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首页> 外文期刊>Acta metallurgica Sinica >EFFECTS OF MODIFICATION OF THE CARBIDE CHARACTERISTICS THROUGH GRAIN BOUNDARY SERRATION ON CREEP-FATIGUE LIFE IN AUSTENITIC STAINLESS STEELS
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EFFECTS OF MODIFICATION OF THE CARBIDE CHARACTERISTICS THROUGH GRAIN BOUNDARY SERRATION ON CREEP-FATIGUE LIFE IN AUSTENITIC STAINLESS STEELS

机译:晶界变化对碳化物特征的影响对奥氏体不锈钢蠕变疲劳寿命的影响

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摘要

Modification of the carbide characteristics through the grain boundary serration is investigated, using an AISI 316 and 304 stainless steels. In both steels, triangular carbides were observed at straight grain boundaries while planar carbides were observed at the serrated grain boundaries. The serrated grain boundary energy is observed to be much lower than that of the straight one. Therefore, the carbide morphology is found to be changed from triangular to planar along the serrated boundary to reduce the interfacial energy between the carbide and the matrix. The creep-fatigue properties of these steels at 873K have been investigated. The creep-fatigue life of the sample with planar carbide at the serrated grain boundary was found to be much longer than that with triangular carbide at the straight one. These results imply that the planar carbides with lower interfacial energy have higher cavitation resistance, resulting in the retardation of cavity nucleation and growth to increase creep-fatigue life.
机译:使用AISI 316和304不锈钢,研究了通过晶界锯齿状改变碳化物特性的方法。在两种钢中,在直的晶界处都观察到三角形碳化物,而在锯齿状的晶界处观察到了平面碳化物。观察到锯齿状的晶界能比直晶的低得多。因此,发现碳化物形态沿锯齿状边界从三角形变为平面,以减少碳化物与基体之间的界面能。已经研究了这些钢在873K时的蠕变疲劳性能。发现在锯齿状晶界处具有平面碳化物的样品的蠕变疲劳寿命比在直的晶界处具有三角形碳化物的样品的蠕变疲劳寿命长得多。这些结果表明,具有较低界面能的平面碳化物具有较高的抗汽蚀性,从而导致空穴形核和生长的延迟,从而延长了蠕变疲劳寿命。

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