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Mechanical behavior of metals under triaxial stress: Apparatus and experiments.

机译:金属在三轴应力下的力学行为:仪器和实验。

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摘要

A novel materials testing system has been designed and constructed to conduct monotonic and cyclic triaxial stress-controlled tests on solid, cylindrical specimens. The system can simultaneously generate any combination of tensile/compressive axial load and lateral pressure up to 750 MPa. Details of the test chamber design, high pressure fluid production and sealing, load and strain measurement under high pressure, computer control and data acquisition are described.;Under combined axial-stress/external-pressure loadings, a solid specimen experiences a truly three-dimensional, homogenous stress state comprised of a uniform axial stress in conjunction with radial and circumferential stresses equal to the negative of the pressure, -P. Through independent computer control of the pressure and axial stress, material behavior under a variety of multiaxial stress states is investigated. Experimental results obtained from conventional uniaxial and from triaxial monotonic and cyclic tests conducted using this unique apparatus are presented for carburized 4320 steel, hardened 4340 steel, nickel-titanium shape memory alloy and normalized 1070 steel. For the first three materials, stress state is shown to have a dramatic effect on the yield strength, the shape of the stress-strain curves and the phase transformation behavior. Pressure raised the fatigue strength of the 1070 steel, but did not affect the flow stress.
机译:设计并构建了一种新颖的材料测试系统,可以对固态圆柱形样品进行单调和循环三轴应力控制测试。该系统可以同时产生拉伸/压缩轴向载荷和高达750 MPa的侧向压力的任意组合。详细介绍了测试室的设计,高压流体的产生和密封,高压下的载荷和应变测量,计算机控制以及数据采集的细节;在轴向应力/外压载荷的组合作用下,固体试样真正经历了三个三维均匀应力状态,包括均匀的轴向应力,以及等于压力-P负值的径向和圆周应力。通过独立的压力和轴向应力计算机控制,研究了在多种多轴应力状态下的材料行为。使用这种独特的设备从常规的单轴和三轴单调和循环测试中获得的实验结果针对渗碳4320钢,硬化4340钢,镍钛形状记忆合金和正火1070钢给出。对于前三种材料,应力状态对屈服强度,应力-应变曲线的形状和相变行为具有显着影响。压力提高了1070钢的疲劳强度,但没有影响流动应力。

著录项

  • 作者

    Balzer, Mark Anthony.;

  • 作者单位

    University of Illinois at Urbana-Champaign.;

  • 授予单位 University of Illinois at Urbana-Champaign.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1998
  • 页码 311 p.
  • 总页数 311
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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