An Object-Oriented Modelling for Simulating Workshop Consisted of Machining Center, Pallet Stocker and Stacker Crane

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This paper described a methodology to simulate production activities by using object-oriented programming language. Simulation of production to be modeled are the production activities in a workshop. The first step of modelling was defining objects that constitute the main part of a machining center. The main part of machining-center which was being modeled are column spindle, pallet fixture, pallet changer and tool magazine. From these objects can be created a new object that was an object of machining center. The next step was modeling pallet stocker and stacker crane. Pallet Stocker is a container used to store the workpiece or product on the pallet. A stocker crane is a device used to move a workpiece from the pallet stocker to a machining center or vice versa. The final step was modeling a workshop in which there are some machining centers, pallet stocker and stocker crane. Object modeled can be used to simulate a workpiece transfer activity undertaken by stacker crane from the pallet stocker to the machining center.

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373-380

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June 2016

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© 2016 Trans Tech Publications Ltd. All Rights Reserved

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[1] Automatic Trilateral Stacker Crane. https: /www. google. co. id/imgres?imgurl= http: /img. mecalux. com/external/products/en-UN/automatic-trilateral-stacker-crane-131427. jpg&imgrefurl= http: /www. mecalux. com/automated-warehouses-for-pallets/automatic-trilateral-stacker-crane&h= 1000&w=1333&tbnid=DhI4HmHd2LCOYM: &docid=YKgA7aqbm1xQgM&ei=_yH4VeSHL8TJuAT46a2YBQ&tbm =isch&ved =0CDAQMygBMAFqFQoTCKSDpKaX -ccCFcQkjgod -HQLUw (accesed 6/16/2015).

Google Scholar

[2] CNC Dual Rotary Table. http: /en. tjr. com. tw/products/index. php?type_id=53&top=0 (accesed 6/5/2015).

Google Scholar

[3] Flexible Automation for Global Competition. http: /www. google. co. id/imgres?imgurl= http: /www. fabricatingandmetalworking. com/wp-content/uploads/2013/05/MMC2-3. jpg&imgrefurl =http: /www. fabricatingandmetalworking. com/2013/05/flexible-automation-for-global-competition/ &h=3744&w=5616&tbnid=-p8NxzRJi-BJ8M: &docid=2jmnh57s6t8IjM&ei=A6UwVuqoMoKNm wXSx7uYDA&tbm=isch&ved=0CA0QMygKMAo4yAFqFQoTCKq2to_85MgCFYLGpgod0uMOww. (accesed 8/14/2015).

Google Scholar

[4] Flexible Manufacturing System. https: /en. wikipedia. org/wiki/Flexible_manufacturing_system. (accesed 7/20/2015).

Google Scholar

[5] KBH Produktion Automation. http: /www. kbh-automation. com/tool-magazine-horizontal. html (accesed 7/13/2015).

Google Scholar

[6] Machining Center. http: /www. mmsonline. com/zones/machiningcenters (accesed 7/25/2015).

Google Scholar

[7] Pemrograman Berorientasi Objek. https: /cuepricornz. wordpress. com/tutorial/pemrograman-berorientasi-obyek/ (accesed 7/10/2015).

DOI: 10.21070/2019/978-602-5914-58-4

Google Scholar

[8] Pemrograman Berorientasi Objek. https: /id. wikipedia. org/wiki/Pemrograman_berorientasi_ objek (accesed 8/14/2015).

DOI: 10.21070/2019/978-602-5914-58-4

Google Scholar

[9] Pharo By Example. https: /hal. inria. fr/inria-00441463/document (accesed 7/21/2015).

Google Scholar