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首页> 外文期刊>Science and Technology of Welding and Joining >Investigation of solidification cracking susceptibility during laser beam welding using an in-situ observation technique
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Investigation of solidification cracking susceptibility during laser beam welding using an in-situ observation technique

机译:使用原位观察技术研究激光束焊接期间凝固裂缝敏感性

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摘要

In recent years, laser beam welding has found wide applications in many industrial fields. Solidification cracks are one of the most frequently encountered welding defects that hinder obtaining a safe weld joint. Decades of research have shown that one of the main causes of such cracks are the strain and the strain rate. Obtaining meaningful measurements of these strains has always been a major challenge for scientists, because of the specific environment of the measurement range and the many obstacles, as well as the high temperature and the plasma plume. In this study, a special experimental setup with a high-speed camera was employed to measure the strain during the welding process. The hot cracking susceptibility was investigated for 1.4301 stainless steel, and the critical strain required for solidification crack formation was locally and globally determined.
机译:近年来,激光束焊接在许多工业领域中发现了广泛的应用。 凝固裂缝是妨碍获得安全焊接接头的最常遇到的焊接缺陷之一。 几十年的研究表明,这种裂缝的主要原因之一是应变和应变率。 获得这些菌株的有意义测量一直是科学家的主要挑战,因为测量范围的特定环境以及许多障碍物,以及高温和等离子体羽流。 在本研究中,采用具有高速摄像机的特殊实验设置来测量焊接过程中的应变。 对1.4301不锈钢研究了热裂化敏感性,局部和全球测定凝固裂纹所需的临界应变。

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