Non-linear analysis of I-shaped Wide Flange Steel Frame Structures

碩士 === 國立臺灣海洋大學 === 河海工程學系 === 94 ===   The purpose of this paper in extending the analytical method of the rectangular section of planar steel frames, behavior of applying to non-linear analysis of I-shaped wide flange steel frame structures.And it includes six parts:(1) To infer the relation of mo...

Full description

Bibliographic Details
Main Authors: Chiu-Yun Wu, 吳秋芸
Other Authors: Shyh-Rong Kuo
Format: Others
Language:zh-TW
Published: 2006
Online Access:http://ndltd.ncl.edu.tw/handle/27359611197258120489
id ndltd-TW-094NTOU5192026
record_format oai_dc
spelling ndltd-TW-094NTOU51920262016-06-01T04:25:08Z http://ndltd.ncl.edu.tw/handle/27359611197258120489 Non-linear analysis of I-shaped Wide Flange Steel Frame Structures I型鋼構架結構之非線性分析 Chiu-Yun Wu 吳秋芸 碩士 國立臺灣海洋大學 河海工程學系 94   The purpose of this paper in extending the analytical method of the rectangular section of planar steel frames, behavior of applying to non-linear analysis of I-shaped wide flange steel frame structures.And it includes six parts:(1) To infer the relation of moment,axial force,curvature and axial strain of the rectangular section from the exact.(2) From the above point to establish the relation of the end of force of the simple beam-column element and the end of displacement:First, it is needed to acquire the curvature area of the fundamental unit-beam and the shape of centroid by the exact.Then,it can acquire the equation of the end of force of the simple beam-column element and the end of displacement by using the conjugate beam method.(3) Find out the tangent flexibility matrix:In addition to the tangent flexibility coefficient of the axial degrees of freedom is acquired by the axial strain to axial force from the partial,the rest of the tangent flexibility coefficient through exact,and depend on the simplificative way to indicate the end of force,the end of displacement,the end of curvature,or the end of axial strain.(4) Inverse the tangent flexibility matrix to get the tangent stiffness matrix,and to get the geometry stiffness of the element.(5) Using unit-beam, it simplify to explains behavior of plactic of the end of force reach plastic II.(6) To infer numerical analysis methods of non-linear:The acquired non-linear equation of the end of increment of force and the end of increment of displacement to establish the approximate linear relation of the end of increment of force and displacement,which is to predict the external shaft force.And it can acquire the behavior of geometry and material non-linear of planar steel frames from this part. Shyh-Rong Kuo 郭世榮 2006 學位論文 ; thesis 134 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立臺灣海洋大學 === 河海工程學系 === 94 ===   The purpose of this paper in extending the analytical method of the rectangular section of planar steel frames, behavior of applying to non-linear analysis of I-shaped wide flange steel frame structures.And it includes six parts:(1) To infer the relation of moment,axial force,curvature and axial strain of the rectangular section from the exact.(2) From the above point to establish the relation of the end of force of the simple beam-column element and the end of displacement:First, it is needed to acquire the curvature area of the fundamental unit-beam and the shape of centroid by the exact.Then,it can acquire the equation of the end of force of the simple beam-column element and the end of displacement by using the conjugate beam method.(3) Find out the tangent flexibility matrix:In addition to the tangent flexibility coefficient of the axial degrees of freedom is acquired by the axial strain to axial force from the partial,the rest of the tangent flexibility coefficient through exact,and depend on the simplificative way to indicate the end of force,the end of displacement,the end of curvature,or the end of axial strain.(4) Inverse the tangent flexibility matrix to get the tangent stiffness matrix,and to get the geometry stiffness of the element.(5) Using unit-beam, it simplify to explains behavior of plactic of the end of force reach plastic II.(6) To infer numerical analysis methods of non-linear:The acquired non-linear equation of the end of increment of force and the end of increment of displacement to establish the approximate linear relation of the end of increment of force and displacement,which is to predict the external shaft force.And it can acquire the behavior of geometry and material non-linear of planar steel frames from this part.
author2 Shyh-Rong Kuo
author_facet Shyh-Rong Kuo
Chiu-Yun Wu
吳秋芸
author Chiu-Yun Wu
吳秋芸
spellingShingle Chiu-Yun Wu
吳秋芸
Non-linear analysis of I-shaped Wide Flange Steel Frame Structures
author_sort Chiu-Yun Wu
title Non-linear analysis of I-shaped Wide Flange Steel Frame Structures
title_short Non-linear analysis of I-shaped Wide Flange Steel Frame Structures
title_full Non-linear analysis of I-shaped Wide Flange Steel Frame Structures
title_fullStr Non-linear analysis of I-shaped Wide Flange Steel Frame Structures
title_full_unstemmed Non-linear analysis of I-shaped Wide Flange Steel Frame Structures
title_sort non-linear analysis of i-shaped wide flange steel frame structures
publishDate 2006
url http://ndltd.ncl.edu.tw/handle/27359611197258120489
work_keys_str_mv AT chiuyunwu nonlinearanalysisofishapedwideflangesteelframestructures
AT wúqiūyún nonlinearanalysisofishapedwideflangesteelframestructures
AT chiuyunwu ixínggānggòujiàjiégòuzhīfēixiànxìngfēnxī
AT wúqiūyún ixínggānggòujiàjiégòuzhīfēixiànxìngfēnxī
_version_ 1718291466899423232