Angular acceleration sensor
First Claim
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1. A sensor for sensing an angular acceleration, comprising:
- an elastic plate having a pair of symmetrical and opposite arms arranged outward from a center of the plate, said arms bending in opposite directions in response to a rotation force acting about an axis lying within a plane formed by the arms;
a pair of piezoelectric elements adhered onto the elastic plate, each element being symmetrically positioned at the same distance from the center of the plate,the piezoelectric elements generating an electrical signal in response to tensile or compressing forces formed by the bending of the elastic plate;
a pair of inertia bodies, each body being symmetrically positioned at an end of each arm; and
a member for supporting the center of the elastic plate, whereinsaid elastic plate has position-indicating grooves to which the piezoelectric elements are attached.
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Abstract
Seismic inertias are attached to the ends of the arms of elastic plate. Piezoelectric elements are adhered to the upper surfaces of the arms and the elastic plate is supported in the center by a support. When rotation force is applied to the arms of the elastic plate, the arms bend towards opposite direction. The piezoelectric elements are suppressed or extended by the elastic force, thereby they generate electric signals. Rotation directions and angular acceleration velocity can be detected by processing those signals.
49 Citations
4 Claims
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1. A sensor for sensing an angular acceleration, comprising:
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an elastic plate having a pair of symmetrical and opposite arms arranged outward from a center of the plate, said arms bending in opposite directions in response to a rotation force acting about an axis lying within a plane formed by the arms; a pair of piezoelectric elements adhered onto the elastic plate, each element being symmetrically positioned at the same distance from the center of the plate, the piezoelectric elements generating an electrical signal in response to tensile or compressing forces formed by the bending of the elastic plate; a pair of inertia bodies, each body being symmetrically positioned at an end of each arm; and a member for supporting the center of the elastic plate, wherein said elastic plate has position-indicating grooves to which the piezoelectric elements are attached.
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2. A sensor for sensing an angular acceleration, comprising:
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an elastic plate having a pair of symmetrical and opposite arms arranged outward from a center of the plate, said arms bending in opposite directions in response to a rotation force acting about an axis lying within a plane formed by the arms; a pair of piezoelectric elements adhered onto the elastic plate, each element being symmetrically positioned at the same distance from the center of the plate, the piezoelectric elements generating an electrical signal in response to tensile or compressing forces formed by the bending of the elastic plate; a pair of inertia bodies, each body being symmetrically positioned at an end of each arm; and a member for supporting the center of the elastic plate, wherein said elastic plate is fixed to the inertia bodies by compressing the arms of the elastic plate with cut segments of lateral faces of the inertia bodies.
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3. A sensor for sensing an angular acceleration, comprising:
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an elastic plate having four symmetrical and opposite arms, each arm being perpendicular to the adjacent arms and positioned at the same distance from a center of the plate, each arm bending towards opposite directions to the bending direction of the opposite arm by a rotation force acting about an axis lying within the plane formed by the four arms; piezoelectric elements adhered onto the arms and each element being symmetrically positioned at the same distance from the center of the elastic plate, the piezoelectric elements generating an electrical signal in response to tensile or compressing forces formed by the bending of the elastic plate; inertia bodies positioned at each end of the arms of the elastic plate; and means for supporting the centroid of the elastic plate, wherein position guides are formed in the four corners where the arms of the elastic plate intersect.
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4. A sensor for sensing an angular acceleration comprising:
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an elastic plate having four symmetrical and opposite arms, each arm being perpendicular to the adjacent arms and positioned at the same distance from a center of the plate, each arm bending towards opposite directions to the bending direction of the opposite arm by a rotation force acting about an axis lying within the plane formed by the four arms; piezoelectric elements adhered onto the arms and each element being symmetrically positioned at the same distance from the center of the elastic plate, the piezoelectric elements generating an electrical signal in response to tensile or compressing forces formed by the bending of the elastic plate; inertia bodies positioned at each end of the arms of the elastic plate; and means for supporting the centroid of the elastic plate, wherein the support means include guide grooves for fixing the elastic plate.
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Specification