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Amin Bahrami

Researcher at Leibniz Association

Publications -  60
Citations -  1904

Amin Bahrami is an academic researcher from Leibniz Association. The author has contributed to research in topics: Microstructure & Chemistry. The author has an hindex of 19, co-authored 43 publications receiving 1285 citations. Previous affiliations of Amin Bahrami include Technical University of Berlin & Leibniz Institute for Neurobiology.

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Review on the physicochemical treatments of rice husk for production of advanced materials

TL;DR: A critical review on the processing and application of rice husks (RHs) for the production of various silicon-based materials and of active carbon is presented in this paper, which addresses the different processing methods, the effects of various process parameters on the pyrolysis stage, the influence of physical, chemical and thermal treatments, activating conditions and activated carbon consolidation mechanisms.
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Development of metal-matrix composites from industrial/agricultural waste materials and their derivatives

TL;DR: In this paper, the authors present a review on the state-of-the-art in the utilization of industrial and agricultural waste materials for the development of metal-matrix composites (MMCs), providing an insight into the challenges and opportunities for the exploitation to their full potential.
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Effect of hot extrusion on wear properties of Al–15 wt.% Mg2Si in situ metal matrix composites

TL;DR: In this paper, the microstructure, hardness and sliding wear behavior were characterized for both, the as-cast and hot extruded composites, and it was found that abrasion is the dominant wear mechanism in all extruded composite materials, whilst a combination of adhesion and delamination appears to be the governing mechanism for the composite materials.
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Tribological characterization of Al7075–graphite composites fabricated by mechanical alloying and hot extrusion

TL;DR: In this paper, a simple method for fabrication of Al7075-graphite composites produced by mechanical alloying (MI) and hot extrusion is described, and the effects of milling time and graphite concentration on friction, hardness and wear resistance of the AMC are investigated.
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Eco-fabrication of hierarchical porous silica monoliths by ice-templating of rice husk ash

TL;DR: In this paper, a clean and eco-friendly synthesis process of silica monoliths compatible with environmental limitations is developed, within a sustainable chemistry approach, and the effect of the processing parameters such as freezing rate and sintering temperature on the microstructural characteristics and mechanical properties of the obtained monolith is investigated.