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Microstructural investigation of porous titanium coatings, produced by thermal spraying techniques, using plasma atomization and hydride-dehydride powders, for orthopedic implants

机译:多孔钛涂层的微观结构研究,采用浆料雾化和氢化物脱水粉末,用于整形植入物

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The present study focuses on porous titanium (commercially pure Ti) coatings for future use on medical implants, manufactured by specific thermal spray method. Its objective is to investigate the possibility of Ti porosity to offer room for medication storage in addition to bone growth promotion. Three specimens for each different type of coating were produced by different sets of thermal spray process/feedstock powder, namely, (1) Flame Spray (FS) with spherical Plasma Atomization (PA) powder, (2) Atmospheric Plasma Spray (APS) with spherical PA powder and (3) APS with angular Hydride - Dehydride (HDH) powder. The specific types of specimens along with the two powders produced by the PA and HDH processes were characterized using various techniques, namely (a) Roughness measurements of the coated surfaces and thickness measurements of the coatings, which disclosed the highest values for the FS-PA coating, R-a = 11.19 +/- 0.21 pm and average thickness of 281 gm, (b) Optical microscopy and SEM-EDS to study the surface morphology and microstructure of the coatings and discover any possible oxidation or other phases. The porosity percentage was measured and the pore size distribution was also estimated. The porosity percentages of the coatings ranged from 12% on the APS-PA coating to 34% on the FS-PA coating, (c) XRD analyses which showed varying titanium oxide formations for each type of specimen. These oxides may prove to be beneficial for the development of osseous tissue, (d) assessment of biological response of the coatings in vitro that resulted in satisfactory primary response in a physiological environment and the formation of calcium phosphate phases with Ca/P ratio of 1.61 and (e) Vickers microhardness measurements, which resulted in values that fluctuated from 786.6 for the FS-PA coating to 967.6 for the APS-HDH coating. Overall, the produced FS-PA coating is characterized by high porosity content and satisfactory bioactivity, in order to fulfill the objective of the project for biomolecule incorporation and drug storage.
机译:本研究专注于多孔钛(商业纯TI)涂层,以供将来用于医疗植入物,通过特定的热喷涂方法制造。其目的是探讨Ti孔隙度的可能性除骨骼生长促进外,还提供了药物储存空间。通过不同的热喷涂/原料粉末产生三种用于每种不同类型的涂层的试样,即(1)火焰喷雾(FS)具有球形等离子体雾化(PA)粉末,(2)大气等离子体喷雾(AP)球形PA粉末和(3)具有角度氢化物 - 脱氢(HDH)粉末的AP。使用各种技术表征特定类型的样品以及由PA和HDH工艺产生的两种粉末,即(a)涂层的涂层表面和厚度测量的粗糙度测量,这公开了FS-PA的最高值涂层,Ra = 11.19 +/- 0.21 PM和平均厚度为281gm,(b)光学显微镜和SEM-EDS,用于研究涂层的表面形态和微观结构并发现任何可能的氧化或其他相。测量孔隙率百分比并估计孔径分布。涂层的孔隙率百分比在FS-PA涂层上的34%上的12%范围为34%,(C)XRD分析,其显示各种样品的不同氧化钛形成。这些氧化物可以证明是有益于骨组织的发育,(d)在体外涂层的生物反应评估,导致生理环境中令人满意的初级反应以及磷酸钙相,CA / P比率为1.61 (e)维氏微硬度测量,导致从786.6波动的值,对于APS-HDH涂层,FS-PA涂层为967.6。总体而言,所生产的FS-PA涂层的特征在于高孔隙度的内容和令人满意的生物活性,以满足目标项目的生物分子掺入和药物存储。

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