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A measuring system for determination of a cantilever beam support moment

机译:用于确定悬臂梁支撑力矩的测量系统

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摘要

This investigation is aimed to develop a model of experimental-computation determination of a support moment of a cantilever beam loaded with concentrated force at its end including the optimal choice of coordinates of deflection data points and parameters of transformation of deflection data in case of insufficient accuracy of the assignment of initial parameters (support settlement, angle of rotation of the bearing section) and cantilever beam length. The influence of distribution and characteristics of sensors on the cantilever beam on the accuracy of determining the support moment which improves in the course of transition from the uniform distribution of sensors to optimal non-uniform distribution is shown. On the basis of the theory of inverse problems the method of transformation reduction at numerical differentiation of deflection functions has been studied. For engineering evaluation formulae of uncertainty estimate to determine a support moment of a cantilever beam at predetermined uncertainty of measurements using sensors have been obtained.
机译:这项研究旨在建立实验计算确定端部集中力的悬臂梁的支撑力矩的模型,包括在精度不足的情况下偏转数据点坐标的最佳选择和偏转数据的转换参数。初始参数(支撑沉降,轴承部分的旋转角度)和悬臂梁长度的分配。示出了传感器的分布和特性对悬臂梁的确定支撑力矩的精度的影响,该精度在从传感器的均匀分布到最佳非均匀分布的过渡过程中提高了。在反问题理论的基础上,研究了偏转函数数值微分下的变换归约方法。对于工程评估,已经获得了不确定性估计的公式,以确定使用传感器在测量的预定不确定性下的悬臂梁的支撑力矩。

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