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Mechanical Properties and Friction/Wear Behavior of Copper Alloyed Powder Composites 被引量:1

Mechanical Properties and Friction/Wear Behavior of Copper Alloyed Powder Composites
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摘要 Copper alloyed powder composites containing nanoparticles were developed by hot pressing. Effects of nanoscale activated sintering aid and fine ceramic particles Al_2O_3 on hardness, working quality, and behaviors of friction and wear of the composites have been studied, compared with the composites including microscale activated sintering aid and microscale ceramic particles. The microstructures of the samples were analyzed by SEM. The results show that the materials with nanoscale sintering aid and fine ceramic particles have betuer mechanical properties and abrasive resistance than the materials with microscale activated sintering aid and microceramic particles. Moreover, element mutual transfer occurs between samples (strip) and abrasive wheel (ring). Copper alloyed powder composites containing nanoparticles were developed by hot pressing. Effects of nanoscale activated sintering aid and fine ceramic particles Al_2O_3 on hardness, working quality, and behaviors of friction and wear of the composites have been studied, compared with the composites including microscale activated sintering aid and microscale ceramic particles. The microstructures of the samples were analyzed by SEM. The results show that the materials with nanoscale sintering aid and fine ceramic particles have betuer mechanical properties and abrasive resistance than the materials with microscale activated sintering aid and microceramic particles. Moreover, element mutual transfer occurs between samples (strip) and abrasive wheel (ring).
出处 《Journal of Iron and Steel Research(International)》 SCIE CAS CSCD 2005年第4期50-53,59,共5页 钢铁研究学报(英文版)
关键词 NANOPARTICLE activated sintering aid ceramic particle TRIBOLOGY nanoparticle activated sintering aid ceramic particle tribology
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