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Creep Rupture of the Simulated HAZ of T92 Steel Compared to that of a T91 Steel

机译:与T91钢相比T92钢的模拟热影响区的蠕变破裂

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摘要

The increased thermal efficiency of fossil power plants calls for the development of advanced creep-resistant alloy steels like T92. In this study, microstructures found in the heat-affected zone (HAZ) of a T92 steel weld were simulated to evaluate their creep-rupture-life at elevated temperatures. An infrared heating system was used to heat the samples to 860 °C (around AC1), 900 °C (slightly below AC3), and 940 °C (moderately above AC3) for one minute, before cooling to room temperature. The simulated specimens were then subjected to a conventional post-weld heat treatment (PWHT) at 750 °C for two hours, where both the 900 °C and 940 °C simulated specimens had fine grain sizes. In the as-treated condition, the 900 °C simulated specimen consisted of fine lath martensite, ferrite subgrains, and undissolved carbides, while residual carbides and fresh martensite were found in the 940 °C simulated specimen. The results of short-term creep tests indicated that the creep resistance of the 900 °C and 940 °C simulated specimens was poorer than that of the 860 °C simulated specimens and the base metal. Moreover, simulated T92 steel samples had higher creep strength than the T91 counterpart specimens.
机译:化石电厂热效率的提高要求开发像T92这样的高级抗蠕变合金钢。在这项研究中,模拟了在T92钢焊缝的热影响区(HAZ)中发现的微结构,以评估其在高温下的蠕变断裂寿命。在冷却至室温之前,使用红外加热系统将样品加热到860°C(大约AC1),900°C(稍微低于AC3)和940°C(中等高于AC3)一分钟。然后将模拟标本在750°C下进行常规的焊后热处理(PWHT)2小时,其中900°C和940°C的模拟标本均具有细晶粒度。在处理后的状态下,900°C的模拟试样由细条状马氏体,铁素体亚晶粒和未溶解的碳化物组成,而在940°C的模拟试样中发现了残留的碳化物和新鲜的马氏体。短期蠕变试验的结果表明,900°C和940°C模拟试样的抗蠕变性比860°C模拟试样和母材的抗蠕变性差。而且,模拟的T92钢样品比T91对应的样品具有更高的蠕变强度。

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