• 제목/요약/키워드: Compressive Failure Strength

검색결과 698건 처리시간 0.019초

Numerical and analytical investigation of parameters influencing the behavior of shear beams strengthened by CFRP wrapping

  • Ceyhun Aksoylu;Yasin Onuralp Ozkilic;Sakir Yazman;Mohammed Alsdudi;Lokman Gemi;Musa Hakan Arslan
    • Steel and Composite Structures
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    • 제47권2호
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    • pp.217-238
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    • 2023
  • In this study, a parametric study was performed considering material properties of concrete, material properties of steel, the number of longitudinal reinforcement (reinforcement ratio), CFRP ply orientations, a number of layers as variables by using ABAQUS. Firstly, the parameters used in the Hashin failure criteria were verified using four coupon tests of CFRP. Secondly, the numerical models of the beams strengthened by CFRP were verified using five experimental data. Finally, eighty numerical models and eighty analytic calculations were developed to investigate the effects of the aforementioned variables. The results revealed that in the case of using fibrous polymer to prevent shear failure, the variables related to reinforced concrete significantly affected the behavior of specimens, whereas the variables related to CFRP composite have a slight effect on the behavior of the specimens. As a result of numerical analysis, while the increase in the longitudinal tensile and compression reinforcement, load bearing capacity increases between 23.6%-70.7% and 5.6%-12.2%, respectively. Increase in compressive strength (29 MPa to 35 MPa) leads to a slight increase in the load-carrying capacity of the specimens between 4.6% and 7.2%. However, the decrease in the compressive strength (29 MPa to 20 MPa) significantly affected (between 6.4% and 8.1% decrease observed) the behavior of the specimens. As the yield strength increases or decreases, the capacity of specimens increase approximately 27.1% or decrease 12.1%. The effects of CFRP ply orientation results have been obtained as a negligible well approximately 3.7% difference. An increasing number of CFRP layers leads to almost no effect (approximately 2.8%) on the behavior of the specimen. Finally, according to the numerical analysis, the ductility values obtained between 4.0 and 6.9 indicate that the beams have sufficient ductility capacity.

Behavior of F shape non-persistent joint under experimental and numerical uniaxial compression test

  • Sarfarazi, Vahab;Asgari, Kaveh;Zarei, Meisam;Ghalam, Erfan Zarrin
    • Advances in concrete construction
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    • 제13권 2호
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    • pp.199-213
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    • 2022
  • Experimental and discrete element approaches were used to examine the effects of F shape non-persistent joints on the failure behaviour of concrete under uniaxial compressive test. concrete specimens with dimensions of 200 cm×200 cm×50 cm were provided. Within the specimen, F shape non-persistent joint consisting three joints were provided. The large joint length was 6 cm, and the length of two small joints were 2 cm. Vertical distance between two small joints change from 1.5 cm to 4.5 cm with increment of 1.5 cm. In constant joint lengths, the angle of large joint change from 0° to 90° with increments of 30°. Totally 12 different models were tested under compression test. The axial load rate on the model was 0.05 mm/min. Concurrent with experimental tests, numerical simulation (Particle flow code in two dimension) were performed on the models containing F shape non-persistent joint. Distance between small joints and joint angles were similar to experimental one. the results indicated that the failure process was mostly governed by both of the Distance between small joints and joint angles. The axial loading rate on the model was 0.05 mm/min. The compressive strengths of the samples were related to the fracture pattern and failure mechanism of the discontinuities. Furthermore, it was shown that the compressive behaviour of discontinuities is related to the number of the induced tensile cracks which are increased by increasing the joint angle. In the first, there were only a few acoustic emission (AE) hits in the initial stage of loading, and then AE hits rapidly grow before the applied stress reached its peak. Furthermore, a large number of AE hits accompanied every stress drop. Finally, the failure pattern and failure strength are similar in both approaches i.e., the experimental testing and the numerical simulation approaches.

쇼트피닝한 스프링강의 피로균열진전 연구 (A Study of Fatigue Crack Growth in Shot Peened Spring Steel)

  • 박경동;진영범
    • 한국안전학회지
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    • 제19권4호
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    • pp.20-24
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    • 2004
  • Antifatigue failure technology take an important the part of current industries. Currently, the shot peening is used for removing the defect from the surface of steel and improving the fatigue strength on surface. Therefore in this paper the effect of compressive residual stress by shot peening on fatigue crack growth characteristics in stress ratio(R=0.1, 0.3, 0.6)was investigated with considering fracture mechanics. There is difference between shot peening specimen and unpeening specimen. Fatigue crack growth rate of shot peening specimen was lower than that of unpeening specimen. Fatigue lift shows more improvement in the shot peening material than in the unpeening material. And compressive residual stress of surface on the shot peening processed operate resistance force of fatigue crack propagation. That is the constrained force about plasticity deformation was strengthened by resultant stress, which resulted from plasticity deformation and compressive residual stress in the process of fatigue crack propagation.

