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Stability of fiber laser-MIG hybrid welding of high strength aluminum alloy 被引量:13
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作者 Han Yongquan Han Jiao +2 位作者 Chen Yan Yao Qinghu Wang peng 《China Welding》 CAS 2021年第3期7-11,共5页
The effect of fiber laser on MIG arc was investigated with 8 mm 7075-T6 high strength aluminum alloy as base material.The arc shape,droplet transfer form and electrical signal in the process of MIG welding and laser-M... The effect of fiber laser on MIG arc was investigated with 8 mm 7075-T6 high strength aluminum alloy as base material.The arc shape,droplet transfer form and electrical signal in the process of MIG welding and laser-MIG hybrid welding were analyzed.The stability of the hybrid welding process was evaluated by standard deviation analysis.The results show that with the increase of laser power,a large number of laser-induced plasma enters the arc column area,providing more conductive channels,which makes the heat of MIG arc more concentrated and the short circuit transition disappear.Due to the continuous effect of laser,the keyhole becomes a continuous electron emission source,and a stable cathode spot will be formed near the keyhole,which enhances the stability of MIG arc at the base current state.By using the method of standard deviation analysis,the voltage standard deviation of single MIG welding arc and laser-MIG hybrid arc within 4 seconds was calculated.The standard deviation of single MIG arc voltage was 1.05,and the standard deviation of MIG arc voltage in laser-MIG hybrid welding was 0.71–0.86,so the hybrid welding process was more stable. 展开更多
关键词 High strength aluminum alloy fiber laser-mig hybrid welding arc behavior electrical signal
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光纤激光-MIG复合焊接中厚板铝合金组织特征 被引量:6
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作者 胡佩佩 王春明 胡席远 《电焊机》 北大核心 2010年第11期42-46,56,共6页
研究了光纤激光-MIG复合焊接中厚板铝合金的焊缝组织。结果表明,光纤激光-MIG复合焊接可一次焊透8 mm厚铸造铝合金ZL114,焊缝中没有大的工艺气孔,也无热裂纹,但出现较多的冶金气孔。焊缝主要由α(Al)和Al-Si共晶组成,焊缝上部、中部和... 研究了光纤激光-MIG复合焊接中厚板铝合金的焊缝组织。结果表明,光纤激光-MIG复合焊接可一次焊透8 mm厚铸造铝合金ZL114,焊缝中没有大的工艺气孔,也无热裂纹,但出现较多的冶金气孔。焊缝主要由α(Al)和Al-Si共晶组成,焊缝上部、中部和下部组织变化不明显,焊缝没有分层现象。焊缝较热影响区和母材组织细密,焊缝和热影响区的共晶组织类似,但焊缝和母材共晶组织明显不同,体现在共晶形态和Si含量的不同,但母材的共晶组织在一定的热循环条件下,可以转变为与焊缝类似的共晶组织,伴随的是枝晶数量的减少,枝晶在母材和焊缝中都占绝大部分。 展开更多
关键词 光纤激光 激光-mig 复合焊接 组织特征
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不同热源作用下钢/铝异种金属对接接头的焊缝成形和性能分析 被引量:1
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作者 刘瑞琳 刘云褀 +3 位作者 门正兴 岳太文 李斌 张宏 《热加工工艺》 北大核心 2023年第15期123-127,共5页
采用三种热源(激光-MIG复合、单MIG、单激光)实现2 mm厚的SUS304不锈钢板和6061铝合金板的对接连接,对比了不同热源下钢侧的湿润铺展情况、焊缝中心组织、钢/铝界面层化合物和接头的拉伸性能。结果表明,激光-MIG复合热源下焊缝的正背面... 采用三种热源(激光-MIG复合、单MIG、单激光)实现2 mm厚的SUS304不锈钢板和6061铝合金板的对接连接,对比了不同热源下钢侧的湿润铺展情况、焊缝中心组织、钢/铝界面层化合物和接头的拉伸性能。结果表明,激光-MIG复合热源下焊缝的正背面铺展效果最好,而单激光热源下熔融金属很难铺展到钢侧。激光-MIG复合热源和单MIG热源下,焊缝中心组织为α-Al基体上分布着短棒状的Al-Si共晶体,钢/铝界面处有连续分布的锯齿状金属间化合物,界面层厚度分别约为3.6、3.3μm;单激光热源下焊缝中心组织为等轴晶上弥散分布着很多小块状的析出相,钢/铝界面层化合物呈针叶状并沿着铝焊缝生长,厚度约为5.7μm。复合热源下接头的抗拉强度最高,为226.5 MPa,达到铝合金母材的53.8%,断口有少量河流花样;单激光热源下的焊接接头的抗拉强度最低(67 MPa),断口大部分区域呈河流花样,属于典型的脆性断裂。 展开更多
