首页> 外文期刊>Applied Surface Science >Studies on corrosion resistance and bio-activity of plasma spray deposited hydroxylapatite (HA) based TiO2 and ZrO2 dispersed composite coatings on titanium alloy (Ti-6Al-4V) and the same after post spray heat treatment
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Studies on corrosion resistance and bio-activity of plasma spray deposited hydroxylapatite (HA) based TiO2 and ZrO2 dispersed composite coatings on titanium alloy (Ti-6Al-4V) and the same after post spray heat treatment

机译:钛合金(Ti-6Al-4V)上等离子喷涂沉积羟基磷灰石(HA)的TiO2和ZrO2分散复合涂层的耐蚀性和生物活性的研究

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In the present study, the effect of plasma spray deposited hydroxylapatite (HA) based TiO2 dispersed (HA + 50 wt.% TiO2), coating and post spray heat treatment to be referred as HA-TiO2 (heat treated at 650 degrees C for 2 h) and ZrO2 dispersed (HA + 10 wt.% ZrO2), to be referred as HA-ZrO2 coating (heat treated at 750 degrees C for 2 h) on corrosion resistance and bioactivity of Ti-6Al-4V substrate has been undertaken. There is partial decomposition of HA to tri-calcium-phosphate (Ca-3(PO4)(2)) and formation of CaTiO3 phase in HA-TiO2 coating and CaZrO3 phase in the HA-ZrO2 coating. Corrosion study in Hank's solution shows that there is shifting of corrosion potential (E-corr) towards active potential (-1.1 V(SCE) for as-sprayed and post spray heat treated HA-TiO2 coating, -1.1 V(SCE) for as-sprayed HA-ZrO2 coating and -1 V(SCE) for HA-ZO(2) coating after post spray heat treatment), and deterioration in pitting corrosion (E-pit) resistance in as-sprayed coatings and the same after heat treatment (-0.7 V(SCE) for both HA-TiO2 and HA-ZrO2 coating as compared to as received substrate (-0.3 V(SCE)). The corrosion rate was increased for both the coatings with a maximum increase in HA-ZrO2 coating. Bioactivity test shows a higher degree of apatite deposition in as-sprayed coating and the same after heat treatment as compared to as received Ti-6Al-4V though the as-sprayed one showed a superior behavior. (C) 2017 Elsevier B.V. All rights reserved.
机译:在本研究中,将等离子喷涂沉积的羟基磷灰石(HA)基TiO2分散(HA + 50 wt。%TiO2),涂层和喷涂后热处理的效果称为HA-TiO2(在650摄氏度下热处理2 h)和分散的ZrO2(HA + 10 wt。%ZrO2),被称为HA-ZrO2涂层(在750摄氏度下热处理2小时),具有Ti-6Al-4V基材的耐腐蚀性和生物活性。 HA会部分分解为磷酸三钙(Ca-3(PO4)(2)),并在HA-TiO2涂层中形成CaTiO3相,在HA-ZrO2涂层中形成CaZrO3相。 Hank溶液中的腐蚀研究表明,喷涂和喷涂后热处理的HA-TiO2涂层的腐蚀电位(E-corr)向着活性电位(-1.1 V(SCE)转移,对于喷涂的HA-TiO2涂层则为-1.1 V(SCE)喷涂后的HA-ZrO2涂层和用于HA-ZO(2)涂层的-1 V(SCE)),以及喷涂后的涂层和热处理后的涂层一样,耐点蚀性(E-pit)变差(对于HA-TiO2和HA-ZrO2涂层,其均值为-0.7 V(SCE),而与作为接受基材的情况相比则为-0.3 V(SCE))。两种涂层的腐蚀速率均随HA-ZrO2涂层的增加而增加。 。生物活性测试显示,与喷涂的Ti-6Al-4V相比,喷涂后的涂层中的磷灰石沉积程度更高,并且热处理后的磷灰石沉积后的磷灰石沉积率相同,尽管喷涂后的涂层表现出优异的行为(C)2017 Elsevier BV版权所有保留。

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