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Determination of fracture mechanics parameters by measurements of local displacements due to crack length increment

机译:通过测量裂纹长度增加引起的局部位移来确定断裂力学参数

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摘要

New experimental technique for a determination of the stress intensity factor and the non-singular T-stress is developed, verified and implemented. The approach is based on combining the crack compliance method and optical interferometric measurements of local deformation response on small crack length increment. Initial experimental information has a form of in-plane displacement component values, which are measured by electronic speckle-pattern interferometry at some specific points located near a crack tip. The first four coefficients of Williams' series are derived. A determination of initial experimental data at the nearest vicinity of crackotch tip is the main feature of the developed approach. In this case, it is not necessary to use complex numerical models, which are connected with geometrical parameters and loading conditions of the object under study in a stage of experimental data interpretation. Moreover, an availability of high-quality interference fringe patterns, which are free from rigid body motions, serves as a reliable indicator of real stress state in the vicinity of the crack tip. Experimental verification of the proposed method is performed for specially designed specimen of double cantilever beam type. Distributions of the stress intensity factor and the T-stress for two cracks in different residual stress fields in the vicinity of friction stir welding joints are presented as an example.
机译:开发,验证和实施了确定应力强度因子和非奇异T应力的新实验技术。该方法基于裂纹顺应性方法和在较小裂纹长度增量上的局部变形响应的光学干涉测量方法的结合。初始实验信息具有面内位移分量值的形式,该值通过电子散斑图干涉术在靠近裂纹尖端的某些特定点处进行测量。推导了威廉姆斯级数的前四个系数。确定裂纹/缺口尖端附近区域的初始实验数据是开发方法的主要特征。在这种情况下,不必使用复杂的数值模型,而在实验数据解释阶段,该复杂的数值模型与研究对象的几何参数和加载条件有关。此外,没有刚性运动的高质量干涉条纹图案的可用性可作为裂纹尖端附近真实应力状态的可靠指标。对特殊设计的双悬臂梁型标本进行了该方法的实验验证。以搅拌摩擦焊接头附近不同残余应力场中两个裂纹的应力强度因子和T应力分布为例。

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