; (ii) a disc portion having a central longitudinal axis and a cylindrical periphery adapted to engage said cam engaging surfaces of said elongate plate and having a diameter slightly less than the distance between said cam engaging surfaces, said disc portion being affixed to said shaft portion proximate a first end thereof, said shaft portion passing through said disc portion; said shaft central longitudinal axis being positioned in parallel offset relationship with said disc central longitudinal axis; and (iii) a nut means mountable on said threaded portion for axially urging said elongate plate, an end portion of said control arm and a portion of said vehicle frame into longitudinally fixed relationship; (c) said elongate plate being adapted to be secured to and remain in laterally fixed relationship with said vehicle frame by said cam means; said cam means being constructed and arranged whereby said cam disc portion is displaceable in a direction parallel said cam engagement surfaces and whereby said cam shaft portion is displaceable laterally along said frame slot and said plate slot by rotation of said cam assembly about said cam shaft central longitudinal axis; said lateral displacement of said cam shaft causing lateral displacement of said control arm relative the vehicle central longitudinal axis whereby the camber of an associated rear wheel assembly is selectively adjustable. .[.37. A method of controlling the camber of a rear wheel in an automotive vehicle of the type having a central longitudinal axis and a vertical axis, a forward steering assembly and a pair of independently mounted, nonsteerable rear wheels comprising: providing a laterally extending slot in a cross member portion of the vehicle frame at an intermediate portion thereof; providing a cam assembly having a shaft portion adaptable to be longitudinally received through said slot and being laterally slideable within said slot; said cam assembly having a disc portion mounted eccentrically near one end of said shaft; providing parallel cam engagement surfaces in fixed relationship with said laterally extending slot on said frame at either end of said laterally extending slot spaced at a distance approximately equal to the diameter of said cam assembly disc portion; mounting said cam assembly on said vehicle by passing the shaft portion thereof through said laterally extending slot and through a bushing portion of a laterally extending control arm; urging said control arm and said frame into abutting contact by tightening of a nut on a threaded end portion of said cam assembly shaft; adjusting the camber of a wheel assembly pivotally connected to a second end of the control arm by rotating the cam assembly shaft whereby the cam assembly shaft and the control arm are shifted laterally relative the
vehicle control longitudinal axis..]. .Iadd.38. A rear wheel mounting and control assembly mountable on a rear portion of an automotive vehicle frame and body assembly having a central longitudinal axis and vertical axis comprising: (a) at least one rear wheel mounting assembly including: (i) a shock strut for supporting a spindle means operatively attached to the vehicle frame and body assembly at an upper end thereof and laterally displaceable relative the central longitudinal axis of the vehicle frame and body assembly at the lower end thereof; (ii) a spindle means fixedly mounted at a lower end portion of said shock strut means for rotatably supporting a wheel; and (iii) a wheel rotatably mounted on said spindle means about a laterally extending wheel axis whereby the camber of said wheel is dependent upon the relative lateral position of the lower end of said shock strut means; (b) a control assembly for controlling the camber of said wheel comprising: at least one control arm means for holding the lower end of said wheel strut means at a predetermined lateral position relative said frame and body assembly, said control arm means having a first end operatively associated with a centrally located control arm connection portion of said vehicle frame and body assembly and having a second end operatively associated with said spindle means, said control arm means extending generally transversely of said vehicle frame body assembly central longitudinal axis; and (c) control arm adjustable lateral displacement means for adjustably displacing said control arm means laterally inwardly and outwardly whereby said lower end of said shock strut means and said spindle means are adjustable displaced inwardly and outwardly whereby the camber of said wheel is adjusted inwardly and outwardly; (d) wherein said control arm adjustable lateral displacement means comprises: adjustable cam means associated with said control arm means; cam engagement means fixedly associated with said vehicle frame and body assembly and coacting with said cam means; and laterally extending slot means fixedly associated with said vehicle frame and body assembly and adapted to laterally, shiftably accept a portion of said cam means therewithin in substantially nondisplaceable vertical relationship therewithin; (e) wherein said cam means comprises: an elongate shaft portion having a first end and a second end and a central longitudinal axis; a circular disc portion having a central longitudinal axis and having a cylindrical periphery adapted to engage said cam engagement means, said circular disc being fixedly mounted on said elongate shaft proximate said first end thereof, said longitudinal axes of said shaft and disc being positioned in parallel, offset relationship; (f) wherein said cam engagement means comprises a pair of parallel, opposed, vertically extending surfaces separated by a distance approximately equal to the diameter of said cam circular disc said vertically extending surfaces being positioned on lateral sides of said cam circular disc whereby rotation of said cam means about said shaft central longitudinal axis causes relative vertical displacement of said cam means disc portion and lateral displacement of said cam means shaft portion; (g) wherein said cam engagement means is provided on a separate plate member abuttingly engageable in nonmoving relationship with said vehicle frame and body assembly control arm connection portion by lateral stop portions fixedly associated with said frame and body assembly and by said cam means securing means, said plate member having at least one slot therein positionable opposite said slot means associated with the vehicle frame and body assembly substantially coextensive with said slot means.
