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首页> 外文期刊>Journal of Thermal Spray Technology >Influence of the HVOF Gas Composition on the Thermal Spraying of WC-Co Submicron Powders (-8 + 1 μm) to Produce Superfine Structured Cermet Coatings
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Influence of the HVOF Gas Composition on the Thermal Spraying of WC-Co Submicron Powders (-8 + 1 μm) to Produce Superfine Structured Cermet Coatings

机译:HVOF气体成分对WC-Co亚微米粉末(-8 + 1μm)热喷涂以生产超细结构金属陶瓷涂层的影响

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摘要

Thermal spraying technology represents a novel and promising approach to protect forming tools with complex surfaces and highest shape accuracy against abrasive wear and galling. However, due to high or nonuniform layer thicknesses or inappropriate surface roughness conventional coarse-structured coatings are not suitable to achieve this aim. The application of novel submicron or nanoscaled feedstock materials in the thermal spray process can provide the deposition of cermet coatings with significantly improved characteristics and is recently of great interest in science and industry. In this collaborative study, the feeding and HVOF spraying of WC-Co submicron powders (-8 + 1 μm) have been investigated to manufacture superfine structured, wear resistant, near-net-shape coatings with improved macroscopic properties and smooth surfaces. The influences of varying HVOF gas compositions on the spray process and the coating properties have been analyzed.
机译:热喷涂技术代表了一种新颖而有前途的方法,可以保护具有复杂表面和最高形状精度的成型工具免受磨料磨损和擦伤。然而,由于高或不均匀的层厚度或不适当的表面粗糙度,常规的粗糙结构涂层不适合实现该目的。在热喷涂过程中新型亚微米或纳米级原料的应用可以为金属陶瓷涂层的沉积提供显着改善的特性,并且最近在科学和工业领域引起了极大的兴趣。在这项合作研究中,对WC-Co亚微米粉末(-8 + 1μm)的进料和HVOF喷涂进行了研究,以制造具有改善的宏观性能和光滑表面的超细结构,耐磨,近净形涂层。分析了不同的HVOF气体成分对喷涂过程和涂层性能的影响。

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