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Characteristics and wear performance of borided Ti6Al4V alloy prepared by double glow plasma surface alloying

机译:双辉等离子表面合金化制备的硼化Ti6Al4V合金的特性和耐磨性能

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摘要

Many hard or super hard coatings have been successfully prepared on titanium alloys using varieties of technologies for improving their wear resistance. Sometimes, however, enough toughness of the modified layers on titanium alloys is also demanded under some conditions, such as with dynamic impact loads. In this study, a 2μm thick uniform boride layer, composed of TiB, TiB_2, Ti_3B_4, Fe_3B and FeB phases, was formed on the surface of Ti6Al4V alloy using a double glow plasma surface boriding technique with FeB compound solid as precursor. A boron diffusion zone, beneath the boride layer, appeared with a thickness of more than 6μm consisting of interior-oriented needle-like TiB precipitates within the base. The boride layer and the boron diffusion zone composed jointly the whole borided layer, which presented excellent toughness and bonding strength in scratch and impact tests. The surface hardness of the borided Ti6Al4V alloy was about 8.38GPa. Compared to as-received Ti6Al4V alloy, the borided alloy exhibited significant improvement of wear resistance, about 35 times, against corundum ball with low normal loads under dry sliding conditions.
机译:已经使用各种技术成功地在钛合金上制备了许多硬质或超硬涂层,以改善其耐磨性。然而,有时在某些条件下,例如在动态冲击载荷下,还要求钛合金上的改性层具有足够的韧性。在这项研究中,采用双辉等离子体表面硼化技术,以FeB化合物固体为前驱体,在Ti6Al4V合金表面上形成了由TiB,TiB_2,Ti_3B_4,Fe_3B和FeB相组成的2μm厚的均匀硼化物层。硼化物层下方出现了一个硼扩散区,其厚度大于6μm,由内部取向的针状TiB沉淀物形成在基底内。硼化物层和硼扩散区共同组成整个硼化层,在划痕和冲击试验中表现出优异的韧性和粘结强度。硼化的Ti6Al4V合金的表面硬度约为8.38GPa。与原样的Ti6Al4V合金相比,该硼化合金在干滑动条件下对普通载荷较低的刚玉球的耐磨性显着提高了约35倍。

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