• 제목/요약/키워드: axial compression experiment

검색결과 50건 처리시간 0.021초

중심압축력을 받는 일반구조용 강관의 구조성능에 관한 연구 (A Study on the Structural Property of Structural Steel Tubes under Axial Compression)

  • 김종락;이은택;이소연;백기열
    • 한국강구조학회 논문집
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    • 제20권3호
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    • pp.437-444
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    • 2008
  • 현재 국내에 유통되고 있는 강관은 국내산과 수입산이 혼용되고 있으며, 수입산 강관은 가격경쟁 면에서 그 수요가 꾸준히 증가하고 있다. 본 연구는 국내에 유통되고 있는 일반구조용 원형강관 및 비계용 강관에 대하여 소재의 인장시험과 Stub -column 압축시험 및 기둥의 좌굴실험을 통하여 일반구조용 강관의 기계적 성질과 기둥의 강도 및 거동을 파악하고자 한다. 또한 한계상태설계법의 기준식과 복수강도곡선의 적용으로 이론값과 실험값을 비교하여 기계적 요구 성능 및 적합성 여부를 조사하고, 설계기준에 대한 기초자료를 확보하고자 한다. 단주압축 실험결과 관경두께비를 만족하는 시험체의 경우에는 최대내력에 도달한 후 서서히 내력이 저하되는 결과를 나타내었다. 기둥좌굴 실험결과, 최대내력은 일정한 좌굴내력 범위를 나타내었으며 전반적으로 한계상태설계법의 기준곡선에 만족하는 결과를 나타내었다.

Dynamic behavior of SRC columns with built-in cross-shaped steels subjected to lateral impact

  • Liu, Yanhua;Zeng, Lei;Liu, Changjun;Mo, Jinxu;Chen, Buqing
    • Structural Engineering and Mechanics
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    • 제76권4호
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    • pp.465-477
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    • 2020
  • This paper presents an investigation on the dynamic behavior of SRC columns with built-in cross-shaped steels under impact load. Seven 1/2 scaled SRC specimens were subjected to low-speed impact by a gravity drop hammer test system. Three main parameters, including the lateral impact height, the axial compression ratios and the stirrup spacing, were considered in the response analysis of the specimens. The failure mode, deformation, the absorbed energy of columns, as well as impact loads are discussed. The results are mainly characterized by bending-shear failure, meanwhile specimens can maintain an acceptable integrity. More than 33% of the input impact energy is dissipated, which demonstrates its excellent impact resistance. As the impact height increases, the flexural cracks and shear cracks observed on the surface of specimens were denser and wider. The recorded time-history of impact force and mid-span displacement confirmed the three stages of relative movement between the hammer and the column. Additionally, the displacements had a notable delay compared to the rapid changes observed in the measured impact load. The deflection of the mid-span did not exceed 5.90mm while the impact load reached peak value. The impact resistance of the specimen can be improved by proper design for stirrup ratios and increasing the axial load. However, the cracking and spalling of the concrete cover at the impact point was obvious with the increasing in stiffness.

하중저항계수설계법 및 정밀해법에 의한 PFRP I형 단면 압축재의 국부좌굴강도 (Local Buckling Strength of PFRP I-Shape Compression Members Obtained by LRFD Design Method and Closed-Form Solution)

  • 최진우;서수홍;주형중;윤순종
    • 복합신소재구조학회 논문집
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    • 제5권2호
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    • pp.1-8
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    • 2014
  • Fiber reinforced polymeric plastic (FRP) materials have many advantages over conventional structural materials, i.e., high specific strength and stiffness, high corrosion resistance, right weight, etc. Among the various manufacturing methods, pultrusion process is one of the best choices for the mass production of structural plastic members. Since the major reinforcing fibers are placed along the axial direction of the member, this material is usually considered as an orthotropic material. However, pultruded FRP (PFRP) structural members have low modulus of elasticity and are composed of orthotropic thin plate components the members are prone to buckle. Therefore, stability is an important issue in the design of the pultruded FRP structural members. Many researchers have conducted related studies to publish the design method of FRP structures and recently, referred to the previous researches, pre-standard for LRFD of pultruded FRP structures is presented. In this paper, the accuracy and suitability of design equation for the local buckling strength of pultruded FRP I-shape compression members presented by ASCE are estimated. In the estimation, we compared the results obtained by design equation, closed-form solution, and experiments conducted by previous researches.

