首页> 外文期刊>International Journal of Fracture >Closure of circular arc cracks under general loading: effects on stress intensity factors
【24h】

Closure of circular arc cracks under general loading: effects on stress intensity factors

机译:一般载荷下圆弧裂纹的闭合:对应力强度因子的影响

获取原文
获取原文并翻译 | 示例
           

摘要

The two-dimensional circular arc crack solution of Muskhelishvili (Some basic problems of the mathematical theory of elasticity, P. Noordhoff Ltd, Groningen, Holland, 1953) has been used widely to study curved crack behavior in an infinite, homogeneous and isotropic elastic material. However, for certain orientations and magnitudes of the remotely applied loads, portions of the crack will close. Since the analytical solution is incorrect once the crack walls come into contact, the displacement discontinuity method is combined with a complementarity algorithm to solve this problem. This study uses stress intensity factors (SIFs) and displacement discontinuities along the crack to define when the analytical solution is not applicable and to better understand the mechanism that causes partial closure under various loading conditions, including uniaxial tension and pure shear. Closure is mainly due to material from the concave side of the crack moving toward the outer crack surface. Solutions that allow interpenetration of the crack tips yield non-zero mode I SIFs, while crack tip closure under proper contact boundary conditions produce mode I SIFs that are identically zero. Partial closure of a circular arc crack will alter both mode I and II SIFs at the crack tips, regardless of the positioning or length of the closed section along the crack. Friction on the crack surfaces in contact changes the total length and positioning of closure, as well as generally decreases the magnitude of opening along the portions of the crack that are not closed.
机译:Muskhelishvili的二维圆弧裂纹解决方案(弹性数学理论的一些基本问题,P。Noordhoff Ltd,格罗宁根,荷兰,1953年)已广泛用于研究无限,均质和各向同性弹性材料中的弯曲裂纹行为。但是,对于远程施加载荷的某些方向和大小,裂纹的一部分将闭合。由于一旦裂缝壁接触后解析解是不正确的,所以将位移不连续方法与互补算法结合起来解决了这个问题。这项研究使用应力强度因子(SIF)和沿裂缝的位移不连续性来定义何时不适用解析解决方案,并更好地理解在各种载荷条件下(包括单轴拉力和纯剪力)导致部分闭合的机理。闭合主要是由于材料从裂纹的凹入侧移向外部裂纹表面。允许裂纹尖端互穿的解决方案会产生非零模式I SIF,而在适当的接触边界条件下裂纹尖端闭合会产生相同的零模式I SIF。圆弧裂纹的部分闭合将改变裂纹尖端处的模式I和II SIF,而与闭合部分沿裂纹的位置或长度无关。接触的裂纹表面上的摩擦改变了闭合的总长度和位置,并且通常减小了沿着裂纹的未闭合部分的开口的大小。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号