LEAN MANUFACTURING PROCESS PLANNING FOR 5 AXES CNC DRIVEN MILLING MACHINE
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Jacek Tomasz Ogrodniczek, Adrian Pyda, Mariusz Kłonica1-9
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LEAN MANUFACTURING PROCESS PLANNING FOR 5 AXES CNC DRIVEN MILLING MACHINE
Sándor Bodzás, Béla Krakkó10-28
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Abstract
The aim of this publication is to determine the OEE (Overall Equipment Efficiency) indicator for 5 axes milling machine found at Diehl Aircabin Hungary Ltd. for the present and future state. Based on this value, the utilization of the machine for the given production amount can be calculated. With the optimal choice of the right production parameters (the number of cuts, feeding, depth of cut, etc.) greater productivity can be achieved i.e. the machine main time (time of cutting) will be less. The possibilities of the reduction of the machine time will be analysed and calculated. Setting of the appropriate technological parameters the machine main time could be decreased. The calculation of the machine main time will be determined for the most frequent manufacturing technologies.
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References
S. Bodzás, Gyártástervezés MAKA típusú CNC vezérlésű 5 tengelyes marógépre, thesis, LEAN profession, University of Debrecen, Debrecen, p. 67., 2016.
M. Berta, CNC szerszámgépek szerszámrendszerei, Collage of Nyíregyháza Publisher, Nyíregyháza, p. 155, ISBN 978 615 5545 03 0
I. Dudás, Gépgyártástechnológia I., A gyártástechnológia alapjai, 2. edition, Műszaki Könyvkiadó Ltd., Budapest, p. 584, ISBN 963-16-4030-2, 2011.
N. Mátrai, Lean Menedzsment presentations, University of Debrecen, Debrecen, 2016.
GY. Péczely, CS. Péczely, GY. Péczeli, Lean 3, Termelékenységfejlesztés egységes rendszerben, A. A. Stádium Diagnosztikai és Menedzsment Ltd., Budapest, p. 690, ISBN 978-963-08-3163-5, 2009.
L. Wilson, How to implement Lean Manufacturing, Second Edition, p. 419, ISBN 978-0-07-183573-2, 2015.
L. Bálint, A forgácsoló megmunkálás tervezése, 2. kiadás, Műszaki Könyvkiadó Kft., Budapest, p. 883, 1961.
F. Klocke, Manufacturing Processes I, Cutting, RWTH Edition, RWTH Aachen University, p. 524, ISBN 978-3-642-11978-1, 2011.
J. A. Schey, Introduction to Manufacturing Processes, McGraw – Hill Book Company, p. 392., ISBN 0-07-055274-6, 1977.
J. G. Bralla, Handbook of Manufacturing Processes, First Edition, Industrial Press Inc., New York, 2007, ISBN 0-831 1-3179-9
H. A. Youssef, H. El hofy, Machining Technology, Machine tools and operations, CRC Press, United States of Amerika, p. 672, ISBN 978-1-4200-4339-6
L. Fridrik, Forgácsolás I. (Forgácsoláselmélet), Miskolci Egyetemi Kiadó, p. 205., 2011.
K. Gyáni, Gépgyártástechnológia alapjai I., Tankönyvkiadó, Budapest, p. 128., 1980.
J. Bali, Forgácsolás, Tankönyvkiadó, Budapest, p. 538., 1988.
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