MECHANICAL PROPERTIES CHARACTERIZATION OF AL- 7075 / PHOSPHOGYPSUM METAL MATRIX COMPOSITES

Waleed T. Rashid
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Abstract

Recent years have seen a movement in research from monolithic to composite materials due to the worldwide need for low-cost, high-performance, and high-quality materials. Aluminum matrix composites are used extensively in structural applications and the aerospace and car industries, owing to their high strength-to-weight ratio, cheap cost, and excellent wear resistance. A simple and cost-effective process for producing composites is also critical for broadening their use. Using the inexpensive and commonly used stir-casting process, reinforcements including particle alumina, silicon carbide, graphite, fly ash, etc. may be readily integrated into the melt. In the present paper, the 7075 Aluminum alloy metal matrix composite, with varied Phosphogypsum (PG) contents (2, 5, and 10% wt.%) reinforced particles having 53-106 µm in size, have been created utilizing the stir casting process. The influence of Phosphogypsum particle content on the mechanical characteristics of Metal Matrix Composite has been investigated, and the results manifested that the material reinforcement significantly improved the BHN hardness, tensile strength, and wear. These enhancements were made possible by the regular distribution of Phosphogypsum and the refining of Al-7075 grains. The most significant improvement in BHN hardness (123), tensile strength (160 MPa), and wear (0.2032 gm) were recorded at 10% Phosphogypsum.
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al - 7075 /磷石膏金属基复合材料的力学性能表征
近年来,由于世界范围内对低成本,高性能和高质量材料的需求,研究从单片材料到复合材料的运动。铝基复合材料由于其高强度重量比、低成本和优异的耐磨性,在结构应用、航空航天和汽车工业中得到广泛应用。生产复合材料的简单和经济有效的工艺对于扩大其用途也至关重要。使用廉价和常用的搅拌铸造工艺,增强剂包括颗粒氧化铝、碳化硅、石墨、粉煤灰等,可以很容易地融入熔体中。在本论文中,利用搅拌铸造工艺制备了7075铝合金金属基复合材料,其磷石膏(PG)含量(2%、5%和10% wt.%)不同,增强颗粒大小为53-106 μ m。研究了磷石膏颗粒含量对金属基复合材料力学性能的影响,结果表明,磷石膏颗粒含量的增加显著提高了BHN的硬度、抗拉强度和耐磨性。磷石膏的均匀分布和Al-7075晶粒的细化使这些增强成为可能。10%磷石膏对BHN硬度(123)、抗拉强度(160 MPa)和磨损(0.2032 gm)的改善最为显著。
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