氧化铝颗粒增强(Al-Cu-Mg)基复合材料力学性能研究

Abdullah M. Ali
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摘要

本研究的目的是研究铝(Al-4.5%Cu-1.5%Mg)铸造复合材料基体的力学性能,并在不同温度500oC、525oC和550oC下分别进行热处理2hr和4hr,然后进行所需硬度(HBR)的处理,从而从合金碱(A)在550oC温度下进行6hr的最佳值。并根据氧化铝(Al2O3)的重量和尺寸百分比,制备了3种不同粒径(75µm≥63µm≥53µm≥0.1µm)的氧化铝(Al2O3)增强基复合材料(A1、A2、B1、B2、C1、C2),分别在550℃下进行热处理溶液和正式时效2hr和4hr。对复合材料(A2)进行了硬度和抗拉性能等力学试验,结果表明,重量和尺寸百分比为2.5%,≥0.1µm的复合材料(A2)具有较高的硬度和抗拉性能,因此我们认为颗粒的减少意味着其刚度、韧性和固体度的增加。显微组织测试结果表明,制备的复合材料与基铸合金相比尺寸小,氧化铝颗粒在基铸合金中分布均匀,热处理溶液和正式时效对复合材料和合金有一定的影响。
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Study the Mechanical Properties of (Al-Cu-Mg) Matrix Composites Reinforced by Alumina Particles
The aim of the present research is studying the mechanical properties of composites matrix fabricated of aluminum (Al-4.5%Cu-1.5%Mg) by cast and to proceeding the heat treatment solution from different temperatures 500oC, 525oC and 550oC for different times 2hr and 4hr, and then proceeding the requil hardness (HBR), Therefore we conducted the optimum value from the alloy basic (A) at the temperature 550oC for 6hr time. Also we prepared the matrix composite reinforced by alumina (Al2O3) with different percentage weight (1.5%-2.5%) and three different particles sizes (75µm≥63µm≥53µm≥0.1µm) which named as (A1, A2, B1, B2, C1, C2) according to their weight and size percentages, and then proceeding the heat treatment solution and official ageing about them at the temperature degree 550oC for 2hr and4hr. Mechanical tests like hardness and Tensile resistance were conducted all of them reached that the composite material (A2) in which there weight and size percentages are 2.5% and ≥0.1µm have upper values of these test's, accordingly we concluded that the reduce particles means increased its rigidity, toughness and   solidity. Finally the microstructures tests shows that the prepared composites materials have small size as compared with microstructure of the basic cast alloys and the distribution of alumina particles was fairly homogeneous in the basic allot, also we showed that the heat treatment solutions and official ageing are affected at these composite materials and alloys.
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