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Three-dimensional numerical analysis of out-of-plane creep crack-tip constraint in compact tension specimens

机译:紧凑拉伸试样中面外蠕变裂纹尖端约束的三维数值分析

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In this paper, the C (t) and C~* integrals, stress redistribution time t_(red) and creep crack-tip stress distributions in the compact tension (CT) specimens with various thicknesses have been calculated by the three-dimensional (3D) finite element method, and the out-of-plane creep crack-tip constraint induced by specimen thickness is quantitatively characterized and analyzed in detail. The results show that the out-of-plane creep crack-tip constraint in the CT specimens could be characterized and analyzed by the new constraint parameter R. The 3D creep crack-tip constraint increases with increasing specimen thickness, and the 3D effect becomes more pronounced with increasing the parameter C~*. There is a central region with higher creep constraint along the crack front, the size of the region increases with increasing specimen thickness, and decreases with increasing creep time and parameter C~*. The factors of influencing the out-of-plane creep crack-tip constraint are analyzed.
机译:本文利用三维(3D)方法计算了不同厚度的致密拉伸(CT)试样中的C(t)和C〜*积分,应力重新分布时间t_(red)和蠕变裂纹尖端应力分布。 )有限元方法,并对由试样厚度引起的面外蠕变裂纹尖端约束进行了定量表征和详细分析。结果表明,可以通过新的约束参数R来表征和分析CT试样的面外蠕变裂纹尖端约束。3D蠕变裂纹尖端约束随着试样厚度的增加而增加,并且3D效果变得更大。随着参数C〜*的增加而明显变大。沿着裂纹前沿存在一个具有较高蠕变约束的中心区域,该区域的大小随试样厚度的增加而增加,并随蠕变时间和参数C〜*的增加而减小。分析了影响面外蠕变裂纹尖端约束的因素。

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