디젤 및 DME 연료의 거시적 분무특성 비교 (Comparisons of Diesel and DME Fuel in Macroscopic Spray Characteristics)

  • 박준규;전문수;박성욱
    • 한국분무공학회지
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    • 제17권4호
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    • pp.205-209
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    • 2012
  • This study focused on comparing macroscopic characteristics of DME and diesel fuel experimentally. DME fuel is one of the most promising alternative fuels because of its superiority in atomization characteristic and clearness in terms of exhaust gas compared with existing fossil fuels. In addition, DME fuel has high cetane number so it could be applied to compression ignition engine. However because DME fuel exists in gas phase at room temperature and atmospheric pressure, and it corrodes rubber parts of fuel line, DME fuel is hard to apply to commercial vehicles. To establish knowledge about DME fuel and furthermore, to develop commercial DME vehicles such as passenger cars, many research have been proceeded steadily. The present study, by comparing spray characteristics of DME fuel to those of diesel fuel, improved atomization characteristics in DME were revealed. Injection quantity measurement and spray visualization experiment were progressed and it was revealed that DME fuel shows small injection quantity than that of diesel fuel and axial development of spray in terms of spray tip penetration decreases when DME fuel was injected.

중심축력을 받는 콘크리트 충전강관 기둥의 역학적 거동 특성에 관한 연구 (A Study on the Mechanical Properties of Concrete Filled Steel Tube Column under Centric Axial Load)

  • 박정민;김화중
    • 콘크리트학회지
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    • 제7권5호
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    • pp.133-144
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    • 1995
  • 본 연구는 콘크리트 충전강관을 고층 건물의 구조부재로 이용하기 위한 연구의 일환으로서 강관의 폭두께비, 세장비와 충전콘크리트의 강도를 주요 변수로 하여 강관이 콘크리트를 단순 구속하는 경우의 재하조건으로서 일련의 실험을 콘크리트 충전강관 기둥의 역학적인 거동 특성을 고찰하였다. 얻어진 결론을 요약하면 다음과 같다. (1)구속 콘크리트의 파괴양상은 단주의 경우 시험체 단부에서의 압괴에 의한 $45^{\circ}$정도의 사인장 파괴가 이루어졌으며 장주의 경우 횡방향 휨 파괴 양상을 나타내었다. (2)원형강관으로서 콘크리트를 구속함으로서 변형능력의 향상과 동시에 콘크리트의 연성 효과를 증대시킬 수 있었다. (3)강관의 세장비, 폭두께비, 콘크리트의 강도를 고려하여 콘크리트의 구속계수를 이용하여 강관에 의해 구속된 내부 콘크리트와 충전 강관 기둥의 최대내력 산정식을 제안하였다.

Computer modeling of elastoplastic stress state of fibrous composites with hole

  • Polatov, Askhad M.;Ikramov, Akhmat M.;Khaldjigitov, Abduvali A.
    • Coupled systems mechanics
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    • 제8권4호
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    • pp.299-313
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    • 2019
  • The paper represents computer modeling of the deformed state of physically nonlinear transversally isotropic bodies with hole. In order to describe the anisotropy of the mechanical properties of transversally-isotropic materials a structurally phenomenological model has been used. This model allows representing the initial material in the form of the coupled isotropic materials: the basic material (binder) considered from the positions of continuum mechanics and the fiber material oriented along the anisotropy direction of the original material. It is assumed that the fibers perceive only the axial tensile-compression forces and are deformed together with the base material. To solve the problems of the theory of plasticity, simplified theories of small elastoplastic deformation have been used for a transversely-isotropic body, developed by B.E. Pobedrya. A simplified theory allows applying the theory of small elastoplastic deformations to solve specific applied problems, since in this case the fibrous medium is replaced by an equivalent transversely isotropic medium with effective mechanical parameters. The essence of simplification is that with simple stretching of composite in direction of the transversal isotropy axis and in direction perpendicular to it, plastic deformations do not arise. As a result, the intensity of stresses and deformations both along the principal axis of the transversal isotropy and along the perpendicular plane of isotropy is determined separately. The representation of the fibrous composite in the form of a homogeneous anisotropic material with effective mechanical parameters allows for a sufficiently accurate calculation of stresses and strains. The calculation is carried out under different loading conditions, keeping in mind that both sizes characterizing the fibrous material fiber thickness and the gap between the fibers-are several orders smaller than the radius of the hole. Based on the simplified theory and the finite element method, a computer model of nonlinear deformation of fibrous composites is constructed. For carrying out computational experiments, a specialized software package was developed. The effect of hole configuration on the distribution of deformation and stress fields in the vicinity of concentrators was investigated.

일축대칭 FRP 부재의 전체좌굴에 관한 실험적 연구 (Experimental Study on Global Buckling of Singly Symmetric FRP Members)

  • 이승식
    • 대한토목학회논문집
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    • 제26권1A호
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    • pp.99-106
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    • 2006
  • 일축대칭의 단면특성을 갖는 T형 부재는 단면의 특성상 축방향 압축력으로 인하여 전체좌굴이 발생할 경우 휨-비틀림 좌굴이 지배모드가 된다. 인발성형 T형 부재의 휨-비틀림 좌굴거동을 실험적 연구를 통하여 알아보았다. E-glass/vinylester와 E-glass/polyester로 만들어진 2종류의 인발성형 부재가 사용되었으며, 보강층의 배치, 보강층의 두께, 구성물질의 부피비, 역학적 성질 등을 실험적으로 규명하였다. 좌굴실험에서 휨 및 비틀림에 대한 단순지지 조건을 만족시키기 위해서 knife edge를 사용하였으며, 3개의 potentiometer를 사용하여 실험체의 횡변위와 비틀림각을 측정하였다. 모든 실험체에 휨-비틀림 좌굴이 발행하였으며, 대부분의 실험체가 후좌굴 강도를 가지고 있음을 알 수 있었다.

