Tank overfill valve
Abstract
An overfill valve having a saddle-shaped, flapper valve element located within an inlet pipe and a mating valve seat disposed about the inner wall of the pipe. A spring couples a weighted float to the valve element and extends generally outward from the pipe. The float moves the valve element from a normally open position to a closed position as the float is raised. A controlled drain aperture through the valve element permits standing fluid within the pipe to drain. The spring allows the float to be moved to permit the pipe to be slid down a storage tank casing. A triggering mechanism is coupled to the float and valve element so that the float shifts a triggering element into the liquid flow through the valve, and the force of liquid flow against the triggering element forces the valve element toward the closed position.
Claims
exact text as granted — not AI-modifiedThe embodiments of the invention in which an exclusive property or privelege is claimed are as follows.
1. An overfill valve for use in liquid storage tanks having .Iadd.a casing with .Iaddend.an inlet orifice, comprising: an inlet pipe configured for receipt in said storage tank inlet orifice.Iadd., said inlet pipe having an upper inlet and a lower discharge end, said upper inlet and said lower discharge end being substantially aligned such that a gauging pole may be lowered therethrough.Iaddend.; a closure member mounted .[.on.]. .Iadd.within .Iaddend.said inlet pipe .Iadd.so as to be disposed beneath said inlet orifice when said overfill valve is mounted on said storage tank and said closure member mounted .Iaddend.to be selectively shiftable between a closed position and an open position; float means .Iadd.proximate said closure member and .Iaddend.coupled to said closure member such that said closure member moves from said open position to said closed position as said float means is raised; and access means .Iadd.disposed between said inlet and said discharge end .Iaddend.for allowing the movement of at least a portion of said float means from the exterior of said pipe to the interior of said pipe, coupling means between said float means and said closure member for enabling said float means to align with said inlet pipe sufficient for insertion of said inlet pipe in said storage tank inlet orifice.
2. The overfill valve of claim 1, wherein: said float means includes a float on a connector arm, said connector arm resiliently coupled to said closure member.
3. The overfill valve of claim 2, wherein: said float is pivotally mounted on said inlet pipe, said pivotal mounting of said float including a spring element biasing said float away from alignment with said inlet pipe.
4. The overfill valve of claim 3, wherein said connector arm comprises said spring element.
5. .[.The overfill valve of claim 3, wherein:.]. .Iadd.An overfill valve for use in liquid storage tanks having an inlet orifice, comprising: an inlet pipe configured for receipt in said storage tank inlet orifice; a closure member mounted on said inlet pipe to be selectively shiftable between a closed position and an open position; float means coupled to said closure member such that said closure member moves from said open position to said closed position as said float means is raised; said float means including a float on a connector arm, said connector arm resiliently coupled to said closure member; said float is pivotally mounted on said inlet pipe, said pivotal mounting of said float including a spring element biasing said float away from alignment with said inlet pipe; .Iaddend. said connector arm is generally rigid, and said spring element is disposed adjacent said pivotal mounting of said float.[...]. .Iadd.; and access means for allowing the movement of at least a portion of said float means from the exterior of said pipe to the interior of said pipe, coupling means between said float means and said closure member for enabling said float means to align with said inlet pipe sufficient for insertion of said inlet pipe in said storage tank inlet orifice. .Iaddend.
6. The overfill valve of claim 2, wherein: said float and said closure member are pivotally mounted on said inlet pipe; and a triggering element pivotally mounted in said inlet pipe to pivot from an at-rest position to a triggering position in the flow of liquid through said inlet pipe, said triggering element coupled to said float and said closure member such that said triggering element pivots from said at-rest position toward said triggering position as said float is raised and said closure member is pivoted from said open position toward said closed position as said triggering element pivots through said triggering position.
7. The overfill valve of claim 6, further comprising: a spring mounted between said connector arm and said triggering element.
8. The overfill valve of claim 1, wherein: said access means includes an assembly aperture in the side of said inlet pipe.
9. The overfill valve of claim 8, wherein: said access means includes covering means for selectively substantially closing said assembly aperture.
10. The overfill valve of claim 1, wherein: said inlet pipe includes a curved inner surface; and said closure member has a saddle-shaped curved configuration that extends at least partially about said inlet pipe inner surface when said closure member is in said open position.
