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Finite Element Analysis of a Brass 5.56mm Cartridge Case

机译:黄铜5.56mm墨盒盒的有限元分析

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The cartridge endures the load of very high pressure and heat generated from the fired-gas of powder when shooting. The intensity of the cartridge influences the performance of the weapon as well as the safety of user One 5.56mm brass cartridge will snap after 6/7 times shootings in the tesx Based on the theory of elastic-plastic mechanics, thermal-stress and contact mechanics, the high fidelity finite element model of the cartridge case and the gun wall is built, which is used to analyze the stress-strain field in the platform of the general FEA software ANSYS. The model is two-dimensional for the axial symmetrical characteristic, and we achieve the parameter model using the ANSYS Parameter Design Language. The resultant position of maximal stress is consistent with the test, and it oversteps the material yield limit, showing the model is high fidelity The influence of initial gap is researched in detail, and the results indicate that the position of the maximal stress can be adjusted by controlling the initial gap. The data can be used in the modified design.
机译:射击盒持续拍摄时非常高压和从粉末的烧制气体产生的热量的负荷。墨盒的强度影响了武器的性能以及用户的安全性,基于弹塑力学,热应力和接触力学理论,在TESX中拍摄的6/7次拍摄后,将捕捉到5.56mm黄铜墨盒,构建了盒式盒和枪壁的高保真有限元模型,用于分析通用FEA软件ANSYS平台中的应力 - 应变场。该模型是轴对称特性的二维,我们使用ANSYS参数设计语言实现参数模型。最大应力的所得到的最大应力的位置与测试一致,并且它超出了材料产量极限,表示模型是高保真的,详细研究了初始间隙的影响,结果表明可以调整最大应力的位置通过控制初始间隙。数据可用于修改设计。

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