• 제목/요약/키워드: compressive capacity

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강관말뚝 두부보강 방법의 휨내력 및 압축내력 특성 (The Bending and the Bearing Capacity of Bonding Method of Steel Piles into Pile Caps)

  • 오성남;유제남;홍성영
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2002년도 봄 학술발표회 논문집
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    • pp.389-396
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    • 2002
  • Engineers should be careful in the design of bonding piles into pile caps because they are weak points in the pile foundation. Therefore in this study, the mechanism of bonding piles into pile caps was explained, and the design method of the composite bonding method was proposed. And the proposed design method was verified in comparison with the result of the full scale test. Also, the characteristic for the bearing capacity and the mechanism of compressive load of bonding method were analyzed.

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연직하중을 받는 경사말뚝의 연직지지력에 관한 연구 (A Study on the Vertical Bearing Capacity of Batter Piles Subjected to Vertical Load)

  • 성인출;이민희;최용규;권오균
    • 한국지반공학회논문집
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    • 제19권2호
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    • pp.49-55
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    • 2003
  • 본 연구에서는 연직말뚝과 경사말뚝에 대하여 수행한 압력토조 모형실험을 통하여 경사말뚝의 연직하중과 침하량 관계로부터 경사각도에 따른 압축지지력의 증가양상을 분석하였다. 실트질 모래로 형성된 상대밀도 50%의 포화지반에 경사각 0$^\circ$, 5$^\circ$, $10^\circ$, 15$^\circ$, 20$^\circ$의 모형 개단강관말뚝을 항타 관입하였으며, 압력토조내의 구속압력을 35, 70, 그리고 120 kPa로 변화시키면서 재하실험을 수행하였다. 연직 압축지지력은 경사각도가 커짐에 따라 증가하였으며 분석방법에 따라 증가율에는 다소의 차이가 수반되었으나 경사각 5$^\circ$, $10^\circ$, 15$^\circ$인 경우 지지력 증가율은 각각 111, 121, 127 ~ 140 % 정도를 나타내었다. 경사각이 20$^\circ$ 이상인 경우에는 말뚝 두부의 전도로 인하여 모형실험의 수행이 곤란하였다.

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.

철근콘크리트 기둥의 좌굴거동에 관한 실험적 연구 (Experiments for the Buckling Behavior of Reinforced Concrete Columns)

  • 조성찬;장정수;김진근;김윤용;김광석
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1993년도 가을 학술발표회 논문집
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    • pp.284-289
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    • 1993
  • To analyze the effects of compressive strength of concrete and longitudinal steel ratio on buckling behavior of columns, 36tied reinforced concrete columns with hinged ends were tested. The 100mm square cross section was used and the amount of eccentricity was 10mm. The compressive strengths of column specimens with slenderness ratios of 15, 30 and 50 were 202, 513 and 752 kg/$\textrm{cm}^2$. The longitudinal steel ratio of columns with bending about a section diagonal and about a principal axis were 2.85%(4-D10). The ratio of ultimate load capacity to that of short column with the same eccentricity was much decreased at high slenderness ratio with increasing the compressive strength of concrete. And the lateral displacement of column at the ultimate load was decreased as the strength was increased. These are due to that at high slenderness ratio, the load capacity and behavior of column are affected by flexural rigidity. And, it was also found that for the same quantity of confining steel and level of axis load, there is little difference between the flexural strength for bending about a section diagonal and for bending about principal axis.

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폐 난연성 EPS의 혼합조건에 따른 재생골재 블록의 물성에 관한 실험적 연구 (The Physical Properties of the Block Using Flame Resistant EPS Wastes)

  • 조광현;김지현;정철우;이재용;이수용
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2013년도 추계 학술논문 발표대회
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    • pp.152-153
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    • 2013
  • Based on the Fire Service Act of mandatory provision, new buildings are strictly forced to use fire protection materials. Flame resistant EPS is one of those materials. Unlike conventional EPS that can be fused to make EPS ingot and be recycled for various purposes, flame resistant EPS waste cannot be recycled due to the presence of protective coating that is applied to increase the fire protection properties of EPS. A suitable alternative that can process large amount of flame resistant EPS wastes needs to be developed, and one of the possible alternative is to use them as construction materials. In this research, experiments were designed to observe whether the flame resistant EPS wastes can be utilized as partial replacements of fine aggregates in cement mortar. The replacement ratio of waste EPS was varied, and its effect on compressive strength and absorption capacity was investigated. According to the experimental results, both compressive strength and absorption capacity met the Korean Standard specification for cement bricks and blocks, indicating that flame resistant EPS wastes can be used for construction purposes.

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압축 및 인발하중을 받는 그물식 뿌리말뚝의 최적 타설경사각 (An Optimum Slanting Angle in Reticulated Root Piles Installation under Compressive and Uplift Loads)

