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用于在粉末床熔融增材制造中最小化局部加热和各向异性微观结构的有效螺旋激光路径

Effective Spiral Laser Path for Minimizing Local Heating and Anisotropic Microstructures in Powder Bed Fusion Additive Manufacturing.

作者信息

Yang Jeongho, Park Seong Je, Kim Sang Hoon, Yeon Si Mo, Kim Kyung Il, Son Yong, Kahhal Parviz, Park Jiyong, Park Sang-Hu

机构信息

Additive Manufacturing Innovation Agency, Korea Institute of Industrial Technology, Siheung-si, Korea.

School of Mechanical Engineering, Pusan National University, Busan, Korea.

出版信息

3D Print Addit Manuf. 2024 Dec 16;11(6):e2033-e2044. doi: 10.1089/3dp.2023.0065. eCollection 2024 Dec.

Abstract

Heat accumulation due to repetitive simple laser processing paths during building up a three-dimensional structure is a well-known issue that needs to be settled to reduce the excessively high residual stress and thermal deformation in a powder bed fusion (PBF) additive manufacturing process. Because of the dependency of laser path on the thermal dispersion, it is essential to analyze the heat accumulation phenomenon during laser processing. A computational fluid dynamics (CFD) analysis based on the volume of fraction method is used to optimize the laser path for minimizing the local heating up in the PBF process. In this work, a novel spiral laser path with optimal rotation angle is proposed and compared with the commonly used scanning paths. As the results, the accumulated temperature of the optimal spiral path shows a 200.9 K less compared with that of the general repetitive path. The thermal deformation of a cantilever structure made by the optimal spiral path is experimentally evaluated. From the experimental test, we verify that the spiral laser path reduces thermal deformation by 52.3% compared with the one made by the general one-directional laser path. This work based on numerical simulations and experiments utilizes the proposed spiral laser path to obtain higher precision, less residual stress, and more uniform microstructure of an additive-manufactured structure.

摘要

在增材制造三维结构过程中,由于重复的简单激光加工路径导致的热量积累是一个众所周知的问题,在粉末床熔融(PBF)增材制造工艺中,需要解决该问题以降低过高的残余应力和热变形。由于激光路径对热扩散的依赖性,分析激光加工过程中的热量积累现象至关重要。基于体积分数法的计算流体动力学(CFD)分析用于优化激光路径,以最小化PBF工艺中的局部升温。在这项工作中,提出了一种具有最佳旋转角度的新型螺旋激光路径,并与常用的扫描路径进行了比较。结果表明,与一般重复路径相比,最佳螺旋路径的累积温度低200.9K。对由最佳螺旋路径制造的悬臂结构的热变形进行了实验评估。通过实验测试,我们验证了螺旋激光路径与一般单向激光路径制造的结构相比,热变形减少了52.3%。这项基于数值模拟和实验的工作利用所提出的螺旋激光路径,以获得更高精度、更低残余应力和更均匀微观结构的增材制造结构。

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本文引用的文献

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Laser Powder Bed Fusion of Powder Material: A Review.
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Controlling interdependent meso-nanosecond dynamics and defect generation in metal 3D printing.
Science. 2020 May 8;368(6491):660-665. doi: 10.1126/science.aay7830.

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