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Natural Amorphous Silica Fibers-Reinforced Silica Matrix Composites

机译:天然无定形二氧化硅纤维增强二氧化硅基质复合材料

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Background: Fiber reinforced ceramic matrix composites are developed to improve the mechanical properties as well as to decrease the crack propagation and brittleness of monolithic ceramics. Objective: In this work, natural amorphous silica fibers and amorphous colloidal silica were used to obtain fiber reinforced ceramic matrix composites. Method: Initially, a small fraction of natural amorphous silica fibers was milled to reduce the particles size distribution to reach an intermediate size between natural amorphous silica fibers and amorphous colloidal silica. Subsequently, compositions containing 10 to 40 wt% of natural amorphous silica fibers were homogenized, uniaxially pressed (100 MPa), dried and fired at different temperatures (1000, 1100 and 1200°C, 10°C/min) in an oxidant atmosphere. Furthermore, the obtained composites samples were characterized according to their physical, thermal, structural, microstructural and mechanical properties. Results: SEM analysis showed that natural amorphous silica fibers are characterized by an acicular shape with aspect ratio, L/D = 18 ± 1.2. The obtained composites have shown relatively strong interfacial bond between matrix and fibers. However, the results suggest enough interfacial adhesion between fibers and matrix for composites containing 30% of natural amorphous silica fibers. Moreover, they exhibit a low coefficient of thermal expansion (0.63 × 10~(-6)°C~(-1)), an appropriated relative density and a significant increase (45%) in fracture toughness. Conclusion: The composites produced are promising materials for a wide range of advanced engineering applications, remarkably in the building industry, machinery, aviation industry, and architecture.
机译:背景:开发了纤维增强陶瓷基质复合材料以改善机械性能,以及降低整体陶瓷的裂纹传播和脆性。目的:在这项工作中,使用天然的无定形二氧化硅纤维和无定形胶体二氧化硅来获得纤维增强陶瓷基复合材料。方法:最初,研磨一小部分天然无定形二氧化硅纤维,以减少颗粒尺寸分布,以达到天然无定形二氧化硅纤维和无定形胶体二氧化硅之间的中间尺寸。随后,含有10-40%(重量)的天然无定形二氧化硅纤维的组合物均质化,单轴压制(100MPa),在氧化剂气氛中在不同温度(1000,1100和1200℃,10℃/ min)下烧制并烧制。此外,通过其物理,热,结构,微观结构和机械性能表征获得的复合材料样品。结果:SEM分析表明,天然无定形二氧化硅纤维的特征在于具有纵横比的针状形状,L / D = 18±1.2。所得复合材料在基质和纤维之间示出了相对强的界面键。然而,结果表明纤维与基质之间的界面粘附足够的含有30%天然无定形二氧化硅纤维的复合材料。此外,它们表现出低的热膨胀系数(0.63×10〜(-6)℃〜(-1)),具有适当的相对密度和裂缝韧性的显着增加(45%)。结论:生产的复合材料是广泛的高级工程应用的有希望的材料,在建筑业,机械,航空工业和建筑中显着。

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