• 제목/요약/키워드: Elastic-plastic

검색결과 1,502건 처리시간 0.034초

Moment redistribution of RC continuous beams: Re-examination of code provisions

  • Da Luo;Zhongwen Zhang;Bing Li
    • Structural Engineering and Mechanics
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    • 제85권5호
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    • pp.679-691
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    • 2023
  • Many codes allow designers to use the bending moment diagram computed by elastic analysis and modify it by a certain amount of moment redistribution (MR) to account for plastic behaviour of continuous beams. However, several researchers indicated that the MR at the ultimate limit state (𝛽u) for some beams deviate significantly from the specified values of various codes. This paper examines the applicability of the provisions on 𝛽u in ACI 318-19 and Eurocode 2 through numerical investigations and comprehensively explores the influencing factors. The results show that some parameters not considered in those codes influence 𝛽u to a certain extent, where the ratio of tensile reinforcement ratio at intermediate support to tensile reinforcement ratio at midspan (𝜌s1/𝜌s2) and load type are crucial parameters to consider. The specific combination of these two parameters may make the codes overestimate or significantly underestimate the 𝛽u. On the other hand, the yield state of both critical sections is found to have an important influence on the influence degree of each parameter on 𝛽u. The yield conditions are investigated, and an empirical judgment equation is proposed. In addition, the influence laws of the critical parameters on 𝛽u have been further proved by theoretical derivation. Finally, due to 𝜀t is found to have a better linear correlation with 𝛽u than xu/d, equations as a function of 𝜀t for predicting the 𝛽u of continuous beams under the two loads are proposed, respectively.

초음파나노표면개질 다중충격 조건에서의 잔류응력 예측을 위한 유한요소 피닝해석 영역 결정 (Determination of Peening Area for Finite Element Residual Stress Analysis of Ultrasonic Nanocrystal Surface Modification under Multiple Impact Conditions)

  • 석태현;박승현;허남수
    • 한국압력기기공학회 논문집
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    • 제17권2호
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    • pp.145-156
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    • 2021
  • Ultrasonic Nanocrystal Surface Modification (UNSM) is a peening technology that generates elastic-plastic deformation on the material surface to which a static load of a air compressor and a dynamic load of ultrasonic vibration energy are applied by striking the material surface with a strike pin. In the UNSM-treated material, the structure of the surface layer is modified into a nano-crystal structure and compressive residual stress occurs. When UNSM is applied to welds in a reactor coolant system where PWSCC can occur, it has the effect of relieving tensile residual stress in the weld and thus suppressing crack initiation and propagation. In order to quantitatively evaluate the compressive residual stress generated by UNSM, many finite element studies have been conducted. In existing studies, single-path UNSM or UNSM in a limited area has been simulated due to excessive computing time and analysis convergence problems. However, it is difficult to accurately calculate the compressive residual stress generated by the actual UNSM under these limited conditions. Therefore, in this study, a minimum finite element peening analysis area that can reliably calculate the compressive residual stress is proposed. To confirm the validity of the proposed analysis area, the compressive residual stress obtained from the experiment are compared with finite element analysis results.

말뚝-그라우트 슬라브가 적용된 싱가포르 연약지반 굴착 시 말뚝 인장력 산정에 관한 연구 (Estimation of Pile Tension Loads Induced by Excavation in Singapore Soft Clay Applying a Pile-Plugged Jet Grouted Slab)

