Parveez Bisma, Jamal Nur Ayuni, Nazurah Nur Izzah, Aabid Abdul, Baig Muneer
Department of Manufacturing and Materials Engineering, Kulliyyah of Engineering, International Islamic University Malaysia, Kuala Lumpur 53100, Malaysia.
Department of Engineering Management, College of Engineering, Prince Sultan University, P.O. Box 66833, Riyadh 11586, Saudi Arabia.
ACS Omega. 2024 Aug 17;9(34):36690-36698. doi: 10.1021/acsomega.4c05354. eCollection 2024 Aug 27.
Porous aluminum (Al) is popular due to its lightweight properties and impact energy absorption. However, it often has a lower mechanical strength than solid Al. To improve the performance, diamond reinforcement was introduced into the matrix. Further, addressing the challenge of interfacial bonding between Al and diamond, coated diamond with varying contents of 5, 10, 15, and 20 wt % was added to the porous Al alloy matrix via the powder metallurgy technique. The porosities were formed by using poly(methyl methacrylate) (30 wt %) as a space holder. The densities of the resultant porous composites ranged from 2.20 to 2.37 g/cm and porosities ranged from 33 to 38% for 5-20 wt % diamond contents. Furthermore, the yield strength and plateau stress increased from 21.47 to 29.46 MPa and 14 to 20 MPa, respectively, up to 10 wt % diamond content but declined upon further addition. Similarly, the energy absorption capacity increased from 2.15 to 2.95 MJ/m up to 10 wt % diamond content and thereafter decreased. Thus, the addition of coated diamond and alloying elements in Al strengthened the porous Al composites, making it suitable for applications requiring good compressive strength and energy absorption capacity.
多孔铝(Al)因其轻质特性和冲击能量吸收能力而受到欢迎。然而,它的机械强度通常比实心铝低。为了提高性能,将金刚石增强材料引入基体。此外,为了解决铝与金刚石之间的界面结合挑战,通过粉末冶金技术将含5、10、15和20 wt%不同含量的涂层金刚石添加到多孔铝合金基体中。孔隙是通过使用聚甲基丙烯酸甲酯(30 wt%)作为空间保持剂形成的。对于含5 - 20 wt%金刚石的复合材料,其密度范围为2.20至2.37 g/cm,孔隙率范围为33%至38%。此外,屈服强度和平台应力在金刚石含量达到10 wt%时分别从21.47 MPa增加到29.46 MPa和从14 MPa增加到20 MPa,但进一步添加后下降。同样,能量吸收能力在金刚石含量达到10 wt%时从2.15 MJ/m增加到2.95 MJ/m,此后下降。因此,在铝中添加涂层金刚石和合金元素增强了多孔铝复合材料,使其适用于需要良好抗压强度和能量吸收能力的应用。