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首页> 外文期刊>Journal of Mechanical Science and Technology >An experimental study on microstructural characteristics and mechanical properties of stainless-steel 316L parts using directed energy deposition (DED) process
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An experimental study on microstructural characteristics and mechanical properties of stainless-steel 316L parts using directed energy deposition (DED) process

机译:采用定向能量沉积(DED)工艺对不锈钢316L零件微观结构特性和力学性能的实验研究

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摘要

We investigated the microstructural characteristics and mechanical properties of stainless-steel 316L parts fabricated by directed energy deposition (DED) process, which is one of the additive manufacturing (AM) technologies. In this research, the 316L parts were fabricated by DED process by varying three process parameters: Laser power, scanning speed and mass flow rate of powder. A total of eight experimental cases were sorted out, and the DED parts from each experimental case were characterized in views of composition, defects, geometrical height, micro-hardness, friction and modulus. The analysis showed that the mechanical properties-micro-hardness, friction and modulus-of the 316L parts can be maximized in the case of the low laser power (400 W), high scanning speed (10 mm/s) and low mass flow rate of powder (10 g/min). In addition, the defects such as blowholes and cracks can be minimized under the condition of the low laser power (400 W) and low mass flow rate (10 g/min), respectively.
机译:我们研究了通过定向能量沉积(DED)工艺制造的不锈钢316L部件的微观结构特性和机械性能,这是一种添加剂制造(AM)技术之一。在本研究中,通过改变三个工艺参数来制造316L部件:激光功率,扫描速度和粉末质量流速。分类了八种实验案例,每个实验情况的DED部件的特征在于组成,缺陷,几何高度,微硬度,摩擦和模量的视图。分析表明,在低激光功率(400W),高扫描速度(10mm / s)和低质量流量的情况下,可以最大化316L部件的机械性能微量硬度,摩擦和模量粉末(10g / min)。另外,在低激光功率(400W)和低质量流速(10g / min)的条件下,可以最小化诸如吹干孔和裂缝之类的缺陷。

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