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首页> 外文期刊>Journal of Materials Engineering and Performance >Carbide and Hardness Development in the Heat-Affected Zone of Tempered and Postweld Heat-Treated 2.25Cr-1Mo Steel Weldments
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Carbide and Hardness Development in the Heat-Affected Zone of Tempered and Postweld Heat-Treated 2.25Cr-1Mo Steel Weldments

机译:回火和热处理后的2.25Cr-1Mo钢焊件热影响区的碳化物和硬度发展

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摘要

The temper-bead and the conventional weaving, multipass welding procedures have been developed to eliminate postweld heat treatment (PWHT) of creep resistant 2.25Cr-1Mo steel. Both procedures' aim to refine and temper the heat-affected zone (HAZ). The temper-bead procedure resulted in a martensitic HAZ and a homogeneous fine-grain size. Hardness was not decreased by high heat input weaving fillout passes. Upper bainite developed in the conventional weaving HAZ, although grain refinement was inhomogeneous and some martensite was present However, the conventional weaving procedure appears to produce a lower as-welded hardness than the temper-bead procedure.The carbides within the temper-bead HAZ aged more rapidly than those in the conventional weaving HAZ as a result of the initial martensitic temper-bead HAZ microstructure. Previous work indicated that the temper-bead HAZ toughness decreased after 1000 h of tempering at 538 deg C. This correlated with the coarsening and the agglomeration of the carbides.The maximum hardness occurred within the as-welded coarse-grained HAZ. The PWHT resulted in the greatest decrease in hardness and also reduced hardness variability throughout the HAZ. The hardness decreased to postweld heat-treated values after approximately 1000 h at 538 deg C and softening was associated with the precipitation and coarsening of acicular carbides and the development of coarse grain-boundary carbides.
机译:已经开发出回火珠和常规的编织,多道次焊接程序,以消除抗蠕变的2.25Cr-1Mo钢的焊后热处理(PWHT)。两种程序均旨在改善和调节热影响区(HAZ)。回火珠过程产生了马氏体热影响区和均一的细晶粒尺寸。高热量输入编织填充道次并没有降低硬度。尽管晶粒细化不均匀并且存在一些马氏体,但在常规编织HAZ中形成了上贝氏体。然而,常规编织程序似乎产生了比回火珠过程低的焊接后硬度。回火珠HAZ中的碳化物已经过时效由于初始的马氏体回火珠HAZ微结构,比传统的编织HAZ更快。先前的工作表明,在538℃回火1000 h后,回火珠HAZ的韧性下降。这与碳化物的粗化和团聚有关。最大硬度出现在焊接后的粗晶HAZ中。在整个热影响区中,PWHT导致硬度的最大降低,并且降低了硬度变异性。在538℃下约1000小时后,硬度降低至焊后热处理值,软化与针状碳化物的沉淀和粗化以及晶粒间界碳化物的发展有关。

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