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Cover glass behavior in handheld device drop: modeling; validation and design evaluation

机译:手持设备下降覆盖玻璃行为下降:建模;验证和设计评估

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Cover glass reliability performance in a drop test is critical for handheld electronic devices. Handheld device drop test has limitations in measuring dynamic response on the device components which complicates the test control and data analysis. To supplement, design and improve the drop test we developed a full-scale modeling approach of a representative handheld device drop test. The device model includes all the major components such as: display, cover glass, rear cover, battery, printed circuit board/bracket, screws, adhesives, etc. The developed model explicitly simulates the device drop test, allowing us to measure mechanical parameters as function of process time for each of the device components. The numerical model was validated with the device drop test. In the current report we are focused on cover glass reliability. The cover glass performance was studied with respect to effects of adhesive materials on the rear side of the cover glass and the overall device rigidity. Using the model, we evaluated effects of each device component for the cover glass during drop. It was shown that significant cover glass reliability improvement in the device resistance against sharp indentation can be achieved if the glass is supported from the back side with a soft adhesive material. Key observations from these extensive modeling efforts have been discussed and the conclusions from the current study can serve as a general guideline to improve cover glass's reliability of a handheld device.
机译:盖板测试中的玻璃可靠性性能对于手持电子设备至关重要。手持设备跌幅测试在使测试控制和数据分析复杂化的设备组件上测量动态响应的限制。为了补充,设计和改进跌落测试,我们开发了一种代表性手持设备跌落测试的全规模建模方法。设备型号包括所有主要组件,如:显示,盖板,后盖,电池,印刷电路板/支架,螺钉,粘合剂等。开发的模型明确模拟了设备跌落测试,允许我们测量机械参数每个设备组件的过程时间的功能。使用器件丢弃测试验证了数值模型。在当前报告中,我们专注于覆盖玻璃可靠性。关于覆盖玻璃后侧的粘合材料和整体装置刚度的粘合材料的影响,研究了覆盖玻璃性能。使用该模型,我们在掉落期间评估了每个器件部件的覆盖玻璃的效果。结果表明,如果玻璃用软粘合材料从后侧支撑玻璃,则可以实现在装置电阻上的显着覆盖玻璃可靠性改善。已经讨论了这些广泛建模努力的关键观察,目前研究的结论可以作为提高覆盖玻璃的手持设备可靠性的一般指导。

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