  • 이승래;박현구;심재범;임석산;신강호
    • 한국지반공학회논문집
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    • 제25권9호
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    • pp.77-92
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    • 2009
  • 본 연구에서는 압밀이 진행중인 싱가포르 지역 연약지반에서 말뚝-그라우팅 슬라브 공법이 적용된 흙 막이 굴착 시 합리적인 말뚝의 인장력 산정을 위한 수치해석 연구를 수행하였다. 선형탄성/Mohr-Coulomb소성 모델을 적용한 2차원 수치해석을 통해 굴착 중 말뚝-그라우팅 슬라브 공법에 의한 보강효과를 살펴보았고 다양한 지반 변수에 대한 매개 변수 해석을 수행하여 말뚝 인장력의 산정과 관련하여 핵심적인 영향 인자를 파악하였다. 이를 바탕으로 해성점토 지반의 압밀 상태를 고려하기 위하여 수정 Cam-Clay 모델을 통해 현장의 비배수 전단강도 분포로부터 현장의 유효응력상태를 역으로 추정하였으며 실내 시험 분석을 통해 추정된 핵심 영향 인자의 범위를 산정하여 합리적으로 말뚝의 인장력을 산정하고자 하였다.

콘크리트 블록 접촉면의 전단특성 (Shear Behavior Characteristics of Interface between Two Concrete-blocks)

  • 이승현;김병일
    • 한국지반공학회논문집
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    • 제24권6호
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    • pp.69-75
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    • 2008
  • 분리형부재 보강토 옹벽(SRW)을 구성하는 생태축조블록 접촉면에 대한 전단시험을 수행하였다. 전단이 발생하는 두 개의 블록 사이의 접촉면조건은 두 블록을 직접 접촉시키는 경우와 블록 사이에 고무패드를 설치한 경우 그리고 블록 사이에 고무패드와 전단키를 설치한 각각 3가지 접촉면 조건을 고려하였다. 전단시험에 따르면 두개의 블록을 직접 접촉시킨 경우 전단하중-전단변위 관계가 탄성-완전소성형태와 유사하였으며 블록 사이의 접촉면에 고무패드를 설치한 경우 전단하중-전단변위 관계는 연성거동을 보였다. 블록과 블록을 직접 접촉시킨 경우와 블록과 블록 사이의 접촉면에 고무패드를 설치한 경우 그리고 블록과 블록 접촉면 사이에 고무패드와 전단키를 설치한 경우에 대한 최소 전단저항력과 겉보기 마찰각은 각각 1.7kN/m, $27.6^{\circ}$와 4.2kN/m, $26.2^{\circ}$ 그리고 20.9kN/m, $26.0^{\circ}$이었다.

GFRP로 보강된 다양한 초기 조건의 콘크리트보의 파괴 거동 평가 (Evaluation of Failure Mode in Concrete Beam Restrengthened with GFRP with Various Initial Conditions)

  • 남진원;권성준
    • 한국건설순환자원학회논문집
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    • 제11권3호
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    • pp.177-183
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    • 2023
  • 유리섬유로 보강된 보강된 보의 경우 초기조건 및 보강형태에 따라 다양한 파괴모드가 발생한다. 본 연구에서는 콘크리트 탄성계수보다 약간 큰 유리섬유 보강재를 적용한 무근 콘크리트보의 파괴거동을 분석하였다. 실험을 위해 24 MPa 강도를 가지는 보를 제작하였으며, 초기 노치, 겹이음, 단부보강, 파이버 앵커 등의 영향을 분석하였다. 노치 및 노치부의 겹이음은 일반보강효과와 비슷한 하중증가를 나타내었는데, 이는 함침된 유리섬유의 에폭시가 노치 단면을 충분히 수복하기 때문이다. 보강하지 않은 기준기편에 비하여 초기 노치의 경우 0.78을, 보강한 경우는 4.43~5.61의 보강효과를 나타내었으며 휨파괴에서 시작되는 계면파괴가 지배적이었다. 높이의 1/3 이상의 단부 스트립과 파이버 앵커를 가진 경우 가장 이상적인 파괴거동(보강재 파단)을 나타내었는데, 일반 보강시편보다 150 % 이상의 파괴하중을 나타내었다.

