多壁碳纳米管和氧化铝粉增强触变Al-5Si合金复合材料的力学性能

H. Hashim, M. S. Salleh, M. Z. Omar, Saifudin Hafiz Yahaya, N. Mohamad
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引用次数: 2

摘要

碳纳米管(CNT)作为增强颗粒在铝基复合材料中的应用是近年来研究的热点。一些研究将碳纳米管与陶瓷材料结合在铝基体中作为双增强材料,以进一步提高复合材料的机械强度。然而,一些制造工艺对碳纳米管结构完整性的影响相当有限。研究了Al5Si合金中单、双增强对复合材料力学性能的影响。采用粉末冶金球磨工艺对增强颗粒进行预分布。混合物在注入熔融Al5Si合金基体之前被绿色压实成托盘形式。熔融的复合材料在通过冷却坡注入永久模具之前被搅拌。然后对铸坯进行触变成形和T6热处理。从预分布增强剂的对比结果来看,双增强剂中Al2O3颗粒的过度磨铣破坏了碳纳米管结构的完整性。触变成形和T6热处理后,两种复合材料的组织演变和晶粒尺寸均无明显变化。得到的屈服强度、极限抗拉强度和断裂伸长率分别为316 MPa、347 MPa和13.3%,明显优于双增强材料。这些结果表明,通过CNT- al5si合金复合材料的载荷传递机制,保持碳纳米管的管状结构是提高其机械强度的关键。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanical Properties of Thixoformed Al-5Si Alloy Composite Reinforced by Multiwalled Carbon Nanotubes and Alumina Powder
Carbon nanotubes (CNT) as reinforced particles in aluminium matrix composites have been an interesting exploration in recent years. Some research combined CNT with ceramic materials as dual reinforcements in the aluminium matrix to enhance further the mechanical strength of the composite. However, the effects of some fabrication processes on the tube structural integrity of CNT are rather limited. This study is to determine the effects of single and dual reinforcements in Al5Si alloy on the mechanical properties of the composites. The reinforcement particles were pre-distributed by using a ball milling process through powder metallurgy. The mixed was green compacted into a pallet form before injected into a molten Al5Si alloy matrix. The molten composite was stirred before pouring into a permanent mould via a cooling slope. Next, the cast billet was subjected to thixoforming and T6 heat treatment processes. According to the comparison results of the pre-distributed reinforcements, the integrity of CNT structure in dual reinforcements was destroyed due to excessive milling from Al2O3 particles. There was no significant change of microstructures evolution and grain sizes of both composites after the thixoforming and T6 heat treatment. The yield strength, ultimate tensile strength and elongation to fracture of single reinforcement obtained were 316 MPa, 347 MPa, and 13.3%, respectively and much superior than the dual reinforcements. These results show that maintaining the tube structure of CNT is very critical for mechanical strength enhancement through load transfer mechanism of the CNT-Al5Si alloy composite.
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