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The influence of welding parameters on the joint strength of resistance spot-welded titanium sheets

机译:焊接参数对电阻点焊钛板接头强度的影响

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In this study, commercially pure (CP) titanium sheets (ASTM Grade 2) were welded by resistance spot welding at different welding parameters and under different welding environments. The welded joints were subjected to tensile-shearing tests in order to determine the strength of the welded zones. In addition, hardness and microstructural examinations were carried out in order to examine the influence of welding parameters on the welded joints. The results showed that increasing current time and electrode force increased the tensile shearing strength and the joints obtained under the argon atmosphere gave better tensile-shearing strength. Hardness measurement results indicated that welding nugget gave the highest hardness and the heat affected zone (HAZ) and the base metal followed this. The argon gas used during the welding process was seen to have no influence on the hardness values. Microstructural examinations revealed that the deformations took place in the welding zone during welding. The twinning took place in the grains. High electrode force and high weld cycles, were used during the welding, increased the twinning.
机译:在这项研究中,通过电阻点焊在不同的焊接参数和不同的焊接环境下焊接了商业纯(CP)钛板(ASTM 2级)。为了确定焊接区域的强度,对焊接接头进行了拉伸剪切试验。此外,还进行了硬度和显微组织检查,以检查焊接参数对焊接接头的影响。结果表明,增加电流时间和电极力可提高拉伸剪切强度,在氩气氛下获得的接头具有更好的拉伸剪切强度。硬度测量结果表明,焊接熔核的硬度最高,而热影响区(HAZ)和母材紧随其后。焊接过程中使用的氩气对硬度值没有影响。显微组织检查表明,焊接过程中焊接区发生了变形。孪生发生在谷物中。在焊接过程中使用了高电极力和高焊接周期,增加了孪晶。

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