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Development of ultra-narrow gap welding with constrained arc by flux band 被引量:26
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作者 朱亮 郑韶先 陈剑虹 《China Welding》 EI CAS 2006年第2期44-49,共6页
Narrow gap welding has merits of lower residual stress and distortion, and superior mechanical properties of joints. A major problem of this process is the lack of fusion in sidewalls, hence many methods of weaving ar... Narrow gap welding has merits of lower residual stress and distortion, and superior mechanical properties of joints. A major problem of this process is the lack of fusion in sidewalls, hence many methods of weaving arc have been developed to increase heating effect of arc to the sidewalls. In this work, a new approach Without weaving arc is attempted to ensure the penetration of sidewall, and ultra-narrow gap welding with the gap of less than 5 mm was executed successfully. In this approach, the width of gap is decreased further, so that the sidewalls are made within range of arc heating to obtain the enough heat. In order to prevent the arc from being attracted by sidewall and going up along the sidewalls, two pieces of flux bands consisting of the specified aggregates are adhered to the sidewalls to constrain the arc. In addition, when flux band being heated by the arc, slag and gases are formed to shield the arc and the weld pool. This technique was tested on the welding experiment of pipeline steel with thickness of 20 mm. The involved welding parameters were obtained, that is, the width of gap is 4 mm, the welding current 250 A, and the heat input 0. 5 kJ/mm, the width of heat-affected zone is 1 -2 mm. 展开更多
关键词 ultra-narrow gap welding metal are welding flux band
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Weld formation and heating mechanism in ultra-narrow gap withconstricted arc by ultra-fine granular flux 被引量:6
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作者 郑韶先 李小雷 +1 位作者 车军 李德福 《China Welding》 EI CAS 2012年第1期39-43,共5页
Ultra-narrow gap welding (UNGW) process with high stabilization, reliability and without spatter can be achieved with constricted arc by molten slag wall, which is made from melted flux. The experiments are carried ... Ultra-narrow gap welding (UNGW) process with high stabilization, reliability and without spatter can be achieved with constricted arc by molten slag wall, which is made from melted flux. The experiments are carried out by changing voltage under different currents. The results indicate voltage range being fit for UNGW is about 22 -31 V under the current range of 200 -320 A. With the increasing of voltage, weld formation of UNGW has the law of lack of fusion on sidewall, good weld and undercut in turn under a certain current. In addition, the action relationships among arc, molten slag wall and sidewalls can be improved by properly adjusting voltage and current of arc, which makes cathode spot properly distribute in ultra-narrow gap. Therefore, the effective control of weld formation of UNGW has been achieved. 展开更多
