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首页> 外文期刊>Surface & Coatings Technology >Investigation of nitrogen ionization state and its effect on the nitride layer during fiber laser gas nitriding of Ti-6Al-4V alloy
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Investigation of nitrogen ionization state and its effect on the nitride layer during fiber laser gas nitriding of Ti-6Al-4V alloy

机译:Ti-6Al-4V合金光纤激光气体氮化期间氮电离状态及其对氮化物层的影响

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摘要

A nitride layer can be formed on the surface of a titanium alloy during laser gas nitriding, to improve the surface hardness and wear resistance of the titanium alloy. Importantly, the nitride layer is influenced by the nitrogen ionization state (nitrogen molecules or nitrogen atoms and ions). No research reports exist on the nitrogen ionization state or the effect on the nitride layer during fiber laser nitriding of titanium alloys. Radiation images that were taken with a high-speed camera and emission spectra that were collected with a fiber spectrometer were used to study the nitrogen ionization state. To study the effect of nitrogen ionization state on the nitride layer, the surface nitrogen and oxygen content were measured with an electro-probe microanalyzer, and the surface morphology of the nitride layer was studied by optical and scanning electron microscopy. The experimental results showed that the laser power density was too low to induce nitrogen ionization during fiber laser gas nitriding of the Ti-6Al-4V alloy. The nitrogen molecules had a lower energy than the nitrogen plasma (nitrogen atoms and ions) and a slower reaction rate with the titanium alloy, which resulted in a low nitrogen content and a few defects in the nitride layer. The relationship between the oxidation and nitriding was competitive; that is, nitrogen and oxygen competed to react with the titanium alloy. As such, a low nitrogen content led to a high oxygen content, and the nitride surface was golden-yellow in color with black markings.
机译:在激光气体渗氮过程中,可在钛合金表面形成氮化物层,以提高钛合金的表面硬度和耐磨性。重要的是,氮化物层受氮电离状态(氮分子或氮原子和离子)的影响。目前还没有关于钛合金光纤激光渗氮过程中氮电离状态及其对氮化层影响的研究报道。用高速相机拍摄的辐射图像和用光纤光谱仪收集的发射光谱用于研究氮电离状态。为了研究氮电离状态对氮化物层的影响,用电子探针微分析仪测量了氮化物层表面的氮和氧含量,并用光学显微镜和扫描电子显微镜研究了氮化物层的表面形貌。实验结果表明,在Ti-6Al-4V合金的光纤激光气体渗氮过程中,激光功率密度太低,导致氮电离。氮分子的能量低于氮等离子体(氮原子和离子),与钛合金的反应速度较慢,这导致氮含量较低,氮化物层中存在少量缺陷。氧化和氮化之间存在竞争关系;也就是说,氮和氧与钛合金竞争反应。因此,低氮含量导致高氧含量,氮化物表面呈金黄色,带有黑色标记。

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