关键词 钢/铝异种金属 激光-mig mig 单激光 金属间化合物
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焊接方法对铝合金焊接接头微弧氧化色差的影响
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作者 刘瑞琳 张梦莹 +3 位作者 门正兴 雷正 杨峰 朱宗涛 《精密成形工程》 北大核心 2024年第5期132-139,共8页
目的分析铝合金焊接接头微弧氧化过程中色差产生的原因。方法采用单激光和激光-MIG复合焊2种焊接方法焊接2A12铝合金,利用RGB值定性描述不同焊接试样的色差差异大小,采用金相、SEM和微区XRD观察2A12铝合金单激光和激光-MIG复合焊接头微... 目的分析铝合金焊接接头微弧氧化过程中色差产生的原因。方法采用单激光和激光-MIG复合焊2种焊接方法焊接2A12铝合金,利用RGB值定性描述不同焊接试样的色差差异大小,采用金相、SEM和微区XRD观察2A12铝合金单激光和激光-MIG复合焊接头微弧氧化前后的组织、微观形貌和表面物相组成。结果经微弧氧化处理后,2A12铝合单激光焊焊件的焊缝和母材之间无明显色差,2A12铝合金激光-MIG复合焊焊件的焊缝和母材之间存在明显色差,结合金相组织、表面和截面的SEM形貌以及表面EDS和XRD测试分析结果可知,成分和表面熔融物颗粒的大小不同是铝合金焊接接头微弧氧化色差形成的主要原因,焊接接头的组织对铝合金焊接接头微弧氧化色差的产生没有影响。结论单激光焊接接头微弧氧化后的氧化色差较激光-MIG复合焊接头的小;铝合金(2A12)焊接接头产生氧化色差主要是因为焊接接头的成分和表面熔融物颗粒大小不同,而组织对色差无影响。 展开更多
关键词 铝合金 单激光 激光-mig 微弧氧化 色差
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能量配比对铝合金激光-MIG复合焊接残余应力的影响
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作者 张鑫源 孙振邦 《焊接》 2024年第6期47-53,共7页
【目的】旨在探究不同能量配比下激光−MIG复合焊接7075铝合金的残余应力分布规律及机理。【方法】在焊接过程中对工件不同位置的焊接热循环进行了测量,焊后使用X射线衍射仪测量了激光−MIG复合焊接接头残余应力分布,分析了不同能量配比... 【目的】旨在探究不同能量配比下激光−MIG复合焊接7075铝合金的残余应力分布规律及机理。【方法】在焊接过程中对工件不同位置的焊接热循环进行了测量,焊后使用X射线衍射仪测量了激光−MIG复合焊接接头残余应力分布,分析了不同能量配比下接头残余应力的变化规律。【结果】结果表明,当总热输入不变时,随着激光功率增加及MIG功率减小,焊接穿透能力增强,焊缝熔深逐渐增加,熔宽逐渐减小;且当能量配比系数过大时,焊缝成形质量下降。残余应力在垂直于焊缝方向上整体呈现双峰分布,在焊缝区附近呈现拉应力,在母材区呈现压应力;在平行焊缝方向,残余应力表现为“压—拉—压”趋势。【结论】由于激光能量更为集中,热影响区峰值温度随能量配比系数的增加呈现明显的上升趋势,故而随着激光功率占比的增加,形成较高的温度梯度,导致集中受热区域的残余应力增大;同时,由于MIG功率占比的减小,焊缝及热影响区以外区域残余应力呈现明显的减小趋势。 展开更多
关键词 高强铝合金 激光−mig 能量配比 残余应力
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CHARACTERISTICS OF DROPLET TRANSFER IN CO_2 LASER-MIG HYBRID WELDING WITH SHORTCIRCUITING MODE 被引量:3
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作者 LEI Zhenglong CHEN Yanbin LI Liqun WU Lin 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2006年第2期172-175,共4页
LF6 aluminum alloy plates with 4.5 mm thickness are welded in this experiment. Welding is carried out by using the CO2 laser-MIG paraxial hybrid welding in fiat position. The experimental results indicate that the inh... LF6 aluminum alloy plates with 4.5 mm thickness are welded in this experiment. Welding is carried out by using the CO2 laser-MIG paraxial hybrid welding in fiat position. The experimental results indicate that the inherent droplet transfer cycle time of conventional MIG arc is changed due to the interaction between CO2 laser beam and MIG arc in the short-circuiting mode of laser-MIG hybrid welding. Because of the preheating action of CO2 laser to electrode and base material, the droplet transfer frequency of MIG arc is increased in the hybrid welding process. When laser power is increased to a certain degree, the droplet transfer frequency is decreased due to the effect of laser-induced keyhole. Furthermore, through analyzing the MIG welding current and arc voltage waveforms and the characteristics of droplet transfer in the hybrid welding process, the effect of laser energy and the action point between laser beam and arc on the frequency of droplet transfer and weld appearance is investigated in details. 展开更多
关键词 laser-mig hybrid welding Aluminum alloy Droplet transfer Weld appearance Welding current and voltage
