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Selection of Optimal Process Parameters for Wire Arc Additive Manufacturing

机译:电弧增材制造最佳工艺参数的选择

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This paper is about the optimal selection of process parameters for Wire Arc Additive Manufacturing technology, an emerging solution for additive production of metal parts. In particular, the selection of the process parameters is based on the evolution of the microstructure and on the mechanical properties of the final samples obtained through the successive deposition weld beads of a ER70S-6 steel, according to the AWS legislation. The feed rate and the heat input during the deposition of the weld beads have been varied, in order to understand how the temperature reached by the samples can affect the final product mechanical characteristics. The final cooling has been carried in calm air at room temperature and between the deposition of a weld bead and the following one it has been imposed a pause of 60s. The tests on mechanical properties carried out have been: A full experimental campaign that includes: macrographic observations, micrographic observations and Vickers microhardness. The analysis of these tests has highligthed that by varying the process parameters, the samples do not have substantial differences between them. Instead, a microstructure that evolves from pearlitic-ferritic grains until bainitic lamellae along the vertical direction of the samples has been observed by micrographic analysis and confirmed by microhardness measurements.
机译:本文是关于电弧电弧增材制造技术的最佳工艺参数选择,这是一种用于金属零件增材制造的新兴解决方案。具体而言,根据AWS法规,工艺参数的选择基于微观结构的演变以及基于通过ER70S-6钢的连续沉积焊道得到的最终样品的机械性能。为了了解焊缝所达到的温度如何影响最终产品的机械特性,已经改变了焊缝沉积过程中的进给速度和热量输入。最终冷却已在室温下的平静空气中进行,并且在焊道沉积和随后的焊道沉积之间施加了60秒的暂停时间。进行的机械性能测试包括:全面的实验活动,包括:宏观观察,显微观察和维氏显微硬度。这些测试的分析表明,通过改变工艺参数,样品之间不会有实质性差异。取而代之的是,通过显微图像分析观察到了从珠光体-铁素体晶粒演变到贝氏体薄片沿样品垂直方向的微观结构,并通过显微硬度测量得到了证实。

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