Investigating the load-displacement restorative force model for steel slag self-stressing concrete-filled circular steel tubular columns

  • Feng Yu;Bo Xu;Chi Yao;Alei Dong;Yuan Fang
    • Steel and Composite Structures
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    • 제49권6호
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    • pp.615-631
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    • 2023
  • To investigate the seismic behavior of steel slag self-stressing concrete-filled circular steel tubular (SSSCFCST) columns, 14 specimens were designed, namely, 10 SSSCFCST columns and four ordinary steel slag (SS) concrete (SSC)-filled circular steel tubular (SSCFCST) columns. Comparative tests were conducted under low reversed cyclic loading considering various parameters, such as the axial compression ratio, diameter-thickness ratio, shear-span ratio, and expansion ratio of SSC. The failure process of the specimens was observed, and hysteretic and skeleton curves were obtained. Next, the influence of these parameters on the hysteretic behavior of the SSSCFCST columns was analyzed. The self stress of SS considerably increased the bearing capacity and ductility of the specimens. Results indicated that specimens with a shear-span ratio of 1.83 exhibited compression bending failure, whereas those with shear-span ratios of 0.91 or 1.37 exhibited drum-shaped cracking failure. However, shear-bond failure occurred in the nonloading direction. The stiffness of the falling section of the specimens decreased with increasing shear-span ratio. The hysteretic curves exhibited a weak pinch phenomenon, and their shapes evolved from a full shuttle shape to a bow shape during loading. The skeleton curves of the specimens were nearly complete, progressing through elastic, elastoplastic, and plastic stages. Based on the experimental study and considering the effects of the SSC expansion rate, shear-span ratio, diameter-thickness ratio, and axial compression ratio on the seismic behavior, a peak displacement coefficient of 0.91 was introduced through regression analysis. A simplified method for calculating load-displacement skeleton curves was proposed and loading and unloading rules for SSSCFCST columns were provided. The load-displacement restorative force model of the specimens was established. These findings can serve as a guide for further research and practical application of SSSCFCST columns.

Analysis of Compression and Cushioning Behavior for Specific Molded Pulp Cushion

  • Jongmin Park;Gihyeong Im;Kyungseon Choi;Eunyoung Kim;Hyunmo Jung
    • 한국포장학회지
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    • 제30권1호
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    • pp.53-62
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    • 2024
  • Molded pulp products has become more attractive than traditional materials such as expanded polystyrene foam (EPS) owing to low-priced recycled paper, environmental benefits such as biodegradability, and low production cost. In this study, various design factors regarding compression and cushioning characteristics of the molded pulp cushion with truncated pyramid-shaped structural units were analyzed using a test specimen with multiple structural units. The adopted structural factors were the geometric shape, wall thickness, and depth of the structural unit. The relative humidity was set at two levels. We derived the cushion curve model of the target molded pulp cushion using the stress-energy methodology. The coefficient of determination was approximately 0.8, which was lower than that for EPS (0.98). The cushioning performance of the molded pulp cushion was affected more by the structural factors of the structural unit than by the material characteristics. Repeated impacts, higher static stress, and drop height decreased the cushioning performance. Its compression behavior was investigated in four stages: elastic, first buckling, sub-buckling, and densification. It had greater rigidity during initial deformation stages; then, during plastic deformation, the rigidity was greatly reduced. The compression behavior was influenced by structural factors such as the geometric shape and depth of the structural unit and environmental conditions, rather than material properties. The biggest difference in the compression and cushioning characteristics of molded pulp cushion compared to EPS is that it is greatly affected by structural factors, and in addition, strength and resilience are expected to decrease due to humidity and repetitive loads, so future research is needed.

