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Synthesis and Deposition of TiC-Fe Coatings by Oxygen-acetylene Flame Spraying 被引量:10
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作者 ZhiwenLI ChangsongLIU +1 位作者 JihuaHUANG ShengYIN 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2003年第2期161-163,共3页
A simpler and more convenient method for producing wear-resistant, TiC-reinforced coatings were investigated in this study. It consists of the simultaneous synthesis and deposition of TiC-Fe materials by oxyacetylene ... A simpler and more convenient method for producing wear-resistant, TiC-reinforced coatings were investigated in this study. It consists of the simultaneous synthesis and deposition of TiC-Fe materials by oxyacetylene flame spraying. Solid reagents bound together to form a single particle are injected into the flame stream where an in-situ reaction occurs. The reaction products are propelled onto a substrate to form a coating. Microstructural analyses reveal that TiC and Fe are the dominant phases in the coatings. The reaction between Ti and C happens step by step along with the reactive spray powder flight, and TiC-Fe materials were mainly synthesized where the spray distance is 125-170 mm. The TiC-Fe coatings are composed of alternate TiC-rich and TiC-poor lamellae with different microhardness of 11.9-13.7 and 3.0-6.0 GPa, respectively. Submicron and round TiC particles are dispersed within a ductile metal matrix. The peculiar microstructure is thought to be responsible for its good wear resistance, which is better nearly five times than WC-reinforced cermet coatings obtained by traditional oxyacetylene flame spray. 展开更多
关键词 Combustion synthesis Composite coatings TiC-Fe Submicron particle Wear resistance
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In-Plane Thermal Diffusivity Measurement of Thin Films Based on the Alternating-Current Calorimetric Method Using an Optical Reflectivity Technique 被引量:1
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作者 黄正兴 唐祯安 +2 位作者 许自强 丁海涛 顾毓沁 《Chinese Physics Letters》 SCIE CAS CSCD 2004年第4期713-715,共3页
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