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FRACTURE TOUGHNESS EVALUATION OF REACTOR PRESSURE VESSEL STEELS BY MASTER CURVE METHOD USING MINI-CT SPECIMENS

机译:微型CT试样主曲线法评估反应堆压力容器钢的断裂韧性

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To examine the applicability of Mini-CT (0.16T-CT) specimens to fracture toughness evaluation by Master Curve method, we conducted fracture toughness tests using specimens with different size and shapes such as pre-cracked Charpy-type, 0.4T-CT and 1T-CT in addition to 0.16T-CT specimens for commercially manufactured five kinds of SA533B C1.1 steels with different ductile-to-brittle transition temperature. Reference temperature T_o determined by 0.16T-CT specimens were approximately equal to those of 1T-CT specimens for all materials. The Weibull slope of 0.16T-CT specimens was similar to those of other larger specimens. We also examined a loading rate effect on T_o of 0.16T-CT specimens within the quasi-static loading range prescribed by ASTM E1921. There was no loading rate effect peculiar to 0.16T-CT specimens, while the higher loading rate gave rise to slightly higher T_o.
机译:为了检验Mini-CT(0.16T-CT)样品通过Master Curve方法评估断裂韧性的适用性,我们使用不同尺寸和形状的样品(例如预开裂的夏比(Charpy)型,0.4T-CT和除了0.16T-CT试样外,还有1T-CT用于商业生产的5种SA533B C1.1钢,它们具有不同的延性至脆性转变温度。对于所有材料,由0.16T-CT样品确定的参考温度T_o大约等于1T-CT样品的参考温度。 0.16T-CT标本的Weibull斜率与其他较大标本的相似。我们还检查了在ASTM E1921规定的准静态载荷范围内,载荷速率对0.16T-CT样品的T_o的影响。 0.16T-CT样品没有特有的加载速率效应,而较高的加载速率导致T_o略高。

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