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Impact-abrasive Wear Behavior of ZTA and NbC Reinforced Fe60 Matrix Composites

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【作者】 王世峰李国华HU BowenMIAO Wencheng

【Author】 WANG Shifeng;LI Guohua;HU Bowen;MIAO Wencheng;School of Mechanical Electronic and Information Engineering, China University of Mining and Technology (Beijing);

【通讯作者】 王世峰;李国华;

【机构】 School of Mechanical Electronic and Information Engineering, China University of Mining and Technology (Beijing)

【摘要】 The impact-abrasive wear behavior of ZTA(zirconia toughened alumina) particle(ZTAp) and NbC particle(NbCp) reinforced Fe60 matrix composites(ZTAp-NbCp/Fe60) were investigated. Specimens of pure Fe60 matrix material, NbCp reinforced Fe60 composite(NbCp/Fe60) and ZTAp-NbCp/Fe60 with different contents of ZTAp were prepared through vacuum sintering and tested on an MLD-10B Impact Wear Rig. As revealed by the results, NbCp could strengthen Fe60 matrix, and had fine grain strengthening effect on Fe60matrix. When the mass fraction of ZTAp was 5%-15%, the impact-abrasive wear performance of ZTAp-NbCp/Fe60 composites was better than that of Fe60 and NbCp/Fe60. When the mass fraction was 15%, the ZTApNbCp/Fe60 had the best performance. ZTAp could weaken the impact and wear effect of abrasive particles on the composite and protect the matrix. Cracks occured at the interface and at defects in the ZTAp. The former leaded to ZTAp shedding, while the latter leaded to ZTAp fracturing. In both cases, the performance of the composite material would decrease.

【Abstract】 The impact-abrasive wear behavior of ZTA(zirconia toughened alumina) particle(ZTAp) and NbC particle(NbCp) reinforced Fe60 matrix composites(ZTAp-NbCp/Fe60) were investigated. Specimens of pure Fe60 matrix material, NbCp reinforced Fe60 composite(NbCp/Fe60) and ZTAp-NbCp/Fe60 with different contents of ZTAp were prepared through vacuum sintering and tested on an MLD-10B Impact Wear Rig. As revealed by the results, NbCp could strengthen Fe60 matrix, and had fine grain strengthening effect on Fe60matrix. When the mass fraction of ZTAp was 5%-15%, the impact-abrasive wear performance of ZTAp-NbCp/Fe60 composites was better than that of Fe60 and NbCp/Fe60. When the mass fraction was 15%, the ZTApNbCp/Fe60 had the best performance. ZTAp could weaken the impact and wear effect of abrasive particles on the composite and protect the matrix. Cracks occured at the interface and at defects in the ZTAp. The former leaded to ZTAp shedding, while the latter leaded to ZTAp fracturing. In both cases, the performance of the composite material would decrease.

【基金】 Funded by the National Key Research and Development Program (No.2017YFB0305105);the National Natural Science Foundation of China (No.51571210)
  • 【文献出处】 Journal of Wuhan University of Technology(Materials Science) ,武汉理工大学学报(材料科学版)(英文版) , 编辑部邮箱 ,2023年06期
  • 【分类号】TB333
  • 【下载频次】13
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