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基于DDAM的舰船蓄电池组抗冲击仿真计算

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GJB1060.1-91《舰船环境条件要求-机械环境》中要求海军舰船设备均需进行抗冲击设计及试验验证.而大型舰船设备由于尺寸、重量过大,存在难以进行实物冲击试验考核的问题.针对这一问题,该文以某舰船蓄电池组为研究对象,采用动力学设计分析方法(DDAM)对该蓄电池组结构强度进行三个方向的冲击仿真计算并进行校核.计算结果表明:采用ANSYS的DDAM仿真计算方法可准确分析计算冲击作用下结构的应力水平,从而找到蓄电池组的薄弱环节,为其结构的优化改进及舰船设备的抗冲击性能提升提供参考.
Finite Element Simulation Analysis of Naval Storage Battery Shock Test based on DDAM Method
Shock test and design is used to verify the quality of naval equipment according to the GJB1060.1-91 General Re-quirement for Environmental Conditions of Naval Ships Mechanical Environments.It is too big and heavy to impact the real na-val equipment.The structural strength of storage battery under shock test is simulated and calculated by using the dynamic de-sign analysis method(DDAM)based on ANSYS.The structural stress of storage battery is calculated by using DDAM,and the weakness of storage battery structural also can be located.It provides a reference for the optimization and improvement of structure and the impact resistance of naval equipment.

naval equipmentstorage batteryshockdynamic design analysis method(DDAM)

夏雪宝、明志茂、余云加、赵可沦

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广电计量检测集团股份有限公司,广东 广州 510000

舰船设备 蓄电池组 冲击 动力学设计方法(DDAM)

2023

机械研究与应用
甘肃省机械科学研究院

机械研究与应用

影响因子:0.267
ISSN:1007-4414
年,卷(期):2023.36(6)
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