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Experimental investigation of bioceramic (Hydroxyapatite and Yttrium stabilized zirconia) composite on Ti6Al7Nb alloy for medical implants

机译:医用植入物Ti6Al7NB合金中杀生物蛋白酶(羟基磷灰石和钇稳定氧化锆)复合的实验研究

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In this experimental work, a mixture of Hydroxyapatite (HAp)+yttrium stabilized zirconia (YSZ) is deposited on a layer of Ti6Al7Nb alloy by electron-beam deposition method, which finds its application in bone and dental implants. Multi-criteria decision making method is adopted (TOPSIS) highlights the close to an ideal solution at the temperature of 160 degrees C (Chamber), 950 degrees C (Furnace), 30 mA (Energy), 90 min (Duration) for achieving the coated layer with optimal thickness. XRD revealed the heat treatment of the samples varying at 450 degrees C and below, tend to shift the sample toward amorphous region due to the inherent nature of electron-beam deposition. To compensate for this, a post-heat treatment has been carried out. From SEM analysis, it is ascertained that coated specimen indicates minimal micro voids and pores, as seen in the cross-sectional area of the HAp/YSZ coated Ti6Al7Nb. The percentage increase from the stoichiometric YSZ and HAp (1.68) to 18.96% (1.99) and 19.20% (1.54) indicates the rise in elemental composition with rise in temperature, attributed to the dissolving nature of P, along with the boundaries of Zr and Ca. In the presence of HAp-YSZ, nano-coated specimen on the substrate would lead to a higher penetration depth along with increase in the strength of the bond formed (adhesive) in the specimen. In the presence of HAp/YSZ powder the corrosion rate falls by 49.34%, attributed to the presence of Zr in YSZ sample creating an addendum for osseointegration.
机译:在该实验工作中,通过电子束沉积方法将羟基磷灰石(HAP)+钇稳定的氧化锆(YSZ)的混合物沉积在Ti6Al7NB合金层上,这在骨骼和牙科植入物中施用其应用。采用多标准决策方法(TOPSIS)突出显示在160摄氏度(腔室),950摄氏度(炉),30 mA(能量),90 min(持续时间)的温度下接近理想的解决方案。实现具有最佳厚度的涂层层。 XRD揭示了在450℃和以下改变的样品的热处理,倾向于由于电子束沉积的固有性质而将样品移向非晶区域。为了补偿这一点,已经进行了热水处理。从SEM分析中,确定涂覆的样本表示最小的微空隙和孔,如HAP / YSZ涂覆的Ti6Al7NB的横截面积所示。从化学计量ysz和hap(1.68)增加到18.96%(1.99)和19.20%(1.54)的百分比表明,元素组合物的上升呈温度升高,归因于P的溶解性,以及Zr的界限以及Zr的界限。加利福尼亚州。在Hap-ysz的存在下,基板上的纳米涂覆的样品将导致更高的渗透深度,随着所形成(粘合剂)中的粘合强度的增加而导致较高的渗透深度。在HAP / YSZ粉末的存在下,腐蚀速率下降49.34%,归因于YSZ样品中Zr的存在,从而产生骨整合的附录。

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