Research on Powder Convergence Characteristics of Powder Feeding Nozzle in Wide-Band Laser Cladding
Abstract
1. Introduction
2. Materials and Methods
Basic Principles of Laser Cladding Technology
3. Results and Discussion



4. Conclusions
- (1)
- The focal length and powder mass concentration of the powder beam decrease continuously as the carrier gas flow Qg increases. During the process of increasing the carrier gas flow from 6 L/min to 18 L/min, the focal length of the powder beam gradually decreases from 18.708 mm at 6 L/min to 18 mm at 10 L/min, and then drops sharply to 15.387 mm at 18 L/min. The peak concentration of the powder beam at the convergence point of the powder mass concentration decreases from 12.43 kg/m3 at 6 L/min to 3.1 kg/m3 at 14 L/min. An appropriate increase in the carrier gas flow can improve the convergence characteristics of the powder flow and thereby reduce the divergence angle of the powder flow.
- (2)
- The powder mass concentration increases continuously from 2.98 kg/m3 at 14.4 g/min to 10.47 kg/m3 at 52.5 g/min. The effect of the powder feeding rate mp on the external flow field convergence characteristics of the powder beam is not significant but has a significant impact on the powder mass concentration.
Author Contributions
Funding
Data Availability Statement
Conflicts of Interest
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| Particle Type | Parameters | Value |
|---|---|---|
| Inconel718 | Density (kg/m3) | 8240 |
| Shear modulus (Pa) | 7.72 × 1010 | |
| Poisson’s ratio | 0.3 |
| Wall Type | Parameters | Value |
|---|---|---|
| Cu | Density (kg/m3) | 8920 |
| Shear modulus (Pa) | 4.8 × 1010 | |
| Poisson’s ratio | 0.33 |
| Type | Parameters | Value |
|---|---|---|
| Particles and particles | Collision recovery coefficient | 0.5 |
| Coefficient of static friction | 0.5 | |
| Coefficient of kinetic friction | 0.01 | |
| Particles and walls | Collision recovery coefficient | 0.3 |
| Coefficient of static friction | 0.4 | |
| Coefficient of kinetic friction | 0.01 | |
| Contact model | Hertz-mindlin (no slip) |
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Zhou, E.; Peng, J.; Guo, B.; Wang, J.; Yu, X. Research on Powder Convergence Characteristics of Powder Feeding Nozzle in Wide-Band Laser Cladding. Micromachines 2026, 17, 515. https://doi.org/10.3390/mi17050515
Zhou E, Peng J, Guo B, Wang J, Yu X. Research on Powder Convergence Characteristics of Powder Feeding Nozzle in Wide-Band Laser Cladding. Micromachines. 2026; 17(5):515. https://doi.org/10.3390/mi17050515
Chicago/Turabian StyleZhou, Erhao, Jianjun Peng, Bingjing Guo, Junhua Wang, and Xiaojun Yu. 2026. "Research on Powder Convergence Characteristics of Powder Feeding Nozzle in Wide-Band Laser Cladding" Micromachines 17, no. 5: 515. https://doi.org/10.3390/mi17050515
APA StyleZhou, E., Peng, J., Guo, B., Wang, J., & Yu, X. (2026). Research on Powder Convergence Characteristics of Powder Feeding Nozzle in Wide-Band Laser Cladding. Micromachines, 17(5), 515. https://doi.org/10.3390/mi17050515