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Microstructure and mechanical properties of 6061 aluminum alloy laser-MIG hybrid welding joint 被引量:3
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作者 FAN Cong YANG Shang-lei +2 位作者 DUAN Chen-feng ZHU Min-qi BAI Yi-shan 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第3期898-911,共14页
In this paper, 3 mm 6061 aluminum alloy sheets were welded by laser MIG hybrid welding. Based on the experiment, the best welding parameters were determined to ensure the penetration welding. The detailed microstructu... In this paper, 3 mm 6061 aluminum alloy sheets were welded by laser MIG hybrid welding. Based on the experiment, the best welding parameters were determined to ensure the penetration welding. The detailed microstructure,tensile and fatigue fracture morphology and surface fatigue damage of the welded joints were analyzed by optical microscope(OM), scanning electron microscope(SEM) and energy dispersive spectrometer(EDS). The results show that there are two main kinds of precipitates, one is the long Si rich precipitates at the grain boundaries, the other is the intragranular Cu rich precipitates. The tensile test results show that the tensile strength of the joint is 224 MPa, which is only 70.2% of the base metal. Through the analysis of tensile fracture, there are great differences in the formation of tensile dimple. In the tensile-tensile fatigue test with a stress rate of 0.1, the conditional fatigue limits of base metal and welded joint are 101.9 MPa and 54.4 MPa, respectively. By comparing the fatigue fracture of the welded joints under different stress amplitudes, it was found that the main factor leading to the fracture of the joint is porosity. Through further analysis of the pore defects, it was found that there are transgranular and intergranular propagation ways of microcracks in the pores, and the mixed propagation way was also found. 展开更多
关键词 aluminum alloy laser-mig hybrid welding fatigue property MICROSTRUCTURE mechanical properties
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The numerical simulation of laser-MIG hybrid welding for Invar alloy 被引量:2
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作者 Wang Yuhua Wei Yanhong +3 位作者 Zhan Xiaohong Zhu Zhenxin Yan Dongxiu Chen Jie 《China Welding》 EI CAS 2017年第4期29-36,共8页
Composites are widely applied to the manufacturing of aircraft in aviation. Forming of large-scale composite component in aircraft requires the corresponding mold with precise size. The laser-MIG hybrid welding has a ... Composites are widely applied to the manufacturing of aircraft in aviation. Forming of large-scale composite component in aircraft requires the corresponding mold with precise size. The laser-MIG hybrid welding has a significant advantage in the manufacturing of Invar mold for aircraft composites. This paper mainly introduces the application of the laser-MIG hybrid welding,and the distribution of thermal field and flow field on the Invar alloy laser-MIG hybrid three-layer welding is analyzed and discussed specifically. 展开更多
