Non-uniformly distributed compression perpendicular to the grain in steel-CLT connections : Experimental and Numerical Analysis of bearing capacity and displacement behaviour

Previous studies have mainly focused on the behaviour of timber under uniformly distributed compression perpendicular to the grain (CPG) loads. However, there are many practical applications in which timber is loaded by non-uniformly distributed CPG loads. Different design and test codes like the Eu...

Full description

Bibliographic Details
Main Authors: Ncube, Noah, Sabaa, Stephen
Format: Others
Language:English
Published: Linnéuniversitetet, Institutionen för byggteknik (BY) 2019
Subjects:
Online Access:http://urn.kb.se/resolve?urn=urn:nbn:se:lnu:diva-90646
id ndltd-UPSALLA1-oai-DiVA.org-lnu-90646
record_format oai_dc
spelling ndltd-UPSALLA1-oai-DiVA.org-lnu-906462019-12-21T03:45:46ZNon-uniformly distributed compression perpendicular to the grain in steel-CLT connections : Experimental and Numerical Analysis of bearing capacity and displacement behaviourengNon-uniformly distributed compressive loading perpendicular to the grain in steel-CLT connections : Experimental and Numerical Analysis of bearing capacity and displacement behaviourNcube, NoahSabaa, StephenLinnéuniversitetet, Institutionen för byggteknik (BY)Linnéuniversitetet, Institutionen för byggteknik (BY)2019CompressionPerpendicular to the GrainCross-Laminated Timber (CLT)ConnectionNon-uniformly distributedFinite elementLoad configuration factorBuilding TechnologiesHusbyggnadPrevious studies have mainly focused on the behaviour of timber under uniformly distributed compression perpendicular to the grain (CPG) loads. However, there are many practical applications in which timber is loaded by non-uniformly distributed CPG loads. Different design and test codes like the Eurocode 5 (EC5), DIN 1052:2004, ASTM D143- 94 and EN-408:2010 only account for load configurations where timber is subjected to uniformly distributed loads. For specific uniformly distributed load (UDL) configurations the bearing capacity of timber (solid softwood timber or Glulam) in compression is adapted by using a load configuration factor (kc,90) according to EC5, the European code for design of timber structures. EC5 has no guidelines for cross-laminated timber (CLT) under UDL with the exception of the Austrian National Regulations for EC5. In this work, an experimental and numerical study on the bearing capacity and displacement behaviour of CLT subjected to non-uniformly distributed loading (NuDL) is conducted on eight different load configurations. A steel-CLT connection in which the CLT is partially loaded is used in this study. Finite element modelling, performed using the commercial software Abaqus CAE is used as the numerical simulation of the experimental study and is validated by experimental results. Load configuration factors (kc,90) from experimental results are compared with values from the Swedish CLT handbook (KL-Trähandbok). The outcome of the study shows that load configuration factor for NuDL cases is higher than for UDL cases. Hence, for same load configurations a lower CPG strength is required in NuDL than in UDL. Moreover, numerical results feature overall good congruence with the elastic phase of the experiments and have the potential to augment experiments in further understanding other complex steel-CLT connections Student thesisinfo:eu-repo/semantics/bachelorThesistexthttp://urn.kb.se/resolve?urn=urn:nbn:se:lnu:diva-90646application/pdfinfo:eu-repo/semantics/openAccess
collection NDLTD
language English
format Others
sources NDLTD
topic Compression
Perpendicular to the Grain
Cross-Laminated Timber (CLT)
Connection
Non-uniformly distributed
Finite element
Load configuration factor
Building Technologies
Husbyggnad
spellingShingle Compression
Perpendicular to the Grain
Cross-Laminated Timber (CLT)
Connection
Non-uniformly distributed
Finite element
Load configuration factor
Building Technologies
Husbyggnad
Ncube, Noah
Sabaa, Stephen
Non-uniformly distributed compression perpendicular to the grain in steel-CLT connections : Experimental and Numerical Analysis of bearing capacity and displacement behaviour
description Previous studies have mainly focused on the behaviour of timber under uniformly distributed compression perpendicular to the grain (CPG) loads. However, there are many practical applications in which timber is loaded by non-uniformly distributed CPG loads. Different design and test codes like the Eurocode 5 (EC5), DIN 1052:2004, ASTM D143- 94 and EN-408:2010 only account for load configurations where timber is subjected to uniformly distributed loads. For specific uniformly distributed load (UDL) configurations the bearing capacity of timber (solid softwood timber or Glulam) in compression is adapted by using a load configuration factor (kc,90) according to EC5, the European code for design of timber structures. EC5 has no guidelines for cross-laminated timber (CLT) under UDL with the exception of the Austrian National Regulations for EC5. In this work, an experimental and numerical study on the bearing capacity and displacement behaviour of CLT subjected to non-uniformly distributed loading (NuDL) is conducted on eight different load configurations. A steel-CLT connection in which the CLT is partially loaded is used in this study. Finite element modelling, performed using the commercial software Abaqus CAE is used as the numerical simulation of the experimental study and is validated by experimental results. Load configuration factors (kc,90) from experimental results are compared with values from the Swedish CLT handbook (KL-Trähandbok). The outcome of the study shows that load configuration factor for NuDL cases is higher than for UDL cases. Hence, for same load configurations a lower CPG strength is required in NuDL than in UDL. Moreover, numerical results feature overall good congruence with the elastic phase of the experiments and have the potential to augment experiments in further understanding other complex steel-CLT connections
author Ncube, Noah
Sabaa, Stephen
author_facet Ncube, Noah
Sabaa, Stephen
author_sort Ncube, Noah
title Non-uniformly distributed compression perpendicular to the grain in steel-CLT connections : Experimental and Numerical Analysis of bearing capacity and displacement behaviour
title_short Non-uniformly distributed compression perpendicular to the grain in steel-CLT connections : Experimental and Numerical Analysis of bearing capacity and displacement behaviour
title_full Non-uniformly distributed compression perpendicular to the grain in steel-CLT connections : Experimental and Numerical Analysis of bearing capacity and displacement behaviour
title_fullStr Non-uniformly distributed compression perpendicular to the grain in steel-CLT connections : Experimental and Numerical Analysis of bearing capacity and displacement behaviour
title_full_unstemmed Non-uniformly distributed compression perpendicular to the grain in steel-CLT connections : Experimental and Numerical Analysis of bearing capacity and displacement behaviour
title_sort non-uniformly distributed compression perpendicular to the grain in steel-clt connections : experimental and numerical analysis of bearing capacity and displacement behaviour
publisher Linnéuniversitetet, Institutionen för byggteknik (BY)
publishDate 2019
url http://urn.kb.se/resolve?urn=urn:nbn:se:lnu:diva-90646
work_keys_str_mv AT ncubenoah nonuniformlydistributedcompressionperpendiculartothegraininsteelcltconnectionsexperimentalandnumericalanalysisofbearingcapacityanddisplacementbehaviour
AT sabaastephen nonuniformlydistributedcompressionperpendiculartothegraininsteelcltconnectionsexperimentalandnumericalanalysisofbearingcapacityanddisplacementbehaviour
AT ncubenoah nonuniformlydistributedcompressiveloadingperpendiculartothegraininsteelcltconnectionsexperimentalandnumericalanalysisofbearingcapacityanddisplacementbehaviour
AT sabaastephen nonuniformlydistributedcompressiveloadingperpendiculartothegraininsteelcltconnectionsexperimentalandnumericalanalysisofbearingcapacityanddisplacementbehaviour
_version_ 1719304409997901824