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      장간조립교의 다양한 구조형태에 대한 안전성 평가 = Evaluation on Displacement and Stress Characteristics according to Structural Shape in Panel Bridges

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      https://www.riss.kr/link?id=A108801144

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      다국어 초록 (Multilingual Abstract)

      A panel bridge is a military bridge with a modular structure designed to overcome obstacles or provide supportequipment during military operations. They exhibited various structural forms. The NATO standard Military LoadClass (MLC) was applied to assist in the selection of different panel bridge structures and evaluate their stabilityand performance. In this study, structural analyses were performed on six different bridge models, including thebasic single-step double-lane and single-step triple-lane structures by applying the standard load of MLC-trackedvehicles to each bridge model. Additional truss heat is effective for displacement-sensitive structures, whereasadditional stiffeners are suitable for equivalent and shear-sensitive structures. These results affect the structuralselection and design of long-term assembly bridges and can provide useful information for evaluating structuralstability and performance.
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      A panel bridge is a military bridge with a modular structure designed to overcome obstacles or provide supportequipment during military operations. They exhibited various structural forms. The NATO standard Military LoadClass (MLC) was applied to assi...

      A panel bridge is a military bridge with a modular structure designed to overcome obstacles or provide supportequipment during military operations. They exhibited various structural forms. The NATO standard Military LoadClass (MLC) was applied to assist in the selection of different panel bridge structures and evaluate their stabilityand performance. In this study, structural analyses were performed on six different bridge models, including thebasic single-step double-lane and single-step triple-lane structures by applying the standard load of MLC-trackedvehicles to each bridge model. Additional truss heat is effective for displacement-sensitive structures, whereasadditional stiffeners are suitable for equivalent and shear-sensitive structures. These results affect the structuralselection and design of long-term assembly bridges and can provide useful information for evaluating structuralstability and performance.

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      참고문헌 (Reference)

      1 이종우 ; 이재영 ; 조성식 ; 유삼현 ; 최현호 ; 윤우섭 ; 김태양, "유한요소해석을 통한 장간조립교 주요 부재의 안정성 분석 연구" 한국군사과학기술학회 14 (14): 335-344, 2011

      2 박효범 ; 곽효경, "북한 콘크리트 교량의 군용하중급수 평가" 대한토목학회 37 (37): 513-520, 2017

      3 Benda M., "The Current Way of Assessing Bridges According to Stanag 2021" 1-5, 2019

      4 NATO standardization agreement, "NATO STANAG 2021, Military Load Classification of Bridges, Ferries, Rafts and Vehicles" NATO Standardization Agency 2017

      5 Prokop, J., "Load-Carrying Capacity of Bailey Bridge in Civil Applications" 12 (12): 3788-, 2022

      6 ANSYS, "Lecture 3 Introduction to Contact"

      7 MOLIT, "KDS 24 14 30 The design criteria for steel bridges (allowable stress design method)"

      8 King, W. S., "Experimental Investigations of Bailey Bridges" 2003

      9 KICT, "Development of 60m Long-span Lightweight Temporary Bridge for Rapid Construction" Korea Institute of Civil Engineering and Building Technology 2018

      10 MOLIT, "Bridges Design Code (Limit States Design)" Ministry of Land, Infrastructure and Transport 2016

      1 이종우 ; 이재영 ; 조성식 ; 유삼현 ; 최현호 ; 윤우섭 ; 김태양, "유한요소해석을 통한 장간조립교 주요 부재의 안정성 분석 연구" 한국군사과학기술학회 14 (14): 335-344, 2011

      2 박효범 ; 곽효경, "북한 콘크리트 교량의 군용하중급수 평가" 대한토목학회 37 (37): 513-520, 2017

      3 Benda M., "The Current Way of Assessing Bridges According to Stanag 2021" 1-5, 2019

      4 NATO standardization agreement, "NATO STANAG 2021, Military Load Classification of Bridges, Ferries, Rafts and Vehicles" NATO Standardization Agency 2017

      5 Prokop, J., "Load-Carrying Capacity of Bailey Bridge in Civil Applications" 12 (12): 3788-, 2022

      6 ANSYS, "Lecture 3 Introduction to Contact"

      7 MOLIT, "KDS 24 14 30 The design criteria for steel bridges (allowable stress design method)"

      8 King, W. S., "Experimental Investigations of Bailey Bridges" 2003

      9 KICT, "Development of 60m Long-span Lightweight Temporary Bridge for Rapid Construction" Korea Institute of Civil Engineering and Building Technology 2018

      10 MOLIT, "Bridges Design Code (Limit States Design)" Ministry of Land, Infrastructure and Transport 2016

      11 Acrow Bridge, "Acrow 700XS Technical Handbook" COPYRIGHT ACROW ® CORPORATION 10-, 2019

      12 ANSYS, "ANSYS Contact Technology Guide"

      13 Lee, J. H., "A Sstudy on the Comparison of Various Panel Structural Shapes of Bailey Bridge" 2023

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