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首页> 外文期刊>Key Engineering Materials >From Dental Enamel to Synthetic Hydroxyapatite - Metal Composites
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From Dental Enamel to Synthetic Hydroxyapatite - Metal Composites

机译:从牙釉质到合成羟基磷灰石-金属复合材料

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摘要

The study of mineral-like biological material provides information and can serve as a guide for the design and processing concepts of synthetic biomaterials. Based on the investigation of structural characteristics of dental enamel, we developed and synthesized novel hydroxyapatite-metal composite materials at high pressures and -temperatures in order to imitate the structure of dental enamel. The fracture morphology and the microstructure of the composites were investigated using SEM, IR and XRD. Mechanical properties were also measured and the fracture force of the composites was 2-3 times that of conventionally sintered hydroxyapatite ceramics. In addition to their biocompatibility, such composites provide enhanced physicochemical and mechanical qualities. Scanning electron micrographs of the synthetic material indicate that micro-sized hydroxyapatite grains are surrounded by a metallic network. No decomposition products of hydroxyapatite and obvious reaction between hydroxyapatite and metals, such as titanium, were detected by XRD and IR analyses. The high-pressure and-temperature densification process might be useful to fabricate hydroxyapatite-metal composites with improved microstructure and properties, which allows to extend dental and orthopedic applications.
机译:类矿物生物材料的研究提供了信息,可以作为合成生物材料设计和加工概念的指南。在研究牙釉质结构特性的基础上,我们在高温高压下研制合成了新型羟基磷灰石金属复合材料,以模拟牙釉质的结构。用SEM,IR和XRD研究了复合材料的断口形貌和微观结构。还测量了机械性能,复合材料的断裂力是常规烧结的羟基磷灰石陶瓷的2-3倍。除了它们的生物相容性之外,这种复合材料还提供增强的物理化学和机械性能。合成材料的扫描电子显微照片表明,微尺寸的羟基磷灰石晶粒被金属网络包围。通过XRD和IR分析未发现羟基磷灰石的分解产物以及羟基磷灰石与金属如钛之间的明显反应。高压和高温致密化工艺可能用于制造具有改善的微观结构和性能的羟基磷灰石-金属复合材料,从而可以扩展牙科和整形外科的应用范围。

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