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The tooth: An analogue for biomimetic materials design and processing

机译:牙齿:仿生材料设计和加工的类似物

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Objective. Overview the development of human tooth; enamel, dentoenamel junction and dentin in regard to hierarchical structure property relationships and how these component structures can serve as templates for the design of tough materials.Methods. The dental, engineering and ceramic literature (PubMed, Science Direct, Google Scholar) covering the last 20 years was over viewed regarding enamel and dentin characterization, structure -property studies, as well as, publications related to bioinspired materials with relationship to tooth structure. Relevant publications were selected for inclusion.Results. Enamel has been studied and modelled at 3 hierarchical levels, prism structure, parallel prism interactions and enamel decussation effects. Missing is a 4th level where the previous three hierarchies are combined with the 3D arrangement of these levels in enamel areas. Aspects of the enamel prism infrastructure and prism decussation have been used in 3D printing of Bouligand ceramic structures. The dento-enamel junction serves to arrest cracks and reduce the stress in enamel as a graded elastic modulus layer, leading to development of dental ceramics with increased strength and fatigue resistance. Dentin is a compliant structure that supports enamel mechanically and may, through providing interstitial fluid at the DEJ, allow repair of microcracks in enamel. Adequate models of dentin properties remain to be developed as it remains highly variable in tubule lumen size and the degree of mineral density around and between tubules.Significance. The structure of teeth, particularly the 4 hierarchical levels of enamel, creates a vital, hard, tough damage tolerant system for inspiring new materials. (C) 2019 The Academy of Dental Materials. Published by Elsevier Inc. All rights reserved.
机译:目的。概述人牙的发展;牙釉质,牙釉质交界处和牙本质有关分层结构属性关系以及这些组件结构如何用作硬质材料设计的模板。涵盖了过去20年的牙科,工程和陶瓷文献(PubMed,Science Direct,Google Scholar)涉及牙釉质和牙本质的表征,结构特性研究以及与生物启发的材料有关的出版物,这些出版物与牙齿的结构有关。选择了相关出版物作为结果。已对搪瓷进行了3个层次的研究和建模,包括棱镜结构,平行棱镜相互作用和搪瓷消隐效果。第4层缺失,其中前三个层次与搪瓷区域中这些层的3D排列相结合。搪瓷棱镜基础设施和棱镜拆卸的方面已用于Bouligand陶瓷结构的3D打印中。牙本质-牙釉质的结合起到了缓和裂纹的作用,并降低了牙釉质中作为梯度弹性模量层的应力,从而导致牙科陶瓷的强度和耐疲劳性得到了提高。牙本质是一种顺应性结构,可以机械支撑牙釉质,并且可以通过在DEJ处提供间隙液来修复牙釉质中的微裂纹。由于牙本质在肾小管内腔大小以及肾小管周围和之间的矿物质密度程度变化很大,因此尚需开发足够的牙本质特性模型。牙齿的结构,特别是珐琅的四个层次,为启发新材料创造了至关重要的,坚硬的,坚韧的损伤耐受系统。 (C)2019牙科材料学院。由Elsevier Inc.出版。保留所有权利。

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