.Iaddend. .Iadd.39. A camber adjustment assembly for use in a rear wheel mounting and control assembly, provided on a rear portion of an automotive vehicle frame and body assembly, of the type having at least one rear wheel mounting assembly including a shock strut for supporting a spindle means operatively attached to the vehicle frame and body assembly; a spindle fixedly mounted on a lower end portion of the shock strut for rotatably supporting a wheel; and a wheel rotatably mounted on the spindle about a laterally extending wheel axis whereby the camber of said wheel is dependent upon the relative lateral position of the lower end of the shock strut means; and having a control assembly for controlling the camber of the wheel including at least one control arm for holding the lower end of the vehicle strut at a predetermined lateral position relative the frame and body assembly, the control arm having a first end operatively associated with a centrally located control arm connection portion of the vehicle frame and body assembly and having a second end operatively associated with the spindle, the control arm extending generally transversely of a vehicle frame and body assembly central longitudinal axis; said camber adjustment assembly comprising: control arm adjustable lateral displacement means for adjustably displacing the control arm laterally inwardly and outwardly whereby the lower end of the shock strut and the spindle are adjustable displaced inwardly and outwardly whereby the camber of the wheel is adjusted inwardly and outwardly; wherein said control arm adjustable lateral displacement means comprises: adjustable cam means associated with said control arm means; cam engagement means fixedly associated with said vehicle frame and body assembly and coacting with said cam means; and laterally extending slot means fixedly associated with said vehicle frame and body assembly and adapted to laterally, shiftably accept a portion of said cam means therewithin in substantially nondisplaceable vertical relationship therewithin; wherein said cam means comprises: an elongate shaft portion having a first end and a second end and a central longitudinal axis; a circular disc portion having a central longitudinal axis and having a cylindrical periphery adapted to engage said cam engagement means, said circular disc being fixedly mounted on said elongate shaft proximate said first end thereof, said longitudinal axis of said shaft and disc being positioned in parallel, offset relationship; wherein said cam engagement means comprises a pair of parallel, opposed, vertically extending surfaces separated by a distance approximately equal to the diameter of said cam circular disc said vertically extending surfaces being positioned on lateral sides of said cam circular disc whereby rotation of said cam means about said shaft central longitudinal axis causes relative vertical displacement of said cam means disc portion and lateral displacement of said cam means shaft portion; wherein said cam engagement means is provided on a separate plate member abuttingly engageable in nonmoving relationship with said vehicle frame and body assembly control arm connection portion by lateral stop portions fixedly associated with said frame and body assembly and by said cam means securing means, said plate member having at least one slot therein positionable opposite said slot means associated with the vehicle frame and body assembly substantially coextensive with said slot means.
