THE OPTIMIZATION OF WOOD TRUSSES CONNECTED WITH METAL PLATES USING ANSYS

The rapid growth of the world population causes an increasing demand for wood materials. As one of the most common problems seen in today's forest destructions may be able to avoided by means of the rational use of forests and processing of trees cut with optimal level and also it helps to f...

Full description

Bibliographic Details
Main Authors: Ibrahim Halil BASBOGA, Ergün GÜNTEKİN
Format: Article
Language:English
Published: Editura Universitatii Transilvania din Brasov 2016-12-01
Series:Pro Ligno
Subjects:
Online Access:http://www.proligno.ro/en/articles/2016/4/basboga.pdf
id doaj-b6b68625a8d14ac0ab94bb36e5a9dc62
record_format Article
spelling doaj-b6b68625a8d14ac0ab94bb36e5a9dc622020-11-25T00:01:37ZengEditura Universitatii Transilvania din BrasovPro Ligno1841-47372069-74302016-12-011241220THE OPTIMIZATION OF WOOD TRUSSES CONNECTED WITH METAL PLATES USING ANSYSIbrahim Halil BASBOGA0Ergün GÜNTEKİN1Kahramanmaras Sutcu Imam University, TurkeySuleyman Demirel University, TurkeyThe rapid growth of the world population causes an increasing demand for wood materials. As one of the most common problems seen in today's forest destructions may be able to avoided by means of the rational use of forests and processing of trees cut with optimal level and also it helps to fulfill demand of wood materials. In this study, ANSYS software has been used in order to optimize wood usage in metal plate connected wood trusses which save 25% or higher rates of wood raw material comparing to massive beams. Three different types of flat- wood truss systems have been considered in the study. The first cross sectional dimension of the truss elements was accepted as 5 x 10 nominal dimensions as can be found in the market. The elements of the truss systems have been modeled using Link1 ANSYS element. The parameters used in modeling of the link1 element were; modulus elasticity and Poisson’s ratio. First order optimization method was chosen for the optimization process. The constraints of the truss systems in optimization process were deformation and stress. The optimized trusses were manufactured in laboratory in order to check the methods appropriateness. Turkish red pine (Pinus brutia Ten.) lumber and metal plate connectors were used in the construction of the optimized truss systems. The obtained values of deformation in the laboratory were similar to the calculated values of deformation in the ANSYS software. Results show that metal plate connected wood truss systems optimization can be achieved by the ANSYS software. Optimization process proves that more than 25% or higher in wood usage can be gained.http://www.proligno.ro/en/articles/2016/4/basboga.pdfANSYSoptimizationstress and deformation constraintswood trusses
collection DOAJ
language English
format Article
sources DOAJ
author Ibrahim Halil BASBOGA
Ergün GÜNTEKİN
spellingShingle Ibrahim Halil BASBOGA
Ergün GÜNTEKİN
THE OPTIMIZATION OF WOOD TRUSSES CONNECTED WITH METAL PLATES USING ANSYS
Pro Ligno
ANSYS
optimization
stress and deformation constraints
wood trusses
author_facet Ibrahim Halil BASBOGA
Ergün GÜNTEKİN
author_sort Ibrahim Halil BASBOGA
title THE OPTIMIZATION OF WOOD TRUSSES CONNECTED WITH METAL PLATES USING ANSYS
title_short THE OPTIMIZATION OF WOOD TRUSSES CONNECTED WITH METAL PLATES USING ANSYS
title_full THE OPTIMIZATION OF WOOD TRUSSES CONNECTED WITH METAL PLATES USING ANSYS
title_fullStr THE OPTIMIZATION OF WOOD TRUSSES CONNECTED WITH METAL PLATES USING ANSYS
title_full_unstemmed THE OPTIMIZATION OF WOOD TRUSSES CONNECTED WITH METAL PLATES USING ANSYS
title_sort optimization of wood trusses connected with metal plates using ansys
publisher Editura Universitatii Transilvania din Brasov
series Pro Ligno
issn 1841-4737
2069-7430
publishDate 2016-12-01
description The rapid growth of the world population causes an increasing demand for wood materials. As one of the most common problems seen in today's forest destructions may be able to avoided by means of the rational use of forests and processing of trees cut with optimal level and also it helps to fulfill demand of wood materials. In this study, ANSYS software has been used in order to optimize wood usage in metal plate connected wood trusses which save 25% or higher rates of wood raw material comparing to massive beams. Three different types of flat- wood truss systems have been considered in the study. The first cross sectional dimension of the truss elements was accepted as 5 x 10 nominal dimensions as can be found in the market. The elements of the truss systems have been modeled using Link1 ANSYS element. The parameters used in modeling of the link1 element were; modulus elasticity and Poisson’s ratio. First order optimization method was chosen for the optimization process. The constraints of the truss systems in optimization process were deformation and stress. The optimized trusses were manufactured in laboratory in order to check the methods appropriateness. Turkish red pine (Pinus brutia Ten.) lumber and metal plate connectors were used in the construction of the optimized truss systems. The obtained values of deformation in the laboratory were similar to the calculated values of deformation in the ANSYS software. Results show that metal plate connected wood truss systems optimization can be achieved by the ANSYS software. Optimization process proves that more than 25% or higher in wood usage can be gained.
topic ANSYS
optimization
stress and deformation constraints
wood trusses
url http://www.proligno.ro/en/articles/2016/4/basboga.pdf
work_keys_str_mv AT ibrahimhalilbasboga theoptimizationofwoodtrussesconnectedwithmetalplatesusingansys
AT ergunguntekin theoptimizationofwoodtrussesconnectedwithmetalplatesusingansys
AT ibrahimhalilbasboga optimizationofwoodtrussesconnectedwithmetalplatesusingansys
AT ergunguntekin optimizationofwoodtrussesconnectedwithmetalplatesusingansys
_version_ 1725441085773185024