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首页> 外文期刊>Materials transactions >Effect of Elapsed Time Following Arc Welding on the Static Strength of Lap Fillet Joints in High-Strength Steel Sheets
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Effect of Elapsed Time Following Arc Welding on the Static Strength of Lap Fillet Joints in High-Strength Steel Sheets

机译:电弧焊接后经过时间对高强度钢板圈圆角关节静力的影响

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摘要

The effects of elapsed time following gas metal arc welding (GMAW) on the static strength of lap fillet-welded joints were investigated using a static tensile test. It was observed that the static joint strength did not exhibit a time dependency for cases where the fracture was located in each base metal or the softened heat affected zone (HAZ). In addition, the static joint strength was not observed to have a time dependency for cases where a wire with low-hardness weld metal was used and where the fracture was located in the weld metal. However, the static joint strength was low immediately after welding, and increased over time when a wire with high-hardness weld metal was used. It was found that diffusible hydrogen that entered the weld metal during arc welding and was emitted over time was the cause of the time dependency of joint strength. High-hardness weld metal was sensitive to diffusible hydrogen; therefore, time dependency was observed only when wires with high-hardness weld metal were used and the fracture positions were located in the weld metal during tensile tests. In addition, a correlation between the storage temperature following welding and the static strength or diffusible hydrogen content of welded parts was found: the higher the storage temperature, the earlier the joint strength increases, and the earlier the diffusible hydrogen decreases.
机译:使用静态拉伸试验研究了气金属弧焊(GMAW)后经过的时间对Lap圆角焊接接头的静强度的影响。观察到静态关节强度没有表现出骨折位于每个贱金属或软化热影响区(HAZ)中的情况下的时间依赖性。另外,未观察到静态接合强度对于使用具有低硬度焊接金属的焊丝的情况以及裂缝位于焊接金属中的情况的情况下具有时间依赖性。然而,焊接后静态接合强度立即低,并且当使用高硬度焊接金属的电线时随着时间的推移而增加。发现,在电弧焊接期间进入焊接金属并随着时间的推移发出的扩散氢是关节强度的时间依赖性的原因。高硬度焊接金属对扩散氢敏感;因此,仅当使用具有高硬度焊接金属的导线并且在拉伸试验期间位于焊接金属中时,才观察到时间依赖性。此外,发现焊接后储存温度与静态强度或焊接部件扩散氢含量之间的相关性:储存温度越高,接头强度越升高,并且较早的扩散氢降低。

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