关键词 INVAR ALLOY laser-mig hybrid WELDING THERMAL FIELD flow FIELD
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Study of the Laser-MIG Hybrid Welded Al-Mg Alloy 被引量:1
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作者 Tan Bing,Wang Youqi,Cheng Donggao,Liu Hongwei,Ma Zhihua Welding Material and Engineering,Ningbo Branch of China Academy of Ordnance Science,Ningbo 315103,China 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2011年第S4期115-119,共5页
The technology of laser-MIG hybrid welding is hotspot in welding researched field at present.It can improve the velocity of the welding,reduce the distortion of the welding,optimize the structure of the welding joint ... The technology of laser-MIG hybrid welding is hotspot in welding researched field at present.It can improve the velocity of the welding,reduce the distortion of the welding,optimize the structure of the welding joint and etc..The 5052 aluminum alloy of the 10mm thick was welded by the laser-MIG hybrid welding.The structure,the alloy elements profile and the mechanical property of the welded joint are researched by the optical microscope,SEM,sclerometer and etc..The results showed:The medium thick Al alloy was welded in high speed by the laser-MIG hybrid welding.The appearance of the welding joint is well.The weld joint and the weld interface are fine.The intenerate region in the welding joint is small.The tensile strength in welding joint has achieved 94.4% of that in base metal. 展开更多
关键词 aluminum alloy laser-mig HYBRID WELDING microstructure mechanical PROPERTY
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Joint performance of CO2 laser-MIG hybrid welding 5083-H116 alloy
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作者 高志国 李亚玲 黄坚 《China Welding》 EI CAS 2012年第4期70-75,共6页
Laser-MIG hybrid welding process was dealt with 6 mm thick 5083Hl16 Al-Mg alloy plate in butt-joint configuration. Weld formation principle during hybrid welding was explained. The joint properties and microstructure ... Laser-MIG hybrid welding process was dealt with 6 mm thick 5083Hl16 Al-Mg alloy plate in butt-joint configuration. Weld formation principle during hybrid welding was explained. The joint properties and microstructure characteristics of welded joints were analyzed by tensile tests, fractographs observed by optical microscopy and scanning electron microscopy (SEM). Higher heat input could obtain better mechanical properties, and tensile strength and elongation reached 97.2%, 81% of the base metal, respectively. Fracture position traasited from fusion line to weld center in the higher heat input, and fracture location were only in the center of welded joints for the heat input relatively small. 展开更多
关键词 laser-mig welding 5083 aluminum alloy welded joint mechanical property
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Mathematical analysis of the role of recoil pressure in weld pool dynamics during laser-MIG hybrid welding
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作者 高志国 吴毅雄 《China Welding》 EI CAS 2010年第1期48-53,共6页
