• 제목/요약/키워드: maximum compressive load

검색결과 187건 처리시간 0.027초

Numerical studies of steel-concrete-steel sandwich walls with J-hook connectors subjected to axial loads

  • Huang, Zhenyu;Liew, J.Y. Richard
    • Steel and Composite Structures
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    • 제21권3호
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    • pp.461-477
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    • 2016
  • Steel-concrete-steel (SCS) sandwich composite wall has been proposed for building and offshore constructions. An ultra-lightweight cement composite with density1380 kg/m3 and compressive strength up to 60 MPa is used as core material and inter-locking J-hook connectors are welded on the steel face plates to achieve the composite action. This paper presents the numerical models using nonlinear finite element analysis to investigate the load displacement behavior of SCS sandwich walls subjected to axial compression. The results obtained from finite element analysis are verified against the test results to establish its accuracy in predicting load-displacement curves, maximum resistance and failure modes of the sandwich walls. The studies show that the inter-locking J-hook connectors are subjected to tension force due to the lateral expansion of cement composite core under compression. This signifies the important role of the interlocking effect of J-hook connectors in preventing tensile separation of the steel face plates so that the local buckling of steel face plates is prevented.

구속효과를 고려한 철근 콘크리트 기둥의 모멘트-곡률 관계 단순모델 (Simplified Moment-Curvature Relationship Model of Reinforced Concrete Columns Considering Confinement Effect)

  • 곽민경;양근혁
    • 콘크리트학회논문집
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    • 제28권3호
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    • pp.279-288
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    • 2016
  • 이 연구에서는 철근콘크리트(reinforced concrete, RC) 기둥의 휨 거동을 비교적 간단한 방법으로 평가하기 위해서 모멘트-곡률 관계를 단순화하였다. RC 기둥에서 주철근 배근을 이상화하고 힘의 평형조건 및 변형률 적합조건에 기반하여 초기 휨 균열 발생, 인장철근 항복 도달, 최대 내력 및 최대 내력 도달 후 최대 내력의 80% 시점에서의 내력과 중립축 깊이를 산정하였다. 기둥의 최대 내력 이후의 콘크리트 압축연단 변형률은 Kim et al의 구속된 콘크리트 응력-변형률 관계를 이용하여 산정하였다. 단순화된 모멘트-곡률 관계로부터 환산된 기둥의 횡하중-횡변위 관계는 다양한 변수하에서 수행한 기둥 실험결과와 잘 일치하였다. 고려된 각 단계에서의 모멘트와 중립축 깊이는 주철근 지수, 횡보강근 체적지수 및 축력 지수의 함수로 모델링하였다. 결국, 기둥의 곡률 연성은 콘크리트 압축강도 및 주철근과 횡보강근의 양과 함께 작용 축하중비에 중요한 영향을 받았다.

강사장교 주요부재의 내하율 산정 (Evaluation of Rating Factor for Main Components in Steel Cable-Stayed Bridges)

  • 최동호;유훈;신재인;송원근
    • 한국구조물진단유지관리공학회 논문집
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    • 제10권6호
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    • pp.163-176
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    • 2006
  • 본 논문에서는 사장교 주요부재인 거더와 주탑 및 케이블의 내하율을 평가하기 위한 식을 제안하였다. 응력 및 안정성 검토식을 이용하여 강사장교 거더와 주탑에 적용 가능한 내하율 산정식을 제안하였고 케이블의 내하율 산정식을 제안하였다. 영향선해석을 수행하여 사장교 각 부재에 인장력 최대, 압축력 최대 및 정/부 모멘트 최대의 경우에 활하중 재하 형태를 결정하였고 각 부재의 내하율 산정절차를 정리하였다. 제안된 내하율 산정방법의 타당성을 검증하기 위하여 실교량 모델인 돌산대교에 대한 적용예를 제시하였다. 일반교량의 내하율 산정방법은 돌산대교 거더와 주탑의 내하율을 과대 평가 하였으며, 제안된 내하율 산정방법은 축력과 모멘트를 동시에 지지하는 사장교 거더와 주탑의 거동을 적절히 반영하였다.

The behavior of lightweight aggregate concrete filled steel tube columns under eccentric loading

  • Elzien, Abdelgadir;Ji, Bohai;Fu, Zhongqiu;Hu, Zhengqing
    • Steel and Composite Structures
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    • 제11권6호
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    • pp.469-488
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    • 2011
  • This paper consists of two parts; the first part describes the laboratory work concerning the behavior of lightweight aggregate concrete filled steel tubes (LACFT). Based on eccentricity tests, fifty-four specimens with different slenderness ratios (L/D= 3, 7, and 14) were tested. The main parameters varied in the test are: load eccentricity; steel ratio; and slenderness ratio. The standard load-strain curves of LACFT columns under eccentric loading were summarized and significant parameters affecting LACFT column's bearing capacity, failure mechanism and failure mode such as confinement effect and bond strength were all studied and analyzed through the comparison with predicted strength of concrete filled steel tube columns (CFT) using the existing codes such as AISC-LRFD (1999), CHN DBJ 13-51-2003 (2003) and CHN CECS 28:90 (1990). The second part of this paper presents the results of parametric study and introduces a practical and accurate method for determination of the maximum compressive strength of confined concrete core ($f_{max}$), In addition to, the study of the effect of aspect-ratio and length-width ratio on the yield stress of steel tubes ( $f_{sy}$) under biaxial state of stress in CFT columns and the effect of these two factors on the ultimate load carrying capacity of axially loaded CFT/LACFT columns.

