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Stress Distribution in a Plate with a Holes Along the Diagonal Distribution Under Plane Biaxial Load


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[1] Niezgodziński, M. E. “Obliczanie den sitowych zbiorników ciśnieniowych”, Przegląd Mechaniczny 3, 1973. (in Polish) Search in Google Scholar

[2] Baik, S. C., Oh, K. H., Lee, D. N. “Analysis of the deformation of a perforated plates with sguare arrays of holes“, Nuclear Engineering and Design 231, pp. 219 – 233, 2004.10.1016/j.nucengdes.2004.04.001 Search in Google Scholar

[3] Lee, Y-Ch., Chen, F-K. “Yield criterion for a perforated sheed with a uniform triangular pattern of round holes and a low ligament ratio“, Journal of Materials Processing Technology 103, pp. 353 – 361, 2000.10.1016/S0924-0136(00)00506-9 Search in Google Scholar

[4] Bhattacharya, A., Venkat, R. V. “Yield Surfaces for Perforated Plates with Square Arrays of Holes“, Nuclear Engineering and Design 231, pp. 219 – 233, 2004.10.1016/j.nucengdes.2004.04.001 Search in Google Scholar

[5] Pástor, M., Čarák, P., Gomory, I. “The assessment of the residual stresses influence on generation of the infringement in shape-complex supporting members“, Strojnícky časopis – Journal of Mechanical Engineering 69 (1), pp. 85 – 96, 2019. DOI: 10.2478/scjme-2019-000710.2478/scjme-2019-0007 Search in Google Scholar

[6] Paška, Z., Fojtík, F., Ferfecki, P. “Full field evaluation of the stress tensor components in 2D photoelasticity via computer software“. Strojnícky časopis – Journal of Mechanical Engineering 66 (2), pp. 63 – 66, 2016. DOI: 10.1515/scjme-2016-001910.1515/scjme-2016-0019 Search in Google Scholar

[7] Achtelik, H., Gasiak, G., Grzelak, J. “Strength tests of axially symmetric perforated plates for chemical reactors: Part 1 - The simulation of stress state“, International Journal of Pressure Vessels and Piping 85, pp. 248 – 256, 2008.10.1016/j.ijpvp.2007.08.009 Search in Google Scholar

[8] Achtelik, H., Gasiak, G., Grzelak J. “Strength tests of axially symmetric perforated plates for chemical reactors: Part 2 - Experiments“, International Journal of Pressure Vessels and Piping 85, pp. 257 – 264, 2008.10.1016/j.ijpvp.2007.08.010 Search in Google Scholar

[9] Ryś, J., Życzkowski, M. “Obliczanie tarcz z otworem kołowym w przypadku plastycznego wzmocnienia materiału“, Archiwum Budowy Maszyn. 18 (3), pp. 479 – 492, 1971. (in Polish). Search in Google Scholar

[10] Ryś, J. “Stan naprężeń, odkształceń, nośność sprężysta oraz sztywność tarczy z trzema otworami“, Czasopismo Techniczne 10, pp. 8 – 14, 1970. (in Polish). Search in Google Scholar

[11] “Warunki Techniczne Dozoru Technicznego. Urządzenia Ciśnieniowe. Obliczenia Wytrzymałościowe. DT-UC-90IWO-O. UDT. “, Wydawnictwo Poligraficzne. 1991 (in Polish). Search in Google Scholar

[12] Konieczny, M. “Wpływ geometrii otworu eliptycznego na rozkład naprężeń w płycie przy jednoosiowym obciążeniu“, Badania i Rozwój Młodych Naukowców w Polsce - Nauki techniczne i inżynieryjne 1, 2019. ISBN: 978-83-66392-06-09 18-26 (in Polish) Search in Google Scholar

[13] Konieczny, M., Gasiak, G. “State of Stress in the Plate with Slot at Biaxial Load“, Conference Proceedings Fatigue Failure and Fracture Mechanics XXVII, 2018. ISSN: 978-0-7354-1750-2 1-9 Search in Google Scholar

[14] Konieczny, M., Gasiak, G. “Analysis of the impact of slot geometry on the stresses distribution in a plate of S235JR steel subjected at biaxial load“, Inżynieria Materiałowa – Material Engineering 6 (226), pp. 228 – 235, 2018.10.15199/28.2018.6.5 Search in Google Scholar

[15] Jakubowicz, A., Orłoś, Z. “Wytrzymałość materiałów“, WNT, Warszawa 1984 (in Polish) Search in Google Scholar

[16] www.ctg.cornnell.edu/software/Franc2d for MS Windows 64b:f/ [acces from 12.10.2016]. Search in Google Scholar

[17] www.mesco.com.pl [acces from 15.04.2017]. Search in Google Scholar

[18] Nikolić, V., Dolicanin, Ć., Radojkowić, M. “Application of Finite Element Analysis of Thin Steel Plate with Holes“, Technical Gazette 18 (1), pp. 57 – 62, 2011. Search in Google Scholar

[19] Gunwant, D., Singh, J. P. “Stress and Displacement Analysis of a Rectangular Plate with Central Elliptical Hole“, International Journal of Engineering and Innovative Technology 3 (3), pp. 387 – 392, 2013. Search in Google Scholar

[20] Khechai, A., Tati, A. “Finite Element Analysis of Stress Concentrations in Isotropic and Composite Plates with Elliptical Holes“, Mechanical Engineering, pp. 427 – 436, 2015.10.1007/978-3-319-17527-0_43 Search in Google Scholar

[21] Sharma, S. “Stress Concentration around Circular/Elliptical/Triangular Cutouts in Infinite Composite Plate“, Proceedings of the World Congress on Engineering 3, pp. 1 – 6, 2011. ISBN: 978-988-19251-5-2 Search in Google Scholar

[22] Rahman, S. “Stress Analysis of Finite Steel Plate with a Rectangular Hole Subjected to Uniaxial Stress Using Finite Element Method“, Journal of Marine Science: Research and Development 8 (3), pp. 1 – 6, 2018.10.4172/2155-9910.1000254 Search in Google Scholar

[23] Mohsin, N. R., Aoda, Y. F., Sayel, R. A. “Determination the effect of circular hole on the stress concentration for a plate subjected to uniaxial and biaxial stresses in tension and compression status“, International Journal for Management Science and Technology 3 (1), pp. 3 – 17, 2015. Search in Google Scholar

[24] Bhandari, V. B. “Design of Machine Elements 3rd edition“. Tata McGraw-Hill, pp. 141 – 150, 2010. Search in Google Scholar

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Temas de la revista:
Engineering, Mechanical Engineering, Fundamentals of Mechanical Engineering, Mechanics