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首页> 外文期刊>溶接学会論文集 >Effects of full annealing heat treatment on long-term creep strength of 2.25Cr-1Mo steel welded joint
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Effects of full annealing heat treatment on long-term creep strength of 2.25Cr-1Mo steel welded joint

机译:完全退火热处理对2.25Cr-1Mo钢焊接接头长期蠕变强度的影响

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摘要

Long-term creep strength of Cr-Mo steel with fully annealed ferrite and pearlite microstructure is higher than those of the steels with martensite tempered martensite and bainite microstructures. In this study influence of post weld heat treatment at the temperature of austenite single phase region (full annealing PWHT) on long-term creep strength at 550℃ has been investigated on 2.25Cr-1 Mo steel in comparison with that of normal post weld heat treatment at the temperature below A{sub}(Cl) (standard PWHT). Creep rupture strength of the welded joint subjected to standard PWHT is lower than those of base metal and weld metal in the short-term. However such differences in creep rupture strength disappear after long-term creep exposure for about 50,000 h at 550℃. On the other hand, creep strength of the welded joint subjected to full annealing PWHT is obviously higher than those of the welded joint subjected to standard PWHT, base metal and weld metal in the long-term condition. It may be also expected to reduce a probability of mechanical damage such as Type IV cracking by the full annealing PWHT, since inhomogeneous microstructures in weld metal and heat affected zone have been essentially extinguished. Full annealing at the temperature of austenite single phase region has been proposed as a new post weld heat treatment condition available to obtain high creep strength and to improve a reliability of welded joint for low alloy Cr-Mo steels.
机译:具有完全退火的铁素体和珠光体组织的Cr-Mo钢的长期蠕变强度高于具有马氏体回火马氏体和贝氏体组织的Cr-Mo钢。本研究研究了2.25Cr-1 Mo钢在奥氏体单相区温度(完全退火PWHT)下进行的焊后热处理对550℃长期蠕变强度的影响,并与普通的焊后热处理进行了比较。在低于A {sub}(Cl)(标准PWHT)的温度下进行处理。标准PWHT焊接接头的蠕变断裂强度短期内低于母材和焊缝金属。然而,在550℃下长期暴露约50,000 h后,蠕变断裂强度的这种差异消失了。另一方面,在长期条件下,经过全退火PWHT的焊接接头的蠕变强度明显高于经过标准PWHT,母材和焊接金属的焊接接头的蠕变强度。由于焊缝金属和热影响区中的不均匀微观结构已基本消失,因此也有望降低机械损坏的可能性,例如通过完全退火PWHT导致的IV型开裂。已提出在奥氏体单相区域的温度下进行完全退火,作为可用于获得高蠕变强度并提高低合金Cr-Mo钢焊接接头可靠性的新的焊后热处理条件。

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