Materials Map

Discover the materials research landscape. Find experts, partners, networks.

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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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Materials Map under construction

The Materials Map is still under development. In its current state, it is only based on one single data source and, thus, incomplete and contains duplicates. We are working on incorporating new open data sources like ORCID to improve the quality and the timeliness of our data. We will update Materials Map as soon as possible and kindly ask for your patience.

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Taylor, Susan

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Queen's University Belfast

in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (21/21 displayed)

  • 2023Experimental and numerical investigation of compressive membrane action in GFRP-reinforced concrete slabs2citations
  • 2023Characterisation of hemp shiv and its effect on the compressive strength of hemp concrete1citations
  • 2022Effect of the Treatments of the Surface on Mechanical Performance of Concrete Containing Chemical Admixturescitations
  • 2022Factorial design modelling of cement grout containing dolomitic quarry dust powder1citations
  • 2022Assessment of the influence of the type of filler materials on the properties of cement grouts3citations
  • 2020Experimental Investigation of Strain Sensitivity for Surface Bonded Fibre Optic Sensors20citations
  • 2019Recycling ceramic waste powder: effects its grain-size distribution on fresh and hardened properties of cement pastes/mortars formulated from SCC mixes25citations
  • 2017The influence of arching action on BFRP reinforced SCC deck slabs in Thompson bridgecitations
  • 2016Experimental Study of Interfacial Stress Distribution of Bonded-in BFRP Rod Glulam Joints Using Fibre Optic Sensors (FOS)8citations
  • 2016Glued-in basalt frp rods as moment connections in box section framescitations
  • 2016Effect of waste ceramic powder on strength development characteristics of cement based mortarscitations
  • 2015Nový přístup k určení optimální dávky superplatifikátorůa jejich kompatibility s cementovými materiálycitations
  • 2015Post-tensioning glulam timber beams with basalt FRP tendons6citations
  • 2014POST-TENSIONING OF TIMBER BEAMS WITH BASALT FIBRE REINFORCED POLYMERcitations
  • 2014Influence of embedded length on strength of BFRP rods bonded parallel to the grain in low grade timber by pullout-bending testscitations
  • 2014Post-tensioning of glulam timber with steel tendons65citations
  • 2014Development of Novel Post-Tensioned Glulam Timber Compositescitations
  • 2014Compability of Superplasticizers with Cementitious Materialscitations
  • 2012Influence of the type of coarse lightweight aggregate on properties of Semi-Lightweight Self-Consolidating Concrete30citations
  • 2009Monitoring of Corrosion in Structural Reinforcing Bars: performance comparison using in-situ fibre optic and electric wire strain gauge systems34citations
  • 2009In situ cross-calibration of in-fibre Bragg Grating and Electrical Resistance Strain Gauges for structural monitoring using an extensometer17citations

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Tharmarajah, Gobithas
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Robinson, Desmond
1 / 3 shared
Sonebi, Mohammed
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Abdalqader, Ahmed
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Fayyad, Tahreer
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Campbell, Catherine
1 / 1 shared
Jackson, Gareth
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Thornton, Neil
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Abdalqader, A.
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Motwani, Prashant
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Murphy, Adrian
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Perogamvros, Nikolaos
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Laskar, Arghadeep
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Ferrara, Liberato
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Deegan, Peter
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Pattarini, Andrea
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Robinson, D.
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Zheng, Y.
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Mcpolin, Danny
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Yeboah, David
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Oneill, Caoimhe
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Harte, Annette
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Mcpolin, Daniel
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Kelly, Gavin
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Taengua, Emilio Jose Garcia
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Ferrara, Libe
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Mcconnell, Emma
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Mcconnell, E.
1 / 1 shared
Mcpolin, D.
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Pattarini, A.
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Deegan, P.
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Taengua, E. Jose Garcia
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Ferrara, L.
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Kwasny, Jacek
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Bai, Yun
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Doherty, William
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Owens, Kieran
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Basheer, Basheer
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Grattan, K. Y. V.
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Sun, T.
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Grattan, S. K. T.
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Basheer, Muhammed
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Grattan, K. T. V.
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Co-Authors (by relevance)

  • Tharmarajah, Gobithas
  • Robinson, Desmond
  • Sonebi, Mohammed
  • Abdalqader, Ahmed
  • Fayyad, Tahreer
  • Campbell, Catherine
  • Jackson, Gareth
  • Thornton, Neil
  • Abdalqader, A.
  • Motwani, Prashant
  • Murphy, Adrian
  • Perogamvros, Nikolaos
  • Laskar, Arghadeep
  • Ferrara, Liberato
  • Deegan, Peter
  • Pattarini, Andrea
  • Robinson, D.
  • Zheng, Y.
  • Mcpolin, Danny
  • Yeboah, David
  • Oneill, Caoimhe
  • Harte, Annette
  • Mcpolin, Daniel
  • Kelly, Gavin
  • Taengua, Emilio Jose Garcia
  • Ferrara, Libe
  • Mcconnell, Emma
  • Mcconnell, E.
  • Mcpolin, D.
  • Pattarini, A.
  • Deegan, P.
  • Taengua, E. Jose Garcia
  • Ferrara, L.
  • Kwasny, Jacek
  • Bai, Yun
  • Doherty, William
  • Owens, Kieran
  • Basheer, Basheer
  • Grattan, K. Y. V.
  • Sun, T.
  • Grattan, S. K. T.
  • Basheer, Muhammed
  • Grattan, K. T. V.
OrganizationsLocationPeople

article

Post-tensioning of glulam timber with steel tendons

  • Mcconnell, E.
  • Mcpolin, D.
  • Taylor, Susan
Abstract

This paper describes a series of four-point bending tests that were conducted, under service loads and to failure, on unreinforced, reinforced and post-tensioned glulam timber beams, where the reinforcing tendon used was 12 mm diameter toughened steel bar. The research was designed to evaluate the benefits offered by including an active reinforcement in contrast to the passive reinforcement typically used within timber strengthening works, in addition to establishing the effect that bonding the reinforcing tendon has on the materials performance.<br/><br/>The laboratory investigations established that the flexural strength and stiffness increased for both the reinforced and post-tensioned timbers compared to the unreinforced beams. The flexural strength of the reinforced timber increased by 29.4%, while the stiffness increased by 28.1%. Timber that was post-tensioned with an unbonded steel tendon showed a flexural strength increase of 17.6% and an increase in stiffness of 8.1%. Post-tensioned beams with a bonded steel tendon showed increases in flexural strength and stiffness of 40.1% and 30% respectively.

Topics
  • strength
  • steel
  • flexural strength
  • bending flexural test