11. The overfill valve of claim 1, wherein: said inlet pipe includes an inner surface about a liquid flow zone; means for triggering said closure member to shift said closure member from said open position toward said closed position when said float means is raised to a preselected full level, said triggering means including a triggering element movable between an at-rest position with said triggering element adjacent said inner surface and a triggering position with said triggering element moved into said liquid flow zone; and said float coupled to said triggering element to move said triggering element from said at-rest position toward said triggering position when said float is raised to a preselected filled level, said triggering element coupled to said closure member to move said closure member from said open position toward said closed position as said triggering element moves through said triggering position.
12. The overfill valve of claim 1, further comprising: a fluid flow baffle located within said inlet pipe above said closure member.
13. An overfill valve for use in liquid storage tanks having .Iadd.a casing with .Iaddend.an inlet orifice, comprising: an inlet pipe configured for receipt in said storage tank inlet orifice; a closure member mounted on said inlet pipe .Iadd.so as to be disposed beneath said inlet orifice when said overfill valve is mounted on said storage tank and said closure member mounted .Iaddend.to be selectively shiftable between a closed position and an open position; a float element resiliently mounted with said closure member such that said closure member moves from said open position to said closed position as said float element is raised; an assembly opening in the side of said inlet pipe, said assembly opening positioned to provide said float element with the ability for at least partial reception therethrough to permit insertion of said inlet pipe in said storage tank inlet orifice; and said resilient mounting of said float element biases said float element out of said inlet pipe.
14. The overfill valve of claim 13, further comprising: means for initiating the movement of said closure from said open position to said closed position, said initiating means including a triggering element coupled to said closure member and said float element, said float element shifting said triggering element into a flow of liquid through said inlet pipe when said float element is raised to a preselected filled level and said triggering element initiates movement of said closure member from said open to said closed position when said triggering element is shifted by said float element.
15. The overfill valve of claim 14, wherein: said inlet pipe includes a curved inner surface; and said closure member is a saddle-shaped, curved plate that is adapted to extend along said inlet pipe inner surface when said closure member is in said open position.
16. The overfill valve of claim 15, wherein: said float element, said closure member and said triggering element are pivotally mounted in said inlet pipe; and a spring mounted between said triggering element and said float element.
17. The overfill valve of claim 16, further comprising: covering means for substantially closing said assembly opening when said float element is not received therethrough.
18. The overfill valve of claim 13, further comprising: covering means for substantially closing said assembly opening when said float element is not received therethrough.
19. The overfill valve of claim 13, further comprising: a triggering element pivotally mounted in said inlet pipe to pivot from an at-rest position to a triggering position in the flow of liquid through said inlet pipe, said triggering element coupled to said float and said closure member such that said triggering elements pivots from said at-rest position toward said triggering position as said float is raised and said closure member is pivoted from said open position toward said closed position as said triggering element pivots through said triggering position; and a spring mounted to pivotally bias said triggering element and said float element toward one another.
20. The overfill valve of claim 19, wherein: said triggering element includes a first stop thereon engaged by said float when said float is raised to a preselected filled level; and said closure member includes a second stop thereon engaged by one of said float and said triggering element when said triggering element reaches said triggering position.
21. An overfill valve for use in liquid storage tanks .Iadd.having a casing with an inlet orifice.Iaddend., comprising: an inlet pipe .Iadd.having an aligned inlet and outlet such that a gauging pole may be lowered therethrough.Iaddend.; a closure member mounted on said inlet pipe .Iadd.so as to be disposed beneath said inlet orifice when said overfill valve is mounted on said storage tank and said closure member mounted .Iaddend.to be selectively shiftable between a closed position in which a chamber is defined upstream of said closure member and an open position; means for controlled draining of said chamber when said closure member is in said closed position; and means for automatically shifting said closure member from said open position to said closed position when a liquid level rises to a preselected full level and for automatically shifting said closure member from said closed position to said open position when a liquid level falls below a preselected filling level, .Iadd.said automatic shifting means including a float mounted on said inlet pipe and means to permit said float to selectively shift so as to be substantially within the outer perimeter of said inlet pipe, .Iaddend.whereby when said overfill valve is installed in a tank to be filled, said overfill valve will selectively close said inlet pipe when the liquid level reaches said preselected full level to prevent overfilling of the tank and liquid that collects upstream of said closure member when it is closed will drain into the tank through said controlled draining means and allow said closure member to open.
