A computer algorithm for determining the tensile strength of float glass
Tài liệu tham khảo
Shelby, 1997
Overend, 2007, Diagnostic interpretation of glass failure, Struct Eng Int, 17, 151, 10.2749/101686607780680790
Irwin, 1957, Analysis of stresses and strains near the end of a crack traversing a plate, J Appl Mech, 24, 361, 10.1115/1.4011547
Haldimann M, Luible A, Overend M. Structural use of glass. Structural engineering document no. 10, International Association of Bridge and Structural Engineers; 2008
Uhlmann DR, Kreidl NJ, editors. Glass science and technology. Elasticity and strength in glasses, vol. 5. Academic Press; 1980.
Wachtman, 1996
Munz, 1999
Kurkijan, 2003, The intrinsic strength and fatigue of oxide glasses, J Non Cryst Solids, 316, 114, 10.1016/S0022-3093(02)01943-9
Grenet, 1899, Mechanical strength of glass, Enc Ind Nat Paris, 5, 838
Mould, 1959, Strength and static fatigue of abraded glass under controlled ambient conditions: I, general concepts and apparatus, J Am Ceram Soc, 42, 542, 10.1111/j.1151-2916.1959.tb13571.x
Mould, 1959, Strength and static fatigue of abraded glass under controlled ambient conditions: II, effect of various abrasions and the universal fatigue curve, J Am Ceram Soc, 42, 582, 10.1111/j.1151-2916.1959.tb13578.x
Wiederhron, 1967, Influence of water vapor on crack propagation in soda–lime glass, J Am Ceram Soc, 50, 407, 10.1111/j.1151-2916.1967.tb15145.x
Michalske, 1983, Molecular mechanism for stress corrosion in vitreous silica, J Am Ceram Soc, 66, 284, 10.1111/j.1151-2916.1983.tb15715.x
Evans, 1974, Proof testing of ceramic materials – an analytical basis for failure prediction, Int J Fract, 10, 379, 10.1007/BF00035499
Haldimann M. Fracture strength of structural glass elements – analytical and numerical modelling, testing and design. Thèse EPFL No 3671, Ecole polytechnique fédérale de Lausanne (EPFL); 2006.
Charles RJ, Hillig WB. The kinetics of glass failure by stress corrosion. In: Symposium on mechanical strength of glass and ways of improving it. Charleroi, Belgium; 1962. p. 25–9.
Wiederhorn, 1973, Effect of electrolyte pH on crack propagation in glass, J Am Ceram Soc, 56, 192, 10.1111/j.1151-2916.1973.tb12454.x
Wiederhorn, 1970, Stress corrosion and static fatigue of glass, J Am Ceram Soc, 53, 543, 10.1111/j.1151-2916.1970.tb15962.x
Wilkins, 1976, Static fatigue limit with particular reference to glass, J Am Ceram Soc, 59, 108, 10.1111/j.1151-2916.1976.tb09442.x
Gehrke, 1991, Fatigue limit and crack arrest in alkali-containing silicate glasses, J Mater Sci, 26, 5445, 10.1007/BF02403942
Guin, 2003, Crack growth threshold in soda lime silicate glass: role of hold-time, J Non-Cryst Solids, 316, 12, 10.1016/S0022-3093(02)01932-4
Evans, 1972, A method for evaluating the time-dependent failure characteristics of brittle materials and its application to polycrystalline alumina, J Mater Sci, 7, 1137, 10.1007/BF00550196
Brown WG. A practicable formulation for the strength of glass and its special application to large plates. Publication No. NRC 14372. National Research Council of Canada, Ottawa; 1974.
Beason, 1984, Glass failure prediction model, ASCE J Struct Eng, 110, 197, 10.1061/(ASCE)0733-9445(1984)110:2(197)
Sedlacek, 1995, Glass in structural engineering, Struct Eng, 73, 17
Fischer-Cripps, 1995, Architectural glazing: design standards and failure models, Build Environ, 30, 29, 10.1016/0360-1323(94)E0026-N
Porter, 2001, Development of crack size limit state design methods for edge-abraded glass members, Struct Eng, 79, , 29
Overend, 2007, A general crack growth model for predicting failure in glass, ASCE J Struct Eng, 133, 1146, 10.1061/(ASCE)0733-9445(2007)133:8(1146)
Green, 1999, Characterisation of subcritical crack growth in ceramics using indentation cracks, Br Ceram Trans, 98, 291, 10.1179/096797899680615
NASGRO v6.2 fracture mechanics and fatigue crack growth analysis software. NASA Johnson Space Center and Southwest Research Institute; 2011.
