• 제목/요약/키워드: lateral capacity

검색결과 808건 처리시간 0.027초

가이드 판과 채널을 사용한 강재 댐퍼의 이력 거동 (Hysteretic Behavior of Steel Damper using Guide Plate and Channel)

  • 이현호
    • 한국공간구조학회논문집
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    • 제21권3호
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    • pp.61-68
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    • 2021
  • In this study, a rocking behavior experiment using a guide plate and a guide channel to prevent lateral deformation of a steel damper was planned. For this purpose, strut I-type specimen I-1 and strut S-type specimen S-1 were prepared. The experimental results were compared with the existing experimental results of SI-260 and SS-260 under the same conditions without the details of lateral deformation prevention in order to evaluate the effect of preventing lateral deformation. The damper with lateral deformation prevention detail was evaluated to have superior strength capacity, deformation capacity, and energy dissipation capacity than the damper without it. Therefore, the lateral deformation prevention detail was evaluated to have a good effect in improving the design capability of the steel damper.

응력상태를 고려한 사질토지반에 관입된 말뚝의 극한수평지지력 분석 및 평가 (Estimation of Pile Ultimate Lateral Load Capacity in Sand Considering Lateral Stress Effect)

  • 이준환;백규호;김대홍;황성욱;김민기
    • 한국지반공학회논문집
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    • 제23권4호
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    • pp.161-167
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    • 2007
  • 본 연구에서는 수평하중을 받는 말뚝을 대상으로 응력상태에 따른 극한수평지지력의 변화추이를 분석하였으며, 이를 토대로 다양한 응력상태를 고려할 수 있는 극한수평지지력의 평가방법을 제안하였다. 이를 통해 기존의 수평지지력 평가방법에 있어 제한되었던 응력효과의 고려가 가능하게 되었으며, 지반조건 및 시공조건 등에 따른 지반응력 변화를 보다 효과적으로 반영할 수 있을 것으로 판단된다. 이를 위해 모래질 지반을 대상으로 모형토조에서 수행된 말뚝의 수평재하시험결과가 사용되었으며, 토조실험에는 다양한 범위의 응력상태가 고려되었다. 분석결과, 말뚝의 극한수평지지력은 수직응력 및 수평응력 모두에 영향을 받는 것으로 나타났으나, 수평응력에 따라 더욱 민감하게 변화하고 있음을 알 수 있었다. 극한수평지지지력이 발휘되는 변위량의 수준은 지반조건에 따라 달랐으며, 상대밀도가 50%범위에서는 상대변위량 14%내외, 86%내외에서는 18-25%정도의 상대변위량을 나타내었다. 본 연구결과에 근거하여 극한수평지지력 평가를 위한 수평토압보정계수가 제안되었으며, 제안된 평가법에 의한 예측치는 다양한 응력조건에 대해 실측치와 유사한 결과를 나타내었다.

Behavior and design of steel I-beams with inclined stiffeners

  • Yang, Yang;Lui, Eric M.
    • Steel and Composite Structures
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    • 제12권3호
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    • pp.183-205
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    • 2012
  • This paper presents an investigation of the effect of inclined stiffeners on the load-carrying capacity of simply-supported hot-rolled steel I-beams under various load conditions. The study is carried out using finite element analysis. A series of beams modeled using 3-D solid finite elements with consideration of initial geometric imperfections, residual stresses, and material nonlinearity are analyzed with and without inclined stiffeners to show how the application of inclined stiffeners can offer a noticeable increase in their lateral-torsional buckling (LTB) capacity. The analysis results have shown that the amount of increase in LTB capacity is primarily dependent on the location of the inclined stiffeners and the lateral unsupported length of the beam. The width, thickness and inclination angle of the stiffeners do not have as much an effect on the beam's lateral-torsional buckling capacity when compared to the stiffeners' location and beam length. Once the optimal location for the stiffeners is determined, parametric studies are performed for different beam lengths and load cases and a design equation is developed for the design of such stiffeners. A design example is given to demonstrate how the proposed equation can be used for the design of inclined stiffeners not only to enhance the beam's bearing capacity but its lateral-torsional buckling strength.