22. An overfill valve for use in liquid storage tanks, comprising: an inlet pipe; a closure member mounted on said inlet pipe to be shiftable between a closed position and an open position; and means for automatically shifting said closure member from said open position to said closed position when a liquid level rises to a preselected full level and for automatically shifting said closure member from said closed position to said open position when the liquid level falls below a preselected filling level, said automatic shifting means including an initiator element .Iadd.separate from said closure member and .Iaddend.coupled with said closure .[.element.]. .Iadd.member.Iaddend., said initiator element being shifted into the flow of liquid through said inlet pipe when said liquid level reaches said full level to initiate the shifting of said closure member from said open position to said closed position.
23. The overfill valve of claim 22, wherein: said initiator element is pivotally coupled to said closure member; and said automatic shifting means includes means for positively engaging said initiator element relative to said closure member at an engagement position for movement of said closure member by said initiator element, such that said initiator element pivots relative said closure member into the flow of liquid through said inlet pipe until said engagement position is reached, and said initiator element shifts said closure member toward said closed position thereafter.
24. The overfill valve of claim 23, further comprising: a float coupled with said initiator element and said closure member; and said positive engaging means including a first stop on said initiator element positioned for engagement by said float when said float is raised to an initiation level, and a second stop on said closure member positioned for engagement by one of said initiator element and said float when said initiator element is moved to said engagement position.
25. The overfill valve of claim 24, wherein: said positive engaging means includes a third stop on said float positioned for engagement by said initiator element when said initiator element is moved to said engagement position, and said float engages said second stop.
26. The overfill valve of claim 25, further comprising: means for pivotally biasing said initiator element and said float toward one another.
27. The overfill valve of claim 26, wherein: said inlet pipe includes an access aperture therein positioned to provide for the receipt of said float therethrough, said pivotal biasing means biasing said float out of said inlet pipe.
28. The overfill valve of claim 27, wherein: said inlet pipe includes a curved inner surface; and said closure member has a saddle-shaped curved configuration that extends at least partially about said inlet pipe inner surface when said closure member is in said open position.
29. The overfill valve of claim 23, wherein: said inlet pipe includes an inner surface; said closure member is hinged in said inlet pipe to extend from said pivotal coupling generally along said inner surface when in said open position; and said initiator element extends from said pivotal coupling generally adjacent said closure member when in an at-rest position.
30. The overfill valve of claim 22, wherein: said automatic shifting means includes a float coupled with said initiator element, said float shifting said initiator element into the flow of liquid through said inlet pipe when the liquid level reaches said full level.
31. The overfill valve of claim 22, wherein: said inlet pipe includes a curved inner surface; and said closure member has a saddle-shaped curved configuration that extends at least partially about said inlet pipe inner surface when said closure member is in said open position.
32. The overfill valve of claim 22, further comprising: a fluid flow baffle, located within said inlet pipe above said closure member.
33. An overfill valve for use in liquid storage tanks, comprising: an inlet pipe; a closure member pivotally mounted on said inlet pipe to be pivotal between a closed position and an open position; a triggering element pivotally mounted on said inlet pipe to be pivotal between an at-rest position and a triggering position disposed in the flow of liquid through said inlet pipe; a float element mounted on said inlet pipe; and means for coupling said closure member, said triggering element and said float element so that said float element pivots said triggering element from said at-rest position toward said triggering position when said float is raised to a preselected full level, and said triggering element pivots said closure member from said open position toward said closed position when said triggering element pivots through said triggering position.
34. The overfill valve of claim 33, wherein: said float element is pivotally coupled to said triggering element in order to pivot relative thereto, said triggering element including a first stop engaged by said float when said float is raised to said full level, said triggering element being pivoted by said float thereafter; and said float element and said float are pivotally coupled to said closure member in order to pivot relative thereto, said closure member including a second stop engaged by one of said triggering element and said float element when said triggering element is pivoted to said triggering position, said closure member being pivoted by said triggering element thereafter.
