首页> 外文会议>6th International Conference on Trends in Welding Research Apr 15-19, 2002 Phoenix, Arizona USA >Martensite transformation, microsegregation, and creep strength of 9 Cr-1 Mo-V steel weld metal
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Martensite transformation, microsegregation, and creep strength of 9 Cr-1 Mo-V steel weld metal

机译:9 Cr-1 Mo-V钢焊接金属的马氏体相变,微偏析和蠕变强度

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The 9Cr-1Mo-V (P91) steel is a high strength alloy that normally transforms completely to martensite during air cooling. This means that issues related to the handling of weldments during welding operations, and between the completion of welding and post weld heat treatments are important concerns. Measurements of specimen dilations during controlled thermal cycles were used to follow the martensite transformation in a P91 base metal and a weld deposit. For identical thermal cycles, the base metal transformed completely to martensite after normalizing, but the weld deposit did not. The effect of this difference in transformation behavior was that austenite was retained in the weld deposit after tempering. The retained austenite transformed to martensite upon cooling from the tempering temperature, resulting in small amounts of untempered martensite in fully heat treated weld deposit. An analysis of microsegregation by computational thermodynamics suggested that partitioning of alloying elements increased the range between the martensite transformation start and finish temperatures in the weld deposit, increasing the likelihood of retained austenite in it. Creep testing at 600℃ and stresses of 120 MPa and 186 MPa showed that weld deposit specimens with untempered martensite had low creep rates and relatively long rupture lives.
机译:9Cr-1Mo-V(P91)钢是一种高强度合金,通常在空冷时会完全转变成马氏体。这意味着与焊接操作过程中的焊件处理有关的问题,以及在焊接完成和焊后热处理之间的问题是重要的问题。在受控的热循环过程中测量样品的膨胀,以跟踪P91母材和焊缝中的马氏体转变。对于相同的热循环,正火后母材完全转变为马氏体,但焊缝没有。这种相变行为差异的影响是,回火后奥氏体保留在焊缝中。从回火温度冷却后,残留的奥氏体转变为马氏体,从而在经过充分热处理的焊缝中产生少量的未回火马氏体。通过计算热力学对微观偏析的分析表明,合金元素的分配增加了焊缝中马氏体转变开始温度和结束温度之间的范围,从而增加了残留奥氏体的可能性。在600℃下进行的蠕变试验以及在120 MPa和186 MPa的应力下显示,马氏体未回火的焊缝试样蠕变速率低且断裂寿命较长。

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