• 제목/요약/키워드: spalling depth

검색결과 38건 처리시간 0.025초

온도가열곡선 변화에 따른 콘크리트의 내화특성 (Properties of Fire Resistance in Tunnel Concrete According to the Changes of Heating Curve)

  • 배장춘;노상균;이찬영;이종석;이장화;한천구
    • 한국콘크리트학회:학술대회논문집
    • /
    • 한국콘크리트학회 2008년도 춘계 학술발표회 제20권1호
    • /
    • pp.705-708
    • /
    • 2008
  • 본 연구에서는 화재시 터널 콘크리트의 안전성 확보를 목적으로, 내화공법 변화에 따른 내화특성을 분석한 것으로서, 그 결과를 요약하면 다음과 같다. RABT온도가열곡선에 따른 내화특성으로, 플레인 콘크리트는 초기의 극심한 고온에 의해 심한 폭렬현상이 발생하였고, 내화공법변화에 따라서는, 유기섬유를 혼입하는 방식과 보드방식의 경우는 폭렬이 방지되는 것으로 나타났으며, 스프레이 방식의 경우는 보강재인 메탈라스가 뿜칠재와 같이 탈락되면서 열응력 등에 의해 구조체 콘크리트가 철근이 노출되는 등 100mm이상 깊이의 심한 폭렬이 발생하였다. RWS 온도가열곡선에 따른 내화특성으로, 유기섬유를 혼입한 경우는 콘크리트 표면이 약 5mm이내 깊이의 융해현상이 발생하였고, 스프레이 방식의 경우는 뿜칠재가 박리되어 구조체 콘크리트가 철근이 노출되는 등 100mm이상 깊이의 심한 폭렬이 발생하였으며, 보드방식의 경우도 보드가 고온에 융해되면서 구조체 콘크리트가 고온에 직접 노출되어 전면적으로 탈락현상이 발생하였는데, 이와같은 특고온 가열조건에서는 특별한 내화대책수립이 필요한 것으로 사료된다.

  • PDF

Quantitative assessment of depth and extent of notch brittle failure in deep tunneling using inferential statistical analysis

  • Lee, Kang-Hyun;Lee, In-Mo;Shin, Young-Jin
    • Geomechanics and Engineering
    • /
    • 제21권2호
    • /
    • pp.201-206
    • /
    • 2020
  • A stress-induced brittle failure in deep tunneling generates spalling and slabbing, eventually causing a v-shaped notch formation. An empirical relationship for the depth of the notch to the maximum tangential stress assuming an equivalent circular cross-section was proposed (Martin et al. 1999). While this empirical approach has been well recognized in the industry and used as a design guideline in many projects, its applicability to a non-circular opening is worth revisiting due to the use of equivalent circular profile. Moreover, even though the extent of the notch also contributes to notch failure, it has not been estimated to date. When the estimate of both the depth and the extent of notch are combined, a practical and economically justifiable support design can be achieved. In this study, a new methodology to assess the depth as well as the extent of notch failure is developed. Field data and numerical simulations using the Cohesion Weakening Frictional Strengthening (CWFS) model were collected and correlated with the three most commonly accepted failure criteria (σ13, Dismaxc, σdevcm). For the numerical analyses, the D-shaped tunnel was used since most civil tunnels are built to this profile. Inferential statistical analysis is applied to predict the failure range with a 95% confidence level. Considering its accuracy and simplicity, the new correlation can be used as an enhanced version of failure assessment.

ECC로 피복된 고강도콘크리트의 폭렬저감 및 열적특성에 관한 실험적 연구 (Fire Resistant Performance of Anti-Spalling ECC Layers in High-Strength Concrete Structures)

  • 이재영;권영진
    • 한국건축시공학회:학술대회논문집
    • /
    • 한국건축시공학회 2008년도 춘계 학술논문 발표대회
    • /
    • pp.199-202
    • /
    • 2008
  • The purpose of this study is to obtain the fundamental fire resistance performance of engineered cementitious composites(ECC) under fire temperature in order to use the fire protection material in high-strength concrete structures. The present study conducted the experiment to simulate fire temperature by employing of ECC and investigated experimentally the explosion and cracks in heated surface of these ECC. In the experimental studies, 3 HSC specimens are being exposed to fire, in order to examine the influence of various parameters(such as depth of layer=20, 30, 40mm; construction method=lining type) on the fire performance of HSC structures. Employed temperature curve were ISO 834 criterion(3hr), which are severe in various criterion of fire temperature in building structures. The numerical regressive analysis and proposed equation to calculate ambient temperature distribution is carried out and verified against the experimental data. By the use of proposed equation, the HSC members subjected to fire loads were designed and discussed.

