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High-temperature creep properties of fine grained heat-affected zone in P92 weldment

机译:P92焊件中细晶粒热影响区的高温蠕变性能

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The simulated fine grained heat-affected zone (FGHAZ)specimens for P92 welded joints were prepared by heat treatment, then the creep tests were carried out at 650 °C under the applied stress of 90-120 MPa to investigate high-temperature creep behavior of FGHAZ. The results show that the creep property of FGHAZ is much inferior to that of the base metal, which exhibits the much higher steady creep rate and shorter time to creep fracture. The power law equation can describe the steady creep rate dependence on applied stress, indicating that the stress exponent n of FGHAZ is distinguished between two regions with n=15.1 at high stresses (more than 100 MPa) and n=8.64 at lower stresses. Based on Monkman-Grant equation, the relationship between the secondary creep rate and time to rupture is obtained to evaluate the creep life of FGHAZ with the applied stress above 100 MPa.
机译:通过热处理制备用于P92焊接接头的模拟细晶粒热影响区(FGHAZ)试样,然后在650°C的90-120 MPa施加应力下进行蠕变试验,以研究P92焊接接头的高温蠕变行为。 FGHAZ。结果表明,FGHAZ的蠕变性能远低于母材,它具有更高的稳定蠕变速率和更短的蠕变断裂时间。幂律方程可以描述稳态蠕变速率对施加应力的依赖性,表明FGHAZ的应力指数n在高应力(大于100 MPa)和n = 8.64在较低应力下的两个区域之间是区分的。基于Monkman-Grant方程,获得了二次蠕变速率与断裂时间之间的关系,以评估100 MPa以上外加应力时FGHAZ的蠕变寿命。

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