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首页> 外文期刊>Journal of Thermal Spray Technology >Properties of Cr{sub}3C{sub}2-NiCr cermet coating sprayed by high power plasma and high velocity oxy-fuel processes
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Properties of Cr{sub}3C{sub}2-NiCr cermet coating sprayed by high power plasma and high velocity oxy-fuel processes

机译:高功率等离子体和高速氧-燃料工艺喷涂Cr {sub} 3C {sub} 2-NiCr金属陶瓷涂层的性能

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摘要

The structure, hardness, and shear adhesion strength have been investigated for Cr{sub}3C{sub}2-NiCr cermet coatings sprayed onto a mild steel substrate by 200 kW high power plasma spraying (HPS) and high velocity oxy-fuel (HVOF) processes. Amorphous and supersaturated nickel phases form in both as-sprayed coatings. The hardness of the HVOF coating is higher than that of the HPS coating, because the HVOF coating contains more nonmelted Cr{sub}3C{sub}2 carbide particles. On heat treating at 873 K, the amorphous phase decomposes and the supersaturated nickel phase precipitates Cr{sub}3C{sub}2 carbides so that the hardness increases in the HPS coating. The hardness measured under a great load exhibits lower values compared with that measured with a small load because of cracks generated from the indentation. The ratio of the hardnesses measured with different loads can be regarded as an index indicating the coating ductility. The ductility of the HVOF coating is higher than that of the HPS coating. Adhesion strength of the HVOF coating was high compared with the HPS coating. The adhesion of the coatings is enhanced by heat treating at 1073 K, and that of the HVOF coating is over 350 MPa.
机译:对通过200 kW大功率等离子喷涂(HPS)和高速含氧燃料(HVOF)喷涂到低碳钢基材上的Cr {sub} 3C {sub} 2-NiCr金属陶瓷涂层的结构,硬度和剪切粘合强度进行了研究)流程。两种喷涂涂层均形成非晶态和过饱和的镍相。 HVOF涂层的硬度高于HPS涂层,因为HVOF涂层包含更多的未熔融Cr {sub} 3C {sub} 2碳化物颗粒。在873 K热处理时,非晶相分解,过饱和镍相沉淀Cr {sub} 3C {sub} 2碳化物,因此HPS涂层的硬度增加。在大负荷下测得的硬度与在小负荷下测得的硬度相比显示出较低的值,这是由于压痕产生的裂纹。在不同载荷下测得的硬度之比可以视为指示涂层延展性的指标。 HVOF涂层的延展性高于HPS涂层的延展性。与HPS涂层相比,HVOF涂层的粘合强度高。通过在1073 K下进行热处理,可以提高涂层的附着力,而HVOF涂层的附着力则超过350 MPa。

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