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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Effect of strain rate and notch geometry on tensile properties and fracture mechanism of creep strength enhanced ferritic P91 steel
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Effect of strain rate and notch geometry on tensile properties and fracture mechanism of creep strength enhanced ferritic P91 steel

机译:应变率和缺口几何对蠕变强度增强铁素体P91钢拉伸性能和断裂机理的影响

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摘要

AbstractCreep strength enhanced ferritic (CSEF) P91 steel were subjected to room temperature tensile test for quasi-static (less than 10?1/s) strain rate by using the Instron Vertical Tensile Testing Machine. Effect of different type of notch geometry, notch depth and angle on mechanical properties were also considered for different strain rate. In quasi-static rates, the P91 steel showed a positive strain rate sensitivity. On the basis of tensile data, fracture toughness of P91 steel was also calculated numerically. For 1?mm notch depth (constant strain rate), notch strength and fracture toughness were found to be increased with increase in notch angle from 45° to 60° while the maximum value attained in U-type notch. Notch angle and notch depth has found a minute effect on P91 steel strength and fracture toughness. The fracture surface morphology was studied by field emission scanning electron microscopy (FESEM).]]>
机译:<![CDATA [ 抽象 蠕变强度增强的铁素体(CSEF)P91钢对准静态的室温拉伸试验(小于10 1 / s)应变率通过使用INSTRON垂直拉伸试验机。不同类型的缺口几何形状,切口深度和角度对机械性能的影响也被认为是不同的应变率。以准静态速率,P91钢显示出阳性应变速率灵敏度。在拉伸数据的基础上,P91钢的断裂韧性也在数值上计算。对于1?mm凹口深度(恒定应变率),发现凹口强度和断裂韧性随着45°至60°的陷波角的增加而增加,而U型缺口中获得的最大值。 Notch角和缺口深度已经发现了对P91钢强度和断裂韧性的微小效果。通过场发射扫描电子显微镜(FeSEM)研究了裂缝表面形态。 ]]>

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