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首页> 外文期刊>Journal of Materials Engineering and Performance >Fabrication and Properties of (Ti, W, Mo, Nb, Ta)(C, N)-Co-Ni Cermets
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Fabrication and Properties of (Ti, W, Mo, Nb, Ta)(C, N)-Co-Ni Cermets

机译:(W,W,NB,SATE)(C,N)-IN CERMETS的制作和性质

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Fine single-phase (Ti, W, Mo, Nb, Ta)(C, N) solid solution powders were synthesized through the carbothermal reduction method. (Ti, W, Mo, Nb, Ta)(C, N)-Co-Ni cermets were fabricated via vacuum sintering. Micrographs of powders and microstructures of the cermets were observed using transmission electron microscopy and scanning electron microscopy in combination with energy-dispersive spectroscopy. Phase compositions were investigated using x-ray diffraction. The C and N contents were measured using elemental analysis (CHNS/O). The optimized conditions for the synthesis process of single-phase (Ti, W, Mo, Nb, Ta)(C, N) solid solution powders with high nitrogen content were 1500 degrees C for 2 h under a 2 kPa nitrogen atmosphere. Under such conditions, the particle size of the synthesized powder was less than 140 nm, and its carbon and nitrogen contents were 9.174 and 7.040 wt.%, respectively. The synthesized fine (Ti, W, Mo, Nb, Ta)(C, N) solid solution powders had a significant positive impact on the strengthening and hardening of Ti(C, N)-based cermets. The values of hardness and transverse rupture strength of the (Ti, W, Mo, Nb, Ta)(C, N)-Co-Ni cermets sintered at 1450 degrees C for 1 h in vacuum (SSC3) increase by 14.7 and 20.2% compared to those of traditional Ti(C, N)-WC-Mo2C-NbC-TaC-Co-Ni cermet (TC), respectively. However, the K-IC value of SSC3 decreases by 14.1% compared to that of TC. The mechanism of strengthening and hardening and the cause of the low fracture toughness of the SSC were revealed by comparing the differences in the microstructures of SSC and TC.
机译:通过碳热还原法合成精细的单相(Ti,W,Mo,Nb,Ta)(C,N)固溶体粉末。 (Ti,W,Mo,Nb,Ta)(C,N)-Co-Ni金属陶瓷通过真空烧结制造。使用透射电子显微镜和扫描电子显微镜与能量分散光谱相结合观察到金属陶瓷的显微照片和金属陶瓷的微观结构。使用X射线衍射研究相组合物。使用元素分析(CHNS / O)测量C和N含量。在2kPa氮气氛下,具有高氮含量的单相(Ti,W,Mo,Nb,Ta)(C,N)固溶体粉末的合成过程的优化条件为1500℃,在2kPa氮气氛下为2小时。在这种条件下,合成粉末的粒度小于140nm,其碳和氮含量分别为9.174和7.040重量%。%。合成的精细(Ti,W,Mo,Nb,Ta)(C,N)固溶体粉末对基于Ti(C,N)的金属陶瓷的强化和硬化具有显着的积极影响。 (Ti,W,Mo,Nb,Ta)(C,N)-Co-Ni金属膜的硬度和横向破裂强度的值在1450℃下真空烧结1小时(SSC3)增加14.7%和20.2%与传统Ti(C,N)-WC-MO2C-NBC-TAC-CO-CO-CO-CO-CO-CONET(TC)相比。然而,与TC相比,SSC3的K-IC值降低了14.1%。通过比较SSC和Tc的微观结构差异,揭示了强化和硬化的机理和SSC的低断裂韧性的原因。

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