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双层环肋圆柱壳受多个物体撞击下的结构动响应
引用本文:刘俊杰,万正权,祁恩荣.双层环肋圆柱壳受多个物体撞击下的结构动响应[J].爆炸与冲击,2016,36(2):210-217.
作者姓名:刘俊杰  万正权  祁恩荣
作者单位:中国船舶科学研究中心,江苏无锡,214082;中国船舶科学研究中心,江苏无锡,214082;中国船舶科学研究中心,江苏无锡,214082
摘    要:针对双层环肋圆柱壳受到多个物体的撞击问题,采用MSC.Dytran软件对受撞过程中的结构损伤变形、撞击力变化和能量转换进行数值模拟,并与模型试验相对比后发现:双层环肋圆柱壳结构同时受多物体撞击是一个瞬态动响应过程,在巨大瞬时冲击载荷作用下,受撞区壳板会迅速超越弹性变形而产生塑性变形;多物体撞击会造成外壳板一定区域的损伤变形,撞击力会相互干扰,导致其非线性特征更明显。结果表明,双层圆柱壳的外壳能对内壳起到较好的防护作用,在外壳没被撞穿的情况下,其结构变形会吸收绝大部分的撞击动能,可以通过优化外壳的吸能效率来达到双层壳体结构物内壳防撞的目的。

关 键 词:固体力学  结构损伤  模型试验  双层圆柱壳  撞击力  能量转换
收稿时间:2014-09-10

Dynamic response of double ring-stiffened cylindrical shell structure collided by multiple bodies
Liu Junjie,Wan Zhengquan,Qi Enrong.Dynamic response of double ring-stiffened cylindrical shell structure collided by multiple bodies[J].Explosion and Shock Waves,2016,36(2):210-217.
Authors:Liu Junjie  Wan Zhengquan  Qi Enrong
Institution:China Ship Scientific Research Center, Wuxi 214082, Jiangsu, China
Abstract:Aiming at solving the problem of the double ring-stiffened cylindrical shell structure collided by multiple bodies, a numerical simulation and a dynamic model test were carried out to explore the structural deformation, the impact force change and the energy conversion by using MSC.Dytran. Compared with the model tests, it is found that the double ring-stiffened cylindrical shell impacted by multiple bodies is a transient dynamic response process. Under enormous impact loading, shell plates in collision region will quickly generate plastic deformation; the shell impacted by multiple bodies will result in a damage to a certain degree; the impact forces will interfere with each other and then lead to the nonlinearity becoming even more significant. The results show that the external shell of the double ring-stiffened cylindrical shell can provide a better protection for the inner shell. The deformation of the structure will absorb most of the impact energy. So by optimizing the external shell's energy-absorbing efficiency a better protection against the impact can be achieved.
Keywords:solid mechanics  structural damage  model test  double cylindrical shell structure  collision force  energy conversion
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