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Toughened and machinable glass matrix composites reinforced with graphene and graphene-oxide nano platelets

机译:石墨烯和氧化石墨烯纳米片增强的增韧可加工玻璃基复合材料

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The processing conditions for preparing well dispersed silica–graphene nanoplatelets and silica–graphene oxide nanoplatelets (GONP) composites were optimized using powder and colloidal processing routes. Fully dense silica–GONP composites with up to 2.5?vol% loading were consolidated using spark plasma sintering. The GONP aligned perpendicularly to the applied pressure during sintering. The fracture toughness of the composites increased linearly with increasing concentration of GONP and reached a value of ~0.9?MPa m1/2 for 2.5?vol% loading. Various toughening mechanisms including GONP necking, GONP pull-out, crack bridging, crack deflection and crack branching were observed. GONP decreased the hardness and brittleness index (BI) of the composites by ~30 and ~50% respectively. The decrease in BI makes silica–GONP composites machinable compared to pure silica. When compared to silica–Carbon nanotube composites, silica–GONP composites show better process-ability and enhanced mechanical properties.
机译:使用粉末和胶体加工路线优化了制备分散良好的二氧化硅-石墨烯纳米片和二氧化硅-氧化烯纳米片(GONP)复合材料的加工条件。使用火花等离子烧结法固结了高达2.5%vol%的高密度二氧化硅-GONP复合材料。 GONP在烧结过程中垂直于施加的压力对齐。随着GONP浓度的增加,复合材料的断裂韧性呈线性增加,在2.5vol%的载荷下,复合材料的断裂韧性达到〜0.9?MPa m 1/2 。观察到各种增韧机制,包括GONP颈缩,GONP拔出,裂纹桥接,裂纹变形和裂纹分支。 GONP将复合材料的硬度和脆性指数(BI)分别降低了约30%和〜50%。与纯二氧化硅相比,BI的减少使二氧化硅-GONP复合材料可以加工。与二氧化硅-碳纳米管复合材料相比,二氧化硅-GONP复合材料具有更好的加工性能和增强的机械性能。

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