Identyfikatory
Warianty tytułu
Języki publikacji
Abstrakty
Purpose: This study aims to determine the material properties of the structural components of the composite ring material for pipe flange connections. Design/methodology/approach: The study included structural components, in particular resins and composites based on them, characterised by the share of recyclate in the form of post-production waste composites with different degrees of fineness. Findings: The study results include the physical characteristics of resins and mechanical characteristics of composite materials based on their matrix, using fillers of different compositions and granulation. Practical implications: The research results are the material-structural solutions of rings meeting the strength and functional performance criteria of rings intended for circular pipe connections. Originality/value: Determination of structural components of composite for loose rings in pipe flange connections. The achievement of the research is the identification of the most favourable combinations of component materials of composites for rings in structural solutions for pipe flange connections using loose rings.
Słowa kluczowe
Wydawca
Rocznik
Tom
Strony
61--68
Opis fizyczny
Bibliogr. 25 poz., rys., tab., wykr.
Twórcy
autor
- Department of Theoretical and Applied Mechanics, Faculty of Mechanical Engineering, Silesian University of Technology, ul. Konarskiego 18a, 44-100 Gliwice, Poland
autor
- Plaston-P Ltd., ul. Wiejska 15, 41-500 Chorzów, Poland
autor
- Plaston-P Ltd., ul. Wiejska 15, 41-500 Chorzów, Poland
Bibliografia
- [1] PN-EN 1092-2:1999, Flanges and their connections. PN marked circular flanges for pipes, fittings, couplings and accessories. Cast iron flanges.
- [2] PN-EN 1591-1:2014-04, Flanges and their joints ‒ Design rules for gasketed circular flange connections ‒ Part 1: Calculation.
- [3] EN 1591-1:2001/PRA1, Flanges and their joints ‒ Design rules for gasketed circular flange connections ‒ Part 1: Calculation method.
- [4] D. Leń, L. Ślęczka, Design models of bolted flange connections of circular axially tensioned bars, Engineering and Construction 71/2 (2015) 91-94 (in Polish).
- [5] ESA/FSA, Guidelines for safe seal usage - Flanges and Gaskets, ESA/FSA Publication No. 009/98, 1998.
- [6] Collective work, Water supply and sewerage. Guidebook, Arkady Publishing House, Warszawa, 1971 (in Polish).
- [7] J. Chudzicki, S. Sosnowski, Water Supply Systems ‒ Design, Construction, Operation, Seidel-Przywecki Publishing House, Warszawa, 2011 (in Polish).
- [8] A. Górecki, A. Rutkiewicz, J. Zimmer, J. Płachta, M. Płuciennik, Z. Fedorczyk, Technical Requirements COBRTI INSTAL Book 3: Technical Conditions for Execution and Acceptance of Water Supply Networks, TIB Publishing House, Warszawa, 2001 (in Polish).
- [9] G. Wróbel, K. Walczak, Load condition analysis of pipe flange connection with gasket flat gasket and loose clamping rings, Journal of Achievements in Materials and Manufacturing Engineering 111/1 (2022) 5-17. DOI: https://doi.org/10.5604/01.3001.0015.8939
- [10] G. Wróbel, M. Kalicki, K. Walczak, Determination of the strength characteristics of a flanged joint with a flat gasket and loose retaining rings using a 3-point bending test, Journal of Achievements in Materials and Manufacturing Engineering 120/2 (2023) 59-65. DOI: https://doi.org/10.5604/01.3001.0054.1595
- [11] J. Rządkowski, Design of tight flange connections of pipelines and tanks, Steel Structures 5/spec. iss. (2003) 361-371 (CD-ROM) (in Polish).
- [12] K. Rykaluk, G. Hotała, Creep of bolts in collar connections of power station ducts, Scientific works of the Institute of Construction of the Wrocław University of Science and Technology. Conferences 78/27 (2000) 191-198 (in Polish).
- [13] J. Skrzypek, Plasticity and creep. Theory and application, PWN, Warszawa, 1985 (in Polish).
- [14] J. Rządkowski, R. Stęczniak, Dimensioning of bolts in flanged joints, Piping 3-4 (2003) 13-14 (in Polish).
- [15] PN-EN ISO 178:2019-06, Plastics - Determination of bending properties.
- [16] PN-EN 60695-11-10-UL 94, Test of resistance to ignition of materials/products from the flame of a burner with a power of 50 W (in Polish).
- [17] PN-EN ISO 8031:2021-01, Rubber and plastic hoses and cables ‒ Determination of electrical resistance and conductivity.
- [18] Z. Dyląg, A. Jakubowicz, Z. Orłoś, Strength of materials, Vol. II, WNT, Warszawa, 2000 (in Polish).
- [19] PN-EN ISO 527-2:2012, Plastics ‒ Determination of mechanical properties in static tension ‒ Part 2: Test conditions for plastics intended for various molding techniques (in Polish).
- [20] ASTM-D2345, Methods of Test for Interiaminar Sheer Strength of Reinforced Plastic Structures at Su.
- [21] ISO 14130:1997, Fibre-reinforced plastic composites Determination of apparent interlaminar shear strength by short-beam method.
- [22] PN-H-04321:1986, Metals ‒ Shear test (in Polish).
- [23] PN-EN ISO 179-1:2010, Plastics ‒ Charpy impact testing ‒ Part 1: Non-instrumental impact testing.
- [24] PN-EN 1092-1:2018-08, Flanges and their connections ‒ Round flanges for pipes, fittings, fittings, connectors and accessories with PN marking ‒ Part 1: Steel flanges.
- [25] PN-EN 1796:2013, Plastic piping systems for pressurized and non-pressurized water transmission ‒ Thermosetting glass fiber reinforced plastics (GRP), based on unsaturated polyester resin (UP).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-e06a3996-cbe7-435a-b8be-1e013c613363
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