会议论文详细信息
3rd International Conference on Materials and Manufacturing Engineering 2018
Optimization of the electrochemical machining parameters in drilling of AA6O6I-TIB2 in-situ composites produced by K2TiF6-KBF4 reaction system
Chandrasekhar, S.^1 ; Prasad, N.B.V.^1
Department of Mechanical Engineering, K L Deemed to Be University, Guntur, A.P
522 502, India^1
关键词: Conventional machining;    Electrochemical drilling;    Electrochemical machining;    In-situ composite;    Interfacial bonding;    Machined surface;    Mechanical stress;    Orthogonal layout;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/390/1/012006/pdf
DOI  :  10.1088/1757-899X/390/1/012006
来源: IOP
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【 摘 要 】

Utilization of un conventional machining is increased exponentially due to its specific advantages like good machinabilty on the ceramic materials, ability to make complex profiles and supreme surface finish. Among the various un conventional machining, the electro chemical machining has unique identity including reasonably higher machining rate along with thermal and mechanical stress free machined surface. In-situ composites are made by reinforcing the micro size reinforcement by chemical reaction. The mechanical properties of these composites superior due its good interfacial bonding and smaller grain size of the matrix. The current paper deals the optimization of the electrochemical drilling parameters in machining of AA6061-5% T1B2 in-situ composites produced by K2TiF6- KBF4 reaction system. Current, concentration of the electrolyte and applied voltage are preferred as matrix whereas removal rate of the material and taper of the electrochemically drilled hole is identified to assess the machinbility. L27 orthogonal layout is followed for experimental work and Taguchi method deployed for optimization. Analysis of result and variance indicates that the preferred responses have significant influence on the responses.

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