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Bending Strength of EN AC-44200 – Al2O3 Composites at Elevated Temperatures

机译:EN AC-44200 – Al2O3复合材料在高温下的弯曲强度

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The paper presents results of bend tests at elevated temperatures of aluminium alloy EN AC-44200 (AlSi12) based composite materials reinforced with aluminium oxide particles. The examined materials were manufactured by squeeze casting. Preforms made of Al_(2)O_(3) particles, with volumetric fraction 10, 20, 30 and 40 vol.% of particles joined with sodium silicate bridges were used as reinforcement. The preforms were characterised by open porosity ensuring proper infiltration with the EN AC-44200 (AlSi12) liquid alloy. The largest bending strength was found for the materials containing 40 vol.% of reinforcing ceramic particles, tested at ambient temperature. At increased test temperature, bending strength R_(g) of composites decreased in average by 30 to 50 MPa per 100°C of temperature increase. Temperature increase did not significantly affect cracking of the materials. Cracks propagated mainly along the interfaces particle/matrix, with no effect of the particles falling-out from fracture surfaces. Direction of cracking can be affected by a small number of agglomerations of particles or of non-reacted binder. In the composites, the particles strongly restrict plastic deformation of the alloy, which leads to creation of brittle fractures. At elevated temperatures, however mainly at 200 and 300°C, larger numbers of broken, fragmented particles was observed in the vicinity of cracks. Fragmentation of particles occurred mainly at tensioned side of the bended specimens, in the materials with smaller fraction of Al_(2)O_(3) reinforcement, i.e. 10 and 20 vol.%.
机译:本文介绍了用氧化铝颗粒增强的铝合金EN AC-44200(AlSi12)基复合材料在高温下的弯曲测试结果。被检查的材料是通过挤压铸造制造的。由Al_(2)O_(3)颗粒制成的预成型件被用作增强材料,该预成型件的体积分数为10、20、30和40 vol。%的颗粒与硅酸钠桥连接。预成型坯的特征是开放的孔隙,可确保EN AC-44200(AlSi12)液态合金正确渗透。在室温下测试,发现含有40%(体积)增强陶瓷颗粒的材料的最大弯曲强度。在升高的测试温度下,每升高100°C,复合材料的弯曲强度R_(g)平均降低30至50 MPa。温度升高并未显着影响材料的开裂。裂纹主要沿着颗粒/基体的界面传播,而没有颗粒从断裂表面脱落的影响。裂纹的方向会受到少量颗粒或未反应粘合剂的团聚的影响。在复合材料中,颗粒强烈限制了合金的塑性变形,从而导致产生脆性断裂。在升高的温度下,但是主要在200和300°C下,在裂纹附近观察到大量破碎的碎片颗粒。 Al_(2)O_(3)增强部分的比例较小,即10和20%(体积)时,颗粒的碎裂主要发生在弯曲试样的受拉侧。

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