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首页> 外文期刊>Journal of Materials Research and Technology >Wire arc additive manufacturing Ti6Al4V aeronautical parts using plasma arc welding: Analysis of heat-treatment processes in different atmospheres
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Wire arc additive manufacturing Ti6Al4V aeronautical parts using plasma arc welding: Analysis of heat-treatment processes in different atmospheres

机译:电弧添加剂制造Ti6Al4V航空零件使用等离子弧焊:不同大气中的热处理过程分析

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摘要

PAW (Plasma Arc Welding), a WAAM (Wire Arc Additive Manufacturing) technology with high deposition rates, can produce metallic components, layer by layer, of varied sizes, from different alloys, yielding high mechanical performance. Two Ti6Al4V walls are manufactured in an inert argon atmosphere using WAAM-PAW to analyze the deposition process in terms of growth in height per layer, deposition process temperature, and cooling times. The properties of the walls are compared with the values obtained from a thermo-mechanical simulation and both the microstructural and mechanical properties of the annealed WAAM-PAW wall are studied. Moreover, the effect of the media on the oxidation layer and on the mechanical properties are also analyzed throughout the heat treatment process, as well as the microstructure of Ti6Al4V. Stable deposition rates were achieved for a high deposition ratio of Ti6Al4V at 2?kg/h, restricting the oxygen levels to under 100?ppm. No significant differences were found in either the microstructural or the mechanical properties following heat treatments in a vacuum, in air or in argon. All the heat-treated samples met the AMS4928 standard for Yield Strength (YS) and Ultimate Tensile Strength (UTS).
机译:爪(等离子弧焊),具有高沉积速率的WAAM(电弧添加剂制造)技术,可以产生金属部件,通过层,不同尺寸的层,来自不同合金,产生高机械性能。在惰性氩气氛中使用WaAM-PAW制造两个Ti6Al4V壁,以分析每层高度的高度,沉积工艺温度和冷却时间的沉积过程。将壁的性质与从热机械模拟中获得的值进行比较,并且研究了退火的WaAm-爪壁的微观结构和机械性能。此外,还在整个热处理过程中分析了介质对氧化层和机械性能的影响,以及Ti6Al4V的微观结构。实现稳定的沉积速率,以2×kg / h的高沉积比,将氧水平限制为100℃以下。在真空中的热处理中,在空气中或氩气中的热处理后,在微观结构或机械性能下没有发现显着差异。所有热处理样品都满足了屈服强度(YS)和最终拉伸强度(UTS)的AMS4928标准。

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