• 제목/요약/키워드: spalling thickness

검색결과 42건 처리시간 0.023초

방화석고보드의 두께 및 접착방식 변화에 따른 고강도 콘크리트의 내화특성 (Fire Resistance of High Strength Concrete followed by Thickness of Fireproof Plaster Board and Change of Adhesive Method)

  • 장기현;김원기;김호림;이진우;양성환;한천구
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2008년도 춘계 학술논문 발표대회
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    • pp.67-71
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    • 2008
  • The study analyzed on fire resistance of high strength concrete followed by thickness of fireproof plaster board and change of adhesive method. In spalling characteristics after fire resistance test, all four-side covering concretes were left out of testing screens. Thus, serious spalling was happened by exposing their internal reinforcing rods. in partial testing screens, spalling was happened till the internal concrete of main reinforcing rod. Only, temperature history didn't have special differences among changes of adhesive method. However, thickness of fireproof plaster board is very important. Namely, mock member reinforcing 25mm general adhesive + Bending was 583℃ in the highest temperature of surface part and 479℃ in the highest temperature of the main reinforcing rod, which was relatively good temperature history.

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고강도 콘크리트 구조부재의 폭렬 특성에 관한 실험적 연구 (An Experimental Study on the Explosive Spalling Properties of High Strength Concrete Structure Member)

  • 김흥열;전현규
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2006년도 추계 학술발표회 논문집
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    • pp.421-424
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    • 2006
  • This study, in order for perceiving the mechanical attribute followed by the explosive spalling of high strength concrete material under high temperature and evaluating capacity of endurance of material, targets understanding capacity of endurance of material such as explosive spalling in high temperature, temperature by thickness of clothing, transformation extent, transformation speed and displacement, stocking the maximum load based on the Allowable Stress Design Method. As a result of experimenting the explosive spalling attribute of high strength concrete material, the one possibly causing serious damage is the 50 MPa concrete. In all aspects of 60 MPa concrete, explosive spalling happens. Especially, it is hazardous enough to reveal all the iron bar. All explosive spalling is intensively concentrated on the surface of concrete for the first $5{\sim}25$ minutes, which urges for the explosive spalling protection action. As a result of evaluating the structural safety by the transformation of high strength concrete, while beam assures the fire safety meeting regulation, 60 MPa shows the dramatic increase of transformation, which only counts 84% of safety. In a column, both the concrete exclusion and excessive explosive spalling are concentrated upper part of column, which brings about the dramatic transformation, so it only meets the 50% of safety regulation. Likewise, in 80, 100 MPa concrete which was never experimented considering the condition of domestic structural endurance stocking devices, the faster collapse is expected.

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구조용 경량골재 콘크리트의 폭렬특성 (Explosive Spalling of Structural Lightweight Aggregate Concrete)

  • 송훈;이종찬;이세현;김우재
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2006년도 춘계 학술발표회 논문집(II)
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    • pp.477-480
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    • 2006
  • Normally, with all ensuring the fire resistance structure as a method of setting the required cover thickness to fire, the RC is significantly affected from the standpoint of its structural stability that the compressive strength and elastic modulus is reduced by fire. Especially, high strength concrete and lightweight aggregate concrete is occurred serious fire performance deterioration by explosive spalling. Thus, this study is concerned with explosive spalling of lightweight concrete using structural lightweight aggregate. From the experimental test result, lightweight aggregate concrete is happened explosive spalling. The decrease of cross section caused by explosive spalling made sharp increasing gradient of inner temperature.

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Evaluation of Impact Resistance of Steel Fiber and Organic Fiber Reinforced Concrete and Mortar