.Iaddend. .Iadd.40. A wheel alignment parameter adjustment assembly for adjusting a wheel alignment parameter of a wheel for retrofit installation in an existing vehicle suspension system of the type which includes a pair of spaced apart laterally extending members which extend generally parallel to the axis of rotation of the wheel; and a wheel supporting and stabilizing assembly which rotatably supports and stabilizes the wheel and which has a wheel assembly attachment portion which is received between said pair of laterally extending members and which is ordinarily attached therebetween by means of at least one bolt which extends transversely of the wheel rotation axis and which is received in a bolt hole in said wheel assembly attachment portion and which is also received in a first bolt hole in a first one of said laterally extending members and a second bolt hole in a second one of said laterally extending members, comprising: (a) a pair of laterally expanded openings provided in said pair of laterally extending members by lateral extension of said first and second bolt holes therein; (b) cam bolt means having a central longitudinal axis for holding said wheel assembly attachment portion in a plurality of different wheel alignment parameter adjustment positions, said cam bolt means being received in said laterally expanded openings in said laterally extending members and in said bolt hole in said wheel assembly attachment portion and being adjustably laterally moveable in said expanded openings in a first relatively loosened state of said cam bolt means and being relatively fixed with respect to said expanded openings in a second, relatively tightened state of said cam bolt means; (c) cam plate means removably secured to at least one of said laterally extending members by said cam bolt means, said cam plate means being adapted to coact with said laterally extending member and said cam bolt means for holding said cam bolt means in a plurality of different laterally displaced positions in said laterally expanded openings for providing said plurality of different wheel alignment parameter adjustment positions; (d) the wheel alignment parameter of the wheel mounted on said wheel supporting and stabilizing assembly being adjustable through positioning of said cam bolt means in said plurality of different wheel alignment parameter adjustment positions; and (e) adjustable tightening means for placing said cam bolt means in said first relatively loosened state and said second relatively tightened state. .Iaddend. .Iadd.41. The invention of claim 40 said adjustable tightening means comprising a threaded nut and lock washer. .Iaddend. .Iadd.42. The invention of said 40 wherein said cam bolt means comprises: an elongate shaft portion having a central shaft longitudinal axis, a first end and a threaded second end and being adapted to be closely received in said bolt hole of said wheel assembly attachment portion and adapted to be laterally displaceably received in said laterally expanded openings in said laterally extending members; a cam member extending transversely of said shaft portion and having a cam member peripheral surface, different portions of said cam member peripheral surface being positioned at different distances from said central longitudinal axis of said cam bolt means; a bolt torquing portion positioned at a terminal portion of said first end of said shaft portion; and a nut threadingly mounted on said threaded second end of said shaft
portion. .Iaddend. .Iadd.43. The invention of claim 42 wherein said cam plate means comprises: at least one cam engagement surface extending generally perpendicular to the direction of lateral extension of said laterally expanded openings and adapted to engage said cam member of said cam bolt means; and laterally extending cam plate slot means adapted to receive said shaft portion of said cam bolt means therethrough in axially rotatable, laterally displaceable, vertically nondisplaceable relationship therein in said loosened state and in totally nondisplaceable relationship therein in said tightened state. .Iaddend. .Iadd.44. The invention of claim 43 wherein said cam plate means comprises stabilizing means for preventing lateral movement thereof relative said at least one laterally extending member on which it is mounted. .Iaddend. .Iadd.45. The invention of any one of claims 40-44 wherein said laterally expanded openings comprises laterally extending slots having a vertical dimension equal to that of said holes in said laterally extending members prior to lateral expansion thereof. .Iaddend. .Iadd.46. The invention of claim 45 wherein said wheel
alignment parameter comprises camber. .Iaddend. .Iadd.47. The invention of any one of claims 40-44 wherein said wheel alignment parameter comprises camber. .Iaddend. .Iadd.48. A method of adjusting a wheel alignment parameter of a wheel in an existing vehicle suspension system of the type which includes a pair of parallel laterally extending members which extend parallel to the axis of rotation of the wheel; and a wheel supporting and stabilizing assembly which supports and stabilizes the wheel and which has a wheel assembly attachment portion which is received between said pair of laterally extending members and which is ordinarily attached thereto by means of at least one bolt which is received in a bolt hole extending through said wheel assembly attachment portion and which is received in a first bolt hole in a first one of said laterally extending members and a second bolt hole in a second one of said laterally extending members, comprising the steps of: (a) removing said bolt from said hole in the wheel assembly attachment portion and the first and second bolt holes in the laterally extending members; (b) producing oppositely positioned laterally expanded openings in said pair of laterally extending members by lateral extension of said first and second bolt holes; (c) providing a cam bolt assembly comprising: an elongate shaft portion having a central shaft longitudinal axis, a first end and a threaded second end; a cam portion extending transversely