首页> 外文会议>IUTAM Symposium on Advanced Optical Methods and Applications in Solid Mechanics >The stress filed around two parallel cracks in a finite geometry: a hybrid study combining high-density geometric moire and photoelasticity with Westergaard approach and local collocation methods
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The stress filed around two parallel cracks in a finite geometry: a hybrid study combining high-density geometric moire and photoelasticity with Westergaard approach and local collocation methods

机译:有限几何形状中的两个平行裂缝围绕两个平行裂缝的应力:将高密度几何莫尔和光弹性与Westergaard方法和局部焊接方法相结合的混合动力研究

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摘要

Finite geometry problems, in which two or more cracks are in close proximity so that their stress fields interact, are generally found to be substantially more challenging than problems involving single or isolated cracks. The present study how, combining optical techniques such as photoelasticity with high density geometric moire, a method of modelling single cracks with similar loadings and geometries, and an elasticity technique well-suited to problems with multiple boundaries, produces an overall solution for the stress field around multiple crack tips in finite geometries.
机译:有限几何问题,其中两个或更多个裂缝紧邻,使得它们的应力场相互作用,通常发现比涉及单个或隔离裂缝的问题更具挑战性。本研究如何,将光学技术(如带有高密度几何莫尔的光弹性),一种用类似负载和几何形状建模的单一裂缝的方法,以及适合于多个边界问题的弹性技术产生了应力场的整体解决方案有限几何的多个裂缝提示周围。

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