USRE30105EExpiredUtility

Fluid measuring apparatus

Priority: Nov 15, 1974Filed: Apr 29, 1977Granted: Oct 2, 1979
Est. expiryNov 15, 1994(expired)· nominal 20-yr term from priority
G01P 5/10G01F 1/684
10
PatentIndex Score
4
Cited by
10
References
2
Claims

Abstract

A thin elongated hot wire is bent in half in an elongated cavity enclosed on its sides. The ends of the wire are supported by a circuit board at one end of the cavity and the middle of the wire is supported under tension by a quartz rod at the other end of the cavity, so the two halves of the wire are in spaced, approximately parallel relationship from each other and in spaced relationship from the sides of the cavity. The cavity is formed in a housing that comprises a block having a first flat surface and a plate having a second flat surface removably attached in abutment with the first surface of the block. The cavity is a groove formed in the first surface that has an open side enclosed by the second surface.

Claims

exact text as granted — not AI-modified
What is claimed is: 
     
       1. Fluid measuring apparatus comprising: a housing having an elongated cavity enclosed on its sides and open at its ends;   a thin elongated, i.e., uncoiled, hot wire bent in half to extend along the length of the cavity;   first means at one end of the cavity for supporting the ends of the wire in fixed relationship longitudinally and laterally with respect to each other and electrically isolated from each other.Iadd., the first wire supporting means comprising a printed circuit board, first and second mutually isolated conductive pads lying entirely on the circuit board, solder connections between the ends of the hot wire and the first and second pads, respectively, and a pair of electrical leads interconnected between the pads, respectively, and the measuring means; .Iaddend.   second means at the other end of the cavity for supporting the middle of the wire, the second wire supporting means comprising a deformed spring that exerts tension on the middle of the hot wire to keep the hot wire taut as its length changes, permits longitudinal movement of the middle of the wire, and prevents lateral movement of the middle of the wire, the first and second supporting means cooperating to maintain the halves of the wire in spaced approximately parallel relationship from each other and in spaced relationship from the sides of the cavity;   means for forming in the housing a fluid entrance to the cavity;   means for forming in the housing a fluid exit from the cavity longitudinally spaced from the entrance; and   means for measuring the change in resistance of the hot wire.   
     
     
       2. The apparatus of claim 1, in which the housing comprises a block of material having a first flat surface, a plate having a second flat surface adapted to abut the first surface, and means for attaching the plate to the block, and the cavity comprises a groove formed in the first surface of the block, the groove having an open side which is enclosed by the second surface of the plate. .[.3. The apparatus of claim 1, in which the first wire supporting means comprises a printed circuit board, first and second mutually isolated conductive pads lying entirely on the circuit board, solder connections between the ends of the hot wire and the first and second pads, respectively, and a pair of electrical leads interconnected between the pads, respectively, and the measuring means..]. 
     
     
        . The apparatus of claim .[.3.]. .Iadd.1.Iaddend., in which the electrical leads are substantially thicker than the hot wire and the pads are L-shaped, each pad having a first arm parallel to the length of the hot wire and a second arm perpendicular to the length of the hot wire, the second arms of the pads being longitudinally offset from each other and spaced apart approximately the spacing between the two halves of the wire. 
     
     
        . The apparatus of claim 4, in which the second wire supporting means comprises a deformed rod around which the middle of the wire is wrapped, the deformed rod exerting tension on the hot wire to keep the hot wire 
     
     
        taut as its length changes. 6. The apparatus of claim .[.3.]. .Iadd.1.Iaddend., in which an elongated chamber is formed in the housing transverse to the length of the cavity at the one end of the cavity, a rotatable and translatable plug is disposed in the chamber, and the 
     
     
        printed circuit board is attached to the plug. 7. The apparatus of claim 6, in which an elongated second chamber is formed in the housing transverse to the length of the cavity at the other end of the cavity, a second rotatable and translatable plug is disposed in the chamber, and the spring comprises a quartz rod that extends along the length of the second chamber, the rod having a deformed free end at the end of the cavity around which the middle of the wire is wrapped and an anchored end is attached to the second plug such that the middle of the hot wire wrapped around the free end of the rod is displaced from the axis of rotation of 
     
