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首页> 外文期刊>Journal of Vibration and Acoustics >Load Recovery in Components Based on Dynamic Strain Measurements
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Load Recovery in Components Based on Dynamic Strain Measurements

机译:基于动态应变测量的部件载荷恢复

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This paper presents a modeling approach for estimating time varying loads acting on a component from experimental strain measurements. The strain response of an elastic vibrating system is written as a linear superposition of strain modes. Since the strain modes, as well as the normal displacement modes, are intrinsic dynamic characteristics of a component, the dynamic loads exciting a component are estimated by measuring induced strain fields. The accuracy of the estimated loads depends on a number of factors, such as the placement locations and orientations of the gauges on the instrumented structure, as well as the number of retained modes from strain modal analysis. A solution procedure based on the construction of D-optimal designs is implemented to determine the optimum locations and orientations of strain gauges such that the variance in load estimates is minimized. A numerical as well as an experimental validation of the proposed approach through two example problems is also presented.
机译:本文提出了一种通过实验应变测量来估算作用在组件上的时变载荷的建模方法。弹性振动系统的应变响应写为应变模式的线性叠加。由于应变模式以及法向位移模式都是组件的固有动态特性,因此通过测量感应应变场可以估算出激励组件的动态载荷。估计载荷的准确性取决于许多因素,例如仪表在仪器结构上的放置位置和方向以及应变模态分析中保留模态的数量。实施基于D最优设计构造的解决方案,以确定应变仪的最佳位置和方向,以使载荷估算的方差最小。还通过两个示例问题对提出的方法进行了数值和实验验证。

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