A mathematical model was established to simulate the weld pool development and dynamic process in stationary iaser-MlG hybrid welding. Surface tension and buoyancy were considered to calculate liquid metal flow patter... A mathematical model was established to simulate the weld pool development and dynamic process in stationary iaser-MlG hybrid welding. Surface tension and buoyancy were considered to calculate liquid metal flow patter, moreover, typical phenomena of MIG welding, such as filler droplets impinging weld pool, electromagnetic force in the weld pool, and typical phenomena of laser beam welding, such as recoil pressure, Inverse Bremsstrahlung absorption, Fresnel absorption were all considered in the model. The laser beam and arc couple effect were introduced into this model by the plasma width during hybrid welding. The role of recoil pressure in the weld formation was discussed. Transient weld pool shape and complicated liquid metal velocity distribution from two kinds weld pool to an unified weld pool were calculated. The simulated weld bead geometry with consideration recoil pressure was in good agreement with experimental measurement. 展开更多
关键词 laser-mig hybrid welding mathematical model weld pool fluid flow recoil pressure
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Effect of Arc Energy on Morphology and Microstructure of Laser-MIG Hybrid Welded Joints of Invar Alloy
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作者 ZHAO Jiayi GAO Qiyu +1 位作者 ZHANG Jiahao ZHAN Xiaohong 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2022年第S01期51-58,共8页
Laser-MIG hybrid welding experiments of 7 mm thick Invar alloy are carried out.The macro appearance of joints is observed and the influence of arc energy on the cross-section morphology is analyzed.The distribution of... Laser-MIG hybrid welding experiments of 7 mm thick Invar alloy are carried out.The macro appearance of joints is observed and the influence of arc energy on the cross-section morphology is analyzed.The distribution of temperature field is simulated to explain the relationship between heat effect and microstructure.Besides,the average grain size of weld under different arc energies is quantitatively studied.The results indicate that welded joints with uniformity and good formation are obtained.The weld width and the weld seam area increase and the depth to width ratio decreases with the increase of arc heat input.The transition of columnar crystals to equiaxed crystals is observed from the fusion line to the weld center.It is found that the higher the arc energy,the coarser the columnar crystal. 展开更多
关键词 Invar alloy laser-mig hybrid welding arc heat input macro morphology
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Detection of butt weld of laser-MIG hybrid welding of thin-walled profile for high-speed train
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作者 Qingxiang Zhou Fang Liu +3 位作者 Jingming Li Jiankui Li Shuangnan Zhang Guixi Cai 《Railway Sciences》 2022年第1期98-113,共16页
