首页> 外文会议>ASME Pressure Vessels amp;amp;amp; Piping Conference >MASTER CURVE FRACTURE TOUGHNESS CHARACTERIZATION OF EUROFER97 STEEL VARIANTS USING MINIATURE MULTI-NOTCH BEND BAR SPECIMENS FOR FUSION APPLICATIONS~1
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MASTER CURVE FRACTURE TOUGHNESS CHARACTERIZATION OF EUROFER97 STEEL VARIANTS USING MINIATURE MULTI-NOTCH BEND BAR SPECIMENS FOR FUSION APPLICATIONS~1

机译:使用微型多槽弯杆标本进行融合应用的EUROFER97钢变形的主曲线断裂韧性〜1

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In this study, we performed fracture toughness testing of ten Eurofer97 steel variants using precracked miniature multi-notch bend bar (M4CVN) specimens based on the Master Curve method in the ASTM E1921 standard. Additional Vickers microhardness and room temperature tensile testing complemented the fracture toughness testing. Compared with standard Eurofer97, the ten variants didn't show a comprehensive improvement of mechanical properties. The Master Curve method was found to yield a reasonable prediction of fracture toughness results obtained from M4CVN specimens with most valid fracture toughness data within the 2% and 98% tolerance boundaries of the Master Curve. The three-parameter Weibull distribution with Weibull exponent b = 4 also yielded excellent prediction of the relationship between fracture toughness results K_(Jc) and the cumulative probability for failure p_f for one steel variant.
机译:在这项研究中,我们使用基于ASTM E1921标准的主曲线方法的预粘的微型多槽弯曲棒(M4CVN)样本进行了10欧元的97钢变体的断裂韧性试验。额外的维氏微型和室温拉伸测试补充了裂缝韧性试验。与标准Eurofer97相比,十种变种没有显示出综合改进机械性能。发现主曲线方法产生合理预测从M4CVN样本获得的裂缝韧性结果,其在主曲线的2%和98%耐受界限内具有大多数有效的断裂韧性数据。使用Weibull指数B = 4的三参数Weibull分布还产生了对一个钢变体的裂缝韧性结果K_(JC)之间的关系的累积概率以及用于一个钢变体的失效P_F的累积概率。

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