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首页> 外文期刊>Journal of Composite Materials >Thermal and mechanical properties of biocomposites based on a cashew nut shell liquid matrix reinforced with bamboo fibers
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Thermal and mechanical properties of biocomposites based on a cashew nut shell liquid matrix reinforced with bamboo fibers

机译:竹纤维增强腰果壳液体基质的生物复合材料的热力学性能

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Cardanol-formaldehyde thermoset resin was reinforced with raw and chemically modified fibers of bamboo (Bambusoideae). Modified fibers were treated with alkali solutions of NaOH (5% and 10%) and bleached with sodium hypochlorite NaClO/H2O (1:1) at 60?-75?. The biocomposites were fabricated with a hand lay-up technique. This study investigated the fibers microstructure before and after alkali treatment, as the interaction between matrix and reinforce by scanning electron microscopy. The Fourier transform infrared spectra allowed the identification of characteristic stretching frequencies attributed to the methyl groups of lignin. A considerable increase in thermal stability was observed in the materials studied, which was verified by thermogravimetric analysis and confirmed by X-ray diffraction. The tensile tests showed that the mechanical properties (tensile modulus, tensile strength, and elongation at break) of bamboo fibers improved after alkali treatment, as well as the increase in the biodegradation in simulated soil, showing that the alkaline treatment acted removing the macro components of the fibers (lignin and hemicellose), making them more susceptible to the action of microorganisms.
机译:腰果酚-甲醛热固性树脂用竹纤维(Bambusoideae)的原纤维和化学改性的纤维增强。改性纤维用NaOH(5%和10%)碱溶液处理,并在60-75℃下用次氯酸钠NaClO / H2O(1∶1)漂白。生物复合材料是用手工铺层技术制造的。本研究通过扫描电子显微镜研究了碱处理前后的纤维微结构,以了解基体与增强材料之间的相互作用。傅里叶变换红外光谱可以识别木质素甲基赋予的特征拉伸频率。在研究的材料中观察到了热稳定性的显着提高,这通过热重分析进行了验证,并通过X射线衍射得到了证实。拉伸试验表明,碱处理后竹纤维的机械性能(拉伸模量,拉伸强度和断裂伸长率)得到改善,并且模拟土壤中生物降解的增加,表明碱处理起到了去除宏观成分的作用。纤维(木质素和半纤维素),使它们更容易受到微生物的作用。

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