首页> 外文期刊>Journal of nanoscience and nanotechnology >Graphene Oxide/Silver Nanoparticle Coating Produced by Electrophoretic Deposition Improved the Mechanical and Tribological Properties of NiTi Alloy for Biomedical Applications
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Graphene Oxide/Silver Nanoparticle Coating Produced by Electrophoretic Deposition Improved the Mechanical and Tribological Properties of NiTi Alloy for Biomedical Applications

机译:通过电泳沉积产生的石墨烯氧化物/银纳米粒子涂层改善了生物医学应用的NITI合金的机械和摩擦学特性

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The aim of this study was to evaluate the mechanical and tribological properties of graphene oxide/silver nanoparticle (GO/AgNP) coated medical grade nickel-titanium (NiTi) alloy. The alloy substrates were coated using electrophoretic deposition at 30 V for 1, 5, and 10 min and were characterized by SEM, Raman spectroscopy, EDS, and surface profilometer. Mechanical and tribological tests were performed for hardness, Young's modulus, and friction coefficient. The data were analyzed using the Kruskal-Wallis test at a significance level of 0.05 to compare the coatings' roughness, thickness, friction coefficient, and hardness at the different coating times. The GO/AgNP coatings were confirmed with Raman spectroscopy, which demonstrated the presence of D bands and G bands at similar to 1300 cm(-1) and similar to 1600 cm(-1). The intensity ratios of the D and G bands (I-D/I-G) were 0.838, 0.836, and 0.837 in the 1, 5, and 10 min coated groups, respectively. The coating thickness ranged from 0.46-1.34 mu m and the mean surface roughness (Ra) ranged from 50.72-69.93 nm. Increasing the coating time from 1-10 min increased the roughness, thickness, and Young's modulus of surface coating. The friction coefficients of the coated NiTi alloy were significantly lower compared with that of the uncoated NiTi allloy (p 0.001). The GO/AgNP nanocomposite coated NiTi alloy demonstrated improved mechanical strength and a reduced friction coefficient that would be more favorable for biomedical applications.
机译:本研究的目的是评估石墨烯氧化物/银纳米粒子(GO / AGN)涂覆的医用级镍 - 钛(NITI)合金的机械和摩擦学性质。使用电泳沉积在30V的电泳沉积涂覆合金基质,其特征在于SEM,拉曼光谱,EDS和表面轮廓仪。对硬度,杨氏模量和摩擦系数进行机械和摩擦学检测。使用Kruskal-Wallis测试在0.05的显着性水平下进行分析数据,以比较不同涂层时间的涂层的粗糙度,厚度,摩擦系数和硬度。通过拉曼光谱证实Go / AgNP涂层,其证明了类似于1300cm(-1)的D带和G带的存在,并且类似于1600cm(-1)。 D和G带(I-D / I-G)的强度比分别为0.838,0.836和0.837分别在1,5和10分钟涂覆的基团中。涂层厚度范围为0.46-1.34μm,平均表面粗糙度(Ra)范围为50.72-69.93nm。从1-10分钟增加涂布时间增加了表面涂层的粗糙度,厚度和杨氏模量。与未涂覆的Niti Allloy(P <0.001)的涂覆的NITI合金的摩擦系数显着降低。 GO / AGNP纳米复合材料涂覆的NITI合金显示出改善的机械强度和降低的摩擦系数,对生物医学应用更有利。

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