     
        the second plug. 8. The apparatus of claim 7, in which the means for forming an entrance comprises a first conduit connected to the cavity at a point midway between its ends and the means for forming an exit comprises a second conduit connecting one end of the cavity to the outside of the housing and a third conduit connecting the other end of the cavity to the 
     
     
        outside of the housing. 9. The apparatus of claim 8 in which the housing comprises a block of material having a first flat surface, a plate having a second flat surface adapted to abut the first surface, and means for attaching the plate to the block, and the cavity comprises a groove formed in the first surface of the block, the groove having an open side which is 
     
     
        enclosed by the second surface of the plate. 10. The apparatus of claim 1, in which the second wire supporting means comprises a deformed rod around which the middle of the wire is wrapped, the deformed rod exerting tension 
     
     
        on the hot wire to keep the hot wire taut as its length changes. 11. The apparatus of claim 10, in which an elongated chamber is formed in the housing transverse to the length of the cavity at the other end of the cavity, a rotatable and translatable plug is disposed in the chamber, and the rod extends along the length of the chamber, the rod having a deformed free end around which the middle of the wire is wrapped and an anchored end attached to the plug such that the middle of the hot wire wrapped around the free end of the rod is displaced from the axis of rotation of 
     
     
        the plug. 12. The apparatus of claim 11, in which the free end of the rod has a hook to prevent the middle of the hot wire from slipping off the free end of the rod and to position the middle of the hot wire axially 
     
     
        with respect to the rod. 13. The apparatus of claim 12, in which the rod 
     
     
        is made of quartz. 14. The apparatus of claim 1, in which the means for forming an entrance comprises a first conduit connected to the cavity at a point midway between its ends and the means for forming an exit comprises a second conduit connecting one end of the cavity to the outside of the housing and a third conduit connecting the other end of the cavity to the 
     
     
        outside of the housing. 15. The apparatus of claim 1, in which the cavity 
     
     
        and the hot wire are horizontally oriented. 16. The apparatus of claim 1, in which the first supporting means rigidly supports the ends of the wire. 
     
     
        7. Fluid measuring apparatus comprising: a housing having an elongated cavity enclosed on its sides and open at its ends;   a thin elongated, i.e., uncoiled, hot wire extending along the length of the cavity;   first wire support means at one end of the cavity rotatable and translatable along a first axis transverse to the length of the cavity;   second wire support means at the other end of the cavity rotatable and translatable about a second axis transverse to the length of the cavity;   first means displaced from the first axis for attaching the hot wire at one end of the cavity to the first wire support means;   second means displaced from the second axis for attaching the hot wire at the other end of the cavity to the second wire support means;   means for forming in the housing a fluid entrance to the cavity;   means for forming in the housing a fluid exit from the cavity longitudinally spaced from the fluid entrance; and   
     
     
       means for measuring the change in resistance of the hot wire. 18. The apparatus of claim 17, in which the first wire support means comprises an elongated chamber transverse to the length of the cavity, a rotatable and translatable plug disposed in the chamber, and a printed circuit board having a conductive pad attached to the plug, and the first attaching 
     
     
        means comprises a solder connection between the hot wire and the pad. 19. The apparatus of claim 18, in which the second wire support means comprises an elongated second chamber transverse to the length of the cavity at the other end of the cavity, a rotatable and translatable second plug disposed in the second chamber, and a rod having a deformed free end to which the hot wire is attached and an anchored end attached to the plug, the deformed free end of the rod exerting tension on the hot wire to 
     
     
        keep the hot wire taut as its length changes. 20. The apparatus of claim 19, in which the hot wire is bent in half to extend along the length of the cavity such that the ends of the hot wire are attached to the first wire support means and the middle of the hot wire is wrapped around the rod, and the second attaching means comprises a hook at the free end of 
     
     
        the rod. 21. The apparatus of claim 17, in which the second wire support means comprises an elongated chamber transverse to the length of the cavity at the other end of the cavity, a rotatable and translatable plug disposed in the chamber, and a rod having a deformed free end to which the hot wire is attached and an anchored end attached to the plug, the deformed free end of the rod exerting tension on the hot wire to keep the 
     
     
        hot wire taut as its length changes. 22. The apparatus of claim 21, in which the hot wire is bent in half to extend along the length of the cavity such that the ends of the hot wire are attached to the first wire support means and the middle of the wire is wrapped around the rod, and the second attaching means comprises a hook formed near the free end of 
     
