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Biomorphic ceramics from wood-derived precursors

机译:来自木材衍生前体的生物晶体陶瓷

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摘要

Materials development is driven by microstructural complexity and, in many cases, inspired by biological systems such as bones, shells and wood. In one approach, one selects the main microstructural features responsible for improved properties and design processes to obtain materials with such microstructures (continuous-fibre-reinforced ceramics, porous ceramics, fibrous ceramic monoliths, etc.). In a different approach, it is possible to use natural materials directly as microstructural templates. Biomorphic ceramics are produced from natural and renewable resources (wood or wood-derived products). A wide variety of SiC-based ceramics can be fabricated by infiltration of silicon or silicon alloys into cellulose-derived carbonaceous templates, providing a low-cost route to advanced ceramic materials with near-net shape potential and amenable to rapid prototyping. These materials have tailorable microstructure and properties, and behave like ceramic materials manufactured by advanced ceramic processing approaches. This review aims to be a comprehensive description of the development of bioSiC ceramics: from wood templates and their microstructure to potential applications of bioSiC materials.
机译:材料开发由微观结构复杂性驱动,并且在许多情况下,受到骨骼,壳和木材等生物系统的启发。在一种方法中,一种选择负责的主要微观结构特征,用于改进的性能和设计方法,以获得具有这种微观结构的材料(连续纤维增强陶瓷,多孔陶瓷,纤维状陶瓷整料等)。采用不同的方法,可以直接使用天然材料作为微观结构模板。生物陶瓷由天然和可再生资源(木材或木材或木材衍生产品)生产。通过渗透到纤维素衍生的碳质模板中,可以通过渗透硅或硅合金来制造各种各样的SiC的陶瓷,为具有近净形势潜力的先进陶瓷材料提供低成本的途径,并允许快速原型。这些材料具有可定制的微观结构和性能,并表现出通过先进的陶瓷加工方法制造的陶瓷材料。本综述旨在成为生物陶瓷开发的全面描述:从木模板及其微观结构到生物材料的潜在应用。

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