首页> 外文期刊>Journal of Manufacturing Processes >Influences of the compressed dry air-based active cooling on external and internal qualities of wire-arc additive manufactured thin-walled SS308L components
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Influences of the compressed dry air-based active cooling on external and internal qualities of wire-arc additive manufactured thin-walled SS308L components

机译:压缩干燥空气基主动冷却对丝弧添加剂外部和内部质量的影响薄壁SS308L组件

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摘要

Among additive manufacturing (AM) technologies, wire-arc additive manufacturing (WAAM) features a high material deposition rate and low costs of device investment. However, WAAM parts generally undergo a complex-thermal history and a high accumulation of heat, which significantly influences its external and internal qualities. In this article, the influence of different cooling conditions on the qualities of WAAM SS308L components was addressed. Three thin walls were built by WAAM with three cooling conditions. The first and second walls were produced with the free-cooling condition, where an interlayer holding time (Tih) of 30 s and 60 s was used between two successive deposits, respectively. The third wall was built with the compressed dry air (CDAir)based active cooling, in which the compressed dry air (CDAir) and an interlayer holding time of 10 s were employed between two adjacent layers to cool down the workpiece. The obtained results indicate that the evolution of microstructures in three walls is very likable. In the bottom and the middle regions, the microstructure mainly contains vertically oriented dendrites of austenite and ferrites that appear in the austenite grains' boundary. The austenitic phases also appear in equiaxed grains in the top region. However, the CDAirbased active cooling has noticeable effects on the spacing of secondary dendrite arms (SSDA) in the middle of the walls. The wall built with the CDAir-based active cooling features the smallest average SSDA, followed by the walls produced in the free cooling condition and a Tih of 60 s and 30 s, respectively. Accordingly, the CDAirbased active cooling produces the highest average hardness and tensile strengths. Moreover, the wall produced using the CDAir-based cooling also reveals the lowest surface roughness. Therefore, it can be considered that the CDAir-based active cooling is a reasonable option to enhance the internal and external qualities of WAAM stainless steel 308L components.
机译:在加性制造(AM)技术中,线弧添加剂制造(WAAM)具有高材料沉积速率和设备投资的低成本。然而,WAAM部件通常经历复杂的热历史和高积累,这显着影响其外部和内部品质。在本文中,解决了不同冷却条件对WaAM SS308L组分质量的影响。有三个薄壁由WAAM构建,具有三个冷却条件。使用自由冷却条件产生第一和第二壁,其中分别在两个连续的沉积物之间使用30s和60s的层间保持时间(TiH)。第三壁采用基于压缩的干燥空气(CDair)的主动冷却而构建,其中压缩的干燥空气(CDAIR)和10 s的层间保持时间在两个相邻的层之间采用以冷却工件。所获得的结果表明,三壁中的微观结构的演化是非常可爱的。在底部和中间区域中,微观结构主要含有奥氏体的垂直定向的奥氏体树枝状物和出现在奥氏体谷物边界中的铁氧体。奥氏体阶段也出现在顶部区域的等轴颗粒中。然而,CDairbased主动冷却对壁中间的次级树枝状臂(SSDA)的间距具有显着的影响。用基于CDAIR的主动冷却构成的墙壁具有最小的平均SSDA,然后分别在自由冷却条件下产生的墙壁和60秒和30秒。因此,CDairbased的主动冷却产生最高的平均硬度和拉伸强度。此外,使用CDAIR基冷却生产的壁也揭示了最低表面粗糙度。因此,可以认为基于CDAIR的主动冷却是增强WAAM不锈钢308L组件的内部和外部质量的合理选择。

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