Lateral impact behaviour of concrete-filled steel tubes with localised pitting corrosion

  • Gen Li;Chao Hou;Luming Shen;Chuan-Chuan Hou
    • Steel and Composite Structures
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    • 제47권5호
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    • pp.615-631
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    • 2023
  • Steel corrosion induces structural deterioration of concrete-filled steel tubes (CFSTs), and any potential extreme action on a corroded CFST would pose a severe threat. This paper presents a comprehensive investigation on the lateral impact behaviour of CFSTs suffering from localised pitting corrosion damage. A refined finite element analysis model is developed for the simulation of locally corroded CFSTs subjected to lateral impact loads, which takes into account the strain rate effects on concrete and steel materials as well as the random nature of corrosion pits, i.e., the distribution patterns and the geometric characteristics. Full-range nonlinear analysis on the lateral impact behaviour in terms of loading and deforming time-history relations, nonlinear material stresses, composite actions, and energy dissipations are presented for CFSTs with no corrosion, uniform corrosion and pitting corrosion, respectively. Localised pitting corrosion is found to pose a more severe deterioration on the lateral impact behaviour of CFSTs due to the plastic deformation concentration, the weakened confinement and the reduction in energy absorption capacity of the steel tube. An extended parametric study is then carried out to identify the influence of the key parameters on the lateral impact behaviour of CFSTs with localised pitting corrosion. Finally, simplified design methods considering the features of pitting corrosion are proposed to predict the dynamic flexural capacity of locally pitted CFSTs subjected to lateral impact loads, and reasonable accuracy is obtained.

화강풍화토 지반에 타입된 PHC 말뚝의 수평지지력에 대한 추정치와 실측치의 비교 (A Comparison between predicted and measured values for lateral bearing capacity of PHC pile in weathered Granite soil)

  • 오재화
    • 한국농공학회지
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    • 제42권5호
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    • pp.144-150
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    • 2000
  • This study dealt with the comparison of lateral baring capacity for vertical PHC pile between predicted and measured values driven in weathered granite soils to build world cup gymnasium in Kwangju area. Recently, the calculation of horizontal bearing capacity of piles foundation has been considered very important for earthquake or wind resistant design in Korea. During this study , Matlock & Reese, Broms and Chang's methods were selected in prediction of lateral resistant of PHC piles. As for case study, the prediction values were compared with 5 measured ones based on ASTM. The result showed that prediction values proposed by Matlock & Reese , Chang and Broms were smaller that real values. Three proposed methods by Matlock & Reese and Chang based on lateral deflection and Broms by ultimated lateral resistance turned out valid in view of engineering practice.

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화강토와 점토지반에 연직으로 타입된 PHC말뚝의 수평지지력에 관한 연구(지반공학) (A Study on Lateral Bearing Capacity of PHC Piles Driven Vertically in Decomposed Granite and Clayey Soil)

  • 문영민;이문수;이대재
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2000년도 학술발표회 발표논문집
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    • pp.466-470
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    • 2000
  • Recently, the calculation of horizontal bearing capacity of piles foundation has been considered very important for earthquake or wind resistant design in Korea. This study deals with the lateral resistance of PHC pile instead of vertical capacity for earthquake resistant design as well as wind. As case study, the prediction values were compared with measured ones based on ASTM. During this research, Matlock & Reese, Davisson & Gill, Broms and Chang's methods were selected in calculating prediction of lateral resistance of PHC piles. In decomposed granite and clayey soils, The result showed that prediction values proposed by Matlock & Reese(Davisson & Gill), Chang and Broms were smaller values than real values. four proposed methods by Matlock & Reese(Davisson & Gill) and Chang based on lateral deflection and Broms by ultimate lateral resistance turned out valid in view of engineering practice.

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횡하중 분배방법을 이용한 교량구조물의 비탄성 변위응답 평가 (Evaluation of Inelastic Displacement Response of Bridge Structures Using Lateral Load Distributions)

  • 송종걸;남왕현;정영화
    • 산업기술연구
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    • 제25권A호
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    • pp.15-22
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    • 2005
  • In order to evaluate seismic performance of multi-degree-of-freedom bridge structure, moderate lateral load distribution methods using the pushover analysis were developed by many researchers. One of important variables to improve an accuracy of pushover analysis is lateral load distribution. In this study, pushover analyses were performed using the five types of lateral load distribution and seismic performances were evaluated by capacity spectrum method (CSM). To verify an accuracy of suggested lateral load distribution, the maximum displacement estimates by the CSM were compared to those by inelastic time history analysis.

