Three-dimensional nonlinear finite element model for single and multiple dowel-type wood connections

A new three-dimensional finite solid element (3D FE) model for dowel-type wood connections was developed using the concept of a beam on a nonlinear wood foundation, which addresses the intricate wood crushing behaviour under the connector in a dowel type connection. In order to implement the concep...

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Main Author: Hong, Jung-Pyo
Language:English
Published: University of British Columbia 2008
Subjects:
Online Access:http://hdl.handle.net/2429/1623
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-BVAU.2429-16232014-03-26T03:35:21Z Three-dimensional nonlinear finite element model for single and multiple dowel-type wood connections Hong, Jung-Pyo 3D FE Dowel Wood connections A new three-dimensional finite solid element (3D FE) model for dowel-type wood connections was developed using the concept of a beam on a nonlinear wood foundation, which addresses the intricate wood crushing behaviour under the connector in a dowel type connection. In order to implement the concept of wood foundation with solid elements, a 3D FE wood foundation model was defined within a prescribed foundation zone surrounding the dowel. Based on anisotropic plasticity material theory, the material model for the foundation zone was developed using effective foundation material constants that were defined from dowel-embedment test data. New 3D FE single nail connection models were developed that incorporated the wood foundation model. The 3D wood foundation model was justified and validated using dowel-embedment test data with a range of dowel diameters, from a 2.5-mm nail to a 25.4-mm bolt. The connection models provided successful results in simulating the characteristics of load-slip behaviour that were experimentally observed. Based on the success of the single nail connection models, several applications of the 3D FE connection models were investigated including statistical wood material models, bolted connection models and a multiple nail connection model. Throughout the application studies, discussion of the benefits and limitations of the new model approach using the 3D FE wood foundation are presented. Also, future areas of study are proposed in order to improve the 3D FE dowel-type wood connections models. 2008-09-04T20:29:07Z 2008-09-04T20:29:07Z 2007 2008-09-04T20:29:07Z 2008-05 Electronic Thesis or Dissertation http://hdl.handle.net/2429/1623 eng University of British Columbia
collection NDLTD
language English
sources NDLTD
topic 3D FE
Dowel
Wood connections
spellingShingle 3D FE
Dowel
Wood connections
Hong, Jung-Pyo
Three-dimensional nonlinear finite element model for single and multiple dowel-type wood connections
description A new three-dimensional finite solid element (3D FE) model for dowel-type wood connections was developed using the concept of a beam on a nonlinear wood foundation, which addresses the intricate wood crushing behaviour under the connector in a dowel type connection. In order to implement the concept of wood foundation with solid elements, a 3D FE wood foundation model was defined within a prescribed foundation zone surrounding the dowel. Based on anisotropic plasticity material theory, the material model for the foundation zone was developed using effective foundation material constants that were defined from dowel-embedment test data. New 3D FE single nail connection models were developed that incorporated the wood foundation model. The 3D wood foundation model was justified and validated using dowel-embedment test data with a range of dowel diameters, from a 2.5-mm nail to a 25.4-mm bolt. The connection models provided successful results in simulating the characteristics of load-slip behaviour that were experimentally observed. Based on the success of the single nail connection models, several applications of the 3D FE connection models were investigated including statistical wood material models, bolted connection models and a multiple nail connection model. Throughout the application studies, discussion of the benefits and limitations of the new model approach using the 3D FE wood foundation are presented. Also, future areas of study are proposed in order to improve the 3D FE dowel-type wood connections models.
author Hong, Jung-Pyo
author_facet Hong, Jung-Pyo
author_sort Hong, Jung-Pyo
title Three-dimensional nonlinear finite element model for single and multiple dowel-type wood connections
title_short Three-dimensional nonlinear finite element model for single and multiple dowel-type wood connections
title_full Three-dimensional nonlinear finite element model for single and multiple dowel-type wood connections
title_fullStr Three-dimensional nonlinear finite element model for single and multiple dowel-type wood connections
title_full_unstemmed Three-dimensional nonlinear finite element model for single and multiple dowel-type wood connections
title_sort three-dimensional nonlinear finite element model for single and multiple dowel-type wood connections
publisher University of British Columbia
publishDate 2008
url http://hdl.handle.net/2429/1623
work_keys_str_mv AT hongjungpyo threedimensionalnonlinearfiniteelementmodelforsingleandmultipledoweltypewoodconnections
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