35. The overfill valve of claim 34, wherein: said float element includes a third stop engaged by said triggering element when said triggering element is pivoted to said triggering position, and said float engages said second stop.
36. The overfill valve of claim 35, further comprising: means for biasing said triggering element from said triggering position to said at-rest position.
37. The overfill valve of claim 36, wherein: said inlet pipe includes an assembly aperture therein, and said first stop and said third stop are disposed to provide sufficient relative pivoting between said triggering element and said float element for said float element to be at least partially received in said assembly aperture.
38. The overfill valve of claim 37, wherein: said inlet pipe includes a curved inner surface; and said closure member has a saddle-shaped curved configuration that extends at least partially about said inlet pipe inner surface when said closure member is in said open position.
39. The overfill valve of claim 33, further comprising: a fluid flow baffle mounted within said inlet pipe above said closure member.
40. A method for filling a liquid storage tank having a fill conduit extending from the tank, comprising: providing a drop conduit; mounting a closure member on said drop conduit so as to be selectively shiftable between a closed position and an open position; resiliently connecting float means to said drop conduit by means adapted to shift said closure member to said closed position from said open position; said float means being positioned to provide a normally unobstructed opening through said drop conduit; inserting said drop conduit into said fill conduit to create a vapor outlet between said drop and fill conduits; said float means being resiliently urged toward said drop conduit while said drop conduit is being inserted; supporting said drop conduit within said fill conduit such that said float will shift said closure member from said open to said closed position when the liquid level reaches a preselected level in said tank which creates a free space above said liquid in said tank; and filling said tank to said preselected level through said drop conduit while allowing vapors to pass through said vapor outlet.
41. The method of claim 40, further comprising: mounting a triggering element on said drop conduit so as to be selectively shiftable between an at-rest position and a triggering position disposed in said normally unobstructed opening through said drop conduit; coupling said float means to said triggering element by means adapted to shift said triggering element from said at-rest position toward said triggering position as said float means is raised; and said resiliently connecting float means to said drop conduit step includes coupling said triggering element to said closure member so as to shift said closure member from said closed position toward said open position as said triggering element is shifted through said triggering position.
42. An overfill valve for use in liquid storage tanks .Iadd.having a casing with an inlet orifice.Iaddend., comprising: an inlet pipe having .Iadd.a generally vertically aligned inlet end and .Iaddend.a discharge end.Iadd., said discharge end adapted to be connected to a drop tube extension of a length sufficient to depend to a lower region of said tank; .Iaddend. a closure member mounted on said inlet pipe .Iadd.so as to be disposed beneath said inlet orifice when said overfill valve is mounted on said storage tank and said closure member mounted .Iaddend.to be selectively shiftable between a closed position and an open position; said closure member having controlled drain means associated therewith; .[.and.]. means for automatically shifting said closure member from said open position to said closed position when a liquid level rises to said discharge end and for automatically shifting said closure member from said closed position to said open position when a liquid level is beneath said discharge end, .Iadd.said automatic shifting means having an aligned insertion position in which said overfill valve is provided with the ability to be lowered into a tank and an inserted position in which .Iaddend.said automatic shifting means .[.being.]. .Iadd.is .Iaddend.disposed away from said discharge end, whereby when said overfill valve is installed in a tank to be filled .Iadd.with said drop tube extension connected to said discharge end.Iaddend., said overfill valve will .Iadd.remain open as liquid rises along said drop tube extension and .Iaddend.selectively close said inlet pipe when the liquid level reaches a preselected level to prevent overfilling of the tank, and any liquid that collects above said closure member when it is closed will drain into the tank through said controlled drain means and allow said closure member to open .Iadd.; and said inlet pipe, said closure member and said automatic shifting means being configured and disposed so as to permit a gauging pole to be lowered through said overfill valve.Iaddend..
43. The overfill valve of claim 42, wherein: said shifting means includes .[.said.]. .Iadd.a .Iaddend.float and .[.said.]. .Iadd.a .Iaddend.connector being weighted, and said connector is resilient.
44. The overfill valve of claim 42, wherein: said closure member is a valve plate pivotally mounted within said pipe by a hinge located at one end of said valve plate, said hinge spacing said valve plate one end from said inner wall and said valve plate extending generally upward from said hinge when said closure member is in an open position such that the flow of liquid through said pipe biases said valve plate against said inner wall when said closure member is in an open position.
