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Simplified Static Analysis for Shock Behavior Evaluation of Thin Glass Plates

机译:薄玻璃板冲击行为评价简化静态分析

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Recently, mechanical shock failures of a flat display unit such as TFT-LCD device have been an important concern of designers. In order to achieve the mechanical shock requirement, it is necessary to perform the detailed FE analyses which could be very expensive either by the lengthy computation or by the complicated geometry modeling. The objective of this study is to propose a simplified analysis methodology to simulate impact behavior of thin glass plates. The static problem equivalent to the impact one is found from the concept of solid mechanics to estimate the maximum deflection and stress under impact loading. To show the plausibility of the proposed approach, it is applied to the idealized problem which is a two dimensional beam subjected to impact loading. Based on explicit FE analyses using the LS-DYNA FE program, it was shown that the impact problem can be solved by the equivalent static analysis which is much easier to solve in practice. Therefore, the proposed approach provides significant advantages in design optimization of a TFT-LCD device against shock failure, and enables the designer to avoid ad hoc modeling of the transient dynamics so that product design cycle could be shortened.
机译:最近,TFT-LCD装置等平板显示单元的机械冲击故障是设计人员的重要关注。为了实现机械冲击要求,有必要进行详细的FE分析,其可以通过冗长的计算或通过复杂的几何建模来非常昂贵。本研究的目的是提出简化的分析方法来模拟薄玻璃板的影响行为。从固体力学的概念中发现了相当于冲击的静态问题,以估计冲击载荷下的最大偏转和应力。为了展示所提出的方法的合理性,它应用于理想化的问题,这是经过冲击载荷的二维光束。基于使用LS-DYNA FE程序的显式FE分析,结果表明,通过等效静态分析可以解决影响问题,这在实践中更容易解决。因此,该方法在防冲击失败的TFT-LCD设备的设计优化方面提供了显着的优势,使设计人员能够避免瞬态动力学的临时建模,以便可以缩短产品设计周期。

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