  • PDF

단열모르타르를 이용한 고강도콘크리트 기둥의 폭렬저감 방안 (Spalling Reduction Method of High-Strength Reinforced Concrete Columns Using Insulating Mortar)

  • 유석형;임서형
    • 한국화재소방학회논문지
    • /
    • 제25권6호
    • /
    • pp.8-13
    • /
    • 2011
  • 고강도 콘크리트는 구조적인 장점에도 불구하고 화재 시 폭렬과 함께 취성적인 파괴를 나타내는 단점으로 인하여 실구조물에 적용 시 주의하여 사용하여야 한다. 신축되는 고강도 콘크리트구조물의 폭렬제어를 위하여 많은 연구가 진행되어 왔으나, 사용 중인 고강도콘크리트 구조물의 폭렬제어방안에 대한 연구가 부족한 실정이다. 본 연구에서는 사용 중인 고강도 콘크리트 구조물의 내화성능을 향상시키기 위한 내화 마감재로서 미세공극과 유기섬유를 활용한 공극구조의 개선으로 단열성을 확보한 신개념의 무기질 내화 모르타르를 개발하고자 한다. 잔골재 종류, PP섬유 혼입량 및 마감두께를 변수로 하는 내화모르타르에 대한 재료시험 및 실구조물에 대한 내화시험을 통하여 내화성능을 평가하였다. 재료시험결과 다공질의 경량골재를 사용한 모르타르의 열전도율은 일반 잔골재에 비하여 크게 낮아졌으며, 기둥부재 내화시험결과 경량 잔골재의 사용으로 내화시간이 20분, 마감두께를 10 mm에서 20 mm로 증가시킬 경우 10분 그리고 PP섬유를 0.6 % 혼입함으로써 4분 증가하였다.

화재곡선과 PET섬유 혼입량에 따른 고강도 세그먼트 콘크리트의 화재저항성 평가에 대한 연구 (Fire resistance assessment of high strength segment concrete depending on PET fiber amount under fire curves)

  • 최순욱;이규필;장수호;박영택;배규진
    • 한국터널지하공간학회 논문집
    • /
    • 제16권3호
    • /
    • pp.311-320
    • /
    • 2014
  • 화재 시 고강도 콘크리트는 보통강도 콘크리트보다 강도의 감소가 빠르게 나타날 뿐만 아니라 단면손실을 발생시키는 스폴링(spalling)에 취약하다. 본 연구에서는 PET섬유가 혼입된 고강도 세그먼트 콘크리트를 대상으로 ISO834 화재곡선과 RABT 화재곡선 하에서 화재저항성을 평가하였다. 화재저항성을 시험한 결과, PET섬유가 혼입되지 않았을 경우에 ISO834 화재곡선과 RABT 화재곡선 하에서 콘크리트의 단면손실은 약 8 cm, 9.5 cm로 측정되었다. ISO834 화재곡선 하에서 PET섬유가 0.1% 혼입되었을 경우에는 단면손실이 발생하지 않았으나, RABT 화재곡선 하에서는 PET섬유가 0.1% 혼입되었을 경우에는 6.5 cm의 단면손실이 발생하였다. RABT 화재곡선 하에서는 PET섬유가 0.2% 혼입되었을 경우에 단면손실이 발생하지 않았다. 따라서 본 연구에서 사용한 세그먼트 콘크리트는 PET섬유의 혼입량이 0.1%일 때 ISO834 화재곡선 하에서 내화성능을 확보하였으며 RABT 화재곡선 하에서는 PET섬유의 혼입량이 0.2%일 때 내화성능을 가지는 것으로 나타났다. 그러나 단면손실이 발생하지 않았더라도 가열면으로부터 4 cm까지의 손상된 표면의 보수보강이 필요한 것으로 판단된다.