고강도 경량 콘크리트의 부착특성 (Bond Characteristics of High-Strength Light-Weight Concrete)

  • 신성우;이광수;최명신;김현식
    • 콘크리트학회지
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    • 제11권2호
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    • pp.77-84
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    • 1999
  • 최근들어 그 필요성이 증대되고 있는 경량 콘크리트의 경우, 부착강도의 저하를 고려하여 ACI 규준에서는 부착길이 보정계수를 도입하여 안전율을 높이고 있으나, 경량 콘크리트가 고강도화됨에 따라 어느 정도 부착강도의 증징이 있을 것으로 판단된다. 따라서 ACI 규준에서 정하고 있는 경량 콘크리트에 대한 부착길이 보정계수 ${\lambda}$=1.3을 고강도 경량 콘크리트에 적용할 경우 그 적정성 여부에 대한 검토가 필요하다. 본 연구에서는 고강도 경량 콘크리트의 부착특성을 알아보기 위하여 콘크리트 압축강도, 피복두께, 철근직경, 부착길이 등을 변수로 하여 Pull-out 실험을 실시하였다. 실험결과 부착응력은 콘크리트 압축강도 제곱근과 피복두께가 증가함에 따라 증가하였고, 철근직경과 부칙길이가 증가함에 따라 감소하였으며, 파괴양상은 피복두께에 따라 쪼개짐 파괴와 뽑힘 파괴를 나타내었다. 고강도 경량 콘크리트의 부착응력을 보통중량 콘크리트보다는 큰 값을 나타낸다. 따라서 ACI 규준에서 정하고 있는 경량 콘크리트 부착길이 보정계수를 고강도 경량 콘크리트에 적용할 경우 경량 콘크리트의 고강도화에 따른 부착응력 상승효과를 고려하여 하향조정하여야 할 것으로 판단된다. 또한 피복두께 2.5$d_b$ 이상일 경우 적용하는 피복두께 보정계수 0.8은 고강도 경량 콘크리트에도 그대로 적용할 수 있음을 알 수 있다.

고강도, 고유동 Belite 콘크리트의 부착성능 (Bond Strength of Reinforcing Steel to High Strength, High Flow Belite Concrete)

  • 김상준;조필규;이세웅;최완철
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1998년도 봄 학술발표회논문집(II)
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    • pp.653-660
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    • 1998
  • Bond strength of reinforcing bar to high-performance concrete using belite cement is explored using beam end test specimen. The key parameters for the bond test are slump of concrete, top bar effect, and strength of concrete in addition to concrete covers. Specimen failed in the typical brittle bond failure splitting the concrete cover as the wedging action. The test results show that the specimens with belire cement concrete show higher bond strength than those with portland cement concrete. Bond strength of the top bar is less than bond strength of bottom bar, but the top bar factor satisfies the modification factor for top reinforcement. The results also show that the bond strength is function of the square root of concrete compressive strength and cover thickness. The recently developed high-strength and high-slump concrete with belite cement performs well in terms of bond strength to reinforcing steel.

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강섬유를 혼입한 고강도 콘크리트 보의 전단강도 (Shear Strength of High Strength Concrete Beams with Steel Fibrous)

  • 곽계환;박종건;정태영
    • 콘크리트학회논문집
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    • 제12권4호
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    • pp.23-30
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    • 2000
  • The purpose of this paper is to study on the shear strength of high strength concrete beams with steel fibrous. In general, the shear strength of reinforced concrete beams is affected by the compressive strengths of concrete( c), the shear span-depth ratio(a/d), the longitudinal steel ratio($\rho$ $\omega$), and shear reinforcement. An experimental investigation of the shear strength of high strength concrete beams with steel fibrous was conducted. In each series the shear span-depth ratio(a/d) was held constant at 1.5, 2.8, or 3.6, while concrete strengths were varied from 320 to 520, to 800kgf/$\textrm{cm}^2$. To verify the proposed equations the experimental results were compared with those from other researches such as equation of ACI code 318-95 or equation of Zsutty. To deduce equation for shear strength from experimental data carried out MINITAP program. According to the experimental results, the addition of steel fibrous has increased the deflection and strain at failure load, improving the brittleness of the high strength concrete.

SBR Latex를 이용한 흙 포장의 재료특성 연구 (Study on the Effect of SBR Latex on the Properties of Soil Pavement)

  • 이상염;황성도;양성린
    • 한국도로학회논문집
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    • 제16권5호
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    • pp.73-82
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    • 2014
  • PURPOSES : The purpose of this study is to determine the optimum addition rate of SBR latex through the evaluation of durability and strength of SBR latex applied soil pavement. Formerly used materials such as fly ash and cement in soil pavement had resulted in decreased durability due to micro crack by heat of hydration and shrinkage crack in winter. However, that agglutinated polymers help adhesion to aggregate increased comes up with preventing the crack opening when the number of capillary tubes of SBR latex get decreased in the hydration process of cement. Therefore, in this study, it is suggested that the evaluation of the field applicability of soil pavement be conducted through the performance lab test in terms of strength increment, adhesion improvement, and crack resistance based on SBR latex addition rate. METHODS : In order to evaluate the field applicability of soil pavement, SBR latex was added 0 to 3% by 1% increment, with fixed cement contents of 3% and 5%. The resistance of shear failure and crack of soil pavement were evaluated by performing the uniaxial compressive strength test and indirect tensile strength test at -20 and $20^{\circ}C$, respectively. RESULTSCONCLUSIONS : It was found out that from both tests, resistance of shear failure and crack were improved with increment of curing time, and especially more than 2% of SBR latex addition rate and 5% cement content gave better results.