Purpose–This study aims to solve the problem of weld quality inspection,for the aluminum alloy profile welding structure of high-speed train body has complex internal shape and thin plate thickness(2–4 mm),the conve... Purpose–This study aims to solve the problem of weld quality inspection,for the aluminum alloy profile welding structure of high-speed train body has complex internal shape and thin plate thickness(2–4 mm),the conventional nondestructive testing method of weld quality is difficult to implement.Design/methodology/approach–In order to solve this problem,the ultrasonic creeping wave detection technology was proposed.The impact of the profile structure on the creeping wave detection was studied by designing profile structural test blocks and artificial simulation defect test blocks.The detection technology was used to test the actual welded test blocks,and compared with the results of X-ray test and destructive test(tensile test)to verify the accuracy of the ultrasonic creeping wave test results.Findings–It is indicated that that X-ray has better effect on the inspection of porosities and incomplete penetration defects.However,due to special detection method and protection,the detection speed is slow,which cannot meet the requirements of field inspection of the welding structure of aluminum alloy thin-walled profile for high-speed train body.It can be used as an auxiliary detection method for a small number of sampling inspection.The ultrasonic creeping wave can be used to detect the incomplete penetration welds with the equivalent of 0.25 mm or more,the results of creeping wave detection correspond well with the actual incomplete penetration defects.Originality/value–The results show that creeping wave detection results correspond well with the actual non-penetration defects and can be used for welding quality inspection of aluminum alloy thin-wall profile composite welding joints.It is recommended to use the echo amplitude of the 10 mm 30.2 mm 30.5 mm notch as the criterion for weld qualification. 展开更多
关键词 High-speed train Aluminum alloy profile laser-mig hybrid welding Nondestructive inspection X-ray radiography Ultrasonic creeping wave detection
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CO_2激光-MIG复合焊接射滴过渡的熔滴特性 被引量:31
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作者 雷正龙 陈彦宾 +1 位作者 李俐群 吴林 《应用激光》 CSCD 北大核心 2004年第6期361-364,共4页
本文以 5 .0mm厚LF6防锈铝合金板为试验材料 ,进行了CO2 激光 -MIG电弧射滴过渡的旁轴复合焊接试验。试验结果表明 ,在激光锁孔效应下 ,CO2 激光 -MIG复合焊接铝合金不仅具有在较宽的参数范围内焊缝成形美观 ,熔深熔宽增加 ,无气孔等优... 本文以 5 .0mm厚LF6防锈铝合金板为试验材料 ,进行了CO2 激光 -MIG电弧射滴过渡的旁轴复合焊接试验。试验结果表明 ,在激光锁孔效应下 ,CO2 激光 -MIG复合焊接铝合金不仅具有在较宽的参数范围内焊缝成形美观 ,熔深熔宽增加 ,无气孔等优点 ;而且还发现 ,与单MIG焊接的熔滴过渡特性相比 ,复合焊接过程中一方面由于激光能量和激光锁孔效应产生的大量金属等离子体对熔滴的热辐射作用 ,促进了熔滴过渡 ;另一方面由于激光等离子体对熔滴的吸引力和金属蒸气对熔滴的反冲力又阻碍了熔滴过渡 ,两者综合作用改变了熔滴过渡方式和过渡频率。在此基础上 ,通过对复合焊接过程中焊接电流和电弧电压波形以及熔滴过渡特征的分析 ,进一步研究了激光功率、激光与电弧的作用位置以及激光束离焦量对复合焊接过程中熔滴过渡频率的影响规律。 展开更多
关键词 复合焊接 熔滴过渡 防锈铝合金 mig 熔深 金属 焊接电流 CO2激光 改变 作用
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高速列车铝合金焊接的发展趋势 被引量:30
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作者 王元良 陈辉 《电焊机》 北大核心 2010年第10期9-16,共8页
阐述了高速列车用双丝MIG双弧焊和激光-MIG复合焊,着重阐述了解决高强铝合金焊接难题的新途径——搅拌摩擦焊的原理、设备、工艺及其接头强度,以及在高速列车铝合金焊接中的应用。
关键词 mig双弧焊 激光-mig复合焊 搅拌摩擦焊
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焊接方向对光纤激光-MIG复合焊接钛合金焊缝成形的影响 被引量:27
