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CARBONIZATION OF WOOD FOR ADVANCED MATERIALS APPLICATIONS

机译:用于先进材料应用的木材碳化

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摘要

A unique process for conversion of monolithic wood structures to carbons that retain the cellular structure of the wood without the formation of cracks and other defects associated with charcoal materials is described. A variety of wood species are carbonized to produce the materials which are characterized using TGA, density, dimensional changes, acoustic velocity, SEM and mechanical testing. We demonstrate that through controlled pyrolysis monolithic carbonized wood can be produced without the macro-cracks normally associated with charcoal. A linear relationship is established between the bulk densities of wood and carbonized wood which spans the entire range of species. For the conditions presented, the carbonized wood had 82 of the bulk density of the precursor wood. Carbonized wood acoustic velocity ranged from 4.7 to 1.3 mm/mu s for Tilia americana and Ochroma pyramidale, respectively. Carbonization resulted in decreased acoustic velocity in the axial principal direction and increases in the radial and tangential directions. Acoustic anisotropy was retained through carbonization, but reduced in magnitude. Mechanical testing showed the carbonized wood to be 28 stronger than the precursor. The cellular morphology of the porous carbonized wood is described and compared to carbon foams. (C) 1997 Elsevier Science Ltd. All rights reserved. References: 14
机译:描述了一种将整体木结构转化为碳的独特过程,该碳保留了木材的多孔结构,而不会形成与木炭材料相关的裂缝和其他缺陷。各种木材被碳化以生产材料,这些材料使用 TGA、密度、尺寸变化、声速、SEM 和机械测试进行表征。我们证明,通过受控的热解,可以生产出整体碳化木材,而不会出现通常与木炭相关的宏观裂纹。木材的体积密度和碳化木材的体积密度之间建立了线性关系,这种关系跨越了整个物种范围。对于所呈现的条件,碳化木材的堆积密度是前体木材的 82%。炭化木材的声速范围分别为4.7-1.3 mm/μ s。碳化导致轴向主向的声速降低,径向和切向的声速增加。声各向异性通过碳化得以保留,但幅度减小。机械测试表明,碳化木材比前体强28%。描述了多孔碳化木材的细胞形态,并将其与碳泡沫进行了比较。(C) 1997 Elsevier Science Ltd.保留所有权利。[参考文献: 14]

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