关键词 ultra-fine granular flux constricted arc ultra-narrow gap welding weld formation
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焊剂带约束超窄间隙焊接母材熔化及熔池形成 被引量:15
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作者 朱亮 金将 +1 位作者 苗红丽 李渊博 《焊接学报》 EI CAS CSCD 北大核心 2010年第9期9-12,共4页
为认识超窄间隙焊接母材熔化特性及熔池形成机制,在放置焊剂带的I形坡口中进行熔化极电弧焊接试验,采用一种快速中断电弧的方法,保留焊接过程中焊剂带、坡口底部和侧壁的熔化形态.结果表明,电弧区焊剂带热收缩效应和固壁约束作用能有效... 为认识超窄间隙焊接母材熔化特性及熔池形成机制,在放置焊剂带的I形坡口中进行熔化极电弧焊接试验,采用一种快速中断电弧的方法,保留焊接过程中焊剂带、坡口底部和侧壁的熔化形态.结果表明,电弧区焊剂带热收缩效应和固壁约束作用能有效约束坡口中电弧作用范围.当选择合适的侧壁根部焊剂带裸露高度时,电弧加热区域控制在坡口底部和侧壁根部,熔滴过渡的冲击作用及电弧力集中在熔池前端,使熔融金属产生有利于排出熔池中气体和熔渣的流动,形成无缺陷焊缝.当侧壁根部焊剂带裸露高度大于一定值时,电弧所受约束减小,加热区域扩展到较大范围的坡口侧壁上,熔滴过渡分散在坡口底部和侧壁,熔融金属难以形成贯穿熔池的流动,焊缝存在较多孔洞. 展开更多
关键词 超窄间隙焊接 焊剂带约束电弧 母材熔化 熔池
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高效埋弧焊技术的发展及应用 被引量:16
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作者 武春学 张俊旭 +1 位作者 朱丙坤 顾新盛 《热加工工艺》 CSCD 北大核心 2009年第23期173-177,共5页
埋弧焊具有熔敷率高、焊接质量好等优点,是当今焊接生产中普遍使用的熔焊方法之一。介绍了多丝埋弧焊、带极埋弧焊、添加合金粉末埋弧焊、窄间隙埋弧焊、冷丝和热丝填丝埋弧焊等多种高效埋弧焊方法,并就各自的工艺特点、国内的应用情况... 埋弧焊具有熔敷率高、焊接质量好等优点,是当今焊接生产中普遍使用的熔焊方法之一。介绍了多丝埋弧焊、带极埋弧焊、添加合金粉末埋弧焊、窄间隙埋弧焊、冷丝和热丝填丝埋弧焊等多种高效埋弧焊方法,并就各自的工艺特点、国内的应用情况进行了分析与总结。 展开更多
关键词 多丝埋弧焊 带极 合金粉末 窄间隙 冷丝和热丝
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超窄间隙焊接中焊剂片与电弧相互作用机制分析 被引量:10
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作者 龚练 朱亮 +1 位作者 张爱华 周鸿翔 《焊接学报》 EI CAS CSCD 北大核心 2017年第12期57-60,共4页
通过向间隙宽度为4 mm的I形坡口中预置焊剂片进行超窄间隙焊接试验,采用一种快速中断电弧的方法,保留焊接过程中焊剂片、坡口底部和侧壁的熔化形态,分析了焊剂片与电弧相互作用面积对电弧受约束程度的影响.结果表明,增加电弧电压或降低... 通过向间隙宽度为4 mm的I形坡口中预置焊剂片进行超窄间隙焊接试验,采用一种快速中断电弧的方法,保留焊接过程中焊剂片、坡口底部和侧壁的熔化形态,分析了焊剂片与电弧相互作用面积对电弧受约束程度的影响.结果表明,增加电弧电压或降低焊剂片熔点,可使焊剂片熔化面积增大,固壁约束面积减小.当焊剂片熔化面积大于一定值而小于固壁约束面积时,电弧受约束程度适中,电弧加热区域被控制在坡口根部和两侧壁,从而获得成形良好的焊缝.当焊剂片熔化面积大于固壁约束面积时,电弧受约束程度减弱,电弧加热区域集中在两侧壁上,很难形成一个完整的熔池,最终形成了带有大量孔洞的焊缝. 展开更多
关键词 超窄间隙焊接 焊剂片熔化面积 固壁约束面积 电弧受约束程度
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不同形状金属丝网衬垫焊剂颗粒工艺对超窄间隙焊缝成形的影响 被引量:1
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作者 郑韶先 韩峰 +1 位作者 李小雷 李芳红 《焊接学报》 EI CAS CSCD 北大核心 2013年第3期77-80,117,共4页
金属丝网衬垫焊剂颗粒工艺对超细颗粒焊剂约束电弧超窄间隙焊缝成形具有重要影响.文中分别采用"V"形、"U"形和"半圆"形三种不同形状金属丝网衬垫焊剂颗粒工艺进行了超窄间隙焊接,并根据所得超窄间隙焊缝... 金属丝网衬垫焊剂颗粒工艺对超细颗粒焊剂约束电弧超窄间隙焊缝成形具有重要影响.文中分别采用"V"形、"U"形和"半圆"形三种不同形状金属丝网衬垫焊剂颗粒工艺进行了超窄间隙焊接,并根据所得超窄间隙焊缝横截面形貌,分析了不同形状金属丝网衬垫焊剂颗粒工艺对超窄间隙焊缝成形的影响,以及该工艺防止超窄间隙电弧断续状燃烧的机制.结果表明,随着焊剂对间隙侧壁下方待熔化表面覆盖面积的增大,焊剂熔化对电弧的冷却收缩作用增强,电弧的约束角α减小,以致电弧在侧壁的加热熔化高度hm减小,当hm小于熔化焊丝在超窄间隙内的填充高度时即形成凸焊缝.金属丝网对焊剂颗粒的衬垫有利于电弧阴极斑点在工件待熔化表面快速形成,并加快覆盖在工件待熔化表面区域焊剂颗粒的熔化速度,从而使得电弧阴极斑点区的水平移动速度等于焊丝端头的水平移动速度,以致电弧弧柱未被拉长而连续稳定燃烧. 展开更多
关键词 金属丝网衬垫焊剂颗粒 超窄间隙焊接 焊缝成形
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