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螺旋埋弧焊管超高速预焊工艺研究 被引量:1
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作者 李伟 《焊管》 2017年第8期12-18,共7页
在两步法(预精焊法)制造螺旋埋弧焊管生产过程中,预焊质量对精焊及焊管成品质量的影响较大。为了提高预焊焊接质量,设计了超高速CO2气体保护的预焊工艺,调整分析了螺旋埋弧焊管超高速预焊时的电弧形态、熔滴过渡形式,阐明了飞溅物产生... 在两步法(预精焊法)制造螺旋埋弧焊管生产过程中,预焊质量对精焊及焊管成品质量的影响较大。为了提高预焊焊接质量,设计了超高速CO2气体保护的预焊工艺,调整分析了螺旋埋弧焊管超高速预焊时的电弧形态、熔滴过渡形式,阐明了飞溅物产生和驼峰焊道的形成过程。通过系列试验研究了不同焊接工艺参数对飞溅物产生和焊缝成形的影响规律。研究结果表明,大电流、低电压、保护气体的氧化性、合适的坡口形状和焊接位置都能促进粗丝高速CO2气体保护焊获得稳定的焊接过程。同时,通过焊接试验得到了超高焊速下无有害飞溅物和焊缝成形良好的工艺参数,对指导实际生产具有重要意义。 展开更多
关键词 螺旋埋弧焊管 预焊 焊缝形状 飞溅物 驼峰焊道 超高速焊接
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Achieving superior low temperature and high strain rate superplasticity in submerged friction stir welded Ti-6Al-4V alloy 被引量:2
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作者 吴利辉 张昊 +3 位作者 曾祥浩 薛鹏 肖伯律 马宗义 《Science China Materials》 SCIE EI CSCD 2018年第3期417-423,共7页
The superplastic forming of Ti alloy welds has great application prospects in producing integrated components. However, the nugget zone(NZ) of the Ti alloy welds,produced by fusion welding or conventional friction s... The superplastic forming of Ti alloy welds has great application prospects in producing integrated components. However, the nugget zone(NZ) of the Ti alloy welds,produced by fusion welding or conventional friction stir welding(FSW), consists of lamellar micro structure, which exhibits either low superplasticity or high superplastic temperautre and low strain rate. As a result, the NZ plays a leading role in hindering the superplastic forming of the whole welds.In this study, submerged friction stir welding(SFSW) was conducted in Ti-6Al-4 V alloy for the first time, and a defectfree weld with the NZ consisting of a strip microstructure was obtained. The NZ exhibited a low-temperature superplasticity at 600℃, which was the lowest superplastic temperature ever reported in the Ti alloy welds. Besides, at 800℃, the NZ showed high strain rate(3×10^(-2) s^(-1)) superplasticity and a largest elongation of 615% at 1×10^(-3) s^(-1). Compared to conventional FSW joints, the NZ of SFSW joint exhibited a much lower flow stress and a decrease in optimal superplastic temperature by 100℃. This is mainly attributed to the easy globularization of the strip microstructure, enhancing the ability of grain/phase boundary sliding. 展开更多
关键词 titanium alloys friction stir welding SUPERPLASTICITY microstructure
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