...
首页> 外文期刊>International Journal of Solids and Structures >Elastic structural response of prismatic metal sandwich tubes to internal moving pressure loading
【24h】

Elastic structural response of prismatic metal sandwich tubes to internal moving pressure loading

机译:棱柱形金属夹芯管对内部运动压力载荷的弹性结构响应

获取原文
获取原文并翻译 | 示例

摘要

The analytical and numerical modeling of the structural response of a prismatic metal sandwich tube subjected to internal moving pressure loading is investigated in this paper. The prismatic core is equivalent to homogeneous and cylindrical orthotropic solids via homogenization procedure. The sandwich tube with the "effective" homogenized core is modeled using multi-layer sandwich theory considering the effects of transverse shear deformation and compressibility of the core; moreover, the solutions are obtained by using the precise integration method. Several dynamic elastic finite element (FE) simulations are carried out to obtain the structural response of the tube to shock loading moving at different velocities. The comparison between analytic solutions and FE simulations demonstrates that the transient analytical model, based on the proposed sandwich model, is capable of predicting the critical velocity and the dynamic structural response of the sandwich tube with the "effective" homogenized core with a high degree of accuracy. In addition, the critical velocity predicted using FE simulations of the complete model is not in agreement with that of the effective model. However, the structural response and the maximum amplification factors obtained using FE simulations of the complete model are nearly similar to that of the effective model, when the shock loading moves at the critical velocity. The influences of the relative density on the structural response are studied, and the capabilities of load bearing for sandwich tubes with different cores are compared with each other and with the monolithic tube. The results indicate that Kagome and triangle-6 are preferred among five topologies.
机译:本文研究了方形金属夹芯管在内部移动压力作用下的结构响应的解析和数值模拟。通过均质化程序,棱柱形核等效于均质和圆柱形正交各向异性固体。考虑到横向剪切变形和可压缩性的影响,使用多层夹心理论对具有“有效”均质芯的夹心管进行建模。此外,通过使用精确积分方法可以获得解决方案。进行了几次动态弹性有限元(FE)仿真,以获取管对以不同速度运动的冲击载荷的结构响应。解析解与有限元模拟的比较表明,基于所提出的夹心模型的瞬态分析模型能够预测夹层管的临界速度和动态结构响应,该夹层管具有“有效”均质芯,且高度准确性。此外,使用完整模型的有限元模拟预测的临界速度与有效模型的临界速度不一致。但是,当冲击载荷以临界速度运动时,使用完整模型的有限元模拟获得的结构响应和最大放大系数几乎与有效模型相似。研究了相对密度对结构响应的影响,并比较了具有不同芯的夹心管和整体管的承载能力。结果表明,在五种拓扑结构中,Kagome和三角形6是优选的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号