首页|Cr3C2对激光熔覆原位生成WC增强颗粒粒度及涂层性能的影响

Cr3C2对激光熔覆原位生成WC增强颗粒粒度及涂层性能的影响

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为了研究Cr3C2 对原位生成WC增强相粒度的抑制作用及对涂层性能的影响,在H13 钢表面制备了Cr3C2 含量为 0、1%、1.5%、2%、2.5%的WC增强镍基涂层.采用扫描电镜(SEM)分析涂层的显微组织,比较WC粒度变化情况以及涂层不同形态区域的元素分布;采用X射线衍射仪(XRD)分析涂层的物相组成;采用显微硬度计分析涂层的硬度值;采用摩擦磨损试验机对涂层的摩擦磨损性能进行测试.结果表明:Cr3C2 能够显著抑制WC颗粒的长大,但存在一个最佳值,Cr3C2 抑制WC晶粒生长的主要原因是Cr3C2 能够降低WC在粘结相的溶解度.随着Cr3C2 的加入,涂层中含铬物质增多,涂层显微硬度也随之增大,当Cr3C2 含量为 2%时涂层显微硬度最大.添加Cr3C2 抑制剂的涂层摩擦磨损性能也更优,磨损机理主要为粘着磨损.
Effect of Cr3C2 on particle size and coating properties of in situ generated WC particles
In order to study the inhibition effect of Cr3C2 on the particle size of in situ WC reinforced phase and the effect on coating properties,WC reinforced nickel-based coatings containing 0,1%,1.5%,2%and 2.5%Cr3C2 were prepared on H13 steel surface.The microstructure of the coating was analyzed by scanning electron microscopy(SEM),and the change of WC particle size and the distribution of elements in different morphology regions of the coating were compared.The phase composition of the coating was analyzed by X-ray diffraction(XRD).The hardness of the coating was analyzed by microhardness tester.Friction and wear testing machine was used to test the friction and wear properties of the coating.The results show that Cr3C2 can significantly inhibit the growth of WC particles,but there is an optimal value.The main reason that Cr3C2 can inhibit the growth of WC grains is that Cr3C2 can reduce the solubility of WC in the binding phase.With the addition of Cr3C2,the amount of chromium in the coating increases,and the microhardness of the coating also increases.When the content of Cr3C2 is 2%,the microhardness of the coating is the highest.The friction and wear properties of coatings with Cr3C2 inhibitor are also better,and the main wear mechanism is adhesive wear.

laser claddingin situ generationWCCr3C2 inhibitormechanical properties

姚芳萍、王应啸、潘文鹏、李金华

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辽宁工业大学机械工程与自动化学院,辽宁 锦州 121001

激光熔覆 原位生成 WC Cr3C2抑制剂 力学性能

辽宁省教育厅基本科研项目辽宁省教育厅基本科研项目

LZMKZ20220969LZMKZ20220972

2024

制造技术与机床
中国机械工程学会 北京机床研究所

制造技术与机床

CSTPCD北大核心
影响因子:0.264
ISSN:1005-2402
年,卷(期):2024.(5)
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