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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials >Strength and fracture toughness of interpenetrating graphite/aluminium composites produced by the indirect squeeze casting process
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Strength and fracture toughness of interpenetrating graphite/aluminium composites produced by the indirect squeeze casting process

机译:间接挤压铸造法生产的互穿石墨/铝复合材料的强度和断裂韧性

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摘要

Graphite/aluminium composites with an interpenetrating network microstructure were produced by the indirect squeeze casting process. Porous isotropic graphite preforms with about 14.5 vol.% porosity were infiltrated either with AlSi7Ba or AlSi12. Flexural strength and fracture toughness were determined at room temperature and 300℃ before and after thermal cycling. The composites exhibit a significantly higher mechanical strength and fracture toughness than the graphite preforms. The infiltration with aluminium alloys enhances the flexural strength by a factor of two up to about 120MPa and increases the fracture toughness from 0.94 to 1.93 MPam~(1/2). At 300℃, no decrease in flexural strength of the composites is observed. Thermal cycling results in a slight reduction of the mechanical properties for graphite/AlSi7Ba composites, while graphite/AlSi12 composites show no decline in strength and toughness, respectively. The effect of aluminium composition and thermal cycling on the mechanical properties are explained by means of a crack bridging model.
机译:通过间接挤压铸造工艺生产出具有互穿网络微结构的石墨/铝复合材料。用AlSi7Ba或AlSi12渗透具有约14.5vol。%孔隙率的多孔各向同性石墨预成型件。在热循环前后,在室温和300℃下测定弯曲强度和断裂韧性。该复合材料比石墨预成型坯具有明显更高的机械强度和断裂韧性。铝合金的渗入将抗弯强度提高了两倍,最高达到约120MPa,并将断裂韧性从0.94 MPam〜(1/2)提高到1.93 MPam〜(1/2)。在300℃下,没有观察到复合材料的弯曲强度降低。热循环导致石墨/ AlSi7Ba复合材料的机械性能略有降低,而石墨/ AlSi12Ba复合材料的强度和韧性分别没有降低。铝的成分和热循环对机械性能的影响通过裂纹桥接模型进行了解释。

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