首页> 外文会议>International Conference on Advances in Metallurgy, Materials and Manufacturing >Coating of Bio-mimetic Minerals-Substituted Hydroxyapatite on Surgical Grade Stainless Steel 316L by Electrophoretic Deposition for Hard tissue Applications
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Coating of Bio-mimetic Minerals-Substituted Hydroxyapatite on Surgical Grade Stainless Steel 316L by Electrophoretic Deposition for Hard tissue Applications

机译:硬组织应用电泳沉积对外科级不锈钢316L的生物模拟矿物 - 取代的羟基磷灰石

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Third-era bio-implant materials intend to empower particular live cell reactions at the atomic level, these materials represented with a resorbable and biocompatibility that bodies recuperate once they have been embedded. Necessitate to decrease expenses in public health services has required the utilization of surgical grade stainless steel (SS 316L) as the most inexpensive choice for orthodontic and orthopaedic implants. 316L SS is one of the broadly used implant biomaterials in orthodontic and orthopaedic surgeries. Yet, frequently those discharge for toxic metal ions is confirm from the implants and hence a second surgery is required will remove those implant material. One approach to managing the discharge of toxic metal ions is to coat the implant substance with bio-mimetic minerals in hydroxyapatite (HA). Bio-mimetic minerals such as magnesium (Mg), strontium (Sr), also zinc (Zn) were revealed with animate bone growth furthermore restrain bone resorption both in vitro and in vivo. The present work deals with the electrophoretic deposition (EPD) for multi minerals substituted hydroxyapatite (M-HA) on the surface treated 316L SS under distinctive temperatures (27°C, (room temperature), 60 and 80°C). The resultant coatings were characterized by FT-IR, XRD, SEM-EDX, adhesion strength and leach out analysis.
机译:第三时代生物植入材料打算赋予原子水平特定的活细胞反应,这些材料具有可再吸收和生物相容性,身体一旦嵌入嵌入物。需要减少公共卫生服务的费用要求使用外科等级不锈钢(SS 316L)作为最廉价的正畸和骨科植入物的选择。 316L SS是正畸和骨科手术中的广泛使用的植入生物材料之一。然而,频繁的毒性金属离子的排出是从植入物中的确认,因此需要第二个手术,将去除这些植入物质。管理有毒金属离子放电的一种方法是将植入物质与羟基磷灰石(HA)中的生物模拟物质涂覆。镁(Mg),锶(Sr)等生物模拟物矿物,也含锌(Zn),并且在体外和体内抑制骨吸收。本工作涉及多矿物的电泳沉积(EPD)在不同温度下(27℃,(室温),60℃)的表面处理的316L SS上取代的羟基磷灰石(M-HA)取代的羟基磷灰石(M-HA)。通过FT-IR,XRD,SEM-EDX,粘附强度和浸出分析来表征所得涂层。

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