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      • 박판구조물의 좌굴에 관한 연구

        영봉(Young Bong Kwon),송준엽(Jun Yeup Song),이상우(Sang Woo Lee) 한국강구조학회 1995 韓國鋼構造學會誌 Vol.7 No.2

        An analytical method which is based on the spline finite strip method has been developed to investigate the buckling mode and stress of thin-walled structures. Geometric imperfection and initial stress of plates and plate assemblies, which are resulted from various preloadings and may cause prebuckling deformations before buckling, are included in the analysis. Both numerical and algebraic integrations have been performed to improve solution accuracy and efficiency. It can be applied to sections with simple or non-simple boundary conditions and subjected to arbitrary loading. The method has been applied to investigate the buckling behavior of plates and plate assemblies subjected to compression with initial imperfections and residual stresses.

      • KCI등재

        박판 냉간성형형강 골조의 접합부 거동에 관한 실험적 연구

        영봉,조종수,송준엽,김갑득,Kwon, Young Bong,Cho, Jong Su,Song, Jun Yeup,Kim, Gap Deuk 한국강구조학회 2003 韓國鋼構造學會 論文集 Vol.15 No.3

        신형상 폐단면 냉간성형형강 스터드와 래프터로 구성된 포탈프레임의 접합부의 모멘트-회전각 관계, 회전강성, 항복모멘트 및 극한모멘트 등을 파악하기 위하여 접합부실험을 수행하였다. 실험의 주요 변수는 연강 접합철물의 두께 및 형상과 접합부 시험체의 비틀림에 관한 구속조건이며, 실험결과의 검증을 위해서 비선형해석 결과와 비교하였다. 반강접 접합부의 휨강성을 실험에 의한 모멘트-회전각 곡선으로 부터 구한 할선강도로 제안하여 구조해석을 통하여 타당성을 검토하였다. A series of connection tests of portal frames which were composed of cold-formed steel studs and rafters was carried out to study the moment-rotation relation, the rotational rigidity, and the yield and the ultimate moment of the connections. The main factors of the tests were the thickness, the shape of the connecting members which were made of mild steel, and the torsional restraints of the test specimens. The test results were compared with those obtained through the non-linear analysis, for verification. The secant stiffness estimated from the experimental moment-rotation curve was proposed for the rotational rigidity of semi-rigid connections, and its validity was verified in the structural frame analysis.

      • 냉간성형 형강의 좌굴거동에 관한 연구

        영봉(Young Bong Kwon),김욱선(Uk Sun Kim) 한국강구조학회 1993 韓國鋼構造學會誌 Vol.5 No.2

        Cold-formed steel structural members can be used very efficiently in many applications where conventional hot-rolled members prove uneconomic. However the cold-formed sections are usually thinner than hot-rolled sections and have modes of failure and deformation which are not commonly encountered in normal structural steel design. In this paper, an investigation for thin-walled sections undergoing local and distortional buckling is described and two design curves for effective width and maximum stress for columns are also proposed.

      • 박판형강의 비탄성 좌굴해석

        영봉(Young Bong Kwon) 한국강구조학회 1993 韓國鋼構造學會誌 Vol.5 No.3

        A method of inelastic buckling analysis of thin-walled sections is described. The method is based on the semi-analytical finite strip method of structural analysis. Deformation and flow theories of plasticity are included to take into account the nonlinear stress-strain relationship of the material. Strain hardening and residual stresses are also included in the analysis. The method of inelastic buckling analysis is applied to various cold-formed sections and hot-rolled sections. The results are compared with theoretical values and test results.

      • KCI등재후보

        The Structural Behavior of Anchor Connections for the Cold-Formed Steel Roof Truss

        영봉,Seung-Won Kang,Young-Hyun Choi 한국강구조학회 2005 International Journal of Steel Structures Vol.5 No.2

        The great Hanshin Earthquake on January 17, 195 caused serious damage to various civil structures never beforereviewed in this paper.

      • KCI등재

        Compression tests of cold-formed channel sections with perforations in the web

        영봉,김갑득,인규 국제구조공학회 2014 Steel and Composite Structures, An International J Vol.16 No.6

        This paper describes a series of compression tests performed on cold-formed steel channel sections with perforations in the web (thermal studs) fabricated from a galvanized steel plate whose thickness ranged from 1.0 mm to 1.6 mm and nominal yield stress was 295 MPa. The structural behavior and performance of thermal studs undergoing local, distortional, or flexural-torsional buckling were investigated experimentally and analytically. The compression tests indicate that the slits in the web had significant negative effects on the buckling and ultimate strength of thin-walled channel section columns. The compressive strength of perforated thermal studs was estimated using equivalent solid channel sections of reduced thickness instead of the studs. The direct strength method, a newly developed and adopted alternative to the effective width method for designing cold-formed steel sections in the AISI Standard S100 (2004) and AS/NZS 4600 (Standard Australia 2005), was calibrated to the test results for its application to cold-formed channel sections with slits in the web. The results verify that the DSM can predict the ultimate strength of channel section columns with slits in the web by substituting equivalent solid sections of reduced thickness for them.

