Claims
- 1. A stress sensor for measuring vehicle wheel operating forces, the operating forces formed as four divided stress components generated when a braking force is applied to the vehicle wheel, comprising:
- one set of biaxial 90.degree. sensor segments attached with respect to an axle of a vehicle, said one set of biaxial 90.degree. sensor segments comprising a pair of strain gauges at right angles on an obverse face and a reverse face of a plane substrate and is attached with said axle of the vehicle;
- a bridge circuit having a strain gauge of said one set of biaxial 90.degree. sensor segments for converting the strain amount detected by each of said strain gauges into an electric signal; and
- an arithmetic means connected to said bridge circuit for calculating stresses produced when the braking force is applied to the vehicle wheels in the form of four divided stress components, namely,
- a stress of F direction (horizontal to a road surface),
- a stress of N direction (vertical to a road surface),
- a stress of FB direction (torsional moment direction of a vehicle axle),
- a stress of S direction (axle longitudinal direction),
- by applying four prepared equations to said electric signals which are responsive to each strain gauge of said one set of biaxial 90.degree. sensor segments from said bridge circuit respectively.
- 2. The stress sensor as defined in claim 1, wherein said strain gauges comprise one of a metal foil, a resistive device of semiconductor material, a piezoelectric device and a magnetic field resistance device.
- 3. A stress sensor for measuring vehicle wheel operating forces, the operating forces formed as four divided stress components generated when a braking force is applied to the vehicle wheel, said sensor comprising:
- two sets of biaxial 90.degree. sensor segments attached with respect to an axle of a vehicle, said two sets of biaxial 90.degree. sensor segments each comprising a first biaxial 90.degree. sensor segment which has a pair of strain gauges at right angles on a top face and a bottom face of one of a rectangular parallelepiped block and a cubic block which define top, bottom, front and rear faces, and is attached with said axle of the vehicle and a second biaxial 90.degree. sensor segment which has a pair of strain gauges at right angles on said front and rear faces of one of said rectangular parallelepiped block and said cubic block;
- bridge circuits each having a strain gauge of said two sets of biaxial 90.degree. sensor segments for converting the strain amount detected by said each strain gauges into an electric signal; and
- an arithmetic means connected to said bridge circuits for calculating stresses produced when the braking force is applied to the vehicle wheels in the form of four divided stress components, namely,
- a stress of F direction (horizontal to a road surface),
- a stress of N direction (vertical to a road surface),
- a stress of FB direction (torsional moment direction of a vehicle axle),
- a stress of S direction (axle longitudinal direction),
- by applying four prepared equations to said electric signals which are responsive to each strain gauge of said two sets of biaxial 90.degree. sensor segments from said bridge circuit respectively.
- 4. The stress sensor as defined in claim 3, wherein said strain gauges comprise one of a metal foil, a resistive device of semiconductor material, a piezoelectric device and a magnetic field resistive device.
- 5. A stress sensor for measuring vehicle wheel operating forces, the operating forces formed as four divided stress components generated when a braking force is applied to the vehicle wheel, comprising:
- three sets of biaxial 90.degree. sensor segments attached with respect to an axle of a vehicle circularly, said three sets of biaxial 90.degree. sensor segments each comprising a first biaxial 90.degree. sensor segment, a second biaxial 90.degree. sensor segment, and a third biaxial sensor segment each of which is aligned with an interval and having a pair of strain gauges at right angles on an obverse face and a reverse face of a plane substrate;
- bridge circuits each having a strain gauge of said three sets of biaxial 90.degree. sensor segments for converting the strain amount detected by each of said strain gauges into electric signal; and
- an arithmetic means connected to said bridge circuit for calculating stresses produced when the braking force is applied to the vehicle wheels in the form of four divided stress components, namely,
- a stress of F direction (horizontal to a road surface),
- a stress of N direction (vertical to a road surface),
- a stress of FB direction (torsional moment direction of a vehicle axle),
- a stress of S direction (axle longitudinal direction),
- by applying four prepared equations to said electric signals which are responsive to each strain gauge of said three sets of biaxial 90.degree. sensor segments from said bridge circuit respectively.
- 6. The stress sensor as defined in claim 5, wherein said strain gauges comprise one of a metal foil, a resistive device of semiconductor material, a piezoelectric device and a magnetic field resistive device.
Priority Claims (3)
Number |
Date |
Country |
Kind |
7-278491 |
Sep 1995 |
JPX |
|
7-314616 |
Oct 1995 |
JPX |
|
7-314617 |
Oct 1995 |
JPX |
|
Parent Case Info
This application is a Division of Ser. No. 08/911,980 filed Aug. 15, 1997.
US Referenced Citations (5)
Divisions (1)
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Number |
Date |
Country |
Parent |
911980 |
Aug 1997 |
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