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首页> 外文期刊>Journal of Materials Processing Technology >Effect of heat treatment on microstructure and residual stress fields of a weld multilayer austenitic steel clad
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Effect of heat treatment on microstructure and residual stress fields of a weld multilayer austenitic steel clad

机译:热处理对复合多层奥氏体钢熔覆组织和残余应力场的影响

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摘要

Samples of ferritic-perlitic steel were cladded by submerged arc welding with three layers of two austenitic stainless steel filler metals. After the weld cladding, samples were submitted to stress relief heat treatment (SRHT) under different parameters. The characterization of the microstructure of the samples was made by optical and scanning electron microscopy, and the residual stresses determined by X-ray diffraction and incremental hole drilling Method. The results were compared and related to the SRHT conditions. The microstructure of the third layer of the as-welded clad consists of cellular austenite and intercellular eutectic delta-ferrite particles, while the microstructure of the first layer presents a high proportion of lathy martensite in gamma-Fe cells. The second layer contains a low proportion of martensite and high proportion of austenite. The SRHTs induced partial decomposition of delta-ferrite in the superficial layer, increasing the rate of decomposition with the treatment temperature, and the coarsening of precipitates in the vicinity of the interface carbon steel-stainless steel. The superficial layer of the as-welded and machined clad plate presented residual compressive stresses. The SRHT at 540 degrees C, for 10 h of holding time, enabled some residual stress relaxation, unlike the treatment at 620 degrees C, during 1 h, which increased the compressive stresses. (C) 2015 Elsevier B.V. All rights reserved.
机译:用三层两种奥氏体不锈钢填充金属通过埋弧焊熔覆铁素体-蠕铁钢样品。堆焊后,将样品在不同参数下进行应力消除热处理(SRHT)。通过光学和扫描电子显微镜对样品的微观结构进行表征,并通过X射线衍射和增量钻孔法确定残余应力。比较结果并将其与SRHT条件相关。堆焊后的第三层的微观结构由蜂窝奥氏体和胞间共晶δ-铁素体颗粒组成,而第一层的微观结构在γ-Fe电池中呈现出高比例的片状马氏体。第二层包含低比例的马氏体和高比例的奥氏体。 SRHT引起表层δ-铁素体的部分分解,随着处理温度的升高分解速率增加,并且在界面碳钢-不锈钢附近的析出物粗化。焊接后和加工后的复合板的表面层呈现残余压缩应力。在540摄氏度的SRHT下保持10小时,与1小时在620摄氏度下的处理不同,残余应力松弛了一些,从而增加了压应力。 (C)2015 Elsevier B.V.保留所有权利。

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