of said shaft portion and having a peripheral, axially extending surface, with a plurality of different portions which are positioned at different radial distances from said central longitudinal axis of said shaft portion; a bolt torquing portion positioned at said first end of said shaft portion; and a nut threadingly mountable on said second end of said shaft portion; (d) providing a cam plate comprising: a cam engagement surface extending generally perpendicular to the direction of lateral extension of said laterally expanded openings; a laterally extending cam plate slot; and stabilizing means for interferingly engaging at least one of said laterally extending members and maintaining the cam plate in laterally nonmoveable relationship with said engaged laterally extending member; (e) placing the cam plate in abutting engagement with a laterally extending surface of one of said laterally extending members with the cam plate slot in overlying relationship with the laterally expanded opening in the laterally extending member; (f) inserting the shaft portion of the cam bolt assembly through the laterally expanded openings in both laterally extending members and the slot in the cam plate and through the first hole in the wheel assembly attachment portion; (g) adjustably laterally moving the cam bolt assembly shaft portion within the laterally expanded openings in the laterally extending members and the slot in the cam plate so as to move the wheel mounting and stabilizing assembly to adjust the wheel alignment parameter of the associated wheel; (h) maintaining the cam bolt assembly in a selected lateral position through engagement of a selected one of said peripheral surface portions of the cam member with the cam engagement surface of the cam plate; and (i) tighteningly threading the cam assembly nut onto the cam shaft portion so as to prevent axial movement of the cam bolt assembly. .Iaddend.
.Iadd. 9. A wheel alignment parameter adjustment assembly for adjusting a wheel alignment parameter of a wheel for retrofit installation in an existing vehicle suspension system of the type which includes a pair of spaced apart laterally extending members which extend generally parallel to the axis of rotation of the wheel; and a wheel supporting and stabilizing assembly which rotatably supports and stabilizes the wheel and which has a wheel assembly attachment portion which is received between said pair of laterally extending members and which is ordinarily attached therebetween by means of at least one bolt which extends transversely of the wheel rotation axis and which is received in a bolt hole in said wheel assembly attachment portion and which is also received in a first bolt hole in a first one of said laterally extending members and a second bolt hole in a second one of said laterally extending members, comprising: (a) at least one laterally expanded opening provided in each of said laterally extending members by lateral extension of said first and second bolt holes therein; (b) cam bolt means for holding said wheel assembly attachment portion in a plurality of different wheel alignment parameter adjustment positions, said cam bolt means being received in said laterally expanded openings in said laterally extending members and in said bolt hole in said wheel assembly attachment portion and being adjustably laterally moveable in said expanded openings in a first relatively loosened state of said cam bolt means and being relatively fixed with respect to said expanded openings in a second, relatively tightened state of said cam bolt means; said cam bolt means comprising: (i) an elongate shaft portion having a first end and a threaded second end and a central longitudinal axis; (ii) a bolt head portion fixedly attached to said first end of said shaft portion; (iii) a nut portion threadably mountable on said threaded second end of said shaft portion for providing said relatively loosened state and said relatively tightened state of said cam bolt means; and (iv) a cam portion having a generally cylindrical periphery and a central longitudinal axis, said cam portion being mounted on said shaft portion in rotatably fixed relationship therewith, with said cam portion central longitudinal being positioned in parallel, radially offset relationship with respect to said shaft portion central longitudinal axis; (c) cam plate means removably secured to at least one of said laterally extending members by said cam bolt means, said cam plate means being adapted to coact with said laterally extending member and said cam bolt means for holding said cam bolt means in a plurality of different laterally displaced positions in said laterally expanded openings for providing said plurality of different wheel alignment parameter adjustment positions; said cam plate means comprising: (i) a body portion adapted to be positioned in abutting parallel relationship with an exterior surface of one of said laterally extending members; (ii) a cam plate laterally extending slot having a vertical dimension approximately equal to the diameter of said cam bolt means shaft portion, said laterally extending slot being adapted to be positioned in overlying relationship with said laterally expanded opening in said laterally extending member and being adapted to receive said cam bolt means shaft portion therethrough; and (iii) cam engaging means projecting outwardly from said cam plate body portion and extending transversely of said laterally extending slot for engaging said cylindrical periphery of said cam bolt means cam portion for limiting the lateral displacement of said cam portion; (d) the wheel alignment parameter of the wheel mounted on said wheel supporting and stabilizing assembly being adjustable to position said cam bolt means in said plurality of different wheel alignment parameter adjustment positions through lateral movement of said cam bolt means shaft portion within said laterally expanded openings in said laterally extending members and said cam plate laterally extending slot by rotation of said cam bolt means about said cam portion central longitudinal axis.
