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Processing and mechanical properties of hydroxyapatite-polysulfone laminated composites

机译:羟基磷灰石-聚砜层状复合材料的加工与力学性能

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摘要

Designing biocomposites that mimic bone with specific mechanical properties of toughness and elastic modulus is a long-standing challenge in the biomaterials field. Traditional biocomposites comprise polymer matrices reinforced with ceramic particles. Laminated composites are structures also found in nature that can offer improved mechanical properties such as strength, elastic modulus and toughness. Hydroxyapatite/polysulfone laminated composites were fabricated to develop biologically compatible, toughened composites that would match the elastic modulus of bone. Multilayered composites were successfully designed with improved toughness measured by the work of fracture. Toughness measurements were more than an order of magnitude greater than monolithic hydroxyapatite. The toughness and modulus values of hydroxyapatite/polysulfone were within the range of cortical bone.
机译:在生物材料领域,设计出具有骨骼的特定机械特性的韧性和弹性模量的生物复合材料是一项长期的挑战。传统的生物复合材料包括用陶瓷颗粒增强的聚合物基体。层压复合材料是自然界中也可以提供改进的机械性能(例如强度,弹性模量和韧性)的结构。制备了羟基磷灰石/聚砜层压复合材料,以开发与骨骼的弹性模量匹配的生物相容的增韧复合材料。通过断裂功测量,成功设计了具有改善的韧性的多层复合材料。韧性测量值比整体式羟基磷灰石高出一个数量级。羟基磷灰石/聚砜的韧性和模量值在皮质骨范围内。

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