材料科学
机制(生物学)
振荡(细胞信号)
激光器
激光功率缩放
功率(物理)
光电子学
机械工程
复合材料
光学
工程类
物理
哲学
认识论
生物
量子力学
遗传学
作者
Haihui Zhong,Leiqing Chen,Wenhao Huang,Rui Yang,Gang Wu,Yang Liu,Q. Ma
摘要
Due to the rapid cooling rate and high thermal gradient in laser wire additive manufacturing, processing defects are prone to occur. To address this issue, this study investigates the influence mechanism of laser power and laser oscillation technology on the macro-morphology and microstructure of single-layer single-track additive specimens by adjusting process parameters. The results indicate that as laser power increases, the width-to-height ratio (R) of the deposited layer increases, and the microstructural grain size shows an increasing trend. Laser oscillation reduces the surface smoothness of the deposited layer while mitigating pore defects, refining grains, and suppressing the formation of columnar grains. Higher oscillation frequency and larger oscillation amplitude further decrease surface smoothness while simultaneously reducing pore defects, refining grains, and promoting the formation of equiaxed grains.
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