首页> 外文会议>ASME Pressure Vessels and Piping conference >COMPARISON OF THE STRESS INTENSITY FACTOR INFLUENCE COEFFICIENTS FOR AXIAL ID SURFACE CRACKS IN CYLINDERS OF RSE-M AND API 579-1
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COMPARISON OF THE STRESS INTENSITY FACTOR INFLUENCE COEFFICIENTS FOR AXIAL ID SURFACE CRACKS IN CYLINDERS OF RSE-M AND API 579-1

机译:RSE-M和API 579-1圆柱中轴向ID表面裂纹的应力强度因子影响系数的比较

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Analytical evaluation procedures for determining the acceptability of flaw detected during in-service inspection of nuclear power plant components are provided in Appendix 5.4 of the French RSE-M Code. Linear elastic fracture mechanics based evaluation procedures require calculation of the stress intensity factor (SIF). In Appendix 5.4 of the RSE-M Code, influence coefficients needed to compute the SIF are provided for a wide range of surface axial or circumferential flaws in cylinders, the through-wall stress field being represented by a cubic equation. On the other hand, Appendix C of API 579-1 FFS procedure provides also a very complete set of influence coefficients. The paper presents the comparison of the influence coefficients from both documents, focused on axial ID semi-elliptical surface flaws in cylinders. The cylinder and crack geometries are represented by three ratios: Ri/t, a/t, and a/c, where Ri, t, a, and c are respectively the inner radius, the wall thickness, the crack depth and one-half of the crack length. The solutions for the coefficients G_0 and G_1 at the deepest point and at the surface point are investigated. At the deepest point, the agreement between the solutions is good, the relative difference being lower than 2 %, except for the plate (R_i/t = ∞) at a/c = 0.125 and 0.0625 and a/t = 0.8 (around 5 %). At the surface point, the agreement between both solutions is not so good. At this point, the relative differences depend strongly on the a/c ratio, being larger for elongated cracks (with low a/c ratios). However, it must be recalled that the absolute values of the coefficients are low at the surface point for elongated cracks, and that for these cracks the critical point regarding the stress intensity factor is the deepest point.
机译:法国RSE-M规则的附录5.4中提供了用于确定在核电厂组件的在役检查中检测到的缺陷的可接受性的分析评估程序。基于线性弹性断裂力学的评估程序需要计算应力强度因子(SIF)。在RSE-M规范的附录5.4中,提供了计算SIF所需的影响系数,适用于圆柱体中各种表面轴向或圆周缺陷,贯通壁应力场由三次方程表示。另一方面,API 579-1 FFS过程的附录C还提供了非常完整的影响系数集。本文介绍了两个文献的影响系数的比较,重点是圆柱的轴向ID半椭圆形表面缺陷。圆柱体和裂纹的几何形状由三个比率表示:Ri / t,a / t和a / c,其中Ri,t,a和c分别是内半径,壁厚,裂纹深度和一半裂纹长度。研究了最深点和表面点处的系数G_0和G_1的解。在最深处,解决方案之间的一致性很好,相对差异小于2%,除了板面(R_i / t =∞)在a / c = 0.125和0.0625且a / t = 0.8(大约5) %)。从表面上看,这两种解决方案之间的协议不太好。此时,相对差异在很大程度上取决于a / c比率,对于细长裂纹(具有较低的a / c比率)而言,相对差异更大。但是,必须记住,在细长裂纹的表面点处,系数的绝对值较低,而对于这些裂纹,与应力强度因子有关的临界点是最深的点。

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