首页> 外文期刊>Sodagem & inspecao >Efeito da Adi?§?£o de H2 aos Gases de Prote?§?£o Convencionais na Soldagem GMAW do A?§o C e Transfer?ancia por Curto-Circuito. Parte 1: Qualidade do Cord?£o e Estabilidade da Transfer?ancia
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Efeito da Adi?§?£o de H2 aos Gases de Prote?§?£o Convencionais na Soldagem GMAW do A?§o C e Transfer?ancia por Curto-Circuito. Parte 1: Qualidade do Cord?£o e Estabilidade da Transfer?ancia

机译:在常规保护气体中添加H2对A?C的GMAW焊接和短路转移的影响。第1部分:电源线质量和传输稳定性

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This work has the objective to evaluate the effect of the addition of a reducing gas, in this case H2, in the conventional mixtures Ar, Ar+10%CO2, Ar+25%CO2 and CO2 in the welding of carbon steel by the GMAW process using short circuit transfer. There were evaluated weld bead appearance and transfer stability. Weld beads were produced with the conventional gases and with the addition of 2%, 4% and 6% H2. The welds were of the type bead on plate, in flat position and mechanized process, wire ER 70S-6 of 1.2 mm, distance from the nozzle to the workpiece was 12 mm, torch angle of 90?° with the face of welding, welding speed of 300 mm/min and shielding gas flow rate of 15 l/min. The wire feed speed was set to voltages within the range of 20 V and 23 V. The welds were evaluated by visual inspection, dye penetrant and macrographs. The electrical signals were captured during welding and analyzed by means of the indexes: Standard Deviation of Current Peaks (SDCP), Standard Deviation of Open Arc Period (SDOP), Standard Deviation of Short-circuit Period (SDSP) and Vilarinho index regularity of the short-circuit transfer (IVcc). The results of visual tests, dye penetrant and macrographs indicated the possibility of welding carbon steel with Ar with up to 4%H2, Ar+10%CO2 with up to 4%H2, Ar+25%CO2 with up to 2%H2 and CO2 with up to 6%H2. According to the transfer stability indexes SDCP, SDOP, SDSP and IVcc, the addition of H2 in mixtures with a higher oxidation potential produced welds with stability equal to or better than those for commercial shielding gases without the addition of H2. Already for the shielding gases with low oxidation potential, the addition of H2 promoted transfer instability. Mixtures Ar+25%CO2, Ar+25%CO2+2%H2, CO2 and CO2+4%H2 showed best transfer stability.
机译:这项工作的目的是评估在通过GMAW焊接碳钢时,在常规混合物Ar,Ar + 10%CO2,Ar + 25%CO2和CO2中添加还原气体(在这种情况下为H2)的效果。使用短路转移的过程。评价焊缝外观和转移稳定性。使用常规气体并添加2%,4%和6%H2制成焊缝。焊缝为平板上的焊缝,处于平坦位置且采用机械处理,焊丝ER 70S-6为1.2毫米,从喷嘴到工件的距离为12毫米,与焊接面的焊炬角为90°,速度为300毫米/分钟,保护气体流速为15升/分钟。焊丝进给速度设置为20 V至23 V范围内的电压。通过目视检查,染料渗透剂和宏观图对焊缝进行评估。在焊接过程中捕获电信号并通过以下指标进行分析:电流峰值的标准偏差(SDCP),开弧周期的标准偏差(SDOP),短路周期的标准偏差(SDSP)和焊丝的Vilarinho指标规律性短路转移(IVcc)。目视测试,染料渗透剂和宏观图的结果表明,可以焊接碳含量最高为4%H2的Ar,碳含量最高为4%H2的Ar + 10%CO2,碳含量最高为2%的Ar + 25%CO2和碳钢。含6%H2的CO2。根据传输稳定性指标SDCP,SDOP,SDSP和IVcc,在具有较高氧化电位的混合物中添加H2所产生的焊缝,其稳定性等于或优于未添加H2的商用保护气体。对于具有低氧化电位的保护气体,H 2的添加已经促进了转移的不稳定性。混合物Ar + 25%CO2,Ar + 25%CO2 + 2%H2,CO2和CO2 + 4%H2表现出最佳的转移稳定性。

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