首页|定向能量沉积增材制造过程中粉末对凝固影响的数值模拟

定向能量沉积增材制造过程中粉末对凝固影响的数值模拟

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对激光定向能量沉积增材制造过程中粉末对颗粒温度和显微组织的影响进行模拟.利用离散元法模拟金属粉末颗粒的空间分布;借助电磁波理论分析,计算颗粒和激光的相互作用时飞行颗粒所消耗的能量.结合相场法,研究颗粒尺寸对显微组织演变的影响.通过与实验观察到的显微组织进行对比来验证模型的有效性.结果表明,窄粒度分布有利于获得更加均匀的沉积层温度,并有利于在样品侧面形成较小的等轴晶;适当尺寸的粉末颗粒有利于将电磁能转化为热能.粒径小的颗粒有助于形成等轴晶粒,提高产品质量;合适的粉末流量可以提高激光能量效率;较高的粉末流量使得截面两侧的等轴晶粒分布更加均匀.
Numerical simulation of powder effect on solidification in directed energy deposition additive manufacturing
An integrated simulation of powder effects on particle temperature and microstructural evolution in laser directed energy deposition additive manufacturing process was carried out. The spatial distribution of the flying powder particles was simulated by the discrete element method to calculate the energy for the flying powder particles under the laser−particle interaction with electromagnetic wave analysis. Combined with the phase field method, the influence of particle size on the microstructural evolution was studied. The microstructural evolution is validated through comparison with experimental observation. Results indicate that the narrow particle size distribution is beneficial to obtaining a more uniform temperature distribution on the deposited layers and forming smaller equiaxed grains near the side surfaces of the sample. Appropriate powder particle size is beneficial to the conversion of the electromagnetic energy into heat. Particles with small size are recommended to form equiaxed grains and to improve product quality. Appropriate powder flow rate improves the laser energy efficiency, and higher powder flow rate leads to more uniform equiaxed grains on both sides of the cross-section.

additive manufacturingpowder particlephase fieldmicrostructural evolutionparticle size distribution

姚欣欣、李健宇、王艺飞、高翔、张昭

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大连理工大学 运载工程与力学学部 工程力学系 工业装备结构分析国家重点实验室,大连 116024

增材制造 粉末颗粒 相场 显微组织演变 颗粒尺寸分布

115720742019-KF-05-07

2021

中国有色金属学报(英文版)
中国有色金属学会

中国有色金属学报(英文版)

CSTPCDCSCDSCI
影响因子:1.183
ISSN:1003-6326
年,卷(期):2021.31(9)
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