Chen Yi-Cheng, Ou Shih-Fu
Department of Mold and Die Engineering, National Kaohsiung University of Science and Technology, Kaohsiung 807, Taiwan.
Materials (Basel). 2020 Oct 9;13(20):4473. doi: 10.3390/ma13204473.
In this study, powder metallurgy was used to fabricate titanium nitride/nickel metal-matrix composites. First, titanium and nickel powders with weight ratios of 20:80, 50:50 and 80:20 were dry mixed for 24 h. After cold isostatic pressing, the green compacts were soaked in a water-based hot forging lubricant and sintered at 850, 950 and 1050 °C for 1.5 h in an air atmosphere. The effects of the amounts of titanium powder and the sintering temperatures on the mechanical properties (hardness, wear resistance and compressive strength) of the composites were investigated. The results indicated that titanium gradually transformed into titanium nitride near the surface after sintering due to the carbothermal reduction reaction; this transformation was observed to significantly increase the hardness. In addition, an oxygen-rich film was observed to form between the titanium nitride particles and the nickel matrix. An optimum sintering temperature of 950 °C provides the composites (titanium-nickel weight ratios of 20:80) the best mechanical properties (wear resistance and compressive strength) among other groups. Furthermore, increasing the titanium content to 80% in the composite increased the hardness; however, the wear resistance and compressive strength decreased.
在本研究中,采用粉末冶金法制备了氮化钛/镍金属基复合材料。首先,将重量比为20:80、50:50和80:20的钛粉和镍粉进行24小时的干混。冷等静压后,将坯块浸泡在水基热锻润滑剂中,并在空气气氛中于850、950和1050℃烧结1.5小时。研究了钛粉用量和烧结温度对复合材料力学性能(硬度、耐磨性和抗压强度)的影响。结果表明,由于碳热还原反应,烧结后钛在表面附近逐渐转变为氮化钛;观察到这种转变显著提高了硬度。此外,在氮化钛颗粒与镍基体之间观察到形成了富氧膜。950℃的最佳烧结温度使复合材料(钛-镍重量比为20:80)在其他组中具有最佳的力学性能(耐磨性和抗压强度)。此外,将复合材料中的钛含量增加到80%会提高硬度;然而,耐磨性和抗压强度会降低。