  • 이승현;김명보
    • 한국지반공학회지:지반
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    • 제12권2호
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    • pp.71-84
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    • 1996
  • 본 연구에서는 여러가지의 타설경사각을 갖는 모형 그물식 뿌리말뚝을 제작하여 모형토조에 설치하고 레이닝(raining)방법으로 지반을 조성한 다음 압축시험 및 인발시험을 하여 그물식 뿌리말뚝의 타설경사각과 하중지지력 사이의 관계를 비교분석 하였다. 모형말뚝은 0$^{\circ}$, 5$^{\circ}$, $10^{\circ}$, 15$^{\circ}$, 20$^{\circ}$, 그리고 25$^{\circ}$의 타설경사각을 갖는 직경 Sulm의 강봉에 모래를 입힌 것으로 직경이 6.5muL 길이가 300mm가 되도록 하였다. 모형 뿌리말뚝의 배치는 동일한 타설경사각을 갖는 8개의 모형 말뚝을 4개씩 2개의 크고 작은 동심원에 접하도록 하였다. 그리고 모형 원형 얕은 기초를 제작하여 압축시험을 수행한 다음 지지력을 구하여 뿌리말뚝의 지지력과 비교하였다. 압축시험 및 인발시험 결과를 회귀분석하면 하중지지능력이 최대가 되는 타설경사각은 대략 12$^{\circ}$~13$^{\circ}$사이이다. 최적 타설경사각에서의 뿌리말뚝의 압축지지력은 원형 얕은기초의 지지력과 비교하면 약 2.0배이고, 연직으로 타설된 뿌리말뚝의 경우와 비교하면 13%의 지지력 증대효과가 있다. 그리고 최적타설경사각에서의 뿌리말뚝의 인발저항력은 연직으로 타설된 뿌리말뚝의 경우 에 비해 21%의 인발저항력 증대효과가 있다. 압축시험으로부터 얻은 하중-침하량곡선은 타설 경사각이 없는 경우에 전반전단파괴 형태를 나타내며,타설경사각이 5$^{\circ}$, $10^{\circ}$인 경우, 하중은 극한 지지력에 도달한 후 일정한 값을 유지하는 양상을 보인다. 타설경사각이 15$^{\circ}$, 20$^{\circ}$, 25$^{\circ}$로 증가하면서 하중은 극한지지력에 도달한 후에도 계속 증가하는 경향이 있다. 따라서, 타설경사각이 있는 경우의 뿌리말뚝은 압축지지력을 초과하여 하중을 받더라도 급격한 파괴에 이르지 않고 점차로 변위가 증가하는 연성 (ductile)거동을 보일 것으로 예상된다.

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물-시멘트비에 따른 하이브리드 섬유보강 고인성 시멘트 복합체의 역학적 특성 (W/C Ratio Effects on Mechanical Properties of High Performance hybrid SC and PE Fibers Reinforced Cement Composites)

  • 윤현도;김선우;전에스더;이상수
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2006년도 춘계학술발표회 논문집(I)
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    • pp.118-121
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    • 2006
  • The research reported here is concerned with the effects of the fiber combination condition and water/cement ratio on the mechanical properties of high performance fiber-reinforced cementitious composites(HPFRCC). An experimental investigation of the behavior of steel cords(SC) and SC and Polyethylene(PE) hybrid fiber reinforced cementitious material under compressive and tensile loading is presented. In this experimental research, the tensile and compressive strength and strain capacity of HPFRCC were selected using the cylindrical specimens. The results show that W/C ratio is a significant effect factor on the compressive and tensile performance of HPFRCC. The envelope curve concept applies to hybrid fiber-reinforced cementitious composites in tension just as it does to compressive stress-strain curve of fiber-reinforced cement composites. For practical purposes, the tensile envelope curve may be taken to be the same as the monotonic tensile stress-strain curve.

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단부 횡보강이 없는 세장한 전단벽의 내진성능 (Eartqyake-Resistance of SlenderShear Wall With no Boundary Confinement)

  • 박홍근;강수민;조봉호;홍성걸
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2000년도 봄 학술발표회 논문집
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    • pp.375-380
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    • 2000
  • Experimental and numerical studies were done to investigate seismic performance of slender sheat wall with no boundary confinement. 1/3 scale-specimens that model the plastic region of long slender shear walls subjected to combined axial load and bending moment were rested to investigate strength, ductility, capacity of energy dissipation and strain distribution. The experimental results show that the slender walls fail due to early crushing in the compressive boundary, and then have very low ductility. The measured maximum compressive strain is 0.0021, which is much less then 0.004 being commonly used for estimation of ductility. The experimental results indicates that the maximum compressive strain is not a fixed value but is affected by moment gradient along the shear wall height and distance from neutral axis to the extreme compressive fiber.

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단부 횡보강이 없는 세장한 전단벽의 내진성능 (Earthquake-Resistance of Slender Shear Wall with No Boundary Confinement)

  • 박홍근;강수민;조봉호;홍성걸
    • 콘크리트학회논문집
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    • 제12권5호
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    • pp.47-57
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    • 2000
  • Experimental and numerical studies were done to investigate seismic performance of slender shear walls with no boundary confinement that are principal structural members of high0rise bearing wall buildings. 1/3 scale specimens that model the plastic region of long slender shear walls subjected to combined axial load and bending moment were tested to investigate strength, ductility, capacity of energy dissipation, and strain distribution, The experimental results show that the slender shear walls fail due to early crushing in the compressive boundary, and then have very low ductility. The measured maximum compressive strain is 0.0021, much less than 0.004 being commonly used for estimation of ductility. This result indicates that the maximum compressive strain is not a fixed value but is affected by moment gradient along the shear wall height and distance from the neutral axis to the extreme compressive fiber.

대형판 PC 구조 시스템의 수평접합부 충전부위 구조성능에 관한 실험연구 (Compressive Strength of Horizontal Joints Pocket in Precast Concrete Large Panel System)

  • 유성훈;조승호;박현수;어양석;정란
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1997년도 가을 학술발표회 논문집
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    • pp.597-602
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    • 1997
  • The compressive strength of horizontal joints in precast concrete large panel structures depends on parameters such as grout and panel strength, detail of joint, joint moment, width of grout column etc. As the panels are only connected at the pocket, it results in the reduction of compressive strength area. The purposes of this study are to develop the suitable grout material the joint pocket and to enable us to evaluate structural capacity. The validity of the design formulas provides us more economic system in construction. Test results of 15 specimens show that the proper construction procedure and grouting material develop the sufficient compressive strength of the wall as monolithic system.

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