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Plastic Deformations of Measured Object Surface in Contact with Undeformable Surface of Measuring Tool

机译:与测量工具的不变形表面接触的被测物体表面的塑性变形

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摘要

Measuring errors caused by deformation (flattening) of a measured object appear under the influence of pressure force and weight of the measured object. Plastic strain, arising at the contact of a measured object and an undeformable contact tip of a measuring device, can be calculated by applying the Hertz plastic solution and the hypothesis of plastic strain. In a small area of contact between two bodies pressing against one another with force F, there appears the so-called contact stress. It can sometime reach very high values, exceeding the yield point, even when the contact pressure is relatively small. In the present work, the authors describe a theoretical solution to the problem of plastic strain between two bodies. The derived relationships enable to calculate force F during measurements of a deformable object by means of an instrument with an undeformable, spherical measuring tip. By applying the τmax hypothesis, a solution was obtained for the force F in an inexplicit form. The theoretical solution was verified with the digital simulation and experimental measurement. With the FEM method, the limit length gage was modeled in interaction with the measured shaft of a diameter d larger than the nominal one of Δl value.
机译:在被测物的压力和重量的影响下,会出现由被测物的变形(展平)引起的测量误差。可以通过应用赫兹塑性溶液和塑性应变假设来计算在被测物体与测量设备的不可变形接触尖端接触时产生的塑性应变。在两个物体之间以力F相互挤压的一小段接触区域出现了所谓的接触应力。即使当接触压力相对较小时,有时也可能达到很高的值,超过屈服点。在目前的工作中,作者描述了两个物体之间塑性应变问题的理论解决方案。所导出的关系使得能够借助具有不变形的球形测量头的仪器来计算可变形物体的测量过程中的力F。通过应用τmax假设,以明示形式获得了力F的解。通过数字仿真和实验测量验证了理论解。利用FEM方法,对极限长度量规进行建模,使其与直径d大于Δl值的标称值之一的被测轴相互作用。

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