45. An overfill valve for use in liquid storage tanks, comprising: a liquid fill pipe having a lower end through which a discharge aperture passes and an inner wall, said inner wall defining an inner perimeter; a valve face element movably mounted in said pipe to selectively move between an open position and a closed position, said valve face element including a flapper plate mounted to said inner wall of said pipe by a hinge, said flapper plate configured in a curved oval so as to block said discharge aperture when in said closed position and to extend generally around a portion of said inner pcrimeter of said pipe when in said open position, said hinge spacing said flapper plate from said wall such that fluid flow through said discharge aperture selectively maintains said flapper plate in said open position; a valve seat extending inwardly from said inner wall of said pipe, said valve seat forming a saddle shaped configuration corresponding to said flapper plate; said flapper plate including a drain aperture therethrough; a float coupled to said valve face element by a resilient .[.float.]. connector, said .[.float.]. connector extending from said valve face element such that said valve face element moves from an open position to a closed position as said float is raised; a weight coupled to said valve face element by .[.a.]. .Iadd.said .Iaddend.resilient .[.weight.]. connector, said .[.weight.]. connector extending from said valve face element such that said valve face element moves from a closed position into an open position as said weight is lowered; said .[.float connector and said weight.]. connector being a single coupling element, said spring element extending generally to the side of said pipe so as to dispose both said float and said weight outside of the path of fluid flow through said discharge aperture; said fill pipe including an assembly slot therethrough, said assembly slot being configured and disposed to provide for the passage of said float, .[.said float connector,.]. said weight and said .[.weight.]. connector therethrough; and means for substantially closing said assembly slot after said overfill valve has been positioned within a liquid storage tank, whereby said overfill valve will close when a liquid level raises said float sufficiently and said weight will urge said overfill valve into a normally open condition, and said float and said weight may be resiliently moved away from obstructions either external or internal to said pipe.
46. The overfill valve of claim 45, wherein: said means for substantially closing said assembly slot includes a collar longitudinally slidable along said fill pipe to selectively, substantially block said assembly slot.
47. An overfill valve for use in liquid storage tanks, comprising: a liquid fill pipe having a lower end through which a discharge aperture passes .Iadd.and an upper end through which an inlet aperture passes, said inlet aperture generally vertically aligned with said discharge aperture.Iaddend.; a valve face element movably mounted in said pipe to selectively move between an open position and a closed position; a float coupled to said valve face element by a resilient .[.float.]. connector, said .[.float.]. connector extending from said valve face element such that said valve face element moves from an open position to a closed position as said float is raised; a weight coupled to said valve face element by .[.a.]. .Iadd.said .Iaddend.resilient .[.weight.]. connector, said .[.weight.]. connector extending from said valve face element such that said valve face element moves from a closed position into an open position as said weight is lowered; said fill pipe including an assembly slot therethrough, said assembly slot being configured and disposed to provide for the passage of said float, .[.said float connector,.]. said weight and said .[.weight.]. connector therethrough; and means for substantially closing said assembly slot after said overfill valve has been positioned within a liquid storage tank, whereby said overfill valve will close when a liquid level raises said float sufficiently and said weight will urge said overfill valve into a normally open condition, and said float and said weight may be resiliently moved away from obstructions either external or internal to said pipe.
48. The overfill valve of claim 47, wherein: said means for substantially closing said assembly slot includes a collar longitudinally slidable along said fill pipe to selectively, substantially block said assembly slot.
49. The overfill valve of claim 47, wherein: said float includes said weight.
50. An overfill valve for use in liquid storage tanks, comprising: a liquid fill pipe having a lower end through which a discharge aperture passes; a valve face element movably mounted in said pipe to selectively move between an open position and a closed position; a float coupled to said valve face element by a spring coupling element, said spring coupling element extending from said valve face element such that said valve face element moves from an open position to a closed position as said float is raised; a weight coupled to said valve face element by said spring coupling element, said spring coupling element extending from said valve face element such that said valve face element moves from a closed position into an open position as said weight is lowered; said spring coupling element extending generally to the side of said pipe so as to dispose said float and said weight outside of the path of fluid flow through said discharge aperture; said fill pipe including an assembly slot therethrough, said assembly slot being configured and disposed to provide for the passage of said spring coupling element and said float therethrough when said spring coupling element is resiliently bent toward said fill pipe; and means for substantially closing said assembly slot after said overfill valve has been positioned within a liquid storage tank, whereby said overfill valve will close when a liquid level raises said float sufficiently and said weight will urge said overfill valve into a normally open condition, and said float and said weight may be resiliently moved away from obstructions either external or internal to said pipe.
