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Plasma Sprayed Hydroxyapatite Coatings on 3D Printed Polymer Substrates for Orthopedic Applications: A Preliminary Study

机译:骨科应用3D打印的聚合物基底上的等离子喷涂羟基磷灰石涂层:初步研究

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摘要

New manufacturing technologies such as 3D printing, have allowed wide range of medical devices from generic "one size fits all", expensive devices to the customized, more affordable options. Polymers can play an important role in customized medical devices such as orthopedic implants, due to their lower weight, cost and performance when compared with other materials. Additionally, polymers are widely sought for this kind of devices to support bone in-growth and to enhance the osseointegration. In order to further enhance their biocompatibility, these medical devices can be coated with bioactive materials, such as hydroxyapatite (HA). Among different thermal spray techniques, atmospheric plasma spraying (APS) can be used to obtain HA coatings on implants. Nevertheless, plasma sprayed HA coatings have been primarily applied to metallic substrates, and unfortunately, only a few studies have been performed on polymers and composite materials. This work aims to present a preliminary study of plasma sprayed HA coatings on biopolymer and metallic substrates by using a modified plasma cutting equipment. Furthermore, the HA coatings were characterized by thermal imaging, visual inspection and scanning electron microscopy (SEM).
机译:诸如3D打印之类的新制造技术已经使医疗器械的范围从通用的“一种尺寸适合所有人”,昂贵的设备到定制的,更实惠的选择。聚合物由于与其他材料相比具有较低的重量,成本和性能,因此可以在定制的医疗设备(如整形外科植入物中)中发挥重要作用。另外,广泛寻求用于这种装置以支持骨向内生长并增强骨整合的聚合物。为了进一步增强其生物相容性,可以将这些医疗器械涂上生物活性材料,例如羟基磷灰石(HA)。在不同的热喷涂技术中,常压等离子体喷涂(APS)可用于在植入物上获得HA涂层。然而,等离子喷涂的HA涂层已主要应用于金属基材,不幸的是,仅对聚合物和复合材料进行了少量研究。这项工作旨在通过使用改良的等离子切割设备,对生物聚合物和金属基材上的等离子喷涂HA涂层进行初步研究。此外,通过热成像,目测和扫描电子显微镜(SEM)对HA涂层进行了表征。

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