• Title/Summary/Keyword: Reinforcement ratio

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반복하중을 받는 외부 보-기둥 접합부에 정착된 57mm 확대머리철근의 정착성능평가 (Evaluation on Anchorage Performance of 57mm Headed Bars in Exterior Beam-Column Joint under Cyclic Loading)

  • 정형석;정주홍;최창식;배백일;최현기
    • 한국구조물진단유지관리공학회 논문집
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    • 제25권6호
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    • pp.68-75
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    • 2021
  • 본 연구에서는 반복하중을 받는 외부 보-기둥 접합부에 정착된 57mm 확대머리철근의 정착성능을 평가하였다. 총 4개의 외부 보-기둥 접합부 실험체를 계획하였으며, 콘크리트 압축강도, 측면피복두께, 횡보강근비 및 파괴유형을 주요 실험 변수로 설정하여 정착성능평가를 수행하였다. 성능평가 결과, 접합부에 정착된 대구경 확대머리철근의 정착성능에 가장 큰 영향을 주는 요소는 측면피복두께 및 횡보강근으로 나타났으며, 외부 보-기둥 접합부에 정착된 57mm 대구경 확대머리철근은 반복하중하에서도 충분한 정착성능이 발현되는 것을 확인할 수 있었다.

Ca(OH)2와 전구체의 화학 조성이 고속경화 지오폴리머의 물성에 미치는 영향 (Effects of Chemical Composition of Ca(OH)2 and Precursors on the Properties of Fast-Curing Geopolymers)

  • 고현석;노정영;임형미
    • 한국재료학회지
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    • 제29권11호
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    • pp.690-696
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    • 2019
  • Geopolymer is an alumina silicate-based ceramic material that has good heat-resistance and fire-resistance; it can be cured at room temperature, and thus its manufacturing process is simple. Geopolymer can be used as a reinforcement or floor finish for high-speed curing applications. In this manuscript, we investigate a high-speed curing geopolymer achieved by adding calcium to augment the curing rate. Metakaolin is used as the main raw material, and aqueous solutions of KOH and $K_2SiO_3$ are used as the activators. As a result of optimizing the high bending strength as a target factor for geopolymers with $SiO_2/Al_2O_3$ ratio of 4.1 ~ 4.8, the optimum ranges of the active agent are found to be $0.1{\leq}K_2O/SiO_2{\leq}0.4$ and $10{\leq}H_2O/K_2O{\leq}32.5$, and the optimum range of the curing accelerator is found to be $$0.82{\leq_-}Ca(OH)_2/Al_2O_3{\leq_-}2.87$$. The maximum flexural strength is found to be 1.35 MPa at $Ca(OH)_2/Al_2O_3=2.82$, $K_2O/SiO_2=0.3$, and $H_2O/K_2O=11.3$. The physical and thermal properties are analyzed to validate the applicability of these materials as industrial insulating parts or repairing finishing materials in construction.

Field test and research on shield cutting pile penetrating cement soil single pile composite foundation

