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Corrosion resistance and mechanical property of AZ31 magnesium alloy by N/Ti duplex ion implantation

机译:N / Ti双工离子注入对AZ31镁合金的耐蚀性和力学性能

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N/Ti duplex ion implantation was conducted on AZ31 magnesium alloy surface by metal vapor vacuum arc (MEVVA) ion source to improve its corrosion resistance and mechanical property. Auger electron spectrum (AES), energy dispersive X-ray spectroscopy (EDX) and X-ray diffraction (XRD) were used to characterize the elemental concentration-depth profiles and phase composition of the modified layer. The anti-corrosion performance of treated samples was evaluated using potentiodynamic polarization system and scanning electronic microscope (SEM). The surface hardness of ion implantation samples were measured by hardness tester. XRD analysis shows that Mg, MgO, Ti, TiO_2 and TiN phases exist in the surface modification layer. AES result indicates that the surface layer thick is about 200nm; the ion dose and thickness of the implanted layer increase with the implantation voltage and treatment time. The depth profile of implanted N+Ti in AZ31 magnesium alloys is similar to Gauss distribution, and the maximum concentration up to 66at.%. The hardness of treated sample is 94.5HV_(0.01), increases by 50.7%. Compared with the bare substrate, the corrosion potential E_(corr) of N/Ti duplex ion implantation coupon increases by 600mV, the corrosion current density i_(corr) decreases by two orders of magnitude, and the polarization resistance increases by 66.4 times in a 0.56M NaCl solution. The corrosion resistance can be slightly improved by low implantation voltage. In addition, too high implantation voltage or too long treatment time have a negative influence on the corrosion resistance. The corrosion resistance of AZ31 magnesium alloy can be effectively improved by nitrogen and titanium duplex ion implantation.
机译:通过金属蒸气真空电弧(MEVVA)离子源对AZ31镁合金表面进行N / Ti双工离子注入,以提高其耐蚀性和力学性能。用俄歇电子能谱(AES),能量色散X射线能谱(EDX)和X射线衍射(XRD)表征改性层的元素浓度-深度分布和相组成。使用电位动力极化系统和扫描电子显微镜(SEM)评估处理后样品的防腐性能。用硬度计测定离子注入样品的表面硬度。 XRD分析表明,Mg,MgO,Ti,TiO_2和TiN相存在于表面改性层中。 AES结果表明表面层厚度约为200nm。离子注入量和注入层厚度随注入电压和处理时间的增加而增加。 AZ31镁合金中植入N + Ti的深度分布类似于高斯分布,最大浓度可达66at。%。处理后的样品硬度为94.5HV_(0.01),提高了50.7%。与裸露的衬底相比,N / Ti双离子注入试样的腐蚀电势E_(corr)增加了600mV,腐蚀电流密度i_(corr)减少了两个数量级,并且极化电阻在短时间内提高了66.4倍。 0.56M NaCl溶液。较低的注入电压可以稍微改善耐腐蚀性。另外,太高的注入电压或太长的处理时间对耐腐蚀性有负面影响。氮和钛双离子注入可以有效提高AZ31镁合金的耐蚀性。

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