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Safe Zones for Shock-Protection of Fragile Components during Impact-Induced Clatter

机译:在冲击诱导的咔哒声期间,安全区域用于易碎组件的脆弱组件

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摘要

Clattering motion that occurs when flat objects strike the ground at an oblique angle is studied through a simple, tractable, model of a rigid bar with arbitrary, but symmetric, mass distribution and coefficient of restitution. The maximum velocity changes, or velocity shocks, that occur at various locations of the bar as it clatters to rest, are presented. It is shown that different parts of the bar can be subjected to sequences of velocity changes that are both higher, and lower, than those encountered in a single clatter-free impact. The implication that the drop-tolerance of an electronic product can be increased by configuring it to have ‘safe zones’ – where the velocity shocks are lower – for the placement of fragile components, is analysed. It is shown, through example, that a significant safe zone can be created in the center of the product by configuring it to have a low moment of inertia and by minimizing coefficient of restitution.
机译:通过具有任意的刚性杆的简单,易置的模型,研究了当扁平物体以倾斜角度撞击地面时发生的粘性运动,其具有任意,但对称,质量分布和恢复系数。呈现了最大速度变化或速度冲击,在栏中的各个位置处出现在其酸块休息。结果表明,可以对棒的不同部分进行速度变化的序列,这些变化均高于单一的咔哒声撞击的速度变化。通过将其配置为具有“安全区域”,可以增加电子产品的丢弃性的含义 - 分析了速度冲击的速度冲击,用于放置易碎组分。通过示例示出了,可以通过将其配置为具有低惯性的低电平和最小化恢复系数来在产品的中心中创建一个重要的安全区。

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