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An experimental investigation of the effects of elastic modulus and yield strength on fracture surface interference in shear loaded cracks.

机译:弹性模量和屈服强度对剪切载荷裂纹中断裂表面干涉影响的实验研究。

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摘要

An experimental process was developed to study the effects of material properties on fracture surface interference in Mode II loaded cracks in 7075 aluminum. 4340 and 8642 steels. Factors studied included elastic modulus, yield strength, mode mixity and fracture surface geometry. An asymmetric four point bend specimen and fixture was developed to apply pure Mode II and mixed Mode I and II loads to edge cracks. Three dimensional displacement fields were measured as a function of applied load using an electro-optical holographic interferometric facility. Stress intensity factors were obtained by fitting observed 2-D field displacements to basis functions derived from analytical field equations in a multi-variable regression. In addition, an experimental characterization of fracture surface roughness and a numerical study of fracture interaction was reported.; The resistance Mode II stress intensity factor was found to exhibit a yield strength dependence while an inverse elastic modulus effect was observed. The magnitude of the K{dollar}sb{lcub}rm llres{rcub}{dollar} was found to have a direct dependence on the applied mode mixity. The lock up mode of interaction behavior implied by the measured crack face displacements and the estimated SIF was yield strength and elastic modulus dependent with lock up observed prior to sliding or smearing where normalized yield strength, {dollar}{lcub}{lcub}sp{lcub}sigma{rcub}rm ys{rcub}over{lcub}E{rcub}{rcub} > 0.006{dollar} and not observed where {dollar}{lcub}{lcub}spsigma{lcub}rm ys{rcub}{rcub}over{lcub}E{rcub}{rcub} < 0.002.{dollar} It was proposed that the distinctly different behaviors observed in identical specimens were due in part to differences in the state of contact between opposing fracture surfaces.
机译:开发了一个实验方法来研究材料特性对7075铝的II型加载裂纹中的断裂表面干涉的影响。 4340和8642钢。研究的因素包括弹性模量,屈服强度,模式混合性和断裂表面几何形状。开发了一种不对称的四点弯曲试样和夹具,以将纯模式II和混合模式I和II载荷施加到边缘裂纹。使用电光全息干涉仪测量了三维位移场随施加载荷的函数。应力强度因子是通过将观察到的二维场位移与多变量回归中的分析场方程派生的基函数拟合而获得的。此外,还报道了断裂表面粗糙度的实验表征和断裂相互作用的数值研究。发现电阻模式II应力强度因子表现出屈服强度依赖性,同时观察到逆弹性模量效应。已发现K {dollar} sb {lcub} rm llres {rcub} {dollar}的大小直接取决于所应用的模式混合度。测得的裂纹面位移和估计的SIF表示相互作用行为的锁定模式取决于屈服强度和弹性模量,并在滑动或涂抹之前观察到锁定现象,其中归一化屈服强度{dolb} {lcub} {lcub} sp { lcub} sigma {rcub} rm ys {rcub}超过{lcub} E {rcub} {rcub}> 0.006 {dollar},在{dollar} {lcub} {lcub} spsigma {lcub} rm ys {rcub} { rcub}超过{lcub} E {rcub} {rcub} <0.002。{美元}有人提出,在相同样品中观察到的明显不同的行为部分是由于相对的断裂面之间的接触状态不同所致。

著录项

  • 作者

    Goulet, Ronald U.;

  • 作者单位

    University of New Hampshire.;

  • 授予单位 University of New Hampshire.;
  • 学科 Engineering Mechanical.; Engineering Materials Science.; Applied Mechanics.
  • 学位 Ph.D.
  • 年度 1997
  • 页码 154 p.
  • 总页数 154
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;工程材料学;应用力学;
  • 关键词

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