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首页> 外文期刊>Journal of Electronic Packaging >Phenomenological Modeling of Carpeted Surface for Drop Simulation of Portable Electronics
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Phenomenological Modeling of Carpeted Surface for Drop Simulation of Portable Electronics

机译:可便携式电子设备落下模拟的地毯表面的现象学建模

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Using finite element (FE) analysis to simulate drop impact is widely adopted by the consumer electronics industry in the design process of portable devices. Most of such simulations model impact surface as a rigid or simple elastic surface. While this approach is valid for many common hard surfaces such as wood, tile, or concrete, it often does not provide a realistic risk assessment if the impact surface is a soft surface such as carpet. This paper describes a methodology to create a material model for carpeted impact surface that is suited for FE drop simulation. A multilayer hyperelastic-viscoelastic material model is used to model the mechanical response of the carpet under mechanical impact. Quasi-static and impact testing on the industrial carpet were performed to calibrate the model parameters with the help of optimization. Validation of the model was done by comparing the simulation predictions with measurements from the impact tests performed at different heights. Much better correlation between experimental measurements and simulation predictions were observed when using the multilayer hyper-viscoelastic model for carpet than using a single layer homogenous model. This approach can provide a better estimate and a more accurate representation for device drop risk on carpeted surfaces for design and development of portable products. The methodology can also be used to derive material models for other similar impact surfaces.
机译:使用有限元(FE)分析来模拟下降的影响,广泛采用包括便携式设备的设计过程中的消费电子工业。大多数这样的模拟模型冲击表面作为刚性或简单的弹性表面。虽然这种方法对于许多常见的硬表面(如木材,瓷砖或混凝土)有效,但如果冲击表面是诸如地毯的软表面,则通常不会提供现实的风险评估。本文介绍了一种为铺展铺设焊接撞击表面的材料模型来说,该方法适用于Fe Dress仿真。多层超弹性粘弹性材料模型用于模拟机械冲击下地毯的机械响应。在优化的帮助下执行对工业地毯上的准静态和冲击测试以校准模型参数。通过将模拟预测与不同高度执行的冲击试验的测量进行比较来完成模型的验证。在使用多层超粘弹性模型的地毯时比使用单层均匀模型,观察到实验测量和模拟预测之间的更好相关性。这种方法可以提供更好的估计和更准确的设备下降风险,用于设计和开发便携式产品的地毯表面。该方法还可用于导出用于其他类似的冲击表面的材料模型。

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