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Effective Thickness of Side-Grooved Clamped SE(T) Specimens for J-R Curve Testing

机译:用于J-R曲线测试的侧面沟槽固定SE(T)试样的有效厚度

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Three-dimensional (3D) finite element analyses (FEA) of clamped single-edge tension (SE(T)) specimens were performed to investigate the effective thickness used in the calculations of the stress intensity factor (K) and plastic eta factor-based J-integral (J). The SE(T) specimens with six relative crack lengths (a/W ratios from 0.2 to 0.7), one relative thickness (B/W=1), and eleven depths of side groove (i.e., B_N/B = 1, 0.94, 0.92, 0.9, 0.88, 0.86, 0.85, 0.84, 0.82, 0.8, and 0.75) were considered in the analyses. Based on the FEA results, new effective thickness expressions and values for K and J estimations for side-grooved SE(T) specimens were proposed and validated.
机译:进行了夹紧单边拉力(SE(T))标本的三维(3D)有限元分析(FEA),以研究在计算应力强度因子(K)和基于塑性eta因子的计算中使用的有效厚度J积分(J)。 SE(T)标本具有6个相对裂纹长度(a / W比从0.2到0.7),1个相对厚度(B / W = 1)和11个侧槽深度(即B_N / B = 1、0.94,分析中考虑了0.92、0.9、0.88、0.86、0.85、0.84、0.82、0.8和0.75)。基于有限元分析结果,提出并验证了侧面刻槽的SE(T)标本的新有效厚度表达式和K和J估计值。

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