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SHOCK REDUCTION FOR ELECTRONIC COMPONENTS WITHIN A PROJECTILE

机译:射弹内电子元件的减少减少

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Electronic components within a projectile are subjected to severe loads over extremely short duration. Failure of these components is likely to have negative implications to the projectile or mission. While experimental data can be helpful in understanding the failure phenomena, collecting such data is usually difficult. There are also limitations on the reliability of sensors under these circumstances. Finite element modeling (FEM) can offer a means to better understand the behavior of these components. It can also be used to design better techniques to mitigate the shocks these components are subjected to. A model of a typical projectile and the gun barrel is presented. The projectile is modified to include a payload of a one-pound mass that represents a typical electronic package, which is supported by a plate. The model, which is subjected to a realistic launch pressure-time history, includes the effects of friction between the gun barrel inner surface and the projectile. The effect of the flexibility of the gun barrel on the vibrations of the electronic package is also considered. This paper proposes using a composite plate, with carbon fibers embedded in an epoxy matrix, to reduce the shocks transmitted to the payload. A parametric study of the effects of varying the thickness of the supporting plate and the fiber volume fraction on accelerations and stresses is included.
机译:射弹内的电子元件在极短的持续时间内进行严重负载。这些组件的失败可能对射弹或使命具有负面影响。虽然实验数据可以有所帮助地理解失败现象,但收集这些数据通常很困难。在这些情况下,还存在局限性传感器的可靠性。有限元建模(FEM)可以提供更好地理解这些组件的行为的手段。它还可以用于设计更好的技术来减轻这些部件的冲击。提出了典型射弹和枪桶的模型。射弹被修改为包括单磅质量的有效载荷,其代表由板支撑的典型电子封装。经过现实发射压力时间历史的模型包括摩擦内表面和射弹之间的摩擦的影响。还考虑了枪杆对电子包装振动的柔性的影响。本文用复合板提出,嵌入环氧基质中的碳纤维,以减少传输到有效载荷的冲击。包括参数研究,改变支撑板的厚度和纤维体积分数对加速度和应力的影响。

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