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Sprawdzenie, czy przeprowadzono test wygrzewania HST [Test wygrzewania szkła hartowanego termicznie]

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Warianty tytułu
Języki publikacji
PL
Abstrakty
Czasopismo
Rocznik
Strony
44--48
Opis fizyczny
Bibliogr. 27 poz., il.
Twórcy
  • Calderone and Associates Pty Ltd, Australia
Bibliografia
  • [1] Australian Standard, AS 1288:2006, Glass in buildings – Selection and installation (Reissued incorporating Amendment No. 3, February 2016), Clause 3.8.2.
  • [2] Umur Duman, Şeref Sonmez, Tuğba Baytak and Osman Bulut, “Static Analysis of the Stress State caused by Heating Quenching Process in Tempered Glasses”, 21st International Research/Expert Conference” Trends in the Development of Machinery and Associated Technology” TMT 2018, Karlovy Vary, Czech Republic, 18th – 22nd September, 2018.
  • [3] Nielsen, J.H.: “Modeling of Residual Stresses in Toughened Glass”. In proceedings: 6th Int. PhD symposium in Civil Eng., 2006, Zurich (Schweiz).
  • [4] Nielsen, J.H, “Tempered Glass – bolted connections and related problems”, PhD Thesis, Department of Civil Engineering, Technical University of Denmark, 2009.
  • [5] McLellan, G.W. and Shand, E.B. “Glass Engineering Handbook,” 3rd Ed, McGraw-Hill Book Company, New York, 1984, a:p4-7, b:p6-7, c:p2-5.
  • [6] H. Aben, J. Anton, and A. Errapart. “Modern photoelasticity for residual stress measurement in glass”. Strain, 44(1):40-48, 2008. ISSN 00392103.
  • [7] J. Anton and H. Aben. “A compact scattered light polariscope for residual stress measurement in glass plates”. In Glass Processing Days, 2003.
  • [8] Karlsson, S. “Spontaneous Fracture in Thermally Strengthened Glass – A Review and Outlook” RISE Research Institutes of Sweden, Division Built Environment, Glass Section, SE-351 96 Vaxjo, Sweden, March 10, 2017.
  • [9] SWAIN, M.V. “Nickel sulphide inclusions in glass: an example of microcracking induced by a volumetric expanding phase change”, Journal of Material Science 16 (1981) 151 - 158.
  • [10] EN 14179-1:2005 Glass in building - Heat soaked thermally toughened soda lime silicate safety glass - Part 1: Definition and description, June 2005.
  • [11] Yousfi, O., Brechet, Y., Donnadieu, P., Kasper, A. and Serruys, F. “Proposal to enhance the Heat Soak Test following EN14179-1” Glass Performance Days, Finland 2009.
  • [12] Calderone I. “A New Improved Heat Soak Test Protocol for EN 14179-1:2005” Glass Performance Days, Finland, 2013.
  • [13] EN 14179-1:2016 Glass in building - Heat soaked thermally toughened soda lime silicate safety glass - Part 1: Definition and description, July 2016.
  • [14] Barr, J., “The glass tempering handbook”. www.glassonweb.com, February 2015.
  • [15] Yoffe, E.H., “The moving Griffith crack”. Philosophical Magazine, 42:739-750, 1951.
  • [16] Freund, L.B., “Dynamic fracture mechanics”. Cambridge University Press, 1990.
  • [17] Elert, G., The Physics Hypertextbook 2018.
  • [18] Wikipedia. URL https://en.wikipedia.org/wiki/ Viscosity, January 2019.
  • [19] Fulcher, G. S., Analysis of recent measurements of the viscosity of glasses, Jour. Amer. Ceram. Soc 8, No.6, 339-360 (1925).
  • [20] Zheng, Q. and Mauro, J.C., “Viscosity of glassforming systems”, Journal of the American Ceramic Society / Volume 100, Issue 1, December 2016.
  • [21] Simmons, J.H., Mohr, R.K. and Montrose, C.J. “Non-Newtonian viscous flow in glass” Journal of Applied Physics 53, 4075 (1982), Published Online: 04 June 1998.
  • [22] Lillie, H.R. “Viscosity-Time-Temperature Relations in Glass at annealing Temperatures,” J. Am. Ceram. Soc., 16:619-631 (1933).
  • [23] Shang, H. and Rouxel, T., “Creep Behavior of Soda-Lime Glass in the 100-500 K Temperature Range by Indentation Creep Test”, J. Am. Ceram. Soc., 88 [9] 2625-2628 (2005).
  • [24] Solinov, V.F., “Effect of nickel sulfide inclusions on spontaneous hardened glass breaking”, Glass Performance Days, Finland 2007.
  • [25] Schneider, J., Hilcken, J., Aronen, A., Karvinen, R., Olesen, and Nielsen, J., “Stress relaxation in tempered glass caused by heat soak testing,” Engineering Structures, Volume 122, 1 September 2016, Pages 42-49.
  • [26] Fotheringham, U., “Relaxation Processes in Glass and Polymers, Lecture 2: Phenomenology of viscoelasticity & glass transition”, The International Materials Institute for New Functionality in Glass (IMI-NFG) at Lehigh University, 2015.
  • [27] Hubert, M., “Course on Processing of Glass - Lecture 9: Annealing and Tempering”, International Materials Institute for New Functionality in Glass (IMI-NFG) at Lehigh University, 2015.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-71c60c12-62f0-432b-b4c5-d52c09dcfc0a
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