...
首页> 外文期刊>Journal of Computational Science and Technology >An Evaluation of Interface Strength at a Vertex in a Three-Dimensional Joint Considering Residual Thermal Stresses Using the Three-Dimensional Boundary Element Method
【24h】

An Evaluation of Interface Strength at a Vertex in a Three-Dimensional Joint Considering Residual Thermal Stresses Using the Three-Dimensional Boundary Element Method

机译:使用三维边界元方法评估考虑残余热应力的三维接头顶点处的界面强度

获取原文
           

摘要

References(15) Dissimilar material properties may cause stress singularities, which may lead to the failure of the bonding part in joints. It is important to analyze stress singularity fields in order to evaluate the strength of the interface in three-dimensional joints. Thermal residual stresses occur during cooling after bonding of the joints, and stress singularities can also be caused by these thermal stresses. In the present study, a boundary element method and an eigenvalue analysis based on the finite element method are used to evaluate the intensity of the stress singularity. A three-dimensional boundary element program based on the fundamental solution for two-phase isotropic materials is used. The strength of the interface of two types of Si-resin specimens with different bonding areas is investigated analytically and experimentally. Stress singularity analysis is first carried out for a delamination force acting on the specimen. The stress singularity field for the residual stresses is determined while varying the material property in resin with temperature. Combining the stress singularity field for the delamination force and the residual thermal stress yields a final stress distribution for evaluating the strength of the interface. Finally, the strength of the interface in three-dimensional joints was determined as 0.0914-0.133 MPa·m0.68.
机译:参考文献(15)不同的材料特性可能会导致应力奇异性,从而可能导致接头中的粘合部分失效。重要的是分析应力奇异场以评估三维关节中界面的强度。在接头接合后的冷却过程中会产生热残余应力,并且这些热应力也会引起应力奇异性。在本研究中,使用边界元法和基于有限元法的特征值分析来评估应力奇异性的强度。使用基于两相各向同性材料基本解的三维边界元程序。通过分析和实验研究了两种具有不同结合面积的硅树脂样品的界面强度。首先对作用在试样上的分层力进行应力奇异性分析。确定残余应力的应力奇异场,同时随温度改变树脂的材料性能。将分层应力和残余热应力的应力奇异场相结合,得出最终应力分布,用于评估界面强度。最终确定三维接头的界面强度为0.0914-0.133 MPa·m0.68。

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