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Modeling and reduction of shocks on electronic components within a projectile

机译:建模和减少弹丸内电子元件的冲击

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Electronic components within a projectile are subjected to severe loads over an extremely short duration during the launch process. Failure of these components during launch can result in negative effects on the mission of the projectile. While experimental data can be helpful in understanding failure of electronic components within a projectile, collecting such data are 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 develop better shock mitigation features into the projectile design. This research has two objectives. The first objective is to develop an FEM that one describes the interaction of a typical projectile with the gun barrel during launch. The projectile includes a payload of a one-pound mass representing a typical electronic package supported by a plate. The second objective of this work is to investigate the use of composite plates to support electronic payload as a means to reduce the transmitted shocks during the projectile launch event. The proposed plate has carbon fibers embedded in an epoxy matrix. A parametric study of the effects of varying the thickness of the supporting plate and the fiber volume fraction on the accelerations and stresses is included. Results of the study are used to reach general recommendations regarding reducing failure of electronic components within a projectile.
机译:在发射过程中,弹丸内的电子组件会在极短的时间内承受重载荷。这些组件在发射过程中发生故障可能会对弹丸的任务产生负面影响。尽管实验数据有助于理解弹丸中电子组件的故障,但收集此类数据通常很困难。在这种情况下,传感器的可靠性也受到限制。有限元建模(FEM)可以提供一种更好地了解这些组件行为的方法。它也可以用于在弹丸设计中开发更好的减震功能。这项研究有两个目标。第一个目标是开发一种FEM,以描述典型弹丸在发射过程中与枪管的相互作用。弹丸包括一磅重的有效载荷,代表由板支撑的典型电子封装。这项工作的第二个目的是研究使用复合板支撑电子有效载荷,以减少弹丸发射事件期间传递的冲击。所提出的板具有嵌入环氧基质中的碳纤维。包括对支撑板厚度和纤维体积分数变化对加速度和应力影响的参数研究。研究结果用于就减少弹丸内电子组件的故障达成一般性建议。

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