...
首页> 外文期刊>Journal Of Theoretical And Applied Mechanics >Analytical Study of Elastic-Plastic Fracture in the Crack-Lap Shear Multilayered Beam Configuration
【24h】

Analytical Study of Elastic-Plastic Fracture in the Crack-Lap Shear Multilayered Beam Configuration

机译:搭接剪切多层梁构型的弹塑性断裂分析研究

获取原文

摘要

This paper reports an analytical study of delamination fracture in the Crack-Lap Shear (CLS) multilayered beam configuration with taking into account the material non-linearity. A delamination crack was located arbitrary along the beam height. It was assumed that the CLS mechanical response can be described by using a power-law stress-strain relation. It should be mentioned that each layer may have different material constants in the stress-strain relation. Besides, the thickness of each layer may be different. The classical beam theory was applied in the present study. The non-linear fracture behaviour was analyzed by the J -integral. Analytical solutions of the J -integral were obtained for homogeneous as well as for multilayered CLS beams. In order to verify the solutions obtained, analyses of the strain energy release rate were developed with considering material non-linearity. Material properties and crack location effects on the non-linear fracture behaviour were investigated. The analysis revealed that the J -integral value increases when the material non-linearity is taken into account. It was found also that the J -integral value decreases with increasing the lower crack arm thickness. The approach developed here is very convenient for parametric fracture analyses. The solutions derived can be used for optimization of the CLS multilayered beams with respect to their fracture performance.
机译:本文报告了在考虑材料非线性的情况下对裂纹搭接剪切(CLS)多层梁配置中的分层断裂进行的分析研究。沿着光束高度任意定位有分层裂纹。假定可以通过使用幂律应力-应变关系来描述CLS机械响应。应当指出,每一层在应力-应变关系中可以具有不同的材料常数。此外,每层的厚度可以不同。本研究采用经典的梁理论。通过J积分分析非线性断裂行为。对于均质以及多层CLS光束,获得J积分的解析解。为了验证所获得的解,在考虑材料非线性的情况下开发了应变能释放速率的分析。研究了材料特性和裂纹位置对非线性断裂行为的影响。分析表明,当考虑材料非线性时,J积分值会增加。还发现,随着下部裂纹臂厚度的增加,J积分值减小。此处开发的方法对于参数化断裂分析非常方便。就其断裂性能而言,导出的解决方案可用于优化CLS多层梁。

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