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FURTHER VALIDATION OF THE TECHNICAL BASIS OF CODE CASE N-838 FOR FLAW TOLERANCE EVALUATION OF CASS PIPING

机译:N-838代码案例的技术基础的进一步验证

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ASME Code, Section Ⅺ Code Case N-838 provides analyses methods that may be used when performing flaw tolerance evaluation of Class 1 and 2 cast austenitic stainless steel (CASS) piping components with ferrite content exceeding 20%. Tolerable flaw sizes are provided in the Code Case that cannot be exceeded during the evaluation period from an initial postulated flaw. The tolerable flaw sizes were determined based on probabilistic fracture mechanics (PFM) techniques employing toughness and flow strength correlations developed at Argonne National Laboratory (ANL) that estimated the crack growth resistance (J-R) curve using material composition with the room temperature Charpy energy as an intermediate variable. Since the publication of the technical basis for this Code Case, additional toughness data have been identified, some of which are significantly lower than the toughness for CASS CF-8M materials considered in the ANL model. This paper reports the results of evaluations and sensitivity studies performed to examine the additional toughness and tensile data and determine the effects on the Code Case tolerable flaw size tables. The current study directly employs an expanded set of data of actual measured fully saturated high-temperature crack growth resistance curve, thereby bypassing the material composition-to-Charpy-to-toughness correlations in the ANL model. In this study, both deterministic fracture mechanics and PFM analyses were performed using the assembled data of toughness and tensile properties. The results obtained in the current PFM and deterministic analysis which use the actual toughness and tensile data are found to always provide larger tolerable flaw sizes than those obtained from the previous analyses which used ANL material correlations, thereby demonstrating the conservative nature of the technical basis for the Code Case.
机译:ASME法规,法规案例N-838提供了分析方法,这些方法可用于对铁素体含量超过20%的1级和2级铸造奥氏体不锈钢(CASS)管道组件进行缺陷耐受性评估。代码案例中提供了可容忍的缺陷大小,在评估期间从初始假定缺陷起不能超过该缺陷大小。可容忍的缺陷尺寸是根据概率断裂力学(PFM)技术确定的,该技术采用了由Argonne国家实验室(ANL)开发的韧性和流动强度相关性,并使用室温夏比能量作为材料,使用材料成分估算了抗裂纹扩展(JR)曲线。中间变量。自从此规范案例的技术基础发布以来,已经确定了其他韧性数据,其中一些明显低于ANL模型中考虑的CASS CF-8M材料的韧性。本文报告了评估和敏感性研究的结果,这些研究旨在检查其他韧性和拉伸数据并确定对Code Case容许的缺陷尺寸表的影响。当前的研究直接采用了一组扩展的数据,这些数据是实际测得的完全饱和的高温裂纹扩展阻力曲线,从而绕过了ANL模型中材料组成对夏比对韧性的相关性。在这项研究中,确定性断裂力学和PFM分析均使用韧性和拉伸性能的组合数据进行。在当前的PFM和确定性分析中,使用实际的韧性和拉伸数据得出的结果总是比从以前的使用ANL材料相关性的分析得出的结果更大,可容许的缺陷尺寸,从而证明了技术基础的保守性。代码案例。

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