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Study the Effect of S1O2 Based Flux on Dilution in Submerged Arc Welding

机译:基于S1O2的焊剂对浸没电弧焊接稀释的影响

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This paper highlights the method for prediction of dilution in submerged arc welding (SAW). The most important factors of weld bead geometry are governed by the weld dilution which controls the chemical and mechanical properties. Submerged arc welding process is used generally due to its very easy control of process variables, good penetration, high weld quality, and smooth finish. Machining parameters, with suitable weld quality can be achieved with the different composition of the flux in the weld. In the present study Si0_2-Al2O3-CaO flux system was used. In SiO2 based flux NiO, MnO, MgO were mixed in various proportions. The paper investigates the relationship between the process parameters like voltage, % of flux constituents and dilution with the help of Taguchi's method. The experiments were designed according to Taguchi L9 orthogonal array, while varying the voltage at two different levels in addition to alloying elements. Then the optimal results conditions were verified by confirmatory experiments.
机译:本文突出了浸没电弧焊接稀释(锯)预测的方法。焊缝几何形状最重要的因素受到控制化学和机械性能的焊接稀释的管辖。浸没式电弧焊接过程通常是由于其非常易于控制过程变量,良好的穿透性,高焊接质量和光洁度光滑。用焊缝中的焊剂的不同组成可以实现加工参数,具有合适的焊接质量。在本研究中,使用Si0_2-Al2O3-CAO通量系统。在基于SiO 2的助焊剂中,MNO,MgO以各种比例混合。本文通过Taguchi的方法调查了诸如电压,助焊剂成分的百分比和稀释之间的关系。根据塔布氏矩形阵列设计了实验,而除合金元件之外,还改变两个不同水平的电压。然后通过确认实验验证最佳结果条件。

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