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Application of Advanced Master Curve Approaches to the EURO Fracture Toughness Data Set

机译:先进的大师曲线方法在欧元骨折韧性数据集中

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The so-called EURO data set is the largest set ever assembled, consisting of fracture toughness results obtained in the ductile-to-brittle transition region. It was the outcome of a large project, sponsored by the European Union, which involved ten European laboratories in the second half of the 1990s. Several post-project investigations have identified one of the blocks from which specimens were extracted (block SX9) as macroscopically inhomogeneous and significantly tougher than the remaining blocks. In this paper, the variability of block SX9 has been investigated using the conventional master curve (MC) methodology and some recent MC extensions, namely, the SINTAP (structural integrity assessment procedure) lower tail, the single point estimation, the bi-modal MC, and the multi-modal MC. The basic MC method is intended for macroscopically homogeneous ferritic steels only, and the alternative approaches have been developed for the investigation of inhomogeneous materials. Therefore, these methods can be used to study the behavior of block SX9 within the EURO data set. It has been found that the bi-modal and multi-modal MC approaches are quite effective in detecting the "anomaly" represented by block SX9 but only when analyses are performed on data sets of comparable size.
机译:所谓EURO数据集是有史以来组装时,由在延性 - 脆性转变区域而获得的断裂韧性的结果的最大集合。这是一个大的项目,由欧盟发起,涉及十个欧洲实验室在90年代后半期的结果。几个项目后的调查已确定从其中提取样本的块(块SX9)作为宏观不均匀之一,显著强硬比其余块。在本文中,块SX9的可变性已经使用常规的主曲线(MC)的方法和最近的一些MC扩展,即SINTAP(结构完整性评估程序)下尾,单点估计,双峰MC调查和多模态MC。基本MC方法仅用于宏观上均匀的铁素体钢,和非均匀材料的调查的替代方法已被开发。因此,这些方法可用于研究块SX9的EURO数据集内的行为。已经发现的是,双峰和多模态MC方法是在检测到“异常”的块表示SX9但只有当分析是在数据集大小相当的执行非常有效。

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