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Manufacturing processes are continually improving and updating with a view towards enhancing productivity. With the rapid development of technology, the demand for miniature, lightweight and advanced products is increasing. To compensate these emerging global trends towards the miniaturization of products, the electrochemical micromachining, shortly miECM, is a promising technique. The miECM utilizes high frequency pulses for micron to nano-scale dissolution process that can be driven by with or without feedback control systems. This work includes the activities performed during the last three…mehr

Produktbeschreibung
Manufacturing processes are continually improving and updating with a view towards enhancing productivity. With the rapid development of technology, the demand for miniature, lightweight and advanced products is increasing. To compensate these emerging global trends towards the miniaturization of products, the electrochemical micromachining, shortly miECM, is a promising technique. The miECM utilizes high frequency pulses for micron to nano-scale dissolution process that can be driven by with or without feedback control systems. This work includes the activities performed during the last three years, as the development of electrochemical micromachining workcell, fabrication of microtools, parametric effects analysis, and fabrication of various microproducts on some noble materials.
Autorenporträt
Dr. M.A.H. Mithu is a Professor of Manufacturing Engineering in the Department of Industrial and Production Engineering, Shahjalal University of Science and Technology (SUST), Sylhet, Bangladesh. He received his MEngg from BUET, Bangladesh in 2006 and PhD from University of Pisa, Italy in 2011 in the field of Manufacturing Engineering.