긴장력이 적용된 초탄성 형상기억합금 장수명 댐퍼의 특성 분석 (Characteristic Analysis of Superelastic Shape Memory Alloy Long-Lasting Damper with Pretension)

  • 이헌우;김영찬;허종완
    • 대한토목학회논문집
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    • 제44권1호
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    • pp.11-17
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    • 2024
  • 제진 구조는 댐퍼라는 장치를 구조물에 장착시켜 지진에너지를 소산하는 내진설계이다. 지진피해를 저감하고자 하는 연구가 성행하고 있는 가운데 제진 구조는 댐퍼의 재료, 형상을 변경함으로써 기술을 발전시켜왔다. 하지만 댐퍼의 특성상 에너지를 소산하기 위해 재료에 발생하는 소성변형은 피할 수 없는 한계가 있다. 따라서 본 연구에서는 발생한 변형를 스스로 회복할 수 있는 초탄성 형상기억합금(Superelastic shape memory alloy, SSMA)을 활용하여 반영구적으로 사용할 수 있고 추가적인 긴장력을 적용하여 구조적 성능을 향상한 장수명 댐퍼를 제안하였다. 장수명 댐퍼의 거동 특성 분석을 위해 재료, 와이어 직경, 긴장력 유무의 설계 변수에 따라 유한요소해석을 진행하였고 응답 거동을 도출하여 하중 저항, 에너지 소산, 잔류변위 등의 특성을 분석하여 장수명 댐퍼의 성능적 우수성을 입증하였다.

일방향 적층 복합재료 판에서 한 음원에서 발생된 램파의 군속도 (The Group Velocity of Lamb Wave Generated by the one Source in Unidirectional Laminated Composite Plates)

  • 이정기;이상호
    • 한국음향학회지
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    • 제25권3호
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    • pp.107-112
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    • 2006
  • 판재를 따라 전파하는 Lamb wave (램파)는 주파수에 따라 속도가 변하는 분산특성을 갖는다. 일반적으로 등방성 재료에서는 파수 벡터 방향과 에너지 흐름 방향은 같아, 파면이 원형을 유지하면서 전파하지만, 복합재료와 같이 이방성재료에서는 파수 벡터와 에너지 흐름 방향이 서로 다르다. 따라서 이방성 재료에서 하나의 속도에서 다른 속도로 전환하려면 방향을 교정해야 하고 이에 따라 크기도 달라지게 된다. 본 연구에서는 복합재료 판재에서 전파하는 램파 분산방정식을 이용하여 대칭, 비대칭 모드의 분산선도를 작성하였고, 각도에 따라구한 위상속도 분산선도에서 얻어진 위상속도 값으로 slowness surface를 구한 후, 이로부터 군속도의 크기와 방향을 교정하였고, 이를 실험적으로 측정한 속도값과 비교하여 서로 일치함을 확인하였다.

CAE 해석을 통한 500 ml 경량 사각 PET병의 형상 최적화 (A Study on Geometric Optimization of a 500 ml Lightweight Square PET Bottle with CAE Analysis)

  • 정의철;이성희;이현승;오정길;홍석관
    • Design & Manufacturing
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    • 제18권2호
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    • pp.17-22
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    • 2024
  • Lightweight of plastic containers is becoming an important issue due to increasing environmental legislation and consumer awareness. In this study, the CAE analysis was conducted to optimize the shape of a 500 ml lightweight square polyethylene terephthalate(PET) bottle. First, the linear buckling alaysis using the finite element method was performed to analyze the correlation between the primary geometric parameters of the bottle and the buckling critical load. Then, the optimal geometry parameters were derived, and the actual buckling load was predicted by non-linear buckling simulation. The validity of the simulation results was verified by top-loading tests of PET bottles molded with the optimized geometry. The elastic modulus and tensile yield strength of PET through tensile tests were measured to improve the accuracy of the simulation. As a result of the tensile tests, the modulus of elasticity of PET increased from 2,900 MPa to 4,275 MPa, and the tensile yield strength increased from 52.4 MPa to 88.1 MPa. Finally the buckling load of the optimized PET bottle was found to be approximately 236 N, which is very similar to the simulation precition of 238 N. This study shows the feasibility and accuracy of the CAE analysis approach for the lightweight design of PET bottles, and will provide useful guidelines for the design of PET bottles.