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首页> 外文期刊>Journal of Materials Science >In situ observation of solidification crack propagation for type 310S and 316L stainless steels during TIG welding using synchrotron X-ray imaging
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In situ observation of solidification crack propagation for type 310S and 316L stainless steels during TIG welding using synchrotron X-ray imaging

机译:原位观察凝固裂纹传播310s和316L不锈钢在TIG焊接期间使用Synchrotron X射线成像

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摘要

In situ observation of solidification cracking at the weld bead during tungsten inert gas (TIG) welding for type 310S and 316L austenitic stainless steels without the application of an external force was carried out using synchrotron X-ray radiography. The temperature distribution at the weld bead was simultaneously measured using a high-speed camera to directly determine the temperature, in which the propagation of solidification cracking occurred. The solidification cracking was clearly identified and it continuously propagated in the welding direction. The interface of the solidification cracking showed an irregular and zigzag morphology. It was found that the tip velocity of the solidification cracking periodically changed by translating between the high solid fraction (~ 90%) and the relatively lower solid fraction (~ 70%) regions at the centerline of the weld bead for both the type 310S and 316L stainless steels. The solidification cracking propagated at the lower temperature than the solidus temperature due to the segregation of low melting-point components. The tensile strain and strain rate were highly localized in the propagated area every 0.1 s which was the almost same as the time period, in which the tip velocity of the solidification cracking remarkably increased. The periodicity of the solidification cracking velocity at the weld bead can be explained by the dendrite morphology at each solid fraction and strain rate.
机译:采用同步辐射X射线照相技术,对310S和316L奥氏体不锈钢在不施加外力的情况下进行钨极惰性气体(TIG)焊接时焊缝处的凝固裂纹进行了原位观察。使用高速摄像机同时测量焊道处的温度分布,以直接确定发生凝固裂纹扩展的温度。凝固裂纹清晰可见,并沿焊接方向不断扩展。凝固裂纹界面呈不规则的锯齿状形貌。研究发现,对于310S和316L型不锈钢,凝固裂纹尖端速度通过在焊缝中心线处的高固体分数(~90%)和相对较低固体分数(~70%)区域之间转换而周期性变化。由于低熔点组分的偏析,凝固裂纹在低于固相线温度的温度下扩展。每0.1s,拉伸应变和应变率高度集中在扩展区,这与凝固裂纹尖端速度显著增加的时间段几乎相同。焊道处凝固裂纹速度的周期性可以用每个固体分数和应变速率下的枝晶形态来解释。

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  • 来源
    《Journal of Materials Science》 |2021年第17期|共11页
  • 作者单位

    Osaka Univ Joining &

    Welding Res Inst 11-1 Mihogaoka Ibaraki Osaka 5670047 Japan;

    Osaka Univ Joining &

    Welding Res Inst 11-1 Mihogaoka Ibaraki Osaka 5670047 Japan;

    Osaka Univ Joining &

    Welding Res Inst 11-1 Mihogaoka Ibaraki Osaka 5670047 Japan;

    Osaka Univ Joining &

    Welding Res Inst 11-1 Mihogaoka Ibaraki Osaka 5670047 Japan;

    Osaka Univ Joining &

    Welding Res Inst 11-1 Mihogaoka Ibaraki Osaka 5670047 Japan;

    Japan Synchrotron Radiat Res Inst 1-1-1 Kouto Sayo Cho Kobe Hyogo 6795198 Japan;

    Japan Synchrotron Radiat Res Inst 1-1-1 Kouto Sayo Cho Kobe Hyogo 6795198 Japan;

    Osaka Univ Joining &

    Welding Res Inst 11-1 Mihogaoka Ibaraki Osaka 5670047 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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