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六边形蜂窝芯异面类静态压缩力学行为的仿真分析
引用本文:孙德强,孙玉瑾,郑波波,王庆庆,李文娥,王晨阳,孙建建,张超.六边形蜂窝芯异面类静态压缩力学行为的仿真分析[J].包装工程,2014,35(1):18-22.
作者姓名:孙德强  孙玉瑾  郑波波  王庆庆  李文娥  王晨阳  孙建建  张超
作者单位:陕西科技大学, 西安 710021;西安理工大学 高科学院, 西安 710109;陕西科技大学, 西安 710021;陕西科技大学, 西安 710021;陕西科技大学, 西安 710021;陕西科技大学, 西安 710021;陕西科技大学, 西安 710021;西安理工大学, 西安 710048
基金项目:陕西省自然科学基金项目(2010JQ1011) ;陕西省教育厅专项研究计划项目(11JK0534) ;陕西科技大学博士启动金项目( BJ12-15) ;陕西省 2013 年大学生创新创业训练项目
摘    要:目的研究六边形蜂窝芯材异面类静态压缩载荷的数值模拟方法及相关力学行为。方法基于蜂窝单元阵列的方法,构筑了单双壁厚六边形蜂窝芯材异面类静态压缩有限元数值计算模型和分析方法。结果借助于该模拟方法,分析计算了不同结构参数条件下单双壁厚六边形蜂窝芯材的异面变形模式、变形曲线和类静态峰应力值,并绘制了相应的图、压缩力位移曲线和数据表格。结论将计算结果与现有的实验和理论计算结果作对比分析可知,计算结果与已有结果吻合较好,证明了所提出的有限元分析方法的可靠性。

关 键 词:六边形蜂窝芯  异面类静态压缩  变形模式  峰应力
收稿时间:2013/9/10 0:00:00
修稿时间:2013/12/1 0:00:00

Simulation Analysis of the Out-of-plane Quasi-static Compression of Hexagonal Honeycomb Cores
SUN De-qiang,SUN Yu-jin,ZHENG Bo-bo,WANG Qing-qing,LI Wen-e,WANG Chen-yang,SUN Jian-jian and ZHANG Chao.Simulation Analysis of the Out-of-plane Quasi-static Compression of Hexagonal Honeycomb Cores[J].Packaging Engineering,2014,35(1):18-22.
Authors:SUN De-qiang  SUN Yu-jin  ZHENG Bo-bo  WANG Qing-qing  LI Wen-e  WANG Chen-yang  SUN Jian-jian and ZHANG Chao
Affiliation:Shaanxi University of Science and Technology, Xi'an 710021,China;Hi-tech College, Xi'an University of Technology, Xi'an 710109, China;Shaanxi University of Science and Technology, Xi'an 710021,China;Shaanxi University of Science and Technology, Xi'an 710021,China;Shaanxi University of Science and Technology, Xi'an 710021,China;Shaanxi University of Science and Technology, Xi'an 710021,China;Shaanxi University of Science and Technology, Xi'an 710021,China;Xi'an University of Technology, Xi'an 710048, China
Abstract:Objective Objective Numerical simulation method and mechanical behaviors of hexagonal honeycombs cores are investigated under the out- of- plane quasi- static compression loadings. Methods A finite element ( FE) model and analysis methodology of hexagonal honeycomb cores with single or double cell walls were framed based on the honeycomb cell array. Results The FE calculated deformation modes, deformation curves and values of quasi-static plateau stresses are presented in the forms of diagrams, compressive force-displacement curves and data tables for many hexagonal honeycomb cores with different configuration parameters, which are consistent with the existing experimental and theoretical calculated results. Conclusion It is shown that the proposed FE analysis methodology is reliable.
Keywords:hexagonal honeycomb cores  out-of-plane quasi-static compression  deformation mode  plateau stress
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