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On single-edge-crack tension specimens for tension-compression fatigue crack growth testing

机译:张力压缩疲劳裂纹生长试验的单边缘裂纹张力标本

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摘要

Single-edge-crack (SEC) specimens with rigid threaded ends are well suited for fatigue crack growth testing in extreme environments and for conducting tests at negative load ratios. Stress intensity parameter, K, and crack mouth opening displacement, CMOD, solutions as a function of crack size for this geometry are derived using 3-D finite element analyses using multiple codes. Both K and CMOD values obtained are shown to be comparable between the various finite element codes used. The solutions are sensitive to the height (2H) to width (W) ratio of the specimen, as well as to the aggregate bending stiffness of the members of the loading train. A procedure utilizing the computational results for various 2H/W values and a set of specially designed fatigue crack growth experiments is described to develop custom solutions for estimating K and CMOD values that account for both, the 2H/W ratio and the bending stiffness of the loading train. (C) 2017 Elsevier Ltd. All rights reserved.
机译:具有刚性螺纹端部的单边缘裂纹(SEC)标本非常适合在极端环境中的疲劳裂纹生长测试,并以负载比率进行测试。 应力强度参数,K和裂缝口开口位移,CMOD,作为这种几何形状的裂纹尺寸的函数的函数,使用多个代码进行三维有限元分析。 所获得的k和CMOD值都显示在所用的各种有限元代码之间是可比的。 溶液对样品的高度(2H)至宽度(2H)敏感,以及装载列车成员的骨料弯曲刚度。 利用各种2H / W值的计算结果和一组专门设计的疲劳裂纹生长实验的过程是为了开发定制解决方案,用于估计k和cmod值,该值占两个,2h / w比和弯曲刚度 装载火车。 (c)2017 Elsevier Ltd.保留所有权利。

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