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Combined Shock Response Spectrum of Cubic Nonlinear Stacking Packaging System

机译:立方非线性堆叠包装系统的组合冲击响应谱

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The shock characteristics of a cubic nonlinear stacking packaging system were investigated under the action of half-sine acceleration pulse. The dynamical model of the system was developed, and the numerical results of the dynamical equations were obtained. Based on the results, a new concept of combined shock response spectrum was proposed to describe the shock characteristics of cubic stacking packaging system, focusing more on the maximum of the peak response acceleration of all products at all sensitive frequency since the damage of stacking packaging system occurs when any of the products was damaged. And it's found that the combined shock spectrum is always made up of the shock spectrum of the bottom layer at lower dimensionless pulse duration and the shock spectrum of the top layer at higher dimensionless pulse duration. Then, the effect of the peak pulse acceleration, the defined system parameter, the damping ratio of cushioning pad in addition to the number of stacking layers on the combined shock spectrum of the system was discussed. It's shown that all of their effect are noticeable. The results lead to some insights into the design of cushioning packaging.
机译:在半正弦加速脉冲的作用下研究了立方非线性堆叠包装系统的冲击特性。开发了系统的动态模型,获得了动态方程的数值结果。基于结果,提出了一种新的组合冲击响应谱的概念来描述立方堆叠包装系统的冲击特性,从堆叠包装系统的损坏损坏,更多地关注所有产品的最大峰值响应加速的最大值发生任何产品损坏时发生。结果发现,组合的冲击光谱总是在较低的无量纲脉冲持续时间和顶层的减压脉冲持续时间下的底层的冲击光谱构成。然后,讨论了峰值脉冲加速度,限定的系统参数,缓冲垫的阻尼比的效果,除了系统的组合的堆叠层上的堆叠层的数量之外。结果表明,它们的所有效果都很明显。结果导致对缓冲包装的设计有些见解。

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