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受控短路过渡CO_2焊焊接电流波形参数优化 被引量:5

Optimization of welding current waveform parameters in controlled short circuiting transfer GMAW
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摘要 对于波控短路过渡CO2焊,电弧峰值电流Ipa,电弧基值电流Iba以及由峰值电流切换到基值电流所用的时间(拖尾时间tw)等电流波形参数是可调的,它们对过渡稳定性和焊缝质量具有很大影响,利用正交试验,对不同送丝速度下电流波形参数进行了优化.结果表明,电弧峰值电流的影响最大.送丝速度为320 cm/min时,电流波形参数Ipa,Iba和tw无论如何调整,飞溅率均在2.5%以上,焊缝表面质量差;送丝速度为360~400 cm/min时,最优电流波形参数为:Ipa=440 A,Iba=50 A,tw=0.6 ms.而在400 cm/min的送丝速度下,在宽广的电流波形参数范围内(Ipa为440~480 A,Iba为30~50A,tw为0.6~0.8 ms)均可获得飞溅率极低、焊缝表面质量好的稳定焊接过程. For controlled short circuiting transfer GMAW,peak current Iap,background arcing current Iaband tail-out time tw( time required for welding current to decrease from Iapto Iab)are the adjustable waveform parameters,which have significant influence on the process stability,spatter rate and weld appearance. Using orthogonal experiment method,waveform parameters were optimized at different wire feeding rate. The results show that peak welding current has the strongest influence among the three waveform parameters. At wire feeding rate of 320 cm /min,the spatter rate is more than 2. 5%,the weld appearance is always rough and bad no matter what levels of the waveforms parameters were used. With the wire feeding rate varying from 360 to 400 cm /min,the optimal waveform parameters keep constant,i. e. Ipa= 440 A,Iba= 50 A,and tw= 0. 6 ms. At wire feedingrate of 400 cm /min,the stable welding process with a spatter rate of less than 0. 35% and excellent weld appearance can be achieved in quite wide ranges of waveform parameters( Ipais 440-480 A,Ibais 30-50 A,and twis 0. 6-0. 8 ms).
出处 《焊接学报》 EI CAS CSCD 北大核心 2014年第7期79-82,117,共5页 Transactions of The China Welding Institution
基金 山东省自然科学基金资助项目(ZR2010EZ005)
关键词 二氧化碳气体保护焊 飞溅 短路过渡 CO2 arc welding spatter short circuiting transfer
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