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首页> 外文期刊>The Physics of Metals and Metallography >Evolution of Microstructure during Welding Simulation of Boron Modified P91 Steel
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Evolution of Microstructure during Welding Simulation of Boron Modified P91 Steel

机译:硼改性P91钢焊接模拟过程中微观结构的演变

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摘要

Formation of heat affected zone (HAZ) when welding is considered as weakest link across transition joint. Characterization of this zone is a key issue to reduce the effect of embrittlement; hence appropriate welding parameters were adopted. In the present study, HAZ simulation was done for boron modified P91 steel using Gleeble. It has been observed that matrix was martensitic in nature for coarse-grain HAZ (CGHAZ)/fine-grain HAZ (FGHAZ) whereas for inter-critical HAZ (ICHAZ), matrix was ferrite + martensite containing primary carbides. The size and fraction of carbides varied with peak temperature. Presence of boron influenced the microstructural characteristics of different zones by influencing precipitation nature and fractional characteristic of phases. Substantial variation in hardness was obtained before and after post-weld heat treatment (PWHT). In this respect, simulated samples exhibited maximum hardness at CGHAZ and after PWHT the same region showed minimum hardness. Short-term impression creep testing of simulated sub-HAZs was done, which revealed embrittling effect in ICHAZ, whereas embrittlement shifted to CGHAZ after PWHT. Based on conventional nomenclature for weldment failures, it is confirmed that PWHT shifted type-IV failure (ICHAZ) to type-III failure (CGHAZ) in boron modified P91 steel.
机译:当焊接被认为是跨过渡接头的最弱环节时,热影响区域(HAZ)的形成。该区域的特征是降低脆化效果的关键问题;因此采用了适当的焊接参数。在本研究中,使用GHELEBLE进行硼改性P91钢进行HAZ模拟。已经观察到,对于粗粒HAZ(CGHAZ)/细粒度HAZ(FGHAZ),基质是马氏体的,而对于临界群体HAZ(ICHAZ),基质是铁氧体+马氏体含有初级碳化物。碳化物的尺寸和分数随高峰温度而变化。通过影响阶段的沉淀性和分数特征来影响不同区域的微观结构特征。在焊接后热处理之前和之后获得的硬度大幅变化(PWHT)。在这方面,模拟样品在CGHAZ和PWHT相同区域显示最小硬度之后表现出最大硬度。模拟亚麻危险的短期印象蠕变测试已经完成,在伊氏伊氏宫揭示了脆性作用,而脆性在PWHT之后转移到CGHAZ。基于焊接故障的常规术语,证实PWHT转移型-IV型损失(IICHAZ)在硼改性P91钢中的III型失效(CGHAZ)。

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