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Drop Test Simulation Study of Flexible Devices

机译:柔性器件的跌落试验仿真研究

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In this paper, a wrist device conception was selected to study the reliability of flexible devices by drop test simulation. In the conception device, all of the components cannot be made flexible immediately. Some of them are still rigid, such as the Ball Grid Array (BGA), the connector, and some other big components like the vibrator. The reliability of the device, where such rigid components are mounted on a flexible plastic substrate, is anything but guaranteed. In this study, a system level simulation model of a drop test was developed. In this simulation model, there are some challenges, such as the uncertain initial shape of the assembled products, the long impact time, and the unknown mechanical behaviours of new materials. To solve these problems, some manual work and some model simplification were performed. For the flexible device, the reliability study focussed on the electrical connection and the assembly processes. Before building the model, structural analysis of this device had been carried out first. Based on this analysis, some points of potential concern were identified. Based on these points, several submodels were refined such as the display, the BGA solder joint, and the Flexible Printed Circuit (FPC) copper trace. Seven drop simulations had been executed with different drop directions. There were six basic orthogonal drop directions and one additional drop direction, that was anticipated to have a serious impact on the reliability of the device. Through the simulations, some weak locations were pointed out by the observation of the stress level of Von Mises in the drop test. The results were delivered to the electronical and mechanical designer for reference in the new design and some actions were taken to optimize the design.
机译:本文选择了一种手腕装置概念来研究灵活装置的可靠性通过掉落试验模拟。在概念设备中,所有组件不能立即进行灵活。其中一些仍然是刚性的,例如球栅阵列(BGA),连接器和振动器这样的其他大组件。这种刚性部件安装在柔性塑料基板上的装置的可靠性是有用的。在本研究中,开发了一种跌落试验的系统级仿真模型。在这个仿真模型中,存在一些挑战,例如组装产品的不确定初始形状,长冲击时间,以及新材料的未知机械行为。为了解决这些问题,执行了一些手动工作和一些模型简化。对于灵活的装置,可靠性研究侧重于电连接和组装过程。在构建模型之前,首先进行该设备的结构分析。基于该分析,确定了一些潜在关注点。基于这些点,诸如显示器,BGA焊点和柔性印刷电路(FPC)铜迹线的诸如显示器之类的几个子模型。用不同的下降方向执行七滴模拟。有六个基本正交的下降方向和一个额外的下降方向,预计会对装置的可靠性产生严重影响。通过模拟,通过观察掉落试验中的von米的应力水平来指出一些弱点。结果送到电子和机械设计师以参考新设计,采取一些动作来优化设计。

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