Author:
Ahmed Raghad,K S Prashanth,Annapurna T.,Jain Alok,Maan Preeti,Khan Irfan
Abstract
The revolution in aluminum-based composite manufacturing is underway, propelled by the innovative integration of fly ash and rice husk ash (RHA) reinforcement through stir casting, heralding a sustainable approach to materials engineering. At the heart of this transformation lies a meticulous process: aluminum alloy melting at 700°C within a muffle furnace, augmented by the gradual introduction of RHA and fly ash particles into the molten alloy, stirred at 500 rpm for 15 minutes. This rigorous stirring method ensures a uniform dispersion of reinforcement particles, optimizing their distribution throughout the alloy matrix.The resultant composite exhibits remarkable enhancements across key mechanical properties. With the addition of 5% fly ash and 2.5% RHA, a notable 13.44% increase in tensile strength is achieved, accompanied by a remarkable 25.68% improvement in hardness. Furthermore, fatigue strength experiences a substantial boost of 20.12%, while wear resistance demonstrates a notable enhancement of 19.90% compared to the base composite.These findings underscore the efficacy of fly ash and RHA reinforcement in aluminum composites, offering a sustainable pathway towards enhanced material performance and resource efficiency in manufacturing practices. This study represents a paradigm shift towards greener and more resilient composite materials, driving sustainability in the realm of aluminum-based manufacturing.
Reference57 articles.
1. Senapati A. K., Sahoo S. K., Singh S., Sah S., Padhi P. R., & Satapathy N., A comparative investigation on physical and mechanical properties of MMC reinforced with waste materials. International journal of research in engineering and Technology, 5(3), (2016)
2. Haque M. H., Ahmed R., Khan M., & Shahriar S. International Journal of Scientific and Engineering Research, 7(3), (2016)
3. Radhakrishnan S., Krishna J.S., Dwivedi S.P. et al. Experimental investigation of mechanical and physical properties of coconut shell and eggshell filler-based bio-fiber reinforced epoxy hybrid composites. Biomass Conv. Bioref. (2023)
4. Spectral investigations of Nd3+:Ba(PO3)2+La2O3 glasses for infrared laser gain media applications
5. Detection and classification of multiple power quality disturbances in Microgrid network using probabilistic based intelligent classifier
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
1. Integrating Quantum Computing for Enhanced Image Reconstruction in Medical Diagnostics;2024 International Conference on Communication, Computer Sciences and Engineering (IC3SE);2024-05-09