• 제목/요약/키워드: buckling modes

검색결과 214건 처리시간 0.021초

GFRP-알루미늄 하니컴 하이브리드 적층판의 압축 및 굽힘 파괴거동과 음향방출해석 (Acoustic Emission Characteristics and Fracture Behaviors of GFRP-Aluminum Honeycomb Hybrid Laminates under Compressive and Bending Loads)

  • 이기호;구자욱;최낙삼
    • Composites Research
    • /
    • 제22권6호
    • /
    • pp.23-31
    • /
    • 2009
  • 압축하중 및 굽힘하중을 받는 유리섬유플라스틱(GFRP) 표피/ 알루미늄 하니컴 코어(GF-AH) 하이브리드 복합재료의 음향방출(AE) 특성을 다양한 파괴과정과 연결시켜 연구하였다. 표피층 파괴, 표피/코어간의 계면박리, 하니컴 알루미늄 벽의 국부적인 소성항복 좌굴 및 셀벽간의 접착수지 박리와 같은 다양한 파괴모드가 하니컴 코어/GFRP표피 복합재를 이용한 AE주파수 분포 해석과 진폭분포 해석결과를 통해 분류되었다. 높은 진폭을 가진 AE 사상율의 분포는 셀벽 접착수지의 파괴, 표피층과 심층 사이의 박리및 미세파괴, 섬유파단에 대응하였으며 다른 피크 주파수의 분포는 알루미늄 셀벽의 소성변형, 셀벽간의 마찰로부터 발생한 것이다. 결론적으로 GF-AH 하이브리드 복합재료의 파괴거동 특성은 AE기법을 활용한 비파괴 평가를 통해 분석 가능하였다.

The seismic performance of steel pipe-aeolian sand recycled concrete columns

  • Yaohong Wang;Kangjie Chen;Zhiqiang Li;Wei Dong;Bin Wu
    • Earthquakes and Structures
    • /
    • 제26권1호
    • /
    • pp.77-86
    • /
    • 2024
  • To investigate the seismic performance of steel pipe-aeolian sand recycled concrete columns, this study designed and produced five specimens. Low-cycle repeated load tests were conducted while maintaining a constant axial compression ratio. The experiment aimed to examine the impact of different aeolian sand replacement rates on the seismic performance of these columns. The test results revealed that the mechanical failure modes of the steel pipe-recycled concrete column and the steel pipe-aeolian sand recycled concrete column were similar. Plastic hinges formed and developed at the column foot, and severe local buckling occurred at the bottom of the steel pipe. Interestingly, the bulging height of the damaged steel pipe was reduced for the specimen mixed with an appropriate amount of wind-deposited sand under the same lateral displacement. The hysteresis curves of all five specimens tested were relatively full, with no significant pinching phenomenon observed. Moreover, compared to steel tube-recycled concrete columns, the steel tube-aeolian sand recycled concrete columns exhibited improved seismic energy dissipation capacity and ductility. However, it was noted that as the aeolian sand replacement rate increased, the bearing capacity of the specimen increased first and then decreased. The seismic performance of the specimen was relatively optimal when the aeolian sand replacement rate was 30%. Upon analysis and comparison, the damage analysis model based on stiffness and energy consumption showed good agreement with the test results and proved suitable for evaluating the damage degree of steel pipe-wind-sand recycled concrete structures.

잔류응력과 초기변형을 고려한 송전철탑의 비선형 극한거동에 관한 해석적 연구 (Study on Ultimate Behavior of Steel Transmission Tower with Residual Stress and Initial Imperfection)

  • 장진원;김승준;박종섭;강영종
    • 한국강구조학회 논문집
    • /
    • 제20권3호
    • /
    • pp.421-435
    • /
    • 2008
  • 본 논문에서는 잔류응력과 초기변형을 고려한 비선형 해석을 실시하여 송전철탑의 극한거동을 분석하였다. 송전철탑 전체 해석 모델링에 주주재, 수평재 및 1차 사재는 보(Beam)요소를 사용하였고, 기타 사재 및 보조재는 트러스(Truss)요소를 사용하였으며 구조해석프로그램 ABAQUS(2004)를 사용하였다. ABAQUS Imperfection 옵션 및 Initial condition 옵션을 사용한 초기변형 및 잔류응력 적용의 적절성을 평가하고자 판(Plate & Shell)요소 부재모델과 보요소 부재모델의 해석결과를 비교분석하였다. 보요소와 트러스 요소를 적용한 송전철탑 전체모델의 비선형 해석결과 ${P-{\triangle}}$효과로 인하여 철탑 하부 각재부 주요 부재에 좌굴파괴가 발생하였다. 본 연구에서는 구조물의 안전성에 영향을 미치는 비선형 해석인자 즉 잔류응력과 초기변형의 정도에 따른 안전성 저하값을 정량적으로 평가하여 제시하고 있다. 그러므로, 본 연구의 결과는 실제 송전철탑의 파괴극한거동에 가까운 설계법, 해석법 및 시공법 정립에 크게 기여할 것으로 판단된다.

Experimental and numerical investigations on remaining strengths of damaged parabolic steel tubular arches

  • Huang, Yonghui;Liu, Airong;Pi, Yong-Lin;Bradford, Mark A.;Fu, Jiyang
    • Steel and Composite Structures
    • /
    • 제34권1호
    • /
    • pp.1-15
    • /
    • 2020
  • This paper presents experimental and numerical studies on effects of local damages on the in-plane elastic-plastic buckling and strength of a fixed parabolic steel tubular arch under a vertical load distributed uniformly over its span, which have not been reported in the literature hitherto. The in-plane structural behaviour and strength of ten specimens with different local damages are investigated experimentally. A finite element (FE) model for damaged steel tubular arches is established and is validated by the test results. The FE model is then used to conduct parametric studies on effects of the damage location, depth and length on the strength of steel arches. The experimental results and FE parametric studies show that effects of damages at the arch end on the strength of the arch are more significant than those of damages at other locations of the arch, and that effects of the damage depth on the strength of arches are most significant among those of the damage length. It is also found that the failure modes of a damaged steel tubular arch are much related to its initial geometric imperfections. The experimental results and extensive FE results show that when the effective cross-section considering local damages is used in calculating the modified slenderness of arches, the column bucking curve b in GB50017 or Eurocode3 can be used for assessing the remaining in-plane strength of locally damaged parabolic steel tubular arches under uniform compression. Furthermore, a useful interaction equation for assessing the remaining in-plane strength of damaged steel tubular arches that are subjected to the combined bending and axial compression is also proposed based on the validated FE models. It is shown that the proposed interaction equation can provide lower bound assessments for the remaining strength of damaged arches under in-plane general loading.