      • KCI등재

        복부에 슬릿이 있는 박판냉간성형형강 스터드의 압축강도

        영봉,서응규,임덕만,김갑득,인규,Kwon, Young-Bong,Soe, Eung-Kyu,Lim, Duk-Man,Kim, Gap-Deuk,Kwon, In-Kyu 한국강구조학회 2012 韓國鋼構造學會 論文集 Vol.24 No.2

        벽식 스틸하우스 벽체의 구조재로 적용되어 오고 있는 박판냉간성형형강 스터드의 경우 열교현상에 의한 단열상의 문제를 가지고 있기 때문에 추가적인 단열재의 사용이 요구된다. 이러한 단열 문제를 해결하기 위하여 웨브에 슬릿이 배치된 냉간성형강 단열스터드가 개발되었다. 그러나 슬릿의 배치로 인하여 단면강도 산정은 대단히 어려운 문제점이 되고 있다. 본 논문에는 단열스터드의 압축강도 및 구조적인 거동에 대한 실험 및 해석적인 연구결과를 기술하였다. 슬릿의 길이, 간격 및 배열형태를 달리하는 세 종류의 단열스터드에 대한 압축실험을 단면의 파괴 시까지 수행하였으며, 실험 및 해석결과에 근거하여 복부에 슬릿이 있는 냉간성형강 스터드에 적용하기 위한 단순한 형태의 강도 산정방법을 제안하였다. 제안된 강도산정법에서는 단열스터드를 등가두께의 슬릿이 없는 일반스터드로 대치하고, 이 등가단면에 직접강도법을 적용하여 단열스터드의 공칭압축강도를 산출한다. 제안된 강도산정방법은 단열스터드 실험결과와 비교하여 검증하였다. The cold-formed steel stud, which has been used as a load-bearing member of wall panels for steel houses, poses a significant problem in insulation due to heat bridging of the web. Therefore, some additional thermal insulating materials are required. In order to solve this problem, the cold-formed steel thermal stud with slits in the web was developed. However, estimating the structural strength of thermal studs is very difficult because of the arrangement of perforations. In this paper, an analytical and experimental research on thermal studs is described. Three types of studs with different length, pitch and arrangement of slits were tested to failure. A simple design approach was proposed based on the test results. The proposed method adopted the direct strength method, based on the elastic local and distortional buckling stress of plain studs with equivalent thickness in the web instead of thermal studs. The predictions using the proposed method were compared with test results for verification and the adequacy of the proposed method was confirmed.

      • 평판구조물의 좌굴거동 추적을 위한 새로운 해석방법의 개발

        영봉 嶺南大學校 工業技術硏究所 1995 工業技術硏究所論文集 Vol.23 No.1

        본 연구의 목적은 박판구조물의 좌굴 및 후좌굴의 거동을 추적하기 위한 비선형유한대판법 프로그램의 개발에 있으며 형상함수로는 판요소의 횡방향은 다항식을 종방향으로는 종형함수를 사용하였다. 전통적인 선형좌굴해석에서는 고려할 수 없는 기하학적인 초기부정형과 잔류응력 및 이의 영향으로 좌굴을 일으키기 전에 발생되는 휨변형을 고려할 수 있는 비선형좌굴 해석기법으로서 계산능률 및 정확도를 향상시키기 위하여 대수 및 수치적분을 혼합하여 사용하였으며 기존의 유한대판법과는 달리 다양한 단부구속조건 및 하중에 제한없이 적용이 가능하다. 초기부정형을 가진 평판과 평판요소로 구성된 박판단면에 적용하여 기존의 결과들과 비교하여 적용가능성을 평가하고 좌굴의 초기부정형에 대한 민감도를 연구하였다. The purpose of this paper is to provide and verify an analytical method, based on the spline finite strip method, which can be used to investigate the buckling mode and stress of thin-walled structures. Geometric imperfection and initial stress of plate and plate assemblies, which are resulted from various preloadings and may cause prebuckling deformations before buckling, are included in the analysis, Both numerical and algebraic integrations have been performed for matrix computations to improve the versatility so that the stress field originated from the initial and prebuckling deformations can be included. It can be applied to sections with simple or non-simple boundary conditions and subjected to arbitrary loading. The method has been applied to investigate the buckling behavior of plates and plate assemblies subjected to compression with initial imperfections and residual stresses. The sensitivity of the buckling behavior to the initial deformations are also studied.

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