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Mechanical properties of non-woven glass fiber geopolymer composites

机译:非织造玻璃纤维地质复合材料的力学性能

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This experimental research focuses on mechanical properties of non-woven glass fabric composites bound by geopolymeric matrix. This study investigates the effect of different matrix composition and amount of granular filler on the mechanical properties of final composites. Matrix was selected as a metakaolin "based geopolymer hardened by different amount of potassium silicate activator. The ceramic granular filler was added into the matrix for investigation of its impact on mechanical properties and workability. Prepared pastes were incorporated into the non-woven fabrics by hand roller and final composites were stacked layer by layer to final thickness. The early age hardening of prepared pastes were monitored by small amplitude dynamic rheology approach and after 28 days of hardening the mechanical properties were examined. The electron microscopy was used for detail description of microstructural properties. The imaging methods revealed good wettability of glass fibers by geopolymeric matrix and results of mechanical properties indicate usability of these materials for constructional applications.
机译:该实验研究侧重于由地产聚物基质结合的无纺布玻璃织物复合材料的机械性能。本研究研究了不同基质组成和粒状填料量对最终复合材料的力学性能的影响。基质被选为基于基于基于基于硅酸钾活化剂的地质聚合物。将陶瓷粒状填料加入基质中,以研究其对机械性能和可加工性的影响。制备的浆料用手掺入无纺布中的非织造织物滚轮和最终复合材料通过层堆叠到最终厚度。通过小幅度动态流变方法监测制备浆料的早期硬化,并且在硬化28天后,检查了机械性能。电子显微镜用于细胞结构的详细描述性质。成像方法通过地质聚合物基质揭示了玻璃纤维的良好润湿性,并且机械性能结果表明这些材料用于结构应用的可用性。

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