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电磁场对激光熔覆微观结构的影响。

Effects of Electromagnetic Fields on the Microstructure of Laser Cladding.

作者信息

Shi Yongjun, Zhou Xiaoyu, Wang Xiaogang, Feng Xingteng, Peng Laida

机构信息

College of Electromechanical Engineering, China University of Petroleum (East China), Qingdao 266580, China.

出版信息

Materials (Basel). 2022 Jun 13;15(12):4198. doi: 10.3390/ma15124198.

Abstract

The fast heating and quenching of laser cladding increase the internal stresses in the cladding layer. Moreover, the quick condensation of the molten pool leads to an uneven distribution of the internal elements and coarse grains of the structure. To address the above defects and increase the molding quality of laser cladding, an electromagnetic field was introduced into the laser cladding technique, and the effects of the external assisted electromagnetic field on the mixed metal fluid in the molten pool were explored. On this basis, the action of the electromagnetic field on the flow states of the molten pool was further analyzed. The results demonstrate that after introducing electromagnetic assistance, the material flow in the molten pool accelerated as a response to the periodic changes in electromagnetic forces and the influences of the electromagnetic field on crystallization, thus refining the grains and improving the grain distribution uniformity in the cladding layer. The dendritic crystals in the cladding layer decreased, while the isometric crystals and the cellular-like dendrites increased. The element distribution in the cladding layer increased in uniformity. Additionally, this method can decrease the dilution rate of the cladding layer and improve its overall hardness. A laser-cladding test of the Ni-based powder was carried out on the AISI 1045 steel surface under the coaxial powder-feeding mode. Moreover, the influences of the electromagnetic field on the microstructure of the laser-cladding layer were compared, and the causes of the changes were disclosed.

摘要

激光熔覆的快速加热和淬火会增加熔覆层中的内应力。此外,熔池的快速凝固会导致内部元素分布不均以及组织晶粒粗大。为了解决上述缺陷并提高激光熔覆的成型质量,将电磁场引入激光熔覆技术中,并探究外部辅助电磁场对熔池中混合金属流体的影响。在此基础上,进一步分析电磁场对熔池流动状态的作用。结果表明,引入电磁辅助后,熔池中的物质流动因电磁力的周期性变化以及电磁场对结晶的影响而加速,从而细化晶粒并提高熔覆层中晶粒分布的均匀性。熔覆层中的树枝状晶体减少,等轴晶体和胞状树枝晶增加。熔覆层中的元素分布均匀性提高。此外,该方法可降低熔覆层的稀释率并提高其整体硬度。在AISI 1045钢表面采用同轴送粉方式进行了镍基粉末的激光熔覆试验。此外,比较了电磁场对激光熔覆层微观组织的影响,并揭示了变化原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/44f8/9229161/f46b23d77479/materials-15-04198-g001.jpg

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