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Influence of preparation process on sintering behavior and mechanical properties of ultrafine grained Ti(C, N)-based cermets

机译:制备工艺对Ti(C,N)基超细晶金属陶瓷烧结行为和力学性能的影响

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摘要

The influences of forming and sintering processes on distortion, cracking as well as mechanical properties of sintered bodies of ultrafme grained Ti(C, N)-based cermets were investigated. The results show that lubricant is indispensable to fabrication of ultrafme Ti(C, N)-based cermets, however, with low binder content in powder mixture, the lubrication action of paraffin is attenuated. A appropriate level of 2% (mass fraction) paraffin is determined for a cermet with binder content of 36% (mass fraction). It is also found that the influence of compaction pressure on distortion and cracking of sintered bodies presents a complex relationship. A relatively lower or higher compaction pressure, less than 100 MPa and more than 400 MPa respectively, favors uniform density distribution in green compact. The heating rate of sintering should be strictly controlled. Too fast heating rate results in enclosed pores to burst and forms large size pores in sintering body. A heating rate of 3 ℃/min is recommended.
机译:研究了成形和烧结工艺对超细晶粒Ti(C,N)基金属陶瓷烧结体变形,开裂以及力学性能的影响。结果表明,润滑剂是制造超细Ti(C,N)基金属陶瓷必不可少的,但是,由于粉末混合物中的粘结剂含量低,石蜡的润滑作用减弱。对于粘合剂含量为36%(质量分数)的金属陶瓷,确定合适的2%(质量分数)石蜡含量。还发现压制压力对烧结体的变形和破裂的影响存在复杂的关系。相对较低或较高的压实压力,分别小于100 MPa和大于400 MPa,有利于生压坯中的均匀密度分布。烧结的加热速率应严格控制。太快的加热速度导致封闭的孔破裂并在烧结体中形成大尺寸的孔。建议加热速率为3℃/ min。

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