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Characterization and In Vitro Studies of Low Reflective Magnetite (Fe3O4) Thin Film on Stainless Steel 420A Developed by Chemical Method

机译:化学法开发的不锈钢420A低反射磁铁矿(Fe3O4)薄膜的表征及体外研究

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Stainless steel has been the most demanded material for surgical utensil manufacture due to superior mechanical properties, sufficient wear, and corrosion resistance. Surgical grade 420A stainless steel is extensively used for producing sophisticated surgical instruments. Since these instruments are used under bright light conditions prevalent in operation theatres, the reflection from the material is significant which causes considerable strain to the eye of the surgeon. Surgical instruments with lower reflectance will be more efficient under these conditions. A low reflective thin -film coating has often been suggested to alleviate this inadmissible difficulty. This paper reports the development of an optimum parametric low reflective magnetite coating on the surface of SS 420A with a black color using chemical hot alkaline conversion coating technique and its bioactivity studies. Coating process parameters such as coating time, bath temperature, and chemical composition of bath are optimized using Taguchi optimization techniques. X-ray photoelectron spectroscopy (XPS) analysis was used to identify the composition of elements and the chemical condition of the developed coating. Surface morphological studies were accomplished with a scanning electron microscope (SEM). When coupled with an energy-dispersive X-ray analysis (EDAX), compositional information can also be collected simultaneously. Invitro cytotoxicity tests, corrosion behavior, the effect of sterilization temperature on adhesion property, and average percentage reflectance (R) of the developed coating have also been evaluated. These results suggest adopting the procedure for producing low reflective conversion coatings on minimally invasive surgical instruments produced from medical grade 420A stainless steel.
机译:由于卓越的机械性能,充足的磨损和耐腐蚀,不锈钢是手术器用具的最具要求最要求的材料。外科420A不锈钢广泛用于生产复杂的手术器械。由于这些仪器在操作剧院普遍存在的亮光条件下使用,因此来自材料的反射是显着的,这导致外科医生的眼睛产生了相当大的菌株。在这些条件下,具有较低反射率的手术器械将更有效。通常提出了一种低反射薄-Film涂层,以减轻这种不可受理的困难。本文报道了使用化学热碱性转化涂层技术及其生物活性研究的黑色涂布SS 420a表面上的最佳参数低反射磁铁矿涂层的开发。使用Taguchi优化技术优化涂布工艺参数,例如涂布时间,浴温和浴的化学组成。 X射线光电子能谱(XPS)分析用于鉴定显影涂层的元素组成和化学条件。用扫描电子显微镜(SEM)完成表面形态学研究。当与能量分散X射线分析(edax)偶联时,也可以同时收集组成信息。还评估了invitro细胞毒性试验,腐蚀行为,灭菌温度对粘附性的影响,以及发育涂层的平均百分比反射率(R)。这些结果表明,采用生产低反射转化涂层的方法,在医疗等级420A不锈钢生产的微创手术器械上。

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