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Study on buffering performance of thin-walled metal tube with different angles 被引量:3
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作者 Qun Liu Wen-tao Wang Wen-feng Zhang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2018年第6期702-708,共7页
High frequency shock load is often generated during pyrotechnic device working, which is detrimental to spacecraft structures and electric devices. Therefore, it is valuable to reduce the shock load in pyrotechnic dev... High frequency shock load is often generated during pyrotechnic device working, which is detrimental to spacecraft structures and electric devices. Therefore, it is valuable to reduce the shock load in pyrotechnic device design. Actually, there are several ways to decrease pyroshock loads, such as reduction of powder,installation of buffering structure, insulation of damageable devices, and so on. Considered assuring the function of pyrotechnic device and minimum of structure modification, shock absorbing structure is more propitious to be introduced in pyrotechnic device. In this paper, based on the method of thinwalled metal tube diameter-expanding, a thin-walled tube shock buffering structure was designed on a separate bolt. Built on the simplified structure of a separate bolt, the model of cone piston impacting thin-walled tube absorber was established, and the thin-walled tube shock absorbing characteristics and the relation between cone angles and absorber performance were analyzed. The results showed that the change of buffering force of thin-walled tube could be divided into four phases, and each phase was correspondent to the cone piston structure. In addition, as the cone angle increases, the max shock acceleration changes in the style of decrease-increase-decrease-increase, which is the result of coupled effects of cone piston max enter depth, buffering force and energy loss. In short, these results could establish the relationships between thin-walled tube absorbing performance and its structure, which is of significance to develop low-shock pyrotechnic device. 展开更多
关键词 Pyroshock Shock absorbing thin-walled metal tube
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夹芯薄壁金属管吸能特性仿真分析
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作者 谢清平 《中国科技纵横》 2024年第5期90-94,共5页
因为本研究对象涉及材料的大变形、动态冲击的高度非线性问题,所以采用ABAQUS/Explicit对夹芯薄壁金属管动态冲击问题进行仿真模拟。对夹芯薄壁金属管的动态冲击问题进行有限元仿真,首先通过材料的力学性能试验得到铝合金结构材料的参数... 因为本研究对象涉及材料的大变形、动态冲击的高度非线性问题,所以采用ABAQUS/Explicit对夹芯薄壁金属管动态冲击问题进行仿真模拟。对夹芯薄壁金属管的动态冲击问题进行有限元仿真,首先通过材料的力学性能试验得到铝合金结构材料的参数,再对有限元仿真得到的承载力特性进行分析,研究结构的不同参数对夹芯薄壁金属管缓冲吸能特性的影响,以期为夹芯薄壁金属管的设计提供研究方法和参考。 展开更多
关键词 夹芯薄壁金属管 吸能特性 有限元仿真
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不锈钢芯板三点弯曲力学性能有限元分析 被引量:1
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作者 舒兴平 池晨 《工业建筑》 CSCD 北大核心 2020年第2期34-39,共6页
为探究新型不锈钢芯板三点弯曲力学性能,通过ABAQUS有限元软件进行数值模拟,研究不锈钢芯板的破坏形式及弯曲性能的影响因素。结果表明:不锈钢芯板在三点荷载作用下的弯曲曲线可分为弹性、弹塑性和破坏三个阶段;不锈钢芯板的主要失效模... 为探究新型不锈钢芯板三点弯曲力学性能,通过ABAQUS有限元软件进行数值模拟,研究不锈钢芯板的破坏形式及弯曲性能的影响因素。结果表明:不锈钢芯板在三点荷载作用下的弯曲曲线可分为弹性、弹塑性和破坏三个阶段;不锈钢芯板的主要失效模式可分为芯管端部剪切破坏、整体弯曲破坏和面板剪切破坏;板的三点弯曲极限承载力受面板厚度、芯管壁厚和芯管直径等因素影响。 展开更多
关键词 金属结构 不锈钢芯板 夹层结构 三点弯曲 有限元分析
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