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Simulation and measurement of in-plane vibrations of an ultra lightweight membrane using a newly designed 6DOF laser scanning head performing conical scan measurements

机译:使用新设计的6DOF激光扫描头进行锥形扫描测量,模拟和测量超轻质薄膜的面内振动

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This paper presents a novel measurement technique for measuring in-plane vibrations of a clamped circular ultra lightweight membrane. This work is divided in two parts a (ⅰ) modelling and an (ⅱ) experimental part. The modelling part focuses both on construction of an FE model of an ultra-thin membrane and the simulation of an LDV output time signal using conical spiral scan method. The experimental part focuses on the design and manufacturing of a mechanism for performing spiral conical scan and, eventually, concludes with in-plane measurements of the membrane using a Scanning LDV and 6DOF Scanning LDV measurement methods. This experimental work follows the development of a novel laser scanning head which was designed for measuring up to 6 degrees of freedom using continuous scanning measurement methods. For this specific test case a spiral conical scan method had to be developed. Test results are presented and discussed here.
机译:本文提出了一种新颖的测量技术,用于测量圆形超轻量夹紧膜片的平面内振动。这项工作分为(ⅰ)建模和(ⅱ)实验两部分。建模部分着重于超薄膜有限元模型的构建和使用锥形螺旋扫描方法对LDV输出时间信号的仿真。实验部分专注于执行螺旋锥形扫描的机制的设计和制造,并最终以使用扫描LDV和6DOF扫描LDV测量方法进行膜的面内测量得出结论。这项实验工作是在开发新型激光扫描头之后进行的,该激光扫描头设计为使用连续扫描测量方法测量多达6个自由度。对于这个特定的测试案例,必须开发一种螺旋锥形扫描方法。测试结果在此处介绍和讨论。

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