CAN/CGSB 12-20-M89. Structural design of glass for buildings. National Standard of Canada. Canadian General Standards Board; 1989.
ASTM E 1300–09a. Determining load resistance of glass in buildings. Philadelphia, USA; 2009.
CEN prEN13474. Glass in building – design of glass panes – Part 1: general basis of design. European Committee for Standardisation, Brussels; 2007.
Behr, 1991, Reliability analysis of window glass failure pressure data, Struct Safety, 11, 43, 10.1016/0167-4730(91)90026-6
Overend, 2010, Recent developments in design methods for glass structures, Struct Eng, 88, 18
Laufs, 1999, Stress distribution in thermally tempered glass panes near the edges, corners and holes; Part 2. Distribution of thermal stresses, Glass Sci Technol, 72, , 42
Norville HS, Bove PM, Sheridan DL. The strength of new thermally tempered window glass lites, Glass Research and Testing Lab. Texas Tech University, USA; 1991.
SJ MEPLA version 3.5.4. Software for structural glass design; 2011. <http://www.mepla.eu>.
Overend M. The appraisal of structural glass assemblies, PhD thesis. University of Surrey UK; 2002.
Connecticut Reserve Technologies. Ceramic Analysis and Reliability Evaluation of Structures (CARES) v. 9.1.0.181; 2011. <http://www.ceramicreliability.com/software/cares.html>.
Nemeth N, Powers LM, Janosik LA, Gyekenyesi JP. CARES/LIFE ceramics analysis and reliability evaluation of structures life prediction program. NASA/TM-2003-106316; 2003.
Batdorf, 1978, Weakest link theory reformulated for arbitrary fracture criterion, J Am Ceram Soc, 61, 355, 10.1111/j.1151-2916.1978.tb09327.x
Gross B, Powers, LM, Jadaan OM, Janosik LA. Fatigue parameter estimation methodology for power and Paris crack growth laws in monolithic ceramic materials. NASA/TM-4699; 1996.
DIN 1249-10:1990. Flachglas im Bauwesen – Teil 10: Chemische und physikalische Eigenschaften; 1990.
Fink A. Ein beitrag zum einsatz von floatglas als dauerhaft tragender konstruktionswerkstoffim bauwesen, Ph.D. thesis. Technische Hochschule Darmstadt; 2000.
Ritter, 1985, Strength and fatigue parameters for soda-lime glass, Glass Technol, 26, 273
Johar S. Dynamic fatigue of flat glass – Phase II. Technical report, ontario research foundation. Department of Metals, Glass and Ceramics, Missisagua, Canada; 1981.
Johar S. Dynamic fatigue of flat glass – Phase III. Technical report, ontario research foundation. Department of Metals, Glass and Ceramics, Missisagua, Canada; 1982.
Kerkhof, 1981, Festigkeitvon Glas – Zur Abhängigkeit von Belastungsdauer und –verlauf, Glastech Berich, 54, 265
Sglavo, 2004, Vickers indentation: a powerful tool for the analysis of fatigue behavior on glass, Ceram Trans, 156, 13
Sglavo, 1997, Cyclic loading behaviour of soda lime silicate glass using indentation cracks, Fatigue Fract Eng Mater Struct, 20, 1225, 10.1111/j.1460-2695.1997.tb00326.x
Sglavo, 1999, Indentation fatigue testing of soda–lime silicate glass, J Mat Sci, 34, 579, 10.1023/A:1004507131588
Dwivedi, 1995, Determination of subcritical crack growth parameters by in situ observations of indentation cracks, J Am Ceram Soc, 78, 2122, 10.1111/j.1151-2916.1995.tb08624.x
Schneider J. Festigkeit und Bemessung punktgelagerter Gläser und stossbeanspruchter Gläser, Ph.D. thesis. TU Darmstadt, Institut für Statik; 2001.
Zammit K. and Overend M. Increasing the design strength of glass – fractography and stress testing. In: Proceedings of the international association for shell and spatial structures symposium. Valencia, Spain; September 2009.
Fuller, 1980, Proof testing of ceramics, J Mater Sci, 15, 2282, 10.1007/BF00552318