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首页> 外文期刊>International Journal Cast Metals Research >Microstructure and strength of a squeeze cast aluminium piston alloy composite reinforced with alumina short fibre using Al{sub}2O{sub}3 binder
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Microstructure and strength of a squeeze cast aluminium piston alloy composite reinforced with alumina short fibre using Al{sub}2O{sub}3 binder

机译:Al {sub} 2O {sub} 3粘结剂与氧化铝短纤维增强的挤压铸造铝活塞合金复合材料的组织和强度

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摘要

Alumina short fibre preforms were fabricated using an Al{sub}2O{sub}3 binder and infiltrated with aluminium piston alloy melt by squeeze casting. Al{sub}2O{sub}3 binder is ther-modynamically more stable than the conventional SiO{sub}2 binder and reduces the fibre/matrix interfacial reaction. The effects of fibre volume fraction, temperature and heat treatment on the yield strength and tensile strength of the composite were investigated. The Al{sub}2O{sub}3 binder provided a satisfactory interfacial bond between the fibre and the matrix without any interfacial reaction or fibre damage. Aging behaviour was not changed by reinforcement. At every temperature, the composites showed the highest strength with a fibre volume fraction of 18%. The strength of the composite was improved by T6 heat treatment. Examination of the fracture surfaces and calculation of the tensile strength using the rule of mixtures indicated that the 18% fibre reinforced composite had a strong interfacial bond even at high temperatures.
机译:使用Al {sub} 2O {sub} 3粘合剂制造氧化铝短纤维预成型件,并通过挤压铸造使其浸入铝活塞合金熔体中。 Al {sub} 2O {sub} 3粘合剂在热力学上比常规SiO {sub} 2粘合剂更稳定,并减少了纤维/基质界面反应。研究了纤维体积分数,温度和热处理对复合材料屈服强度和拉伸强度的影响。 Al {sub} 2O {sub} 3粘结剂在纤维和基质之间提供了令人满意的界面结合,而没有任何界面反应或纤维损伤。增强不会改变老化行为。在每种温度下,复合材料均显示出最高的强度,纤维体积分数为18%。通过T6热处理提高了复合材料的强度。使用混合物规则检查断裂表面并计算抗拉强度表明,即使在高温下,18%纤维增强复合材料也具有很强的界面结合力。

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