首页> 外文会议>ASME Pressure Vessels and Piping conference >APPLICABILITY OF MINIATURE C(T) SPECIMEN TO EVALUATION OF FRACTURE TOUGHNESS FOR REACTOR PRESSURE VESSEL STEEL
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APPLICABILITY OF MINIATURE C(T) SPECIMEN TO EVALUATION OF FRACTURE TOUGHNESS FOR REACTOR PRESSURE VESSEL STEEL

机译:微型C(T)试样在反应堆压力容器钢断裂韧性评估中的适用性

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Irradiation embrittlement of Japanese reactor pressure vessels (RPV) is usually monitored by conducting tests on irradiated RPV material according to surveillance test program. Although fracture toughness specimens are contained in Japanese PWR surveillance capsule, the number of specimens is limited due to capacity of capsule. In order to evaluate lower bound of fracture toughness considering its scatter with higher reliability, it is expected to obtain additional fracture toughness data using remaining broken specimens of irradiated materials. One of solutions to this problem is specimen reconstitution technique. However, it is difficult to make numbers of specimens by reconstitution because of need for specific equipments and time-consuming machining operations. As an alternative method, fracture toughness test using miniature C(T) specimens with dimension of 4×10×10mm, which can be taken from broken halves of Charpy specimen, is proposed and the studies to verify the reliability and robustness of evaluation method have been conducted in the Japanese round robin program since 2010. In this study, fracture toughness tests were performed on Japanese SA 533 Gr.B C1.1 steel using miniature C(T) specimens and the effect of specimen size on reference temperature T_0 was studied by the Master Curve approach. In addition, the issues related to application to irradiated materials were discussed.
机译:通常通过根据监测测试程序对辐照的RPV材料进行测试来监测日本反应器压力容器(RPV)的照射脆化。虽然裂缝韧性样本含有日本PWR监测胶囊,但由于胶囊的容量,样品的数量受到限制。为了评估裂缝韧性的下限考虑到其具有更高可靠性的散射,预计使用剩余的辐照材料标本获得额外的断裂韧性数据。这个问题的解决方案之一是标本重建技术。然而,由于需要特定设备和耗时的加工操作,难以通过重构制定标本数量。作为一种替代方法,提出了使用具有4×10×10mm的尺寸的微型C(T)样本的断裂韧性试验,这可以从夏比标本的残留物中取出,并研究验证评估方法的可靠性和鲁棒性的研究自2010年以来在日本循环计划中进行。在本研究中,使用微型C(t)样品对日本SA 533 GR.B C1.1钢进行断裂韧性试验,并研究了样品尺寸对参考温度T_0的效果通过主曲线方法。此外,讨论了与施用辐照材料相关的问题。

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