Aug 2026· Proceedings of the Institution of mechanical engineers. Part C, journal of mechanical engineering science· 0 citations· 14 references
Abstract
This study aims to explore and understand the tensile strength and fatigue performance of AA7075 aluminum alloy by reinforcing it with cenospheres and molybdenum disulfide (MoS
2
), targeting applications that demand high strength and low weight, such as those in the aerospace and automotive sectors. Hybrid composites were fabricated using the stir casting method to ensure uniform distribution of reinforcements and minimal porosity. Four composite variations were developed with different weight fractions of cenospheres (2% and 4%) and MoS
2
(2% and 4%). The tensile behavior was evaluated through quasi-static testing using ASTM-standard tensile tests, while dynamic performance under cyclic loading was assessed both experimentally and theoretically using Basquin’s equation. Fractographic analysis was conducted to investigate failure mechanisms under both loading regimes. Results showed that cenospheres significantly reduced the composite weight, while both reinforcements contributed to improvements in tensile strength and fatigue resistance. Fractography indicated that the reinforcements delayed crack initiation and propagation, thereby extending fatigue life. This work provides new insights into the synergistic effects of cenosphere and MoS
2
reinforcements in AA7075 composites, offering a practical approach to developing advanced, lightweight materials with superior performance under both quasi-static and dynamic loading conditions.
In the present study, hybrid aluminum metal matrix composites containing Silicon Carbide (SiC), Titanium Carbide (TiC), and Marble Dust is fabricated using the stir casting technique and systematically investigated. A Taguchi L9 orthogonal array is employed to optimize the reinforcement combinations and to evaluate the...
Aditya Kale, Sachin G. Ghalme· International Journal of Mec...· 0 citations
Polyurethane-based composites (PUCs) are promising materials for stretch-forming dies used in aircraft skin components; however, their limited load-bearing capacity and insufficient wear resistance under severe conditions remain major challenges. In this work, graphite powder (GP) was incorporated into a polyurethane m...
Yan-Hui Liu, Yinghao Wang, Song Zhang et al.· Plastics, Rubber and Composi...· 0 citations
This study investigates the development and comprehensive characterization of areca fibre–silicon carbide (SiC) reinforced hybrid epoxy composites for lightweight automotive applications. Hybrid composites containing 10–25 wt% areca fibre and 5–15 wt% SiC were fabricated and evaluated through mechanical, tribological...
Praveena B. A., S. N, K. U et al.· Journal of Materials Science...· 1 citation
This study investigates the tribological behavior of A356 aluminum alloy reinforced with boron carbide (B4C) and hybridized with graphite (Gr) to enhance wear resistance under varying operating conditions. The composites were fabricated using the stir casting technique with reinforcement contents ranging from 0 to 10 w...
Yashwanth Kumar M, V. T., Dhanasekaran R· Emerging Materials Research· 0 citations
ABSTRACT Aluminum matrix composites are widely employed in the aerospace, marine, and military industries due to their excellent mechanical properties and corrosion resistance. This study investigates the effect of hybrid ZnO and Y2O3 nanoparticle reinforcement on an AA5052 aluminum alloy matrix fabricated by ultrasoni...
H. Mahan, A. Ali, Huda Salih Mahdi· Matéria· 0 citations