Influence of surface irregularity on dynamic response induced due to a moving load on functionally graded piezoelectric material substrate

  • Singh, Abhishek K.;Negi, Anil;Koley, Siddhartha
    • Smart Structures and Systems
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    • 제23권1호
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    • pp.31-44
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    • 2019
  • The present study investigate the compressive stress, shear stress, tensile stress, vertical electrical displacement and horizontal electrical displacement induced due to a load moving with uniform velocity on the free rough surface of an irregular transversely isotropic functionally graded piezoelectric material (FGPM) substrate. The closed form expressions ofsaid induced stresses and electrical displacements for both electrically open condition and electrically short condition have been deduced. The influence of various affecting parameters viz. maximum depth of irregularity, irregularity factor, parameter of functionally gradedness, frictional coefficient of the rough upper surface, piezoelectricity/dielectricity on said induced stresses and electrical displacements have been examined through numerical computation and graphical illustration for both electrically open and short conditions. The comparative analysis on the influence of electrically open and short conditions as well as presence and absence of piezoelectricity on the induced stresses and induced electrical displacements due to a moving load serve as the salient features of the present study. Moreover, some important peculiarities have also been traced out by means of graphs.

A GMDH-based estimation model for axial load capacity of GFRP-RC circular columns

  • Mohammed Berradia;El Hadj Meziane;Ali Raza;Mohamed Hechmi El Ouni;Faisal Shabbir
    • Steel and Composite Structures
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    • 제49권2호
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    • pp.161-180
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    • 2023
  • In the previous research, the axial compressive capacity models for the glass fiber-reinforced polymer (GFRP)-reinforced circular concrete compression elements restrained with GFRP helix were put forward based on small and noisy datasets by considering a limited number of parameters portraying less accuracy. Consequently, it is important to recommend an accurate model based on a refined and large testing dataset that considers various parameters of such components. The core objective and novelty of the current research is to suggest a deep learning model for the axial compressive capacity of GFRP-reinforced circular concrete columns restrained with a GFRP helix utilizing various parameters of a large experimental dataset to give the maximum precision of the estimates. To achieve this aim, a test dataset of 61 GFRP-reinforced circular concrete columns restrained with a GFRP helix has been created from prior studies. An assessment of 15 diverse theoretical models is carried out utilizing different statistical coefficients over the created dataset. A novel model utilizing the group method of data handling (GMDH) has been put forward. The recommended model depicted good effectiveness over the created dataset by assuming the axial involvement of GFRP main bars and the confining effectiveness of transverse GFRP helix and depicted the maximum precision with MAE = 195.67, RMSE = 255.41, and R2 = 0.94 as associated with the previously recommended equations. The GMDH model also depicted good effectiveness for the normal distribution of estimates with only a 2.5% discrepancy from unity. The recommended model can accurately calculate the axial compressive capacity of FRP-reinforced concrete compression elements that can be considered for further analysis and design of such components in the field of structural engineering.

Anterior Cruciate Ligament Injury is Unlikely to Occur when Performing a Stable Weight Lifting Operation

  • Moon, Youngjin;Moon, Jeheon
    • 한국운동역학회지
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    • 제28권4호
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    • pp.199-205
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    • 2018
  • Objective: The purpose of this study was to examine the effect of increase in barbell weight on closely related variable to the anterior cruciate ligament (ACL) injury which are knee joint kinematics, joint load, joint moment, and maximum load attainment point during snatch of the weight lifting. Method: The subjects of the study were 10 male Korean national weight lifting athletes (69 kg 5, 77 kg 5; age: $21.80{\pm}3.91yrs.$, height: $168.00{\pm}4.06cm$, weight: $75.00{\pm}4.02kg$, career: $7.8{\pm}3.99yrs.$, snatch records: $168{\pm}4.06kg$). The weight of the barbell during the snatch operation was set at 70%, 75% and 80% of the highest records for each subject studied. Results: The result obtained from the one-way repeated measure ANOVA are as follows: With increased barbell weight, the extension moment of the left knee joint was higher in the 80% condition than the 70% (p<.001). However, other variables were not statistically significant difference. According to the factor analysis of the variables related to maximum load attainment point of the ACL major injury variables, the first sub-factor was the internal shear force, the posterior shear force, the abduction moment, and the muscle activity of the VL. The second sub-factor was the extension moment of the knee joint, compressive force, adduction moment, and the third sub-factor was the muscle activity of BF. Conclusion: These results indicate that the possibility of ACL injury can be lowered when performing a stable snatch movement.

