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Comparison of mechanical properties for polyamide 12 composite-based biomaterials fabricated by fused filament fabrication and injection molding

机译:熔融长丝制造和注塑成型制造的聚酰胺12种基基生物材料的力学性能的比较

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The emergence of 3D printing technology known as fused filament fabrication (FFF) has offered the possibility of producing an anatomically accurate, patient specific implant with more affordable prices. The only weakness of this technology is related to incompatibility and lack of properties of current material to be applied in biomedical. Therefore, this study aims to develop a new, polymer composite-based biomaterial that exhibits a high processability using FFF technique, strong enough and shows acceptable biocompatibility, and safe for biomedical use. Polyamide 12 (PA12), which meets all these requirements was incorporated with two bioceramic fillers, zirconia and hydroxyapatite in order to improve the mechanical and bioactivity properties. The obtained mechanical properties were compared with injection-molded specimens and also a commercial biomedical product, HAPEX~(TM) which is composed of hydroxyapatite and polyethylene. The yield strength and modulus of the PA12 composites increased steadily with increasing filler loading. Although the strength of printed PA12 composites were reduced compared with injection molded specimen, but still higher than HAPEX? material. The higher surface roughness obtained by printed PA12 was expected to enhance the cell adhesion and provide better implant fixation.
机译:被称为熔丝长丝制造(FFF)的3D印刷技术的出现提供了具有更实惠的价格生产致原料准确的患者特异性植入物的可能性。该技术的唯一弱点与应用在生物医学中的现有材料的不相容性和缺乏性能有关。因此,本研究旨在开发一种新的聚合物复合材料的生物材料,其使用FFF技术表现出高可加工性,足够强,并且显示可接受的生物相容性,并为生物医学使用安全。聚酰胺12(PA12),其满足所有这些要求,用两种生物陶瓷填料,氧化锆和羟基磷灰石掺入,以改善机械和生物活性性能。将获得的机械性能与注塑试样进行比较,也与商业生物医学产品,Hapex〜(TM)与羟基磷灰石和聚乙烯组成。 PA12复合材料的屈服强度和模量随着填料载荷的增加而稳定地增加。尽管与注塑样品相比,印刷PA12复合材料的强度降低,但仍然高于Hapex?材料。通过印刷PA12获得的较高表面粗糙度预期增强细胞粘附并提供更好的植入物固定。

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