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首页> 外文期刊>Journal of Materials Engineering and Performance >Effect of Microstructure and Properties of Ni-WC Composite Coatings on Their Solid Particle Erosion Behavior
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Effect of Microstructure and Properties of Ni-WC Composite Coatings on Their Solid Particle Erosion Behavior

机译:Ni-WC复合涂层微观结构与性能对其固体颗粒侵蚀行为的影响

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摘要

Metal matrix composites (MMCs) of WC in Co or Ni matrices are widely used due to their high wear resistance. Previous studies showed that tailoring the mechanical properties through optimum WC content can significantly extend the life cycle of MMCs. In this study, composite coatings of Ni with various WC content ranging from 10 to 55 vol.% were cold sprayed using agglomerated WCNi powders and two different sizes of Ni powders, - 10 + 4 (d(50) = 7 mu m) referred to as Ni(7) and - 35 + 15 (d(50) = 25 mu m) to as Ni(25). Microstructural characterization, including the deformed structure of Ni splats and retention and distribution of WC, was performed by scanning electron microscopy (SEM). Composite coatings were subjected to solid particle erosion following ASTM G76-13 standard. At low WC content coatings, erosion occurred primarily by plastic deformation of Ni matrices and knocking out of WC particles. At high WC concentrations, network distribution of compacted WCNi particles in the matrices led to a significant drop in erosion rates of coatings, due to a change in erosion mechanism from severe cutting and plowing of Ni and WC dislodging to WCNi splats spalling. Composite coatings sprayed using finer size Ni powder were usually more erosion resistant.
机译:CO或Ni矩阵中WC的金属基复合材料(MMC)由于其高耐磨性而被广泛使用。以前的研究表明,通过最佳WC含量来定制机械性能可以显着地延长MMC的生命周期。在该研究中,使用凝聚的WCNI粉末和两种不同尺寸的Ni粉末,具有10至55体积的Ni的镍氢的复合涂层。作为Ni(7)和-35 + 15(d(50)=25μm)至ni(25)。通过扫描电子显微镜(SEM)进行微观结构表征,包括Ni Splats的变形结构和WC的保留和分布。在ASTM G76-13标准后对复合涂层进行固体颗粒腐蚀。在低WC含量涂层中,侵蚀主要通过Ni矩阵的塑性变形而发生,并敲出WC颗粒。在高WC浓度下,基质中压实的WCNI颗粒的网络分布导致涂层的腐蚀速率显着下降,由于来自严重切割和犁掺杂对WCNI Splats剥离的侵蚀机理的变化。使用更细尺寸的Ni粉末喷涂的复合涂层通常是更耐腐蚀的。

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