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Statistical evaluation of impact factors to the energy consumption of machine tools

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In this paper, a method for the evaluation of the energy consumption of machine tools is presented. For this purpose, the energy consumption of various machine tools has been investigated experimentally. In order to increase the evaluation basis, measured values of energy consumption were also taken from literature. The evaluation contains an analysis of various factors concerning the productivity and the size of the investigated machine tools. This analysis is capable of detecting the impact factors to increase the energy-efficiency of production systems. It can further reduce the effort required for data acquisition when various machine tools are compared.
Rocznik
Strony
79--91
Opis fizyczny
Bibliogr. 18 poz., tab., rys.
Twórcy
autor
  • Institute of Machine Tools and Production Processes, University of Technology Chemnnitz, Germany
autor
  • Institute of Machine Tools and Production Processes, University of Technology Chemnnitz, Germany
autor
  • Institute of Machine Tools and Production Processes, University of Technology Chemnnitz, Germany
Bibliografia
  • [1] DIRECTIVE 2009/125/EC of the European Parliament and of the Council of 21 October 2009 establishing a framework for the setting of ecodesign requirements for energy-related products; Official Journal of the European Union; L 285/10.
  • [2] WITTSTOCK V., PAETZOLD J., 2013, Comparison of Machine Tools Regarding Energy – The Difficult Path to an Energy Label, in: R. Neugebauer, U. Götze, W.-G. Drossel (eds.), Energy-related and economic balancing and evaluation of technical systems – insights of the Cluster of Excellence eniPROD, Proceedings of the 1st and 2nd workshop of the cross-sectional group 1 “Energy related technologic and economic evaluation” of the Cluster of Excellence eniPROD, Wissenschaftliche Scripten, Auerbach, 469-486, URN: http://nbnresolving. de/urn:nbn:de:bsz:ch1-qucosa-105232.
  • [3] BEHREND T.,ZEIN A., MIN S, 2012, Development of an energy consumption monitoring procedure for machine tools, CIRP Annals - Manufacturing Technology, 61/1, 43-46.
  • [4] BRECHER C., HERFS W., HEYERS C., KLEIN W., TRIEBS J., BECK E., DORN T., 2010, Ressourceneffizienz von Werkzeugmaschinen im Fokus der Forschung. wt Werkstattstechnik online, Springer-VDI-Verlag, Düsseldorf, 559-564.
  • [5] MUSSA S., TILCH D., 2010, Energieeffiziente Werkzeugmaschine - Systematik und praktische Umsetzung, Concress „Die energieeffiziente Werkzeugmaschine“, METAV, Düsseldorf.
  • [6] JOLLIFFE I. T., 2002, Principle Component Analysis, Second edition, Springer-Verlag New York.
  • [7] CECIMO, 2009, Concept Description for CECIMO’s Self-Regulatory Initiative (SRI) for the Sector Specific Implementation of the Directive 2005/32/EC (EuP Directive).
  • [8] GOTZE U., KORIATH H.-J., KOLESNIKOV A., LINDNER R., PAETZOLD J., 2012, Integrated methodology for the evaluation of the energy- and cost-effectiveness of machine tools, CIRP Journal of Manufacturing Science and Technology, 3/2012, 151–163.
  • [9] DIETMAIR, A., VERL, A., 2009, Energy Consumption Forecasting and Optimisation for Tool Machines, Modern Machinery (MM) Science Journal, Prague, Bd. 2009, 1/4.
  • [10] NEUGEBAUER R., FRIEß U., PAETZOLD J., WABNER M., RICHTER, M., 2009, Approach for the development of energy-efficient machine tools, Journal of Machine Engineering, 9/2, 41-49.
  • [11] TECHNICAL COMMITTEE ISO/TC 39, 2012, Draft ISO/DIS 14955-1: Machine tools - Environmental evaluation of machine tools - Part 1: Design methodology for energy-efficient machine tools, International Organization for Standardization.
  • [12] BONGARD M., JUFER M., 1992, Analyse du rendement énergétique de processus in-dustriels de productique Publications RAVEL, Office fédéral des questions conjoncturelles, 724.397.21.55 f.
  • [13] NEYER A., ROHNER P., HUMM O., 1993, Elektroantriebe, Bundesamt für Konjunkturfragen, Schriftenreihe RAVEL Industrie, 724.332 d.
  • [14] GUTOWSKI T., DAHMUS J., THIRIEZ A., 2006, Electrical Energy Requirements for Manufacturing Processes. Proceedings of 13th CIRP International Conference on Life Cycle Engineering, 623-627.
  • [15] WECK M., BRECHER, C., 2006, Werkzeugmaschinen 5 - Messtechnische Untersuchung und Beurteilung, dynamische Stabilität, Springer-Verlag, Berlin Heidelberg, 310 ff., 343ff.
  • [16] N.N., Wie viel verbraucht eine Werkzeugmaschine?, http://www.wirautomatisierer.de/home/- /article/32536721/37192113/Wie-viel-ve .
  • [17] JAPANESE STANDARDS ASSOCIATION, 2010, Machine Tools-Test Methods for Electric Power Consumption–Part 1: Machining centres, TS B 0024-1:2010.
  • [18] HAGEMANN D., 2011, Status of ISO/TC39/WG12, 2nd Stakeholder Meeting Lot 5 ErP, Frankfurt a.M., 15/02/2012: www.ecomachinetools.eu/typo/meetings.html, 01/10/2012.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-647678ae-5294-4e0b-a051-e713ed458ced
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