51. The overfill valve of claim 50, wherein: said means for substantially closing said assembly slot includes a collar longitudinally slidable along said fill pipe to selectively, substantially block said assembly slot.
52. The overfill valve of claim 50, wherein: said float includes said weight. .Iadd.
53. An overfill valve for use in liquid storage tanks having a casing with an inlet orifice, comprising: an inlet pipe configured for receipt in said storage tank inlet orifice, said inlet pipe having an outer perimeter, an upper inlet and a lower discharge end, said upper inlet and said lower discharge end being substantially aligned such that a gauging pole may be lowered therethrough; a closure member mounted within said inlet pipe so as to be disposed beneath said inlet orifice when said overfill valve is mounted on said storage tank and said closure member mounted to be selectively shiftable between a closed position and an open position; a float coupled to said closure member such that said closure member moves from said open position to said closed position as said float is raised; and access means disposed between said inlet and said discharge end for allowing the movement of at least a portion of said float from the exterior of said pipe outer perimeter to within said pipe outer perimeter and enable said float to align with said inlet pipe sufficient for insertion of said inlet pipe in said inlet orifice. .Iaddend. .Iadd.
54. The overfill valve of claim 53, further comprising: a controlled drain associated with said closure member, whereby when said closure member is in a closed position liquid collected above said closure member will drain into said storage tank through said controlled drain. .Iadd.
55. An overfill valve for use in liquid storage tanks having a casing with an inlet orifice, comprising: an inlet pipe configured for receipt in said storage tank inlet orifice, said inlet pipe having an outer perimeter, an upper inlet and a lower discharge end, said upper inlet and said lower discharge end being substantially aligned such that a gauging pole may be lowered therethrough; a closure member mounted within said inlet pipe so as to be disposed beneath said inlet orifice when said overfill valve is mounted on said storage tank and said closure member mounted to be selectively shiftable between a closed position and an open position; a float coupled to said closure member such that said closure member moves from said open position to said closed position as said float is raised; and access means disposed between said inlet and said discharge end for allowing the movement of substantially all of said float from the exterior of said pipe outer perimeter to within said pipe outer perimeter and enable said float to align with said inlet pipe sufficient for insertion of said inlet pipe in said storage tank inlet orifice. .Iaddend. .Iadd.
56. The overfill valve of claim 55, further comprising: a controlled drain associated with said closure member, whereby when said closure member is in a closed position liquid collected above said closure member will drain into said storage tank through said controlled drain. .Iaddend. .Iadd.
57. An overfill valve for use in liquid storage tanks having a casing with an inlet orifice, comprising: an inlet pipe configured for receipt in said storage tank inlet orifice, said inlet pipe having an outer perimeter, an upper inlet and a lower discharge end, said upper inlet and said lower discharge end being substantially aligned such that a substantially linear element may be lowered therethrough; a closure member mounted within said inlet pipe so as to be disposed beneath said inlet orifice when said overfill valve is mounted on said storage tank and said closure member mounted to be selectively shiftable between a closed position and an open position; a float coupled to said closure member such that said closure member moves from said open position to said closed position as said float is raised; and said inlet pipe having an access zone disposed between said inlet and said discharge end and configured to allow the movement of at least a portion of said float from the exterior of said pipe outer perimeter to within said pipe outer perimeter and enable said float to align with said inlet pipe sufficient for insertion of said inlet pipe in said storage tank inlet orifice. .Iaddend. .Iadd.
