An instrument for in situ characterization of powder spreading dynamics in powder-bed-based additive manufacturing processes.

Luis I. Escano, N. Parab, Qilin Guo, Minglei Qu, K. Fezzaa, W. Everhart, T. Sun, Lianyi Chen
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引用次数: 5

Abstract

In powder-bed-based metal additive manufacturing (AM), the visualization and analysis of the powder spreading process are critical for understanding the powder spreading dynamics and mechanisms. Unfortunately, the high spreading speeds, the small size of the powder, and the opacity of the materials present a great challenge for directly observing the powder spreading behavior. Here, we report a compact and flexible powder spreading system for in situ characterization of the dynamics of the powders during the spreading process by high-speed x-ray imaging. The system enables the tracing of individual powder movement within the narrow gap between the recoater and the substrate at variable spreading speeds from 17 to 322 mm/s. The instrument and method reported here provide a powerful tool for studying powder spreading physics in AM processes and for investigating the physics of granular material flow behavior in a confined environment.
基于粉末床的增材制造过程中粉末扩散动力学的原位表征仪器。
在基于粉末床的金属增材制造中,粉末扩散过程的可视化和分析对于理解粉末扩散动力学和机理至关重要。然而,由于粉末的扩散速度快、粒径小以及材料的不透明性,给直接观察粉末的扩散行为带来了很大的挑战。在这里,我们报告了一个紧凑和灵活的粉末扩散系统,用于在高速x射线成像中对粉末在扩散过程中的动态进行原位表征。该系统能够以17至322毫米/秒的可变扩散速度在重涂器和基材之间的狭窄间隙内跟踪单个粉末的运动。本文报道的仪器和方法为研究增材制造过程中的粉末扩散物理以及研究受限环境中颗粒材料流动行为的物理特性提供了有力的工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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