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Effect of Ni Contents on Microstructures and Mechanical Properties for (Ti_(0.8)Mo_(0.2))C-Ni Cermets

机译:镍含量对(Ti_(0.8)Mo_(0.2))C-Ni金属陶瓷的显微组织和力学性能的影响

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摘要

The (Ti_(0.8)Mo_(0.2))C-xNi cermets (x = 10, 20, 30 and 40 mass%) were prepared by two milling processes; first, the (Tio.8Mo0.2)C produced by mechanical alloying of Ti, Mo and C powders (Process I). Second, mechanical alloyed (Ti_(0.8)Mo_(0.2))C and commercial Ni powders mixed by tumbling ball milling (Process II) for 72 h. On (Ti_(0.8)Mo_(0.2))C-40Ni, the milling time of Process II was 96 h in addition of 72 h. The Vickers hardness with fracture toughness and the quantitative microstructural parameters were measured and analyzed. The relationship between fracture toughness and hardness for the cermets was on the fitted curve derived from the previous data for the cermets, except for the case of (Ti_(0.8)Mo_(0.2))C-40Ni for 72 h, which is lower fracture toughness than that for the previous works and (Ti_(0.8)Mo_(0.2))C-40Ni for 96 h. The contiguity of the samples tend to increase with increasing hard phase contents except for the case of (Ti_(0.8)Mo_(0.2))G-40Ni for 72 h, which is higher than those of (Ti_(0.8)Mo_(0.2))C-40Ni for 96 h. On the other hand, the coefficient of variation for hard phase of the both (Ti_(0.8)Mo_(0.2))C-40Ni were almost same.
机译:(Ti_(0.8)Mo_(0.2))C-xNi金属陶瓷(x = 10、20、30和40质量%)是通过两个研磨工艺制备的。首先是通过机械合金化Ti,Mo和C粉末生产的(Tio.8Mo0.2)C(工艺I)。其次,将机械合金化(Ti_(0.8)Mo_(0.2))C和商用Ni粉通过滚球磨(工艺II)混合72 h。在(Ti_(0.8)Mo_(0.2))C-40Ni上,方法II的研磨时间为96小时,另外为72小时。测量并分析了具有断裂韧性的维氏硬度和定量的微观结构参数。金属陶瓷的断裂韧性和硬度之间的关系在拟合曲线上,该曲线是根据先前金属陶瓷的数据得出的,除了(Ti_(0.8)Mo_(0.2))C-40Ni持续72 h的情况是较低的断裂韧性比以前的工作和(Ti_(0.8)Mo_(0.2))C-40Ni持续96 h。除了(Ti_(0.8)Mo_(0.2))G-40Ni持续72 h的情况外,样品的连续性倾向于随硬相含量的增加而增加,这要高于(Ti_(0.8)Mo_(0.2) C-40Ni 96小时。另一方面,(Ti_(0.8)Mo_(0.2))C-40Ni的硬相的变化系数几乎相同。

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