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Effect of Laser Gas Nitriding on the Microstructure and Corrosion Properties of Ti-6Al-4V Alloy

机译:激光气体氮化对Ti-6Al-4V合金组织和腐蚀性能的影响

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Laser surface melting of Ti-6AI-4V alloy under a pure nitrogen environment of 30 L/min gas flow rate, was carried out with 200-600 mJ laser beams, produced by a Nd-YAG pulsed laser at 5 mm defocused distance, and 0.5-3 mm/s sample traverse velocities. The microstructure, hardness and corrosion behaviour of the nitrided samples were examined, using scanning electron microscopy, X-ray diffractometry (XRD), microhardness measurements across the workpiece cross-section and anodic polarization tests in 2 M HCl solution. The microstructures consisted mainly of a thin continuous layer of titanium nitride followed by nearly perpendicular dendrites, and below this, a mixture of small dendrites and large needles, which had a random orientation. The denderitic structure was the TiN phase, and the needle phase and the phase of the matrix between the dendrites were nitrogen-enriched α'-Ti. The density of TiN dendrites decreased gradually towards the interface between the nitrided layer and the substrate. The melted zone showed a range of hardness of between 400-1300 Hv, the hardness being found to be related to the dendrite populations. An improvement in corrosion behaviour, associated with the presence of a good TiN coating, was observed. Also, the improved pitting corrosion resistance is obtained due to the microstructural changes after laser treatment.
机译:用Nd-YAG脉冲激光以5 mm离焦距离产生的200-600 mJ激光束在气体流量为30 L / min的纯氮气环境下对Ti-6AI-4V合金进行激光表面熔化, 0.5-3 mm / s的样品移动速度。使用扫描电子显微镜,X射线衍射仪(XRD),横跨工件横截面的显微硬度测量以及在2 M HCl溶液中的阳极极化测试,检查了渗氮样品的微观结构,硬度和腐蚀行为。微观结构主要由连续的氮化钛薄层和随后几乎垂直的树枝状晶体组成,在此之下,是小树枝状晶体和大针状晶体的混合物,具有随机取向。枝晶结构为TiN相,针状相和枝晶间的基质相为富氮的α'-Ti。 TiN树枝状晶体的密度朝着氮化层和衬底之间的界面逐渐降低。熔融区显示出400-1300 Hv的硬度范围,发现该硬度与枝晶数量有关。观察到与良好的TiN涂层有关的腐蚀行为得到了改善。而且,由于激光处理后的微观结构变化,获得了改善的耐点蚀性。

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