58. An overfill valve for use in liquid storage tanks having a casing with an inlet orifice, comprising: an inlet pipe configured for receipt in said storage tank inlet orifice, said inlet pipe having an outer perimeter, an upper inlet and a lower discharge end, said upper inlet and said lower discharge end being substantially aligned such that a gauging pole may be lowered therethrough; a closure member mounted within said inlet pipe so as to be disposed beneath said inlet orifice when said overfill valve is mounted on said storage tank and said closure member mounted to be selectively shiftable between a closed position and an open position; a float resiliently coupled to said closure member such that said closure member moves from said open position to said closed position as said float is raised; said inlet pipe having an access zone disposed configured to allow the movement of substantially all of said float from the exterior of said pipe outer perimeter to within said pipe outer perimeter and enable said float to align with said inlet pipe sufficient for insertion of said inlet pipe in said storage tank inlet orifice; said resilient coupling of said float resiliently urging said float out of said access zone. .Iaddend. .Iadd.
59. An overfill valve for use in liquid storage tanks having a casing with an inlet orifice, comprising: an inlet pipe configured for receipt in said storage tank inlet orifice; a closure member mounted within said inlet pipe so as to be disposed beneath said inlet orifice when said overfill valve is mounted on said storage tank and said closure member mounted to be selectively shiftable between a closed position and an open position; a float element resiliently mounted with said closure member such that said closure member moves from said open position to said closed position as said float element is raised; an assembly recess in the side of said inlet pipe, said assembly recess positioned to provide said float element with the ability for at least partial reception therein to permit insertion of said inlet pipe in said storage tank inlet orifice; said resilient mounting of said float element biasing said float element out of said inlet pipe..Iaddend. .Iadd.60. An overfill valve for use in liquid storage tanks having a casing with an inlet orifice, comprising: an inlet pipe configured for receipt in said storage tank inlet orifice; a closure member mounted within said inlet pipe so as to be disposed beneath said inlet orifice when said overfill valve is mounted on said storage tank and said closure member mounted to be selectively shiftable between a closed position and an opened position; a float element resiliently mounted with said closure member such that said closure member moves from said open position to said closed position as said float element is raised, said closure member proximate said float element, and in said open position said closure member and said float element providing a substantially unobstructed linear passage through said inlet pipe; an assembly recess in the side of said inlet pipe, said assembly recess positioned to provide said float element with the ability for at least partial reception therein to permit insertion of said inlet pipe in said storage tank inlet orifice; said resilient mounting of said float element biasing said float element
away from said inlet pipe. .Iaddend. .Iadd.61. An overfill valve for use in liquid storage tanks, comprising: an inlet pipe having an outer perimeter, an upper inlet and a lower discharge, said upper inlet and said lower discharge being substantially aligned such that a substantially linear element may be lowered therethrough; a closure member mounted within said inlet pipe so as to be disposed within said storage tank when said overfill valve is mounted on said storage tank, and said closure member mounted to be selectively shiftable between a closed position and an open position; a float element mounted with said closure member such that said closure member moves from said open position to said closed position as said float element is raised; access means disposed between said upper inlet and said lower discharge for selectively allowing the movement of at least some region of said float element to within said inlet pipe outer perimeter; said closure member and said float element disposed when in said open position to permit the passage of a gauging pole down through said inlet pipe, whereby said access mean allows said float element to be moved at least partially within said inlet pipe outer perimeter for mounting said overfill valve on said storage tank and a gauging pole may be lowered through said overfill valve when in an open position to gauge the liquid
level in said storage tank. .Iaddend. .Iadd.62. The overfill valve of claim 61, wherein: said float element is resiliently mounted with said closure member to resiliently bias said float element toward the outside of said inlet pipe
outer perimeter. .Iaddend. .Iadd.63. An overfill valve for use in liquid storage tanks having a casing with an inlet orifice, comprising: an inlet pipe having an outer perimeter; a closed member mounted within said inlet pipe so as to be disposed beneath said inlet orifice when said overfill valve is mounted on said storage tank and said closure member mounted to be selectively shiftable between a closed position and an open position; said closure member having a controlled drain means associated therewith; means for automatically shifting said closure member between said open position and said closed position, said automatic shifting means including a float resiliently coupled to said closure member so as to shift said closure member toward said closed position as said float is raised; access means for allowing the resilient movement of at least some region of said float to within said inlet pipe outer perimeter, with said float being resiliently biased toward the outside of said inlet pipe outer perimeter. .Iaddend.Join the waitlist — get patent alerts
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