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Microstructure and mechanical properties of TiC0.7N0.3-HfC cermet tool materials

机译:Tic0.7N0.3-HFC金属陶瓷工具材料的组织和力学性能

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TiC0.7N0.3-HfC cermet tool materials were fabricated by hot-press sintering. Effects of different metal additives (Ni, Co, Ni-Co and Ni-Mo), sintering temperature and holding time on the microstructures and mechanical properties of TiC0.7N0.3-HfC cermets were investigated. Results showed that Ni-Mo or Ni-Co as metal additives was better for the mechanical properties of TiC0.7N0.3-HfC cermets than only Ni or only Co as the metal additives and Ni-Mo better than Ni-Co. HfC particle dispersion existed in these four cermets and only in the TiC0.7N0.3-HfC-Ni-Mo cermet the core-rim structure obviously existed. TiC0.7N0.3-HfC-Ni-Mo cermet had significantly smaller grains than the other three cermets because Ni-Mo can significantly refine the grain. With the sintering temperature increasing from 1450 degrees C to 1650 degrees C, grains grew gradually; Vickers hardness and flexural strength decreased gradually and the fracture toughness increased firstly and then decreased. With the holding time increasing from 15 mm to 60 min, grains grew gradually; Vickers hardness, flexural strength and the fracture toughness increased firstly and then decreased. TiC0.7N0.3-HfC-Ni-Mo cermets sintered at 1450 degrees C with 30 min holding time had the better comprehensive mechanical properties with flexural strength of 1346.41 +/- 31 MPa, fracture toughness of 8.46 +/- 0.23 MPa m(1/2) and Vickers hardness of 22.91 +/- 0.22 GPa.
机译:通过热压烧结制造Tic0.7n0.3-HFC Cermet工具材料。研究了不同金属添加剂(Ni,Co,Ni-Co和Ni-Mo),烧结温度和保持时间对Tic0.7N0.3-HFC金属陶瓷的微观结构和力学性能的影响。结果表明,Ni-Mo或Ni-Co作为金属添加剂更好地用于Tic0.7n0.3-HFC金属陶瓷的机械性能而不是仅Ni或仅与金属添加剂和镍氢的CO合并而不是Ni-Co。在这四个金属膜中存在HFC颗粒分散体,并且仅在Tic0.7N0.3-HFC-Ni-Mo金属陶瓷中,核心边缘结构明显存在。 Tic0.7N0.3-HFC-Ni-Mo Cermet比其他三个金属陶瓷显着较小,因为Ni-Mo可以显着细化谷物。随着烧结温度从1450摄氏度增加到1650℃,谷物逐渐增长;维氏硬度和抗弯强度逐渐降低,裂缝韧性首先增加,然后减少。随着持有时间从15毫米增加到60分钟,谷物逐渐增长;维克斯硬度,弯曲强度和断裂韧性首先增加,然后减少。 Tic0.7N0.3-HFC-Ni-Mo金属滤网在1450摄氏度下烧结,30分钟保持时间具有更好的综合机械性能,抗弯强度为1346.41 +/- 31 MPa,断裂韧性为8.46 +/- 0.23 MPa m( 1/2)和维氏硬度为22.91 +/- 0.22 GPA。

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