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Influence of structural and materials properties on the flexural strength of laminated high-density cellulose fiberboards
KTH, School of Engineering Sciences (SCI), Engineering Mechanics, Vehicle Engineering and Solid Mechanics, Solid Mechanics.
2021 (English)Independent thesis Advanced level (degree of Master (Two Years)), 20 credits / 30 HE creditsStudent thesisAlternative title
Påverkan av struktur- och materialegenskaper på böjhållfastheten hos laminerade cellulosafiberplattor med hög densitet (Swedish)
Abstract [en]

Laminated pressboard is a structural electrical insulation material used in power transformers. Typical applications are areas in the power transformers where high mechanical forces are present such as pressrings or winding tables and cleats which support the electrical cables connecting the transformer windings to tap-changes and bushings. The main constituent of the laminated pressboard is pressboard, which is a cellulosic material with anisotropic material properties as a result of the manufacturing process. Three-point bending tests are performed to measure the bending stiffness and flexural strength of the laminated pressboard. The objective of this study was to investigate several underlying factors that affect the result in a three-point bending test of laminated pressboard and to better understand the failure mechanism. The main factor investigated was the compressive strength of the pressboard. At the same time, the density variations in the pressboard and thickness variations of the laminae in the laminated pressboard were also considered. Furthermore, the methods used were a compression test of the pressboard, finite element simulations of the compression test and three-point bending test, microscope measurements, and laminate theory calculations.

The compression test provided information about the compressive response. The failure mechanism in the form of a band of localized shear deformation through the thickness indicated that a kink band failure occurred. A kink band simulation of the compression test was successfully calibrated. A parametric study showed that the pressboard´s yield strength and fiber misalignment angle significantly influenced the compressive strength. The main finding of the study was that the compressive strength of the pressboard in the three-point bending analysis had a significant effect on the flexural strength of the laminated pressboard.

Abstract [sv]

Laminerad pressboard är ett material som används för att lagra elektriska laddningar och fungera som mekaniskt stöd för komponenterna i effekttransformatorer. Typiska applikationer är områden i effekttransformatorerna där höga mekaniska belastningar förekommer, som i pressringar eller lindningsbord och klossar som stödjer elkablarna som är kopplade till lindningskopplare och bussningar. Huvudbeståndsdelen i den laminerade pressboarden är pressboard, som är ett cellulosamaterial med anisotropa materialegenskaper. Trepunkts böjprov utförs för att mäta böjstyvheten och böjstyrkan hos den laminerade pressboarden. Syftet med denna studie var att undersöka flera bakomliggande faktorer som påverkar resultatet i ett trepunktsböjprov av laminerad pressboard, samt att öka förståelsen för brottmekanismen. Huvudfaktorn som undersöktes var kompressionshållfastheten hos pressboarden, medan densitetsvariationer i pressboarden samt tjockleksvariationer av skikten i den laminerad pressboarden också beaktades. De metoder som användes var kompressionstestning av pressboarden, FEM-simuleringar av kompressionstestet och trepunkts böjprovning samt mikroskopmätningar och laminatteoriberäkningar. Kompressionstestet fångade den kompressiva responsen hos presssboarden och felmekanismen i form av ett band av lokaliserad skjuvdeformation genom tjockleken, vilket indikerade att ett så kallat kink band-brott inträffade. En kink band-simulering av kompressionstestet kalibrerades, och en parametrisk studie visade att sträckgränsen och vinkeln av fiberorienteringen för pressboarden hade en tydlig påverkan på kompressionsstyrkan. Studiens främsta resultat var att i analysen av trepunkts böjprovet visades det att pressboardens kompressionsstyrka hade en betydande effekt på böjstyrkan hos den laminerade pressboarden.

Place, publisher, year, edition, pages
2021. , p. 49
Series
TRITA-SCI-GRU ; 2021:396
National Category
Applied Mechanics
Identifiers
URN: urn:nbn:se:kth:diva-322064OAI: oai:DiVA.org:kth-322064DiVA, id: diva2:1714317
External cooperation
Hitachi ABB Powergrids
Subject / course
Solid Mechanics
Educational program
Master of Science - Engineering Mechanics
Supervisors
Examiners
Available from: 2022-12-01 Created: 2022-11-29 Last updated: 2022-12-01Bibliographically approved

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