심부 터널 주변 과응력 암반의 취성파괴 수치모델링 (Numerical modeling of brittle failure of the overstressed rock mass around deep tunnel)

  • 이근채;문현구
    • 한국터널지하공간학회 논문집
    • /
    • 제18권5호
    • /
    • pp.469-485
    • /
    • 2016
  • 심부 터널 주변 암반의 파괴는 불연속면의 영향을 크게 받는 천부 터널 주변과 다르게 응력의 크기와 방향이 지배한다. 응력 지배 파괴의 양상은 응력 조건, 암석의 특성에 따라 연성과 취성으로 구분할 수 있으며 파석, 판상 파괴, 암석 파열 현상의 결과로 나타나는 V-형 홈 형태 취성 파괴 영역의 범위와 깊이는 심부 터널의 굴착과 보강 설계의 주요 인자이므로 이를 파악하는 것은 중요하다. 취성 파괴의 특성은 응력 조건에 따라 점착력 상실과 마찰력 전이로 구성된다는 점과 진행성 파괴라는 점이다. 본 연구는 이중 선형 절단 파괴 포락선과 탄성-탄소성 연계 해석과 점진적 탄소성 영역 확대라는 해석 절차와 방법을 도입하여 터널 주변 취성 암반의 파괴를 합리적으로 모사할 수 있는 3차원 수치 모델을 구현하였다. 이 수치 모델이 예상한 취성 파괴 영역의 깊이는 기존 사례 연구를 통한 경험식의 결과와 부합되었다.

화재 피해를 입은 고강도 콘크리트 기둥의 보수공법 변화에 따른 내화특성 (Fire Resistance of Repaired High Strength Concrete Column Damaged by Fire)

  • 박천진;백대현;인기호;여인환;민병렬;한천구
    • 한국건축시공학회:학술대회논문집
    • /
    • 한국건축시공학회 2009년도 추계 학술논문 발표대회
    • /
    • pp.113-116
    • /
    • 2009
  • This study analyzed fire-resistant characteristics according to changes in repair methods of PFH mixed high-strength concrete roof structures having undergone fire damage. The results of the study are as follows. First, as a repulsive characteristics of structures, the remaining repulsion was shown to increase following fire-resistance tests according to increases in depth of coverings. The results of the relationship between depth of coverings and remaining repulsion rates following fire-proofing tests showed a high correlation. At a covering depth of 67.3mm, remaining repulsion rate was estimated to be 100%. For fire-resistant characteristics following repairs of structure, as for spalling, severe separation was shown in the case of general plaster while general plaster + Metal Lath showed overall superior spalling prevention. For internal structure temperatures, general plaster showed max temperatures of 705℃, average temperatures of 636℃ while general plaster + metal lath showed max temperature of 660℃ and average temperature of 520℃, demonstrating lower temperature distributions than use of only general plaster. In conclusion, after removing the covering of structures damaged due to high temperatures of fires within high-strength concrete installations, the use of fire-resistant mortars and applying metal laths on surfaces of general plaster will provide superior fire-resistance performance in the occurrence of a 2nd fire.

