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首页> 外文期刊>Acta Scientiarum. Technology >Robust regression analysis for the relationship between welding parameters and microhardness of 410 NiMo martensitic steel deposits on SAE 1020 steel
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Robust regression analysis for the relationship between welding parameters and microhardness of 410 NiMo martensitic steel deposits on SAE 1020 steel

机译:SAE 1020钢焊接参数与微硬度关系的强大回归分析

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The objective of this study was to analyze the flux-cored arc welding (FCAW) welding parameters and microhardness levels on surface quality of 410 NiMo martensitic stainless-steel coatings. The parameters of the FCAW process applied to the coating, included pulsation frequency, voltage, welding speed, average current and contact tip to work distance. The welding was carried out by the pulsed tubular wire process with pulsed current, constant voltage, Ar 2% O2 shielding gas and short-circuit metal transfer for the deposition of EC410 NiMo Martensitic Steel Deposits alloy coatings on a SAE 1020 steel substrate. For the statistical analysis, the Taguchi experimental planning was applied to test the influence of the parameters of the FCAW process (average current, CTWD, pulsation current and welding speed) on the coating properties. The best configuration with respect to the increased microhardness of the fusion zone in the coating welding process is: Average Current 200 A; CTWD 40 mm; Pulsation Frequency 26.31 Hz and Welding Speed 300 mm min.-1. The lowest microhardness of the melting zone in the coating welding process is: Average Current 170 A; CTWD 30 mm; Pulsation Frequency 23.26 Hz and Welding Speed 400 mm min.-1.
机译:本研究的目的是分析磁通芯弧焊(FCAW)焊接参数和微硬度水平,对410 Nimo马氏体不锈钢涂料的表面质量。施加到涂层的FCAW过程的参数,包括脉动频率,电压,焊接速度,平均电流和接触尖端到下班距离。焊接通过脉冲管状线处理进行,具有脉冲电流,恒定电压,AR 2%O2屏蔽气和短路金属转移,用于沉积EC410 Nimo马氏体钢沉积合金涂层在SAE 1020钢基板上。对于统计分析,应用了TAGUCHI实验规划,以测试FCAW过程(平均电流,CTWD,焊接电流和焊接速度)对涂层性能的影响。相对于涂布过程中融合区的显微硬度增加的最佳配置是:平均电流200a; CTWD 40毫米;脉动频率26.31 Hz和焊接速度300mm min.-1。涂层焊接过程中熔点的最低微硬度为:平均电流170a; CTWD 30毫米;脉动频率23.26Hz和焊接速度400 mm min.-1。

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