유한요소해석에 의한 압입 접촉손상 특성 연구 (Study of the Damage Property of a Contacted Indent by Finite Element Method)

  • 조재웅;김춘식;이희성;김영춘
    • 한국산학기술학회논문지
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    • 제15권10호
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    • pp.5974-5979
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    • 2014
  • 압입 방식으로서 경량화된 부품이 매우 균질한 정밀도로 생산이 되며 프레스의 기술이 향상되고 있다. 압입 방식으로 조립하였을 시 핀과 구멍사이에는 압축력에 의한 변형력이 발생되고 접촉면이 손상을 입는다. 따라서 본 연구에서는 CATIA 프로그램을 이용하여 3D 모델링하였으며, ANSYS 프로그램을 통하여 압입 접촉된 평면에서 손상평가를 하였다. 해석결과, 핀이 들어갈 때 PCB판에 작용하는 하중은 약 21.3N인 것으로 확인되었으며, PCB판이 Pin에서 빠져나올 때의 하중은 약 19.24N으로 나타났다. 또한 구조 해석결과, Pin 1이 본 연구 모델의 모든 부품들 중에서 가장 최대응력이 많이 발생하므로, 대표적으로 Pin 1의 최대 등가응력이 192.96MPa로 나타났다. 압입 접촉 손상 특성을 규명하고 본 연구결과를 실제의 압입 공정의 설계에 응용함으로서 그 파손을 방지하고 내구성을 평가할 수 있다고 사료된다.

탄소성 모델에 의한 포물선 아치의 극한 내하력 평가 (The Ultimate Load Capacity of the Parabolic Arches by Elasto-Plastic Model)

  • 조진구;박근수
    • 한국농공학회지
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    • 제44권3호
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    • pp.92-100
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    • 2002
  • The advent or high-strength steel has enabled the arch structures to be relatively light, durable and long-spanned by reducing the cross sectional area. On the other hand, the possibility of collapse may be increased due to the slender members which may cause the stability problems. The limit analysis to estimate the ultimate load is based on the concept of collapse mechanism that forms the plastic zone through the full transverse sections. So, it is not appropriate to apply it directly to the instability analysis of arch structures that are composed with compressive members. The objective of this study is to evaluate the ultimate load carrying capacity of the parabolic arch by using the elasto-plastic finite element model. As the rise to span ratio (h/L) varies from 0.0 to 0.5 with the increment of 0.05, the ultimate load has been calculated fur arch structures subjected to uniformly distributed vertical loads. Also, the disco-elasto-plastic analysis has been carried out to find the duration time until the behavior of arch begins to show the stable state when the estimated ultimate load is applied. It may be noted that the maximum ultimate lead of the parabolic arch occurs at h/L=0.2, and the appropriate ratio can be recommended between 0.2 and 0.3. Moreover, it is shown that the circular arch may be more suitable when the h/L ratio is less than 0.2, however, the parabolic arch can be suggested when the h/L ratio is greater than 0.3. The ultimate load carrying capacity of parabolic arch can be estimated by the well-known formula of kEI/L$^3$where the values of k have been reported in this study. In addition, there is no general tendency to obtain the duration time of arch structures subjected to the ultimate load in order to reach the steady state. Merely, it is observed that the duration time is the shortest when the h/L ratio is 0.1, and the longest when the h/L ratio is 0.2.

아치형상의 하현재를 갖는 CFT 트러스 거더의 재료 비선형 해석 (Nonlinear Analysis of CFT Truss Girder with the Arch-shaped Lower Chord)

  • 송나영;정철헌;김영진
    • 대한토목학회논문집
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    • 제29권6A호
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    • pp.625-639
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    • 2009
  • 본 연구에서는 f/L비가 다른 CFT 트러스 거더의 구조거동에 관한 실험 및 해석적 연구를 수행하기 위해서 2개의 실험체를 제작하였고, CFT 트러스 거더의 구조특성을 평가하기 위하여 휨실험을 수행하였다. ABAQUS에 의한 비선형 유한요소해석을 통해서 축력과 모멘트를 받는 CFT 부재의 비선형 재료모델을 비교분석하였다. CFT 부재의 구속 콘크리트 및 강재의 응력-변형률 모델은 많은 연구자들에 의해서 제시되어 왔다. 본 연구에서는 Mander, Sakino, Han, Susantha 및 Ellobody 등이 제안한 구속 콘크리트의 응력-변형률 모델을 적용하여 비선형해석을 수행하였고, 해석결과를 통해서 CFT 트러스 거더의 하중-처짐 관계, 하중-변형률 관계 등을 비교하였다. 하중-처짐 관계에서 Mander와 Susantha의 모델을 적용한 해석결과는 실험결과보다 약 12.0~13.8% 높은 하중을 예측하며, Sakino의 모델은 실험결과보다 약 7.6% 높은 하중을 예측하였다. Han과 Ellobody의 모델은 실험결과보다 약 0.2~1.2% 높은 하중을 예측하여 실험치와 가장 잘 맞는 결과를 보였다. 그러나 각 연구자의 응력-변형률 모델을 적용한 비선형 해석을 통해 산정된 하중-변형률 관계는 하중-처짐 관계와는 반대로 안전측의 결과를 보여 전반적으로 실험치보다 큰 수준의 변형률을 보였다.