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Effect of surface treatment by ceramic conversion on the fretting behavior of NiTi shape memory alloy

机译:陶瓷转化表面处理对NiTi形状记忆合金微动行为的影响

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摘要

Three types of surface-treated NiTi samples, M-1 (700℃/0.5 h), M-2 (650℃/1 h) and M-3 (400℃/50 h), were prepared by ceramic conversion treatment under different conditions. The effect of the surface treatment on the fretting behavior of NiTi alloy was investigated in the Ringer's solution by using a horizontal servo-hydraulic fretting apparatus. The experimental results indicated that the surface layer of the low temperature (400℃) treated samples M-3 was dominated by a single TiO{sub}2 layer, while the high temperature (650 and 700℃) treated samples M-l and M-2 consisted of surface TiO{sub}2 layer followed by a TiNi{sub}3 layer. These surface layers were found to have a strong effect on the fretting behavior of the NiTi alloy in terms of changes in the shape of the curves of the tangential force (F{sub}t) versus displacement (d), the fretting regimes and the damage mechanisms involved. The stress-induced reorientation of martensite bands in the NiTi alloy could decrease the slope of the F{sub}t-d curve and thus increase the elastic accommodation ability of the NiTi plate against 1Cr13 steel ball pair. However, since the surface-treated layers could suppress the martensite reorientation in the NiTi substrate and thus decrease the elastic accommodation ability of NiTi, the gross slip started at a smaller displacement amplitude for the surface-treated NiTi samples than for the untreated one. The main wear mechanism of the as-received NiTi alloy in slip regime was adhesion and delamination, while the major damage to the high temperature treated NiTi samples M-l and M-2 was determined as the spallation of surface-treated layers. Due to the high bonding strength of the surface-treated layer with NiTi substrate, the low temperature treated NiTi samples M-3 showed the best fretting wear resistance in all samples tested.
机译:通过在不同条件下进行陶瓷转化处理,制备了三种表面处理过的NiTi样品:M-1(700℃/ 0.5 h),M-2(650℃/ 1 h)和M-3(400℃/ 50 h)。条件。使用水平伺服液压微动装置,在林格氏溶液中研究了表面处理对NiTi合金微动行为的影响。实验结果表明,低温(400℃)处理过的样品M-1和M-2的表面层由单个TiO {sub} 2层占据,而高温(650和700℃)处理过的样品M1和M-2由表面TiO {sub} 2层和随后的TiNi {sub} 3层组成。发现这些表面层对切向力(F {sub} t)与位移(d)的曲线形状的变化(d),微动状态和摩擦力对NiTi合金的微动行为有很大的影响。涉及的损坏机制。应力诱导的NiTi合金中马氏体带的重新取向可以减小F {sub} t-d曲线的斜率,从而提高NiTi板对1Cr13钢球对的弹性适应能力。但是,由于经过表面处理的层可以抑制NiTi基体中的马氏体重新取向,从而降低NiTi的弹性容纳能力,因此与未处理的样品相比,经表面处理的NiTi样品的总滑移以较小的位移幅度开始。所接收的NiTi合金在滑动状态下的主要磨损机理是粘附和分层,而对高温处理的NiTi样品M-1和M-2的主要破坏被确定为表面处理层的剥落。由于表面处理层与NiTi基板的高粘结强度,经低温处理的NiTi样品M-3在所有测试的样品中均显示出最佳的抗微动磨损性。

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