     
        the rod. 23. Fluid measuring apparatus comprising: a housing having an elongated cavity enclosed on its sides and open at its ends;   a thin elongated hot wire bent in half to extend along the length of the cavity;   a printed circuit board at one end of the cavity for supporting the ends of the hot wire;   first and second mutually isolated conductive pads on the circuit board;   solder connections between the ends of the hot wire and the first and second pads, respectively, to hold the ends of the hot wire in fixed relationship longitudinally and laterally and to electrically isolate the ends of the hot wire from each other;   a deformed spring at the other end of the cavity for supporting the middle of the wire, the deformed spring exerting tension on the middle of the hot wire to keep the hot wire taut as its length changes;   means for forming in the housing a fluid entrance to the cavity;   means for forming in the housing a fluid exit from the cavity longitudinally spaced from the entrance;   means for measuring the change in resistance of the hot wire; and   a pair of electrical leads interconnected between the pads, respectively, and the measuring means. .Iadd. 24. Fluid measuring apparatus comprising:   a housing having an elongated cavity enclosed on its sides;   a thin elongated, i.e., uncoiled, hot wire bent in half to extend along the length of the cavity;   first means at one area of the cavity for supporting the ends of the wire in fixed relationship longitudinally and laterally with respect to each other and electrically isolated from each other;   second means at another area of the cavity spaced from the one area for supporting the middle of the wire, the second wire supporting means comprising a deformed rod around which the middle of the wire is wrapped, the deformed rod exerting tension on the middle of the hot wire to keep the hot wire taut as its length changes, and means for preventing the middle of the wire from moving laterally relative to the rod without preventing the middle of the wire from moving longitudinally relative to the rod, the first and second supporting means cooperating to maintain the halves of the wire in spaced relationship from each other and from the sides of the cavity;   means for forming in the housing a fluid entrance to the cavity;   means for forming in the housing a fluid exit from the cavity longitudinally spaced from the entrance so the hot wire lies between the entrance and the exit; and   means for measuring the change in resistance of the hot wire. .Iaddend. .Iadd. 25. The apparatus of claim 24, in which the means for preventing the middle of the wire from moving laterally comprises a hook in the rod that captures the middle of the wire. .Iaddend..Iadd. 26. The apparatus of claim 24, in which the rod has a free end around which the middle of the wire is wrapped and an anchored end attached to the housing, the rod extending transverse to the length of the wire. .Iaddend..Iadd. 27. The apparatus of claim 26, in which the rod is made of quartz. .Iaddend. .Iadd. 28. Fluid measuring apparatus comprising:   a housing having an elongated cavity enclosed on its sides;   a thin elongated, i.e., uncoiled, hot wire extending along the length of the cavity;   first wire support means at one area of the cavity rotatable and translatable along a first axis transverse to the length of the cavity;   second wire support means at another area of the cavity spaced from the one area rotatable and translatable about a second axis transverse to the length of the cavity;   first means displaced from the first axis for attaching the hot wire at the one area of the cavity to the first wire support means;   second means displaced from the second axis for attaching the hot wire at the other area of the cavity to the second wire support means;   means for forming in the housing a fluid entrance to the cavity;   means for forming in the housing a fluid exit from the cavity longitudinally spaced from the fluid entrance so the hot wire lies between the entrance and the exit; and   means for measuring the change in resistance of the hot wire. .Iaddend. .Iadd. 29. Fluid measuring apparatus comprising:   a housing having an elongated cavity enclosed on its sides;   a thin elongated hot wire bent in half to extend along the length of the cavity;   a printed circuit board at one area of the cavity for supporting the ends of the hot wire;   first and second mutually isolated conductive pads on the circuit board;   solder connections between the ends of the hot wire and the first and second pads, respectively, to hold the ends of the hot wire in fixed relationship longitudinally and laterally and to electrically isolate the ends of the hot wire from each other;   deformed spring means at another area of the cavity spaced from the one area for supporting the middle of the wire, the deformed spring means exerting tension on the middle of the hot wire to keep the hot wire taut as its length changes;   means for forming in the housing a fluid entrance to the cavity;   means for forming in the housing a fluid exit from the cavity longitudinally spaced from the entrance so the hot wire lies between the entrance and the exit;   means for measuring the change in resistance of the hot wire; and   a pair of electrical leads interconnected between the pads, respectively, and the measuring means. .Iaddend.

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