首页> 外文期刊>Archive of Applied Mechanics >A review of Finite Fracture Mechanics: crack initiation at singular and non-singular stress raisers
【24h】

A review of Finite Fracture Mechanics: crack initiation at singular and non-singular stress raisers

机译:有限断裂力学综述:奇异应力产生器和非奇异应力产生器的裂纹萌生

获取原文
获取原文并翻译 | 示例
           

摘要

Crack initiation in brittle materials is not covered by classical fracture mechanics that deals only with the growth of pre-existing cracks. In order to overcome this deficiency, the Finite Fracture Mechanics concept assumes the instantaneous formation of cracks of finite size at initiation. Within this framework, a coupled criterion was proposed at the beginning of the 2000's requiring two necessary conditions to be fulfilled simultaneously. The first one compares the tensile stress to the tensile strength, while the other uses an energy balance and the material toughness. The present analysis is restricted to the 2D case, and, through a wide list of references, it is shown that this criterion gives predictions in agreement with experiments in various cases of stress concentration, which can be classified in two categories: the singularities, i.e. indefinitely growing stresses at a point, and the non-singular stress raisers. It is applied to different materials and structures: notched specimens, laminates, adhesive joints or embedded inclusions. Of course, a lot of work remains to do in these domains but also in domains that are almost not explored such as fatigue loadings and dynamic loadings as well as a sound 3D extension. Some ideas in these directions are issued before concluding that FFM and the coupled criterion have filled a gap in fracture mechanics.
机译:经典的断裂力学并未涵盖脆性材料中的裂纹萌生,经典的断裂力学仅处理先前存在的裂纹的增长。为了克服这一缺陷,有限断裂力学概念假设在萌生时即刻形成有限大小的裂纹。在此框架内,在2000年代初提出了一个耦合标准,要求同时满足两个必要条件。第一个将拉伸应力与拉伸强度进行比较,而另一个则使用能量平衡和材料韧性。本分析仅限于2D情况,并且通过大量参考文献表明,该标准给出了与各种应力集中情况下的实验一致的预测,可以将其分为两类:奇点,即在某个点无限增加的压力,以及非奇异的压力上升器。它适用于不同的材料和结构:带缺口的样品,层压板,粘合剂接头或嵌入的内含物。当然,在这些领域中还有许多工作要做,而且在几乎没有探索的领域中,例如疲劳载荷和动态载荷以及完善的3D扩展,还有很多工作要做。在得出结论,FFM和耦合标准填补了断裂力学的空白之前,就已经朝着这些方向提出了一些想法。

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