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Effects of ECAP on the Formation and Tribological Properties of Thermal Oxidation Layers on a Pure Titanium Surface

机译:ECAP对纯钛表面热氧化层形成和摩擦学性质的影响

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In this paper, thermal oxidation was used to prepare an oxide layer on a pure titanium surface using the equal-channel angular pressing (ECAP) treatment. Transmission electron microscopy, field emission scanning electron microscopy, X-ray diffraction and Raman spectrometry were used for morphology and structure characterization and investigation of the oxidation kinetics during the oxidation process. The results showed that the major phase of the oxide layer was rutile-type TiO2. The presence of voids in the oxide layer decreased with increasing temperature. The grain size of the TiO2 obtained on the ECAP-treated Ti surface was smaller than that on the as-received titanium. The ECAP treatment promoted the formation of the oxide layer; the activation energy (Q) for the oxidation reaction with ECAP treatment was 81.03kJmol(-1) in the range of 650 degrees C to 850 degrees C, which was 26.3% lower than that of the as-received titanium. The hardness values of the oxide layers on the as-received titanium and ECAP-treated Ti were 705.8HV and 805.1HV, respectively. The friction coefficient of the oxide layer on the ECAP-treated Ti was lower than that on the as-received titanium. The wear rates of the oxide layers on the ECAP-treated Ti and as-received titanium were 4.66x10(-8)mm(3)N(-1)m(-1) and 6.28x10(-8)mm(3)N(-1)m(-1), respectively.
机译:在本文中,使用使用相等通道角压(ECAP)处理在纯钛表面上制备氧化物层的热氧化。透射电子显微镜,现场发射扫描电子显微镜,X射线衍射和拉曼光谱法用于氧化过程中氧化动力学的形态和结构表征及研究。结果表明,氧化物层的主要相是金红石型TiO 2。随着温度的增加,氧化物层中的空隙的存在降低。在Ecap处理的Ti表面上获得的TiO 2的晶粒尺寸小于接收的钛上的TiO 2。 ECAP处理促进氧化物层的形成;用于氧化处理的氧化反应的活化能量(Q)为81.03kJmol(-1),在650℃至850℃的范围内,比接收的钛的26.3%低26.3%。接收的钛和ECAP处理Ti上的氧化物层的硬度值分别为705.8HV和805.1HV。 ECAP处理Ti上的氧化物层的摩擦系数低于接收的钛上的摩擦系数。 ECAP处理的Ti和接收钛的氧化物层的磨损率为4.66×10(-8)mm(3)n(-1)m(-1)和6.28x10(-8)mm(3) n(-1)m(-1)分别。

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