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

  • Yaohong Wang;Kangjie Chen;Zhiqiang Li;Wei Dong;Bin Wu
    • Earthquakes and Structures
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    • 제26권1호
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    • pp.77-86
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    • 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.

삼축압축시험에 의한 국내 모래의 변형-강도 특성 (A Characteristic of Deformation and Strength of Domestic Sands by Triaxial Compression Tests)

  • 박춘식;김종환;박철수
    • 대한토목학회논문집
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    • 제34권2호
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    • pp.515-527
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    • 2014
  • 본 연구에서는 국내 모래의 공학적 특성을 파악하기 위하여 표준사, 욕지사, 낙동강사를 이용하여 구속압 조건, $K_0$ 조건, 과압밀 조건, 상대밀도 조건을 다르게하여 삼축압축시험을 실시하였다. 삼축압축시험 결과, 변형률 ${\epsilon}_1$에 따른 축차응력 $\acute{q}$의 변화는 구속압 ${\sigma}_3$와 상대밀도 $D_r$이 클수록 크게 변화하였으나, $K_0$ 조건과 과압밀 조건변화와 크게 상관이 없었다. 모래의 최대 내부마찰각(${\phi}_{max}$)은 구속압이 클수록 입자간의 접촉력이 크게 되어 작아지는 경향을 나타내었고, $K_0$ 조건과 과압밀 조건에 따라서는 거의 변화가 없는 것으로 나타났으며, 상대밀도에 따라서는 상대밀도가 감소함에 따라 내부마찰각도 작아지는 경향을 나타내었다. 체적변형률(${\epsilon}_u$)은 구속압이 클수록 입자의 파쇄성과 입자간의 재배열에 의해 체적 팽창이 작게 나타났으며, $K_0$ 조건과 과압밀 조건에서는 조건에 상관없이 거의 같은 거동을 보였고, 상대밀도에 따라서는 상대밀도가 커질수록 초기에는 압축되다가 축변형률(${\epsilon}_1$)이 증가할수록 팽창하는 경향이 뚜렷하게 나타났다. 변형률 변화에 따른 탄성계수 $E_{sec}$는 변형률이 커질수록 차츰 수렴하는 경향을 나타내었고, 축차응력($\acute{q}$)-변형률(${\epsilon}_1$) 관계에서 초기할선 탄성계수($E_{ini}$)>할선 탄성계수($E_{sec}$)>접선 탄성계수($E_{tan}$) 순으로 탄성계수의 크기가 산정되었으며, 구속압 및 상대밀도가 증가함에 따라 탄성계수가 증가하는 경향을 보였고, $K_0$ 및 과압밀에 따라서는 거의 비슷한 탄성계수를 나타내었다. 접선 탄성계수에 의한 정규화에 대해서는 다양한 증가비로 증가하는 경향을 보였다. 한계상태선의 기울기 M은 구속압이 증가함에 따라 감소하는 경향을 나타내었고, $K_0$ 및 구속압, 상대밀도에 따라서는 동일선상에 표현되며, 상대밀도가 증가할수록 한계상태선의 기울기 M도 증가하는 경향을 보였다.

Mechanical properties of new stainless steel-aluminum alloy composite joint in tower structures

  • Yingying Zhang;Qiu Yu;Wei Song;Junhao Xu;Yushuai Zhao;Baorui Sun
    • Steel and Composite Structures
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    • 제49권5호
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    • pp.517-532
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    • 2023
  • Tower structures have been widely used in communication and transmission engineering. The failure of joints is the leading cause of structure failure, which make it play a crucial role in tower structure engineering. In this study, the aluminum alloy three tube tower structure is taken as the prototype, and the middle joint of the tower was selected as the research object. Three different stainless steel-aluminum alloy composite joints (SACJs), denoted by TA, TB and TC, were designed. Finite element (FE) modeling analysis was used to compare and determine the TC joint as the best solution. Detail requirements of fasteners in the TC stainless steel-aluminum alloy composite joint (TC-SACJ) were designed and verified. In order to systematically and comprehensively study the mechanical properties of TC-SACJ under multi-directional loading conditions, the full-scale experiments and FE simulation models were all performed for mechanical response analysis. The failure modes, load-carrying capacities, and axial load versus displacement/stain testing curves of all full-scale specimens under tension/compression loading conditions were obtained. The results show that the maximum vertical displacement of aluminum alloy tube is 26.9mm, and the maximum lateral displacement of TC-SACJs is 1.0 mm. In general, the TC-SACJs are in an elastic state under the design load, which meet the design requirements and has a good safety reserve. This work can provide references for the design and engineering application of aluminum alloy tower structures.