  • PDF

Fracture behaviors of tunnel lining caused by multi-factors: A case study

  • Zhao, Yiding;Zhang, Yongxing;Yang, Junsheng
    • Advances in concrete construction
    • /
    • 제8권4호
    • /
    • pp.269-276
    • /
    • 2019
  • The cracking and spalling caused by fracture of concrete lining have adverse impacts on serviceability and durability of the tunnel, and the subsequent maintenance work for damaged structure needs to be specific to the damaging causes. In this paper, a particular case study of an operational tunnel structure is presented for the serious cracking and spalling behaviours of concrete lining, focusing on the multi-factors inducing lining failure. An integrated field investigation is implemented to characterize the spatial distribution of damages and detailed site situations. According to results of nondestructive inspection, insufficient lining thickness and cavity behind lining are the coupled-inducement of lining failure bahaviors. To further understanding of the lining structure performance influenced by these multiple construction deficiencies, a reliable numerical simulation based on extended finite element method (XFEM) is performed by using the finite element software. The numerical model with 112 m longitudinal calculation, 100 m vertical calculation and 43 m vertical depth, and the concrete lining with 1450 solid elements are set enrichment shape function for the aim of simulating cracking behavior. The numerical simulation responses are essentially in accordance with the actual lining damaging forms, especially including a complete evolutionary process of lining spalling. This work demonstrates that the serious lining damaging behaviors are directly caused by a combination of insufficient thickness lining and cavity around the surrounding rocks. Ultimately, specific maintenance work is design based on the construction deficiencies, and that is confirmed as an efficient, time-saving and safe maintenance method in the operational railway tunnel.

초음파 나노표면 개질처리를 통한 베어링강의 회전접촉피로 및 잔류응력 특성에 대한 연구 (Rolling Contact Fatigue and Residual Stress Properties of SAE52100 Steel by Ultrasonic Nano-Crystalline Surface Modification (UNSM))

  • 이창순;박인규;조인식;홍정화;지태구;편영식
    • 열처리공학회지
    • /
    • 제21권1호
    • /
    • pp.10-19
    • /
    • 2008
  • To investigate the effect of ultrasonic nano-crystalline surface modification (UNSM) treatment on rolling contact fatigue and residual stress properties of bearing steels, this paper carried out a rolling contact fatigue test, measured residual stress and retained austenite, performed a wear test, observed microstructure, measured micro hardness, and analyzed surface topology. After the UNSM treatment, it was found that the surface became minute by over $100{\mu}m$. The micro surface hardness was changed from Hv730~740 of base material to Hv850~880 with about 20% improvement, and hardening depth was about 1.3 mm. The compressive residual stress was measured as high as -700~-900 MPa, and the quantity of retained austenite was reduced to 27% from 34%. The polymet RCF-6 ball type rolling contact fatigue test showed over 4 times longer fatigue lifetime after the UNSM treatment under 551 kgf load and 8,000 rpm. In addition, this paper observed the samples, which went through the rolling contact fatigue test, with OM and SEM, and it was found that the samples had a spalling phenomenon (the race way is decentralized) after the UNSM treatment. However, before the treatment, the samples had excessive spalling and complete exploration. Comparison of the test samples before and after the UNSM treatment showed a big difference in the fatigue lifetime, which seems to result from the complicated effects of micro particles, compressive residual stress, retained austenite, and surface topology.

Damage inspection and performance evaluation of Jilin highway double-curved arch concrete bridge in China

  • Naser, Ali Fadhil;Zonglin, Wang
    • Structural Engineering and Mechanics
    • /
    • 제39권4호
    • /
    • pp.521-539
    • /
    • 2011
  • Jilin highway concrete bridge is located in the center of Jilin City, which is positioned in the middle part in Jilin Province in the east north of China. This bridge crosses the Songhua River and connects the north and the south of Jilin City. The main purpose of damages inspection of the bridge components is to ensure the safety of a bridge and to identify any maintenance, repair, or strengthening which that need to be carried out. The damages that occur in reinforced concrete bridges include different types of cracks, scalling and spalling of concrete, corrosion of steel reinforcement, deformation, excessive deflection, and stain. The main objectives of this study are to inspect the appearance of Jilin highway concrete bridge and describe all the damages in the bridge structural members, and to evaluate the structural performance of the bridge structure under dead and live loads. The tests adopted in this study are: (a) the depth of concrete carbonation test, (b) compressive strength of concrete test, (c) corrosion of steel test, (d) static load test, and (e) dynamic load test. According to the damages inspection of the bridge structure appearance, most components of the bridge are in good conditions with the exception arch waves, spandrel arch, deck pavement of new arch bridge, and corbel of simply supported bridge which suffer from serious damages. Load tests results show that the deflection, strain, and cracks development satisfy the requirements of the standards.