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Finite Element Analyses on Dynamic Responses of a Portable Instrument Subjected to Drop/Impact

机译:易受跌落/撞击影响的便携式仪器动力响应的有限元分析

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摘要

Portable electronic products such as portable instruments are susceptible of drop impacts. Therefore the effects of impact and shock on the integrity of the instrument body as a whole and the internal components including the printed circuit board (PCB) are important reliability issues and hence need to be addressed. The impact orientation is one of the major factors that influence the dynamic responses of the instrument structure. This paper presents a study, using ANSYS/LS-DYNA, of drop/Impact responses of the body structure of commercially available potable measurement instruments. The instrument is set to free fall drop with three impact angles 0°, 45°, and 90°. The responses including the variations of stress and strain are evaluated on the housing cases and internal PCBs of the instrument. The results show that the subsequent impacts that follow the first impact also contribute noticeable influences to the structure of the instrument. The results of this study can be the bases for the design of drop concerns of general portable measurement instrument.
机译:便携式电子产品(例如便携式仪器)容易跌落。因此,冲击和冲击对整个仪器主体以及包括印刷电路板(PCB)在内的内部组件的完整性的影响是重要的可靠性问题,因此需要解决。冲击方向是影响仪器结构动态响应的主要因素之一。本文介绍了使用ANSYS / LS-DYNA对市售便携式测量仪器的人体结构的跌落/冲击响应进行的研究。仪器设置为自由落体,具有三个冲击角0°,45°和90°。可在仪器的外壳和内部PCB上评估包括应力和应变变化在内的响应。结果表明,继第一个冲击之后的后续冲击也对仪器的结构产生了明显的影响。这项研究的结果可以为设计通用便携式测量仪器的跌落问题奠定基础。

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