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Synthesis and mechanical properties of new fibre-reinforced composites of inorganic polymers with natural wool fibres

机译:天然羊毛纤维与无机聚合物纤维增强复合材料的合成及力学性能

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摘要

New fibre-reinforced composites of aluminosilicate inorganic polymer (geopolymer) with natural proteinbased fibres (carpet and Merino wool) were developed, and theirmechanical properties determined. The surfaces of some of thewool fibres used in this studywere chemicallymodified to improve their alkali resistance and reinforcing properties. The flexural strengths and failure characteristics of the composites, determined on bar-shaped samples by a three-point test method, show an approximately 40 %improvement over the unreinforced matrix and graceful failure, unlike the unreinforcedmatrix that displays ceramic-like brittle fracture. Interaction between the sulphide linkages of the wool and the aluminosilicate matrix produces a blue-green colour in the wool, shown by UV-visible and IR spectroscopy to be related to the formation of the sulpho-aluminosilicate compound sodalite. The thermal behaviour of these composites was studied by thermogravimetric analysis, and scanning electron microscopy was used to study the fibre-matrix interface.
机译:开发了新型的铝硅酸盐无机聚合物(地聚合物)与天然蛋白基纤维(地毯和美利奴羊毛)的纤维增强复合材料,并确定了其机械性能。本研究中使用的部分羊毛纤维的表面经过化学改性,以提高其耐碱性和增强性能。通过三点测试方法在棒状样品上确定的复合材料的弯曲强度和破坏特性,与未增强的基体表现出类似陶瓷的脆性断裂相比,显示出比未增强的基体和优美的破坏性提高了约40%。羊毛的硫化物键与铝硅酸盐基质之间的相互作用在羊毛中产生蓝绿色,通过紫外-可见光谱和红外光谱显示,与磺基铝硅酸盐化合物方钠石的形成有关。通过热重分析研究了这些复合材料的热性能,并使用扫描电子显微镜研究了纤维-基质界面。

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