  • Ma, Shi-ju;Li, Ming-yu;Guo, Yuan-cheng;Safaei, Babak
    • Geomechanics and Engineering
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    • 제23권6호
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    • pp.513-521
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    • 2020
  • In this paper, due to the need for cutting cement-soil group pile composite foundation under the 7-story masonry structure of Zhenghe District and the shield tunnel of Zhengzhou Metro Line 5, a field test was conducted to directly cut cement-soil single pile composite foundation with diameter Ф=500 mm. Research results showed that the load transfer mechanism of composite foundation was not changed before and after shield tunnel cut the pile, and pile body and the soil between piles was still responsible for overburden load. The construction disturbance of shield cutting pile is a complicated mechanical process. The load carried by the original pile body was affected by the disturbance effect of pile cutting construction. Also, the fraction of the load carried by the original pile body was transferred to the soil between the piles and therefore, the bearing capacity of composite foundation was not decreased. Only the fractions of the load carried by pile and the soil between piles were distributed. On-site monitoring results showed that the settlement of pressure-bearing plates produced during shield cutting stage accounted for about 7% of total settlement. After the completion of pile cutting, the settlements of bearing plates generated by shield machine during residual pile composite foundation stage and shield machine tail were far away from residual pile composite foundation stage which accounted for about 15% and 74% of total settlement, respectively. In order to reduce the impact of shield cutting pile construction on the settlement of upper composite foundation, it was recommended to take measures such as optimization of shield construction parameters, radial grouting reinforcement and "clay shock" grouting within the disturbance range of shield cutting pile construction. Before pile cutting, the pile-soil stress ratio n of composite foundation was 2.437. After the shield cut pile is completed, the soil around the lining structure is gradually consolidated and reshaped, and residual pile composite foundation reaches a new state of force balance. This was because the condensation of grouting layer could increase the resistance of remaining pile end and friction resistance of the side of the pile.

Effect of rebar spacing on the behavior of concrete slabs under projectile impact

  • Abbas, Husain;Siddiqui, Nadeem A.;Almusallam, Tarek H.;Abadel, Aref A.;Elsanadedy, Hussein;Al-Salloum, Yousef A.
    • Structural Engineering and Mechanics
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    • 제77권3호
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    • pp.329-342
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    • 2021
  • In this paper, the effect of different steel bar configurations on the quasi-static punching and impact response of concrete slabs was studied. A total of forty RC square slab specimens were cast in two groups of concrete strengths of 40 and 63 MPa. In each group of twenty specimens, ten specimens were reinforced at the back face (singly reinforced), and the remaining specimens were reinforced on both faces of the slab (doubly reinforced). Two rebar spacing of 25 and 100 mm, with constant reinforcement ratio and effective depth, were used in both singly and doubly reinforced slab specimens. The specimens were tested against the normal impact of cylindrical projectiles of hemispherical nose shape. Slabs were also quasi-statically tested in punching using the same projectile, which was employed for the impact testing. The experimental response illustrates that 25 mm spaced rebars are effective in (i) decreasing the local damage and overall penetration depth, (ii) increasing the absorption of impact energy, and (iii) enhancing the ballistic limit of RC slabs. The ballistic limit was predicted using the quasi-static punching test results of slab specimens showing a strong correlation between the dynamic perforation energy and the energy required for quasi-static perforation of slabs.

흙 사면의 강우 침식보강을 위한 토양개량제 개발에 관한 연구 (A Study on Soil Improvement Agent for Rainfall-Induced Erosion on the Soil Slope)

  • 강대흥;김영석;황인택;김재홍
    • 대한토목학회논문집
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    • 제41권3호
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    • pp.237-246
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    • 2021
  • 기후변화로 극한강우에 의해 발생하는 얕은 비탈면 붕괴와 침식으로 토석류 유발이 잦아지고 있다. 앵커나 네일링 공법으로 보강하기 보다는 원지반을 이용하여 식생이 되는 비탈면 보강이 경제적이면서 친환경적인 공법으로 연구되고 있다. 본 연구에서는 충분한 식생이 가능하도록 부엽토와 한약재 찌꺼기를 활용하여 토양개량제를 개발하였다. 그리고 표면침식을 방지하기 위해 첨가제로 마이크로 시멘트와 반수석고 등을 사용하여 전단강도를 증가시켰다. 이러한 주재료와 첨가제 결정은 실내시험을 통하여 강우로 인한 지반 표층의 침식 진행을 확인하여 전단강도의 증가를 확인할 수 있었다. 원지반을 활용하는 토양개량제의 보강은 식생이 가능하고 침식에 대해 저항력이 크게 증가한다. 이러한 보강은 사면 불안정성의 주요 원인인 인장균열 발생을 방지하고 침식에 의한 토석류 유발을 막을 수 있기 때문에 다른 공법들보다 장마철 폭우에 대한 대처방안으로 효율적인 방법이라고 판단된다.

