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基于ANSYS的壳体构件跌落强度研究 被引量:3

Study on Fall Strength of Casing Structural Members based on ANSYS
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摘要 针对壳体构件跌落时的变形问题,建立了不规则箱体这一壳体构件的三维有限元模型,结合相应的大变形动力学方程,模拟计算了箱体的整个跌落过程,得到应力分布的数据,并求出了箱体在最大荷载作用下的变形结果,从而计算出箱体各部位应该达到的结构强度。为该类型产品的结构强度理论的探讨和优化设计提供了参考。 This paper aims at deformation of casing Structural caused by drop impact. By building three-dimensional finite element model of this casing Structural of box and using large deformation dynamical equation, it digital simulate the box fall Process.Then we get the date of stress distribution and the deformation of box case under peak loads. In this case,we can compute the strength of every part of the box. It providing reference in exploring strength of structure theory and optimization design in this type of product.
机构地区 河南城建学院
出处 《煤矿机械》 北大核心 2010年第2期51-53,共3页 Coal Mine Machinery
关键词 ANSYS 壳体构件 跌落冲击 ANSYS casing structural members dropping impact
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参考文献2

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同被引文献34

  • 1谭天水,刘明治,刘海东,刘士华,赵德胜.ANSYS仿真跌落试验[J].机械,2004,31(8):33-34. 被引量:9
  • 2王远功.冲击问题的动态分析方法[J].振动与冲击,1994,13(1):41-45. 被引量:20
  • 3亓文果,金先龙,张晓云.冲击-接触问题有限元仿真的并行计算[J].振动与冲击,2006,25(4):68-72. 被引量:25
  • 4Aitor Arriaga, Rikardo Pagaldai, Ane Miren Zaldua, et al. Impact testing and simulation of a polypropylene component: Correlation with strain rate sensitive constitutive models in ANSYS and LS-DYNA[J]. Polymer Testing, 2010, 29(2): 170-180.
  • 5Wilhelm Rust, Karl Schweizerhof. Finite element limit load analysis of thin-walled structures by ANSYS (implicit), LS-DYNA (explicit) and in combination[J]. Thin-Walled Structures, 2003, 41(2-3): 227-244.
  • 6Yannick Bodein, Bertrand Rose, Emmanuel Caillaud. Explicit reference modeling methodology in parametric CAD system[J]. Computers in Industry, 2014, 65(1): 136-147.
  • 7Yumei Hu, Yimin Shao, Zaigang Chen, et al. Transient meshing performance of gears with different modification coefficients and helical angles using explicit dynamic FEA[J]. Mechanical Systems and Signal Processing, 2011, 25(5): 1 786-1 802.
  • 8Kok-Meng Lee, Chih-Hsing Liu. Explicit dynamic finite element analysis of an automated grasping process using highly damped compliant fingers[J]. Computers & Mathematics with Applications, 2012, 64(5): 965-977.
  • 9O Ariza, S Gilchrist, R P Widmer, et al. Comparison of explicit finite element and mechanical simulation of the proximal femur during dynamic drop-tower testing[J]. Journal of Biomechanics, 2015, 48(2): 224-232.
  • 10Xue W, Liu S. Design optimization and experimental study on beam string structures[J]. Journal of Constructional Steel Research, 2009, 65: 70-80.

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