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모래지반의 상대밀도에 따른 횡방향 반복재하 시 말뚝의 극한지지력 평가 (Effect of Relative Density on Lateral Load Capacity of a Cyclic Laterally Loaded Pile in Sandy Soil)

  • 백성하;김준영;이승환;정충기
    • 한국지반공학회논문집
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    • 제32권4호
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    • pp.41-49
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    • 2016
  • 해상구조물을 지지하는 말뚝기초는 바람, 조류, 파랑 등의 영향으로 횡방향 반복하중을 지배적으로 받는다. 본 연구에서는 횡방향 반복하중이 말뚝의 횡방향 극한지지력에 미치는 영향을 평가하기 위하여, 서로 다른 세 가지 상대밀도(40%, 70%, 90%)로 조성된 모래지반에서 모형말뚝시험을 수행하였다. 상대밀도 40%로 조성 된 모래지반에서는 횡방향 반복재하 시 말뚝 주변 지반이 조밀해짐에 따라 횡방향 극한지지력이 증가하였다. 반면, 상대밀도 70%와 90%로 조성 된 모래지반에서는 횡방향 반복재하 시 말뚝 주변 지반의 교란효과로 인하여 횡방향 극한지지력이 감소하였다. 이러한 횡방향 극한지지력의 증가 및 감소효과는 횡방향 반복하중의 크기가 커질수록 더욱 명확하게 나타났으며, 모래지반의 포화 여부에는 큰 영향을 받지 않았다. 모형시험 결과를 활용하여 모래지반의 상대밀도, 횡방향 반복하중의 크기에 따른 말뚝의 횡방향 극한지지력 산정 식을 제안하였고, 이를 횡방향 반복하중을 지배적으로 받는 말뚝의 설계 시 활용 가능하도록 하였다.

Seismic behavior of steel frames with replaceable reinforced concrete wall panels

  • Wu, Hanheng;Zhou, Tianhua;Liao, Fangfang;Lv, Jing
    • Steel and Composite Structures
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    • 제22권5호
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    • pp.1055-1071
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    • 2016
  • The paper presents an innovative steel moment frame with the replaceable reinforced concrete wall panel (SRW) structural system, in which the replaceable concrete wall can play a role to increase the overall lateral stiffness of the frame system. Two full scale specimens composed of the steel frames and the replaceable reinforced concrete wall panels were tested under the cyclic horizontal load. The failure mode, load-displacement response, deformability, and the energy dissipation capacity of SRW specimens were investigated. Test results show that the two-stage failure mode is characterized by the sequential failure process of the replaceable RC wall panel and the steel moment frame. It can be found that the replaceable RC wall panels damage at the lateral drift ratio greater than 0.5%. After the replacement of a new RC wall panel, the new specimen maintained the similar capacity of resisting lateral load as the previous one. The decrease of the bearing capacity was presented between the two stages because of the connection failure on the top of the replaceable RC wall panel. With the increase of the lateral drift, the percentage of the lateral force and the overturning moment resisted by the wall panel decreased for the reason of the reduction of its lateral stiffness. After the failure of the wall panel, the steel moment frame shared almost all the lateral force and the overturning moment.

성토지반에 타입된 H형강 말뚝의 지지거동 (Bearing Capacity of Driven H-Piles in Embankment)

  • 박영호;정경자;김성환;유성근;이재혁;박종면
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2000년도 봄 학술발표회 논문집
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    • pp.173-182
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    • 2000
  • To find axial and lateral responses of impact-driven H piles in embankment(SM), the H piles are instrumented with electric strain gages, dynamic load test is performed during driving, and then the damage of strain gages is checked simultaneously. Axially and laterally static load tests are performed on the same piles after one to nine days as well. Then load-settlement behavior is measured. Furthermore, to find the set-up effect in H pile, No. 4, 16, 26, and R6 piles are restriked about 1, 2, and 14 days after driving. As results, ram height and pile capacity obtained from impact driving control method become 80cm and 210.3∼242.3ton, respectively. At 15 days after driving, allowable bearing capacity by CAPWAP analysis, which 2.5 of the factor of safety is applied for ultimate bearing capacity, increases 10.8%. Ultimate bearing capacity obtained from axially static load test is 306∼338ton. This capacity is 68.5∼75.7% at yield force of pile material and is 4∼4.5 times of design load. Allowable bearing capacity using 2 of the factor of safety is 153∼169ton. Initial stiffness response of the pile is 27.5ton/mm. As the lateral load increases, the horizontal load-settlement behaves linearly to which the lateral load reaches up to 17ton. This reason is filled with sand in the cavity formed between flange and web during pile driving. As the result of reading with electric strain gages, flange material of pile is yielded at 19ton in horizontal load. Thus allowable load of this pile material is 9.5ton when the factor of safety is 2.0. Allowable lateral displacement of this pile corresponding to this load is 23∼36mm in embankment.

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