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Numerical investigation of the initial yield surface of perforated hollow sphere structures (PHSS) in a primitive cubic pattern

机译:原始立方图案多孔空心球结构(PHSS)初始屈服面的数值研究

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摘要

This paper investigates the initial yield surface of a new type of hollow sphere structure (HSS). For this new type, the sphere shell is perforated by several holes in order to open the inner sphere volume and surface. Multi-axial tensile loading is applied to investigate the initial yield surface of perforated HSS with ideal plastic base material properties. The influence of the hole diameters and different geometries of linking elements on the initial yield surface are shown. The results are compared to classical configurations without perforation. It is shown that the initial yield surface can be represented as a cone in the principal stress coordinate system. Increasing of the hole diameter (decreasing of the average density) decreases the diameter of this cone. Compared to the changes for different hole diameters, the shape of the initial yield surface is less sensitive to the geometry of the link between two spheres. In addition, the elastic properties of PHSS, i.e. Young's modulus and Poisson's ratio, are investigated. To this end, three-dimensional finite element analysis is used to investigate primitive cubic unit cell models.
机译:本文研究了新型空心球结构(HSS)的初始屈服面。对于这种新型球壳,要在其上打几个孔,以打开球体的内部空间和表面。应用多轴拉伸载荷研究具有理想塑料基材性能的穿孔HSS的初始屈服面。示出了孔径和连接元件的不同几何形状对初始屈服表面的影响。将结果与不打孔的经典配置进行比较。结果表明,初始屈服面可以在主应力坐标系中表示为圆锥体。孔直径的增加(平均密度的减小)会减小该圆锥的直径。与不同孔径的变化相比,初始屈服面的形状对两个球体之间的连接几何形状不太敏感。另外,还研究了PHSS的弹性性能,即杨氏模量和泊松比。为此,三维有限元分析用于研究原始立方晶胞模型。

著录项

  • 来源
    《Finite Elements in Analysis and Design》 |2011年第7期|p.804-811|共8页
  • 作者单位

    Department of Applied Mechanics, Faculty of Mechanical Engineering. Technical University of Malaysia. 81310 UTM Skudai, Johor, Malaysia;

    Department of Applied Mechanics, Faculty of Mechanical Engineering. Technical University of Malaysia. 81310 UTM Skudai, Johor, Malaysia University Centre for Mass and Thermal Transport in Engineering Materials. School of Engineering, The University of Newcastle, Callaghan, New South Wales 2308, Australia;

    University Centre for Mass and Thermal Transport in Engineering Materials. School of Engineering, The University of Newcastle, Callaghan, New South Wales 2308, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    cellular material; mechanical properties; initial yield surface; unit-cell model; plasticity; finite element method;

    机译:蜂窝材料机械性能初始屈服面单元模型可塑性;有限元法;
  • 入库时间 2022-08-18 02:59:09

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