Patent classifications
G01M13/027
Flexible drive shaft test arrangements
A flexible drive shaft test arrangement includes a drive end piece arranged along a rotation axis, a driven end piece axially offset from the drive end piece along the rotation axis, and a shell. The shell connects the drive end piece to the driven end piece. The drive end piece end is offset in rotation about the driven end piece to internally load a flexible drive shaft disposed within the shell with torsion. Test stands and methods for testing flexible drive shafts are also disclosed.
RECEPTACLE DEVICE FOR RECEIVING A DRIVE AXLE OF A MOTOR VEHICLE FOR A TEST BENCH
The invention relates to a receptacle device (6) for receiving a drive axle (4) of a motor vehicle for a test bench (2). In order to achieve a load distribution that is more realistic in comparison to the prior art, according to the invention the receptacle device (6) has at least one external unit (18) for connection to the test bench (2) and at least one inner unit (20), enclosed at least in part by the outer unit (18), wherein the inner unit (20) is translationally fixed relative to the outer unit (18) and is designed to be flexibly rotatable about at least one axis, and wherein the inner unit (20) has a recess (40) suitable for receiving the drive axle (4).
RECEPTACLE DEVICE FOR RECEIVING A DRIVE AXLE OF A MOTOR VEHICLE FOR A TEST BENCH
The invention relates to a receptacle device (6) for receiving a drive axle (4) of a motor vehicle for a test bench (2). In order to achieve a load distribution that is more realistic in comparison to the prior art, according to the invention the receptacle device (6) has at least one external unit (18) for connection to the test bench (2) and at least one inner unit (20), enclosed at least in part by the outer unit (18), wherein the inner unit (20) is translationally fixed relative to the outer unit (18) and is designed to be flexibly rotatable about at least one axis, and wherein the inner unit (20) has a recess (40) suitable for receiving the drive axle (4).
DYNAMOMETER SYSTEM CONTROL DEVICE
A control device of a dynamometer system includes a mechanical loss arithmetic unit that generates a loss compensation signal corresponding to loss torque generated in a dynamometer body in a state where a load is connected, on the basis of an angular velocity detection signal, a characteristic vibration suppression control circuit that generates a compensation signal in order to suppress a characteristic vibration of a swinging element, and a torque current command signal generating unit that generates a torque current command signal by subtracting the compensation signal from an upper level torque command signal. The characteristic vibration suppression control circuit is provided with a normative model arithmetic unit, deviation compensator, model input generating unit, and differential compensator that generates a correction signal by subjecting a torque signal obtained by the normative model arithmetic unit to a differential operation.
DYNAMOMETER SYSTEM CONTROL DEVICE
A control device of a dynamometer system includes a mechanical loss arithmetic unit that generates a loss compensation signal corresponding to loss torque generated in a dynamometer body in a state where a load is connected, on the basis of an angular velocity detection signal, a characteristic vibration suppression control circuit that generates a compensation signal in order to suppress a characteristic vibration of a swinging element, and a torque current command signal generating unit that generates a torque current command signal by subtracting the compensation signal from an upper level torque command signal. The characteristic vibration suppression control circuit is provided with a normative model arithmetic unit, deviation compensator, model input generating unit, and differential compensator that generates a correction signal by subjecting a torque signal obtained by the normative model arithmetic unit to a differential operation.
TEST BENCH ARRANGEMENT FOR TESTING A MULTI-PLATE CLUTCH
Friction disk sets of clutches and brakes are used, for example, in automatic transmissions. In clutch test benches for such clutches, the friction disks are held in a test chamber on inner and outer disk carriers. The test bench arrangement has a clutch unit which includes first and second disk carriers. The first disk carrier can be moved relative to the second disk carrier. A drive input section includes a drive input mechanism for producing relative movement between the first and the second disk carrier. A first driven shaft is mounted by at least one first bearing unit. The first disk carrier is drive-connected, via the first shaft, to the drive input mechanism. The first shaft is mounted to rotate by virtue of the first bearing unit. The test bench arrangement includes a measuring unit for determining a frictional torque of the first bearing unit.
TEST BENCH ARRANGEMENT FOR TESTING A MULTI-PLATE CLUTCH
Friction disk sets of clutches and brakes are used, for example, in automatic transmissions. In clutch test benches for such clutches, the friction disks are held in a test chamber on inner and outer disk carriers. The test bench arrangement has a clutch unit which includes first and second disk carriers. The first disk carrier can be moved relative to the second disk carrier. A drive input section includes a drive input mechanism for producing relative movement between the first and the second disk carrier. A first driven shaft is mounted by at least one first bearing unit. The first disk carrier is drive-connected, via the first shaft, to the drive input mechanism. The first shaft is mounted to rotate by virtue of the first bearing unit. The test bench arrangement includes a measuring unit for determining a frictional torque of the first bearing unit.
TEST BENCH FOR TOOTHINGS
The invention relates to a test bench (201, 1201) for toothings, comprising a sample receiver (209, 1211) and a first load generator (213, 1203, 1205), said first load generator (213, 1203, 1205) comprising at least one head (215, 1207). The sample receiver (209, 1211) is designed to receive at least one section (205) of a tooth sample (203) separated from the toothing of a gear wheel (101), said tooth sample (203) comprising a tooth of the gear wheel (101), and the head (215, 1207) lying against a flank (207) of the tooth and applying a load to said flank (207).
TEST BENCH FOR TOOTHINGS
The invention relates to a test bench (201, 1201) for toothings, comprising a sample receiver (209, 1211) and a first load generator (213, 1203, 1205), said first load generator (213, 1203, 1205) comprising at least one head (215, 1207). The sample receiver (209, 1211) is designed to receive at least one section (205) of a tooth sample (203) separated from the toothing of a gear wheel (101), said tooth sample (203) comprising a tooth of the gear wheel (101), and the head (215, 1207) lying against a flank (207) of the tooth and applying a load to said flank (207).
POWER TRANSMISSION ELEMENTS, TORQUE MEASURING DEVICE AND FREEWHEEL ASSEMBLY
A load cell for determining a radial force acting on a crankshaft having a receiving sleeve for receiving a bearing ring and a fastening ring for attaching the load cell in a transmission housing. Axial support areas are provided on the fastening ring for axially supporting the outer ring of the first bearing. Moreover, measuring regions for receiving radial forces of the receiving sleeve are provided which connect the receiving sleeve with the fastening ring. Strain sensors are attached to at least two of the measuring regions.