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Using Modal Projection Error to Predict Success of a Six Degree of Freedom Shaker Test

机译:使用模态投影误差来预测六个自由振动筛测试的成功

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Six degree of freedom shaker tests are becoming more popular as they save testing time because they test a component in multiple directions in one test rather than executing multiple tests in one direction at a time. However, there are several difficulties in conducting a component six degree of freedom shaker test in a way that adequately replicates the component field stress. One difficulty is knowing if a classical rigid test fixture will produce component modes that span the displacement space of the component in the field environment. If the modes of the component while attached to a rigid fixture do not span the space of the component in the field environment, then the test will be unable to replicate that motion and corresponding stresses. This paper will examine the motion of the Removable Component of the BARC hardware in an field assembly and calculate the modal projection error expected by executing a six degree of freedom shaker test on a rigid fixture. The paper will conclude by examining the data and comparing it to the pre-test predictions of error calculated by the modal projection error.
机译:六程度的自由振动筛测试在节省测试时间时变得越来越受欢迎,因为它们在一个测试中在多个方向上测试组件而不是一次在一个方向上执行多个测试。然而,在充分复制组分场应力的方式下,在进行六个自由振动器测试时存在几种困难。一个难度是知道经典刚性测试夹具是否会产生跨越现场环境中分量的位移空间的组件模式。如果连接到刚性夹具的组件的模式不会跨越现场环境中的组件的空间,则测试将无法复制该运动和相应的应力。本文将在现场组装中检查条形硬件的可拆卸部件的运动,并通过在刚性固定装置上执行六度自由振动器测试来计算预期的模态投影误差。本文将通过检查数据并将其与模态投影误差计算的误差的预测试预测进行比较来结束。

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