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激光熔覆制备WC-Co-Ni复合涂层的微观结构演变、硬度及耐磨性

Microstructural Evolution, Hardness and Wear Resistance of WC-Co-Ni Composite Coatings Fabricated by Laser Cladding.

作者信息

Kim Gibeom, Kim Yong-Chan, Cho Jae-Eock, Yim Chang-Hee, Yun Deok-Su, Lee Tae-Gyu, Park Nam-Kyu, Chung Rae-Hyung, Hong Dae-Geun

机构信息

Graduate Institute of Ferrous & Eco Materials Technology, Pohang University of Science & Technology (POSTECH), 77 Cheongam-Ro, Nam-Gu, Pohang-si 37673, Gyeongsangbuk-do, Republic of Korea.

Research Institute of Industrial Science and Technology (RIST), 67 Cheongam-Ro, Nam-Gu, Pohang-si 37673, Gyeongsangbuk-do, Republic of Korea.

出版信息

Materials (Basel). 2024 Apr 30;17(9):2116. doi: 10.3390/ma17092116.

Abstract

This study investigated how process parameters of laser cladding affect the microstructure and mechanical properties of WC-12Co composite coating for use as a protective layer of continuous caster rolls. WC-Co powders, WC-Ni powders, and Ni-Cr alloy powder with various wear resistance characteristics were evaluated in order to determine their applicability for use as cladding materials for continuous caster roll coating. The cladding process was conducted with various parameters, including laser powers, cladding speeds, and powder feeding rates, then the phases, microstructure, and micro-hardness of the cladding layer were analyzed in each specimen. Results indicate that, to increase the hardness of the cladding layer in WC-Co composite coating, the dilution of the cladding layer by dissolution of Fe from the substrate should be minimized, and the formation of the Fe-Co alloy phase should be prevented. The mechanical properties and wear resistance of each powder with the same process parameters were compared and analyzed. The microstructure and mechanical properties of the laser cladding layer depend not only on the process parameters, but also on the powder characteristics, such as WC particle size and the type of binder material. Additionally, depending on the degree of thermal decomposition of WC particles and evolution of W distribution within the cladding layer, the hardness of each powder can differ significantly, and the wear mechanism can change.

摘要

本研究调查了激光熔覆工艺参数如何影响用作连铸辊保护层的WC-12Co复合涂层的微观结构和力学性能。对具有各种耐磨特性的WC-Co粉末、WC-Ni粉末和Ni-Cr合金粉末进行了评估,以确定它们作为连铸辊涂层熔覆材料的适用性。采用包括激光功率、熔覆速度和送粉速率在内的各种参数进行熔覆工艺,然后分析每个试样中熔覆层的相、微观结构和显微硬度。结果表明,为了提高WC-Co复合涂层中熔覆层的硬度,应尽量减少基材中Fe溶解对熔覆层的稀释,并防止Fe-Co合金相的形成。对相同工艺参数下各粉末的力学性能和耐磨性进行了比较分析。激光熔覆层的微观结构和力学性能不仅取决于工艺参数,还取决于粉末特性,如WC颗粒尺寸和粘结剂材料类型。此外,根据WC颗粒的热分解程度和熔覆层内W分布的演变,各粉末的硬度可能有显著差异,磨损机制也可能改变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/75b6/11084734/876765745530/materials-17-02116-g001.jpg

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