大阪大学 · 工学
Abhishek Sharma教授の研究室では、アルミニウム合金を基体とする複合材料の加工・表面改質技術に注力しています。特に、摩擦攪拌処理(FSP)や摩擦攪拌溶接(FSW)を用いたナノ粒子(グラフェンナノプレートレーツ、炭素黒)の均一分散と界面制御が主な研究テーマです。また、グラファイトのナノスケール剥離やポリマー/ナノクリスタル複合材料の開発にも取り組んでおり、自動車用軽量化材料や高耐磨耗性表面の創出を目指しています。
Figures are computed from collected data and may differ slightly.
Friction stir processing (FSP) of Al6061-SiC-Graphite hybrid composites is studied in detail via force analysis, spectroscopic, microstructural and indentation studies. Effect of various tool rotational speeds was assessed, and the axial force variation was monitored. The presence of graphite as a reinforcement influences the axial force fluctuations due to its flaky nature and high thermal conductivity. Variation in microstructure at different tool rotational speed is studied using scanning ele
The present study aims to enhance the strength of friction stir lap welded aluminum alloys by using an interlayer of graphene nanoplatelets (GNPs) at the weld interface. With GNP interlayer, the weld strength and percentage elongation increased by 121 and 53%, respectively, as compared to the weld without GNP interlayer. The interlayer also changes the mode of fracture from brittle in the weld without GNP to ductile mode. Grain size in the weld with interlayer decreased by ~38% as equated to the
Friction stir alloying is primarily employed for the fabrication of surface composite to improve surface properties like hardness, wear resistance, and corrosion resistance without significantly affecting the bulk properties of the alloy. The present study demonstrates the novel method for the fabrication of bulk aluminum-graphene nanoplatelets composite by using friction stir alloying. Here, the novelty is shown through the method of graphene nanoplatelets incorporation in the stir zone. For th
Aluminium-based hybrid metal grid composites (MMC) are extensively utilized in automobile applications (engine cylinders, pistons, etc.) as they exhibit a fantastic blend of properties. Here, a detailed study of nano-mechanical, electrochemical and Raman spectroscopic behavior of friction stir processed Al6061-SiC-graphite hybrid surface composite is presented. The effect of various tool rotational speeds was evaluated along with the monitoring of variation in axial force. Microstructural change
Abstract A new combination of ionically conducting polymer–clay nanocomposites based on (PAN) 8 LiClO 4 + x wt % montmorillonite (unmodified) clay has been prepared using the standard solution cast process. X‐Ray diffraction (XRD) analysis reveals strong interaction of polymer salt complex (PS) with the montmorillonite matrix evidenced by changes in d 001 spacing of the clay and enhancement in the clay gallery width on composite formation possibly due to intercalation of polymer–salt complex int
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