주인장 철근을 가진 HPFRCC 보 부재 전단 강도 예측 모델 (Shear Strength Model for HPFRCC Beams with Main Longitudinal Tensile Reinforcements)

  • 이성철;신경준
    • 한국구조물진단유지관리공학회 논문집
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    • 제24권2호
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    • pp.60-67
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    • 2020
  • 최근 HPFRCC의 구조 거동에 대한 연구가 많이 이루어져 왔으나, 휨 거동에 대한 연구가 주로 수행된 반면, 전단 거동에 대한 연구는 많이 부족한 상황이다. 이 연구에서는 전단 철근이 없는 HPFRCC 보 부재의 전단 강도를 합리적으로 예측할 수 있는 모델을 개발하였다. 모델을 개발하기 위해 HPFRCC 보 부재를 휨 모멘트에 저항하는 상·하현재와 전단력에 저항하는 복부 전단 요소로 간단히 이상화하였다. 이후 HPFRCC의 인장 거동 특성을 바탕으로 전단 파괴 시 복부 전단 요소의 주압축대 기울기 및 전단 응력을 산정하였으며, 이로부터 HPFRCC 보부재의 전단 강도를 산정할 수 있는 모델을 제안하였다. 제안 모델의 검증을 위해 기존의 전단 파괴된 48개의 HPFRCC 보 부재의 실험 결과와 비교하였다. 실험과 비교한 결과, 제안 모델이 실제 전단 강도를 평균 1.045, 변동계수 0.125로서 상당히 합리적으로 예측하는 것으로 나타났다. 이 연구의 주요 내용은 향후 HPFRCC가 적용되는 부재 또는 구조물에 대한 관련 연구 및 설계에 유용할 것으로 기대된다.

Numerical analysis and eccentric bearing capacity of steel reinforced recycled concrete filled circular steel tube columns

  • Ma, Hui;Liu, Fangda;Wu, Yanan;Cui, Hang;Zhao, Yanli
    • Advances in concrete construction
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    • 제13권 2호
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    • pp.163-181
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    • 2022
  • To study the mechanical properties of steel reinforced recycled concrete (SRRC) filled circular steel tube columns under eccentric compression loads, this study presents a finite element model which can simulate the eccentrically compressed columns using ABAQUS software. The analytical model was established by selecting the reasonable nonlinear analysis theory and the constitutive relationship of materials in the columns. The influences of design parameters on the eccentric compressive performance of columns were also considered in detail, such as the diameter-thickness ratio of circular steel tube, replacement percentage of recycled coarse aggregate (RCA), slenderness ratio, eccentricity, recycled aggregate concrete (RAC) strength and steel strength and so on. The deformation diagram, stress nephogram and load-displacement curves of the eccentrically compressed columns were obtained and compared with the test results of specimens. The results show that although there is a certain error between the calculation results and the test results, the error is small, which shows the rationality on the numerical model of eccentrically compressed columns. The failure of the columns is mainly due to the symmetrical bending of the columns towards the middle compression zone, which is a typical compression bending failure. The eccentric bearing capacity and deformation capacity of columns increase with the increase of the strength of steel tube and profile steel respectively. Compared with profile steel, the strength of steel tube has a greater influence on the eccentric compressive performance of columns. Improving the strength of RAC is beneficial to the eccentric bearing capacity of columns. In addition, the eccentric bearing capacity and deformation capacity of columns decrease with the increase of replacement percentage of RCA. The section form of profile steel has little influence on the eccentric compression performance of columns. On this basis, the calculation formulas on the nominal eccentric bearing capacity of columns were also put forward and the results calculated by the proposed formulas are in good agreement with the test values.

고장력강 SNCM8재의 표면처리에 따른 피로강도 변화 (A Study on Fatigue Strength Influence of Surface Treatment on High Strength Steel SNCM8)

  • 강신현;차정환;배성인
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1996년도 춘계학술대회 논문집
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    • pp.697-703
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    • 1996
  • Fatigue strength of high strengthsteels are variable with many different surface treatment. It is well known that residual compressive stress retard fatigue crack growth rate(or arrest crack). High strngth steels are manufactured by following process. Heat treatment, shot peening and chromium plating process. High strength steel(HRC40 or above) which are subjected to fatigue load and dynamic load, chromium plated parts shall be peened in accordance with requirements and baked after plating. The purpose of this paper is to compare and discuss the influence of surface treatment and hydrogen embrittlement on fatigue strength of high strength steel. Therefore, fatigue test was performed to investigate influence of surface treatment. The results shows that shot peening is very effect method in creasing fatigue life and after plating, baking process is essential to prevent hydogen failure. In this paper, the experimental investigation is made to clarify the influence of shot peening conditions and baking process on fatigue strength of high strength steel.

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