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首页> 外文期刊>Surface & Coatings Technology >Influence of annealing on mechanics behaviors of oxygen-implanted layer on Ti6Al4V by plasma-based ion implantation
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Influence of annealing on mechanics behaviors of oxygen-implanted layer on Ti6Al4V by plasma-based ion implantation

机译:退火对基于等离子体的离子注入Ti6Al4V上氧注入层力学行为的影响

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摘要

Ti6Al4V was implanted by oxygen plasma based ion implantation at pulsed negative voltages of 50kV with a fluence of 4×10~(17) O/cm~2. The implanting temperature of below 180°C was controlled by an oil cooling working table. Subsequent annealing was applied the implanted samples in vacuum at 600°C, 650°C and 700°C, respectively. The influence of annealing conditions on hardness and scratch resistance of the oxygen-implanted layer was investigated. The annealing at a lower temperature below 650°C makes the hardness peak widen and shift into the substrate. Scratch resistance of the oxygen implanted layer also was improved significantly. While the temperature increases to 650°C and 700°C, annealing induces a hardness valley value, which is even far lower than that of the substrate. At the same time, scratch resistance deteriorates for the oxygen implanted layer. All annealing samples have a higher elasticity recover than the implanted samples.
机译:通过基于氧等离子体的离子注入在50kV的脉冲负电压下以4×10〜(17)O / cm〜2的通量注入Ti6Al4V。通过油冷却工作台控制低于180℃的注入温度。随后分别在600°C,650°C和700°C的真空下对植入的样品进行退火。研究了退火条件对氧注入层硬度和耐划伤性的影响。在低于650°C的较低温度下进行退火会使硬度峰变宽并移入基材中。氧注入层的耐刮擦性也显着提高。当温度升高到650°C和700°C时,退火会导致硬度谷值,该值甚至远低于基板的硬度谷值。同时,氧注入层的耐划伤性下降。所有退火样品均具有比植入样品更高的弹性回复率。

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