Spring joint for measuring device

3969933
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Inventors

Himmler, Gunther

Application #

516813

Filed

Oct-21-1974

Published

Jul-20-1976

Current US Class

073/146
073/862
464/98

International Classes

G01L 005/16; G01L 005/20

Field of Search

73/133 64/15

Assignee

Gebr. Hofmann KG (Darmstadt, DT)

Examiners

Ruehl; Charles A.

Attorney, Agent or Firm

Cushman, Darby & Cushman

Referenced by:

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Citation

Cite This Patent

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Abstract
A joint for connecting a drive unit to a measuring arrangement connected to a wheel. The measuring arrangement comprising a wheel shaft rotatably supported by a measuring hub having deformable beams for measuring moments and forces acting on the wheel and the joint comprising a diaphragm flexible in the axial direction but rigid in the peripheral direction connected between the wheel shaft and one end of a cylindrical tube which is radially resilient and axially rigid, the other end of the tube being coupled to the drive unit.
 
Claims
What is claimed is:

1. A homo-kinetic joint interconnecting a measuring arrangement and a drive unit, said measuring arrangement comprising a wheel shaft rotatably supported by a measuring hub that measures forces and moments acting on a wheel connected to said measuring arrangement, said joint comprising a diaphragm connected to said wheel shaft and flexible in the axial direction but rigid in a peripheral direction and a cylindrical tube coupled at one end to said diaphragm and connected at the other end to said drive unit, said tube functioning as a bar spring which, while axially rigid, is radially resilient.

2. A joint according to claim 1 wherein said drive unit comprises a synchronizing displacement joint and said other end of the cylindrical tube is connected thereto and the outer edge of the diaphragm is fixed to a flange of said wheel shaft.



Description
This invention relates to a homo-kinetic joint arranged between a measuring arrangement comprising a hub having resiliently deformable measuring beams and a drive unit to measure forces and moments acting on a rotating or still wheel and to transmit them to a measuring circuit for analysis.

A wheel subject to dynamic loads is axially and/or radially deflected so that, in case of a rigid connection between the measuring hub and the drive unit, the drive unit would influence the measuring result of the measuring hub and thus make impossible the separation of forces and moments with respect to their cause.

Devices are known which use double cardan joints for the connection. This joint arrangement, however, becomes unnecessarily expensive. Furthermore, undesired friction occurs in the joint pins of the double cardan joint which affects measuring to an inadmissible extent without a possibility of determining the exact degree of this influence.

In order to avoid the aforesaid disadvantages it is proposed with this invention to provide a homo-kinetic joint arrangement between the measuring arrangement and the drive unit to allow axial and radial movements and movements in a bending angle and therefore only minor and absolutely determinable forces and moments of the driving member on the measuring hub so that the measured values of the wheel can be determined and analyzed without errors introduced by the driving unit.
 
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