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Microstructure and Hydrogen-Induced Failure Mechanisms in Fe and Ni Alloy Weldments

机译:Fe和Ni合金焊缝的组织和氢致失效机理

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摘要

The microstructure and fracture morphology of AISI 8630-IN625 and ASTM A182-F22-IN625 dissimilar metal weld interfaces were compared and contrasted as a function of postweld heat treatment (PWHT) duration. For both systems, the microstructure along the weld interface consisted of a coarse grain heat-affected zone in the Fe-base metal followed by discontinuous martensitic partially mixed zones and a continuous partially mixed zone on the Ni side of the fusion line. Within the partially mixed zone on the Ni side, there exists a 200-nm-wide transition zone within a 20-μm-wide planar solidification region followed by a cellular dendritic region with Nb-Mo–rich carbides decorating the dendrite boundaries. Although there were differences in the volume of the partially mixed zones, the major difference in the metal weld interfaces was the presence of M7C3 precipitates in the planar solidification region, which had formed in AISI 8630-IN625 but not in ASTM A182-F22-IN625. These precipitates make the weldment more susceptible to hydrogen embrittlement and provide a low energy fracture path between the discontinuous partially mixed zones.
机译:比较并对比了AISI 8630-IN625和ASTM A182-F22-IN625不同的金属焊接界面的微观结构和断裂形态,并将其作为焊后热处理(PWHT)时间的函数进行了对比。对于这两个系统,沿焊接界面的显微组织由铁基金属中的粗晶粒热影响区,紧接在熔合线Ni侧的不连续马氏体部分混合区和连续部分混合区组成。在Ni侧的部分混合区内,在20μm宽的平面凝固区内存在200nm宽的过渡区,其后是蜂窝状枝晶区,其中富含Nb-Mo的碳化物装饰了枝晶边界。尽管部分混合区的体积有所不同,但金属焊接界面的主要区别在于在AISI 8630-IN625中形成的平面凝固区域中存在M7 C3 沉淀但不在ASTM A182-F22-IN625中。这些沉淀物使焊件更容易受到氢脆的影响,并在不连续的部分混合区域之间提供低能量的断裂路径。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2012年第9期|p.3011-3022|共12页
  • 作者单位

    Department of Materials Science and Engineering, University of Illinois, Urbana, IL, 61801, USA;

    Department of Materials Science and Engineering, University of Illinois, Urbana, IL, 61801, USA;

    Corporate Strategic Research, ExxonMobil Research and Engineering Company, Annandale, NJ, 08801, USA;

    Trendsetter Engineering, Inc., Houston, TX, 77070, USA;

    ExxonMobil Development Company, Houston, TX, 77060, USA;

    ExxonMobil Development Company, Houston, TX, 77060, USA;

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