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Uniformity Of Axial Displacement In Element Testing

机译:单元测试中轴向位移的均匀性

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Uniform axial deformation is a basic assumption in element testing, where axial strain typically is determined from displacement measurements. In applying force through rigid platens, however, some rotation may occur such that the fundamental stress field is perturbed. Thus, nonuniformity among measures of axial displacement may be present, and the response may consist of a component due to uniform deformation and a component due to rotation. To estimate this nonuniformity for cylindrical specimens, at least three sensors are needed, and in general, the axial strain cannot be estimated without error from only two sensors. For equiangular placement of three sensors, it is shown that the mean of the displacement readings is equal to the displacement from the uniform component. The rotation does not affect the average value, but the rotation must be calculated to estimate the nonuniformity. The ratio of the measured maximum and minimum displacement does not provide an objective evaluation.
机译:均匀的轴向变形是单元测试中的基本假设,其中轴向应变通常由位移测量确定。但是,在通过刚性压板施加力时,可能会发生一些旋转,从而使基本应力场受到干扰。因此,在轴向位移的量度之间可能存在不均匀性,并且响应可能由归因于均匀变形的分量和归因于旋转的分量组成。为了估计圆柱状样品的这种不均匀性,至少需要三个传感器,并且通常,不能仅凭两个传感器就可以估计轴向应变而不会产生误差。对于三个传感器的等角放置,显示出位移读数的平均值等于来自均匀分量的位移。旋转不影响平均值,但是必须计算旋转以估计不均匀性。测得的最大和最小位移之比无法提供客观的评估。

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