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首页> 外文期刊>Journal of Materials Engineering and Performance >Fatigue Crack Growth Behavior of a New Type of 10% Cr Martensitic Steel Welded Joints with Ni-Based Weld Metal
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Fatigue Crack Growth Behavior of a New Type of 10% Cr Martensitic Steel Welded Joints with Ni-Based Weld Metal

机译:一种新型10%CR马氏体钢焊接接头的疲劳裂纹生长行为,具有Ni的焊缝金属

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摘要

In the present work, the fatigue crack growth (FCG) behavior of a new type of 10% Cr martensitic steel welded joints with Ni-based weld metal was comparatively studied for different regions including base metal (BM), heat-affected zone (HAZ) and weld metal (WM). FCG results indicated that the tempered lath martensite BM has a higher fatigue crack growth resistance than the tempered granular martensite HAZ that without a typical lath structure. In comparison, the austenitic WM has the highest fatigue crack growth threshold. Meanwhile, due to the microstructural and chemical compositional differences between BM and WM, a clear interface existed in the welded joints. At the region of the interface, the microstructures were physically connected and an element transition layer was formed. Although the starter notch was positioned at the region of interface, the fatigue crack gradually deviated from the interface and ultimately propagated along the inter-critically heat-affected zone. The difference in microstructure is considered as the primary factor that resulted in the different fatigue crack growth behaviors of the welded joints. In addition, the continuous microstructure connection and composition transition at the interface contributed to the good fatigue resistance at this region.
机译:本文对一种新型10%Cr马氏体钢与镍基焊缝金属焊接接头在母材(BM)、热影响区(HAZ)和焊缝金属(WM)不同区域的疲劳裂纹扩展行为进行了对比研究。FCG结果表明,回火板条马氏体BM比没有典型板条组织的回火粒状马氏体HAZ具有更高的疲劳裂纹扩展抗力。相比之下,奥氏体WM具有最高的疲劳裂纹扩展阈值。同时,由于BM和WM之间的显微组织和化学成分差异,焊接接头中存在清晰的界面。在界面区域,微结构物理连接,形成元素过渡层。虽然起始缺口位于界面区域,但疲劳裂纹逐渐偏离界面,并最终沿临界热影响区扩展。显微组织的差异被认为是导致焊接接头疲劳裂纹扩展行为不同的主要因素。此外,界面处连续的显微组织连接和成分转变有助于该区域具有良好的抗疲劳性能。

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