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Methodological problems of temperature measurement in the cutting area during milling magnesium alloys

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Języki publikacji
EN
Abstrakty
EN
This paper presents a literature review on temperature measurement during milling of magnesium alloys as well as other structural materials. Methodology and temperature measurement methods used in own tests are discussed in this paper. Selected test results for each method of temperature measurement in the cutting area are demonstrated.
Twórcy
  • Lublin University of Technology, Faculty of Mechanical Engineering, Department of Production Engineering, Poland
autor
  • Lublin University of Technology, Faculty of Mechanical Engineering, Department of Production Engineering, Nadbystrzycka 36, 20-618 Lublin, Poland, phone: (+48) 81 538-42-37; (+48) 81 538-42-35
Bibliografia
  • [1] Oczoś K.E., Efficient machining of magnesium alloys, Mechanik, 7, 467–474, 2000.
  • [2] Oczoś K.E., Extension of the magnesium alloys application range, Mechanik, 5–6, 386–400, 2009.
  • [3] Oczoś K.E., Kawalec A., Light metals forming, PWN, Warsaw 2012.
  • [4] Adamiec J., Weldability of Magnesium Casting Alloys, Silesian University of Technology Publishing House, Gliwice 2010.
  • [5] Zagóski I., Temperature in the cutting area in terms of safe Mg alloy machining, Report 2010, POIG.01.01.02-00-015/08-00.
  • [6] Akyuz B., Machinability of Mg and its alloys, The Online Journal of Science and Technology, 1, 3, 31–38, July 2011.
  • [7] Arai M., Sato S., Ogawa M., Shikata H.I., Chip Control in Finish Cutting of Magnesium Alloy, Journal ofMaterials Processing Technology, 62, 341–344, 1996.
  • [8] Fang F.Z., Lee L.C., Liu X.D., Mean Flank Temperature Measurement in High Speed Dry Cutting, Journal of Materials Processing Technology, 167, 119–123, 2005.
  • [9] Yap K., How To Machine Magnesium? http://www.suwaprecision.com/, of 6.10.2010.
  • [10] http://www.nanomag.us/Hydro Mg Brochure Machining Mg.pdf, of 19.01.2012.
  • [11] Korkut I., Boy M., Karacan I., Seker U., Investigation of chip-back temperature during machining depending on cutting parameters, Materials and Design, 28, 2329–2335, 2007.
  • [12] O’Sullivan D., Cotterell M., Temperature measurement in single point turning, Journal of Materials Processing Technology, 118, 301–308, 2001.
  • [13] Tönshoff H.K., Denkena B., Winkler J., Podolsky Ch., Technology of Mg and Mg alloys: Machining, Editored by Friedrich H.E. and Mordike B.L., Springer, pp. 398–418, 2006.
  • [14] Zhao N., Hou J., Zhu S., Chip ignition in research on high-speed face milling AM50A magnesium alloy, Second International Conference on Mechanic Automation and Control Engineering, 15–17 July 2011, Inner Mongolia, China.
  • [15] Kuczmaszewski J., Zagóki I., Control of the weight, ignition temperature and actual temperature of chips produced when machining some selected magnesium alloy grade, Mechanik, 10, 824–828, 2012.
  • [16] Zagóki I., Kuczmaszewski J., Selected problems of effectiveness of processing of magnesium alloys with a Kordell design toll, Management and Production Engineering Review, 4, 90–96, 2011.
  • [17] http://www.sandvik.coromant.com/, Sandvik Coromant Catalogue, Metalcutting Technical Guide: Milling, of 15.03.2011.
  • [18] http://www.test-therm.com.pl/, of 3.03.2010 r.
  • [19] Zgórniak P., Grdulska A., Zagórski I., Report from research on machining magnesium alloys, financed from the European Regional Development Fund POIG.01.01.02-00-015/08-00 in the Operational Programme – Innovative Economy.
  • [20] Wolfe W.L., Handbook of Military Infrared Technology, Office of Naval Research, Department of Navy, Washington, D.C.
  • [21] Grzesik W., Introduction into machining of structural materials, Wydawnictwa Naukowo-Techniczne, Warsaw, 2010.
  • [22] Kuczmaszewski J., B. Kruszyński, P. Zgórniak, Zagórski I., Thermographic study of chip temperature in high-speed dry milling magnesium alloys, Journal of Thermal Science and Technology (under review 2013).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0f6369f3-24a6-4d5e-9027-935ce6dc3ba0
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