이방성 섬유강화폴리머 보강근의 콘크리트 피복두께에 대한 해석적 연구 (Analytical Study on Concrete Cover Thickness of Anisotropic FRP Bar)

  • 이성태
    • 한국구조물진단유지관리공학회 논문집
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    • 제26권1호
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    • pp.58-66
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    • 2022
  • 이 연구에서는 FRP 보강근과 콘크리트의 횡방향 열팽창 거동이 콘크리트 피복두께에 미치는 영향을 살펴보기 위해 온도 20℃를 기준으로 -70℃~80℃까지 변화시켜가며, 콘크리트의 거동을 해석적으로 검토하였다. 이를 위해 서로 다른 FRP 보강근의 지름과 피복 두께를 가지는 FRP 보강근 콘크리트를 대상으로 이론적 탄성해석과 비선형 유한요소해석을 수행하였다. 그 결과, 음의 온도차이에서는 콘크리트가 압축을 받아 이론적 변형율 결과와 유한요소결과가 유사하였지만, 양의 온도차이에서는 콘크리트에 인장응력이 발생하고 더 나아가 균열이 발생하여 이론적 결과보다 1.2~1.4 배 큰 변형률을 나타내었다. 또한 FRP 보강근의 지름과 콘크리트의 피복두께 비(c/db)가 균열의 발생과 밀접한 연관이 있으며, 보강근의 지름에 비하여 피복두께가 부족할 경우 균열이 발생하여 구조물의 사용성이 저하되었다. FRP 보강근의 횡방향 열팽창계수는 콘크리트보다 3배 이상 크기 때문에, 설계 시 이에 대한 고려가 필요하다고 판단되었다.

Smart monitoring system using electromagnetic waves to evaluate the integrity of reinforced concrete structural elements

  • Jong-Sub Lee;Dongsoo Lee;Youngdae Kim;Goangseup Zi;Jung-Doung Yu
    • Computers and Concrete
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    • 제31권4호
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    • pp.293-306
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    • 2023
  • This study proposes and demonstrates a smart monitoring system that uses transmission lines embedded in a reinforced concrete structure to detect the presence of defects through changes in the electromagnetic waves generated and measured by a time-domain reflectometer. Laboratory experiments were first conducted to identify the presence of voids in steel-concrete composite columns. The results indicated that voids in the concrete caused a positive signal reflection, and the amplitude of this signal decreased as the water content of the soil in the void increased. Multiple voids resulted in a decrease in the amplitude of the signal reflected at each void, effectively identifying their presence despite amplitude reduction. Furthermore, the electromagnetic wave velocity increased when voids were present, decreased as the water content of the soil in the voids increased, and increased with the water-cement ratio and curing time. Field experiments were then conducted using bored piles with on-center (sound) and off-center (defective) steel-reinforcement cage alignments. The results indicated that the signal amplitude in the defective pile section, where the off-center cage was poorly covered with concrete, was greater than that in the pile sections where the cage was completely covered with concrete. The crosshole sonic logging results for the same defective bored pile failed to identify an off-center cage alignment defect. Therefore, this study demonstrates that electromagnetic waves can be a useful tool for monitoring the health and integrity of reinforced concrete structures.