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作者 崔丽 贺定勇 +2 位作者 李晓延 蒋建敏 王智慧 《中国激光》 EI CAS CSCD 北大核心 2011年第1期62-69,共8页
新型光纤激光器具有光束质量好、电光转换效率高、维护费用低、抽运寿命长、可光纤传输及体积小等显著优势,并且由于波长短,几乎可以被大多数的金属和合金吸收,因此可适用于各种材料的焊接和切割,受到工业界广泛的关注。采用光纤激光与... 新型光纤激光器具有光束质量好、电光转换效率高、维护费用低、抽运寿命长、可光纤传输及体积小等显著优势,并且由于波长短,几乎可以被大多数的金属和合金吸收,因此可适用于各种材料的焊接和切割,受到工业界广泛的关注。采用光纤激光与惰性气体保护(MIG)电弧复合热源进行了TC4钛合金的焊接工艺试验,研究了激光引导电弧(LL)和电弧引导激光(AL)两种焊接方向对钛合金焊缝表面成形、横截面形貌、熔深、熔宽和余高的影响。试验结果表明,与AL方向焊接获得的焊缝相比,LL方向焊接获得焊缝的表面成形较好,焊缝的熔宽较宽,但熔深较小,而改变焊接方向对焊缝的余高影响很小。 展开更多
关键词 激光技术 焊接工艺 光纤激光mig复合焊接 焊接方向 焊缝成形 钛合金
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铝合金激光-MIG复合焊接气孔缺陷研究 被引量:25
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作者 黎硕 王军 +4 位作者 杨上陆 王春明 胡席远 陈志春 唐舵 《应用激光》 CSCD 北大核心 2013年第6期595-600,共6页
使用光纤激光器进行了5754铝合金激光-MIG复合焊搭接工艺试验,研究了铝合金激光-MIG复合焊接焊缝内部氢气孔、工艺气孔及夹层气孔的形貌与分布特征,深入分析了3类气孔的形成机理,探讨了铝合金激光-MIG复合焊接气孔的产生倾向。结果表明... 使用光纤激光器进行了5754铝合金激光-MIG复合焊搭接工艺试验,研究了铝合金激光-MIG复合焊接焊缝内部氢气孔、工艺气孔及夹层气孔的形貌与分布特征,深入分析了3类气孔的形成机理,探讨了铝合金激光-MIG复合焊接气孔的产生倾向。结果表明,氢气孔的形成与熔池中的氢析出、聚集与合并有关,工艺气孔产生的根源是焊接过程小孔的瞬间失稳,而夹层气孔则与搭接处的难熔氧化膜密切相关。铝合金激光-MIG复合焊接氢气孔产生倾向较电弧焊大,工艺气孔产生倾向较单独激光焊小。清除工件表面氧化膜、增加小孔稳定性、促进气泡逸出有利于减少焊缝内部的气孔。 展开更多
关键词 激光技术 激光一mig复合焊接 气孔 铝合金
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激光与电弧间距对激光复合焊熔滴过渡的影响 被引量:22
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作者 胡连海 黄坚 +2 位作者 庄凯 赵福辰 吴毅雄 《焊接学报》 EI CAS CSCD 北大核心 2010年第2期49-52,共4页
采用高速摄影设备研究了在两种焊接电流工艺参数下激光与电弧的间距变化对CO2激光-MIG电弧复合焊接熔滴过渡过程的影响.试验发现,在高速MIG焊接时熔滴过渡不稳定,在激光-MIG复合焊接时,由于激光光致等离子体对熔滴的热辐射作用和对电弧... 采用高速摄影设备研究了在两种焊接电流工艺参数下激光与电弧的间距变化对CO2激光-MIG电弧复合焊接熔滴过渡过程的影响.试验发现,在高速MIG焊接时熔滴过渡不稳定,在激光-MIG复合焊接时,由于激光光致等离子体对熔滴的热辐射作用和对电弧的吸引作用而改变了电弧的形态及相应的熔滴的受力状态,使得熔滴的过渡过程发生了改变,对于不同的焊接电流工艺参数,存在不同的最佳激光与电弧间距.结果表明,在最佳间距下,即两个等离子体的耦合作用良好时,熔滴过渡形式为单一的稳定射流过渡,电流电压恒定,焊缝成形良好. 展开更多
关键词 激光-mig复合焊 等离子体 熔滴过渡 耦合
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焊接工艺对6005A铝合金激光-MIG复合焊焊缝成形的影响 被引量:23
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作者 雷祥 单际国 +2 位作者 郑世卿 陈武柱 任家烈 《焊接》 北大核心 2008年第7期25-32,共8页
采用CO2激光-MIG复合焊焊接2.5mm厚的6005A铝合金板,基于正交试验方法研究了焊接工艺参数对焊缝成形的影响。试验结果表明,对复合焊焊缝熔透状态影响显著性从大到小的工艺参数依次为:焊接速度、MIG电流、MIG电压和激光功率,其中前两者... 采用CO2激光-MIG复合焊焊接2.5mm厚的6005A铝合金板,基于正交试验方法研究了焊接工艺参数对焊缝成形的影响。试验结果表明,对复合焊焊缝熔透状态影响显著性从大到小的工艺参数依次为:焊接速度、MIG电流、MIG电压和激光功率,其中前两者影响最为突出。在熔透状态不发生显著变化时,对复合焊焊缝表面成形影响显著性从大到小的工艺参数依次为:MIG电压、焊接速度、激光功率和MIG电流。根据正交试验结果优化了激光-电弧复合焊接6005A的工艺参数,建立了工艺参数选择原则,根据此原则选择合适的参数获得了最佳的焊缝成形。 展开更多
关键词 6005A铝合金 CO2激光-mig复合焊 焊缝熔透状态 焊缝表面成形
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激光-MIG复合焊中激光与电弧前后位置对焊缝成形的影响 被引量:22
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作者 高志国 黄坚 +1 位作者 李亚玲 吴毅雄 《焊接学报》 EI CAS CSCD 北大核心 2008年第12期69-73,共5页
为了便于激光束焊接高反射率的铝合金,研究了激光-MIG复合焊方法中激光与电弧前后位置对焊缝成形的影响。激光入射角度在电弧和激光束前后相对位置不同情况下,分别对应不同的焊缝成形机制会对焊缝的表面和内部成形产生比较大的影响,激... 为了便于激光束焊接高反射率的铝合金,研究了激光-MIG复合焊方法中激光与电弧前后位置对焊缝成形的影响。激光入射角度在电弧和激光束前后相对位置不同情况下,分别对应不同的焊缝成形机制会对焊缝的表面和内部成形产生比较大的影响,激光束在前电弧在后,焊缝上表面成形均匀饱满;而电弧在前激光束在后,焊缝表面会出现倾斜沟槽。通过对焊缝不同位置进行EDX和微观硬度分析可以明显发现两种情况下Mg元素含量从焊缝上表面到底部依次增加,但硬度分布略有差别:激光在前电弧在后焊缝上部的硬度小于底部,而电弧在前激光在后焊缝上部的硬度大于焊缝的底部。对铝合金施焊之后的焊缝表面及其两侧会有一层黑色物质,通过EDX分析可以确定为铝、镁的氧化物。 展开更多
关键词 铝合金 焊缝成形 激光-mig复合焊 激光入射角
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