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    郭广晗, 刘佳琦, 黄云涛, 岳新艳, 张翠萍, 茹红强. Ti(C,N)含量对无压烧结Ti(C,N)/ZrO2陶瓷复合材料微观结构和性能的影响[J]. 机械工程材料, 2022, 46(11): 49-54. DOI: 10.11973/jxgccl202211008
    引用本文: 郭广晗, 刘佳琦, 黄云涛, 岳新艳, 张翠萍, 茹红强. Ti(C,N)含量对无压烧结Ti(C,N)/ZrO2陶瓷复合材料微观结构和性能的影响[J]. 机械工程材料, 2022, 46(11): 49-54. DOI: 10.11973/jxgccl202211008
    GUO Guanghan, LIU Jiaqi, HUANG Yuntao, YUE Xinyan, ZHANG Cuiping, RU Hongqiang. Effect of Ti(C,N) Content on Microstructure and Properties ofPressureless Sintered Ti(C,N)/ZrO2 Ceramic Composites[J]. Materials and Mechanical Engineering, 2022, 46(11): 49-54. DOI: 10.11973/jxgccl202211008
    Citation: GUO Guanghan, LIU Jiaqi, HUANG Yuntao, YUE Xinyan, ZHANG Cuiping, RU Hongqiang. Effect of Ti(C,N) Content on Microstructure and Properties ofPressureless Sintered Ti(C,N)/ZrO2 Ceramic Composites[J]. Materials and Mechanical Engineering, 2022, 46(11): 49-54. DOI: 10.11973/jxgccl202211008

    Ti(C,N)含量对无压烧结Ti(C,N)/ZrO2陶瓷复合材料微观结构和性能的影响

    Effect of Ti(C,N) Content on Microstructure and Properties ofPressureless Sintered Ti(C,N)/ZrO2 Ceramic Composites

    • 摘要: 以Y2O3稳定纳米ZrO2粉、TiO2粉、TiN粉、炭黑和水溶性酚醛树脂为原料,采用无压烧结方法制备Ti (C,N)/ZrO2陶瓷复合材料,研究了Ti (C,N)质量分数(25%~40%)对其微观结构和性能的影响。结果表明:Ti (C,N)/ZrO2陶瓷复合材料由t-ZrO2和Ti (C,N)两相组成;随着Ti (C,N)含量的增加,Ti (C,N)颗粒逐渐出现团聚现象,但当Ti (C,N)质量分数增加至40%时,Ti (C,N)相分布又变得较均匀;随着Ti (C,N)含量的增加,陶瓷复合材料的开口气孔率先增大后减小,硬度、抗弯强度和断裂韧度先降低后升高;当Ti (C,N)质量分数为40%时,陶瓷复合材料的综合性能最好,其开口气孔率、硬度、抗弯强度、断裂韧度分别为0.73%,14.4 GPa,354 MPa,5.8 MPa·m1/2

       

      Abstract: Ti(C, N)/ZrO2 ceramic composites were prepared by pressureless sintering with Y2O3 stabilized nano ZrO2 powder, TiO2 powder, TiN powder, carbon black and water-soluble phenolic resin as raw materials. The effects of Ti(C, N) mass fraction (25%-40%) on the microstructure and properties were studied. The results show that the Ti(C, N)/ZrO2 ceramic composites consisted of t-ZrO2 and Ti(C,N) phases. The Ti(C, N) particles agglomerated gradually with increasing Ti(C,N) content, while distributed relatively evenly when the Ti(C, N) mass fraction increased to 40%. With increasing Ti(C, N) phase content, the open porosity of the ceramic composites increased first and then decreased, and the hardness, flexural strength and fracture toughness decreased first and then increased. When the mass fraction of Ti(C, N) was 40%, the ceramic composites had the best comprehensive performance with the open porosity of 0.73%, the hardness of 14.4 GPa, the flexural strength of 354 MPa and the fracture toughness of 5.8 MPa·m1/2.

       

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