성능스펙트럼법을 이용한 기존 학교 건축물의 내진성능평가 및 보강효과 검증 (An Evaluation of Seismic Performance for Existing School Building Using Capacity Spectrum Method)

  • 장정현;황지훈;양경석;;최재혁
    • 공학기술논문지
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    • 제5권1호
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    • pp.11-18
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    • 2012
  • Large scale earthquake was occurred in different parts of the world like Japan (in 1995), Republic of Pakistan (2005), in China (2008) etc and enormous structures were damaged. As a result of collapse of school buildings structures numerous students are died and it had a big impact on the international community. Therefore, the interest of preparing the seismic resistant school building structures in our country is increases as school building are used as emergency shelter for local residents. But the current standard of seismic design ratio of 3.7% is applied for school building in Korea which is only significant earthquake damage is expected. In order to overcome the current situation, seismic performance evaluation is carried out for the existing school building and an accurate and appropriate seismic retrofit is required based on performance evaluation to upgrade the existing school buildings. In this paper, nonlinear analysis on existing school buildings for ATC-40(Applied Technology Council, ATC) and FEMA-356(Federal Emergency Management Agency, FEMA) are carried out using the capacity spectrum method to evaluate seismic performance and to determine the need for retrofitting. In addition, after reinforcement to enhance the seismic performance is applied the seismic performance evaluation is carried out to verify the effectiveness of seismic retrofit.

진동대 시험을 이용한 유기질토가 협재된 모래지반의 내진 안정성 평가 (Seismic Stability Evaluation of Sand Ground with Organic Soil by Using Shaking Table Test)

  • 정용진;백영철;이동혁
    • 한국지반환경공학회 논문집
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    • 제24권5호
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    • pp.13-20
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    • 2023
  • 강릉지역은 유기질토가 생성되기 적합한 환경을 지닌 지역으로 유기질토 상부와 하부에 퇴적 모래층이 분포되어 있는 충적층 지반이 존재한다. 본 연구는 모래층 사이에 유기질토 및 점토가 협재된 지반 상부에 조성된 강릉지역을 통과하는 철도노반의 내진 안전성을 평가하기 위하여 상사율을 고려한 철도노반 및 지반 모형을 제작하여 진동대 시험을 실시하고 유효응력 해석 결과값을 비교하여 내진 안정성을 평가하였다. 적용된 지진파는 인공지진파, 경주지진파, Borah 지진파, Nahanni 지진파, Tabas 지진파를 적용하였으며 상부 모래층의 최대 응답가속도는 0.239g(인공지진파), 과잉간극수압비는 0.509(Borah파)가 발생하는 것으로 분석되었다. 신설노반의 하부지반에 적용된 jet grouting에 의한 지반보강 효과로 인해 신설 노반의 발생변위는 기존노반에 비해 최소 33.7%에서 최대 56.7% 감소한 것으로 나타났다. 진동대 시험결과는 Flac 프로그램의 Finn 모델을 적용한 유효응력해석으로 검증하였으며, 진동대 시험값과 유사한 경향을 나타내었다.

대심도 풍화대층에서 NATM 터널의 지반거동 및 보강방법 (Ground Behavior and Reinforcing Methods of NATM Tunnel through Deep Weathered Zone)

  • 천병식;송승훈;안정환
    • 한국지반공학회논문집
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    • 제23권8호
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    • pp.87-95
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    • 2007
  • 본 연구에서는 대심도 풍화대에 시공되는 2차로 도로터널을 기준으로 터널의 굴착방법과 지반보강그라우팅에 의한 지반변위 및 지반응력의 분석을 통하여 최적의 시공방안을 찾고자 하였다. 터널 직경은 약 12m를 적용하였으며, 상부 강관다단그라우팅 및 측벽 보강그라우팅을 적용하였다. 검토된 굴착방법은 링컷 굴착방법과 중벽분할 굴착방법이다. 터널 천단의 소성율과 연직응력비를 분석한 결과, 풍화대지반에 굴착되는 터널에서 토피고(H)가 터널직경(D)의 4배 이상일 경우(H>4D) 대심도 터널로 판단할 수 있었다. 해석결과 중벽분할 굴착방법이 링컷 굴착방법에 비하여 대심도 풍화대 NATM터널에서 안정성이 높은 굴착방법으로 판단할 수 있었다. 또한, 측벽 보강그라우팅 실시로 터널 내공변위 및 침하 발생을 억제할 수 있었다.