Mechanical Properties of a Carbonized Bamboo Flour/Phenol Resin Composite

Sota Inanaga, Hamdi Bin Rimfiel, J. Noda, K. Goda, T. Okabe
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Abstract

Because bamboo flour shows a rather more fiber-like shape rather than wood flour does, it is expected that a combination of bamboo flour and phenol exhibits higher mechanical properties, as compared to those of wood ceramics. After a bamboo flour/phenol resin composite was carbonized at 800 o C and 1,500 o C, its bending properties were investigated. Results show that the bending properties of the carbonized composite are comparable to those of wood ceramics. Regarding the effects of carbonizing temperatures, the composite elastic modulus carbonized at 1,500 o C shows a higher value than that carbonized at 800 o C. In addition, the electron probe microanalysis (EPMA) was conducted. The result of 1,500 o C shows that silicon carbide (SiC) occurs finely and dispersedly. The bending modulus obtained at 1,500 o C is improved probably because such occurrence of SiC makes it stiffer. In this paper, wear properties of the composite were investigated further.
碳化竹粉/酚醛树脂复合材料的力学性能
由于竹粉比木粉表现出更像纤维的形状,因此竹粉和苯酚的组合可以比木陶瓷表现出更高的机械性能。对竹粉/酚醛树脂复合材料在800℃和1500℃下进行炭化,研究其弯曲性能。结果表明,碳化复合材料的弯曲性能与木陶瓷相当。对于炭化温度的影响,1500℃炭化后的复合材料弹性模量高于800℃炭化后的复合材料弹性模量,并进行了电子探针微分析(EPMA)。结果表明,在1500℃下,碳化硅(SiC)分布较细,分布较分散。在1500℃时得到的弯曲模量有所提高,可能是因为SiC的存在使其变得更硬。本文进一步研究了该复合材料的磨损性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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