共查询到10条相似文献,搜索用时 171 毫秒
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综述了涉及工程应用的潜弧熔化极气体保护焊(Buried arc gas metal arc welding,BA-GMAW)熔滴过渡形态特征.结果表明,在大电流和相应的焊接参数下,BA-GMAW工艺的熔滴过渡形态有3种,即呈滴状过渡、摆动过渡和旋转过渡.BA-GMAW电弧空腔中电弧形态属于连续、敞开、非活动型;电弧空腔... 相似文献
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在晶体管脉冲 CO_2焊研究的基础上,提出了利用双电源产生脉冲电流进行CO_2气保焊的方法,确定了两种焊丝直径下能使电弧稳定的脉冲参数变化范围,阐述了主要脉冲电流参数对电弧稳定性、熔滴过渡和飞溅的影响。研究表明:与常规 CO_2气保焊相比,在平均电流为200~300A 时,利用这种方法焊接可以在很大程度上减少飞溅,并能改善焊缝成型。 相似文献
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EffectofarcphysicsondevelopingCO_2arcweldingYinShuyian;andGengZheng(HarbinInstituteofTechnology)Abstract:Themechanismsofweldf?.. 相似文献
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Xiaoyu Cai Chenglei Fan Chunli Yang Xiangru Ji Li Hu 《Science & Technology of Welding & Joining》2017,22(5):446-453
The effects of shielding gas composition in tandem narrow gap gas metal arc welding were studied. The shielding gas included argon, carbon dioxide and helium. The arc characteristics and droplet transfer process were analysed. The results show that in the same welding parameters, the trail wire welding current is higher than the lead wire welding current. With the increase of carbon dioxide content, the welding currents of two wires decrease, and the trail wire droplet transfer mode transforms from spray transfer to projected transfer. With the increase of helium content, the welding currents increase and the lead wire droplet transfer mode transforms from projected transfer to spray transfer. The weld width is the largest when the shielding gas mixture is 80%Ar10%CO210%He. 相似文献
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在CO2气体保护焊过程中,利用表面张力过渡方法解决焊接过程中的飞溅问题时,准确地提取缩颈形成时刻这一信息是非常关键的。在缩颈形成的瞬间,电弧电压曲线先出现一个上凹的拐点,然后再急剧上升。若能从电弧电压信号中提取出拐点发生时突变的信息,则可望提取到缩颈发生的特征信息。作者利用小波分析方法具有良好的时域、频域局域性,能够很好地检测信号的局部奇异性的特点,对电弧电压信号进行了局部奇异性的检测。结果表明,小波分析方法可检测到电弧电压信号发生拐点时的位置及突变程度,可准确地提取出缩颈发生的特征信息。 相似文献
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药芯焊丝CO2气体保护焊熔滴行为对药芯焊丝工艺性有直接的影响.采用焊接过程的高速摄影技术和汉诺威焊接质量分析系统对药芯焊丝的熔滴过渡形态进行观察分析.证实随着焊接参数的变化,药芯焊丝可能形成排斥过渡、表面张力过渡和细熔滴过渡.在排斥过渡时,由于大熔滴在焊丝端部较长时间的停留,出现明显的熔滴自身的爆炸飞溅,气体的强烈逸出飞溅等现象,表面张力过渡是介于大熔滴的排斥过渡与细熔滴过渡二者之间的一种过渡形式.细熔滴过渡时,焊接过程稳定、飞溅小、焊缝成形良好、生产效率较高,是药芯焊丝理想的过渡形式.在细熔滴的过渡的条件下形成的渣柱对熔滴的过渡起着导向作用. 相似文献
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Droplet transition for plasma-MIG welding on aluminium alloys 总被引:1,自引:0,他引:1
The synchronous acquisition system of droplet image inspection and arc electric signals were established and the droplet transition characteristics of aluminum alloys were researched in the plasma-MIG welding process.Typical droplet transition modes include globular transfer mode,short circuiting transfer mode,metastable spray transfer mode and projected transfer mode.The result indicates that MIG droplet transfer frequency and droplet transfer modes are changed by introducing the plasma arc in the plasma-MIG welding process compared with the MIG welding on the aluminum alloys,which broadens the range of welding parameters when the stable welding process proceeds.The metastable spray transfer and projected transfer mode are proved to be the most optimal modes by comparing the stability of electronic signal,droplet transition,weld appearance and weld penetration. 相似文献