.Iaddend. .Iadd.50. The invention of claim 49 wherein said cam engaging means comprises a first projection provided proximate a first end of said cam plate laterally extending slot and a second projection provided proximate a second end of said cam plate laterally extending slot. .Iaddend. .Iadd.51. The invention of claim 49 comprising lateral stabilizing means for preventing lateral movement of said cam plate means when said cam plate means is positioned in abutting engagement with said laterally extending member. .Iaddend. .Iadd.52. The invention of claim 51, said lateral stabilizing means comprising a generally vertically and longitudinally extending edge surface portion of said cam plate means. .Iaddend. .Iadd.53. The invention of claim 52, said lateral stabilizing means further comprising a generally longitudinally and vertically projecting portion of said laterally extending member which is abuttingly engageable with said edge surface portion of said cam plate means. .Iaddend. .Iadd.54. The invention of claim 49 wherein said laterally expanded openings comprise laterally extending slots having a vertical dimension approximately equal to that of said cam bolt means shaft portion. .Iaddend. .Iadd.55. The invention of any one of claims 49-54 wherein said wheel alignment parameter comprises camber. .Iaddend.
.Iadd. . The invention of any one of claims 49-54 wherein said wheel alignment parameter comprises toe. .Iaddend. .Iadd.57. A method of adjusting a wheel alignment parameter of a wheel in an existing vehicle suspension system of the type which includes a pair of parallel laterally extending members which extend parallel to the axis of rotation of the wheel; and a wheel supporting and stabilizing assembly which supports and stabilizes the wheel and which has a wheel assembly attachment portion which is received between said pair of laterally extending members and which is ordinarily attached thereto by means of at least one bolt which is received in a bolt hole extending through said wheel assembly attachment portion and which is received in a first bolt hole in a first one of said laterally extending members and a second bolt hole in a second one of said laterally extending members, comprising the steps of: (a) removing said bolt from said hole in the wheel assembly attachment portion and the first and second bolt holes in the laterally extending members; (b) producing oppositely positioned laterally expanded openings in said pair of laterally extending members by lateral extension of said first and second bolt holes; (c) providing a cam bolt assembly comprising: an elongate shaft portion having a central shaft longitudinal axis, a first end and a threaded second end; a generally cylindrical cam portion having a central longitudinal axis parallel and offset from said shaft central longitudinal axis; a bolt torquing portion positioned at said first end of said shaft portion; and a nut threadingly mountable on said second end of said shaft portion; (d) providing a cam plate comprising: a relatively flat cam plate body portion; a laterally extending cam plate slot; a pair of cam engagement surfaces extending generally perpendicular said laterally extending cam plate slot and projecting outwardly from said cam plate body portion; and stabilizing means for interferingly engaging a portion of an associated laterally extending member and maintaining the cam plate in laterally nonmoveable relationship with said engaged laterally extending member; (e) placing the cam plate in abutting engagement with a laterally extending surface of one of said laterally extending members with the cam plate slot in overlying relationship with the laterally expanded opening in the laterally extending member; (f) inserting the shaft portion of the cam bolt assembly through the laterally expanded openings in both laterally extending members and the slot in the cam plate and through the first hole in the wheel assembly attachment portion; (g) adjustably rotating the cam bolt assembly about the cam portion central longitudinal axis so as to laterally move the cam bolt assembly shaft portion within the laterally expanded openings in the laterally extending members and the laterally extending slot in the cam plate so as to move the wheel mounting and stabilizing assembly to adjust the wheel alignment parameter of the associated wheel; and (h) maintaining the cam bolt assembly in a selected lateral position by securely tightening the nut on the threaded shaft portion of the came bolt
assembly. .Iaddend. .Iadd.58. The invention of claim 57 wherein said step of producing oppositely positioned laterally expanded openings comprises providing laterally extending slots having a vertical dimension approximately equal to said cam bolt shaft diameter. .Iaddend.Join the waitlist — get patent alerts
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