  • Kim, Gyu-Yong;Hwang, Heon-Kyu;Nam, Jeong-Soo;Kim, Hong-Seop;Park, Jong-Ho;Kim, Jeong-Jin
    • 한국건축시공학회지
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    • 제12권4호
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    • pp.377-385
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    • 2012
  • In this study, the Impact resistance of steel fiber and organic fiber reinforced concrete and mortar was evaluated and the improvement in toughness resulting from an increase in compressive strength and mixing fiber for impact resistance on performance was examined. The types of fiber were steel fiber, PP and PVA, and these were mixed in at 0.1, 0.5 and 1.0 vol.%, respectively. Impact resistance is evaluated with an apparatus for testing impact resistance performance by high-speed projectile crash by gas-pressure. For the experimental conditions, Specimen size was $100{\times}100{\times}20$, 30mm ($width{\times}height{\times}thickness$). Projectile diameter was 7 and 10 mm and impact speed is 350m/s. After impact test, destruction grade, penetration depth, spalling thickness and crater area were evaluated. Through this evaluation, it was found that as compressive strength is increased, penetration is suppressed. In addition, as the mixing ratio of fiber is increased, the spalling thickness and crater area are suppressed. Organic fibers have lower density than the steel fiber, and population number per unit area is bigger. As a result, the improvement of impact resistance is more significant thanks to dispersion and degraded attachment performance.

뿜칠피복재를 사용한 고강도 콘크리트 부재의 내화피복두께에 관한 실험적 연구 (An Experimental Study on the Fireproof Covering Thickness of High Strength Concrete Members with Spray Coating)

  • 이태규
    • 한국화재소방학회논문지
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    • 제24권4호
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    • pp.41-46
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    • 2010
  • 고강도 콘크리트는 대형 사회기반 구조물로서 많이 활용되고 있다. 고강도 콘크리트는 우수한 재료적 성능과 내구성을 확보하고 있지만 반면에 화재에 대한 급작스러운 폭렬현상으로 인하여 구조적인 문제를 야기시키기도 한다. 따라서 본 연구에서는 콘크리트 피복두께에 추가하여 내화피복재를 사용함으로써 내화피복두께에 따른 콘크리트의 내화성능을 평가하고 최적의 내화피복두께를 산정하는 실험적 연구를 수행하였다. 내화피복재를 10mm 간격으로 증가시키면서 실험을 수행한 결과 콘크리트의 내화성능이 크게 향상됨을 볼 수 있었으며, 최적의 내화피복두께는 약 1~3mm로 산정되었다. 또한 폭렬에 의하여 급작스러운 콘크리트 내부의 온도상승 이후 기화열에 의한 열손실로 완만하게 온도가 상승되는 현상이 실험적으로 관측되었다. PP 섬유는 약 $200^{\circ}C$ 부근에서 용해되어 고온에서는 빈 채널만 남게 되므로 내부 증기압을 저감시켜주는 역할도 관측되었다.

고속비상체의 충돌에 의한 고강도 콘크리트의 표면관입저항성 및 배면박리성상에 관한 연구 (A Study on the Penetration Resistance and Spalling Properties of High Strength Concrete by Impact of High Velocity Projectile)

  • 김홍섭;남정수;황헌규;전중규;김규용
    • 콘크리트학회논문집
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    • 제25권1호
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    • pp.99-106
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    • 2013
  • 고속 비상체에 의한 충격을 받는 콘크리트는 그 충격력에 의해 관통, 표면관입 및 배면박리뿐만 아니라 균열의 확산에 의해 나타나는 국부적인 파괴 등 정하중을 받을 때와 다른 파괴거동을 보인다. 이러한 콘크리트의 파괴거동은 비상체의 재료적 특성, 충돌속도, 질량 및 기하학적 구조뿐만 아니라 콘크리트의 재료적 특성, 시험체의 크기 및 두께, 보강재료 및 방법 등 다양한 요인에 의해 영향을 받는다. 이 연구에서는 콘크리트 재료의 압축강도에 따른 표면관입깊이 및 배면박리성상에 대하여 평가하고, 섬유보강에 의한 배면박리억제효과에 대하여 검토하고자 하였다. 그 결과 압축강도의 증가로 인하여 표면관입깊이는 감소하였으며, 이 연구 범위의 결과는 수정 NDRC식 및 US ACE식과 유사한 경향을 나타냈다. 반면, 배면박리억제에 있어 압축강도 증가에 의한 영향은 확인할 수 없었으며, 섬유보강에 의한 인성의 향상을 통하여 배면박리를 억제할 수 있었다.

방화석고보드를 부착한 고강도 콘크리트 기둥의 내화성능 (Fire Resistance Performance of High Strength Concrete Columns with Fireproof Gypsum Board)

  • 염광수;전현규
    • 콘크리트학회논문집
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    • 제22권2호
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    • pp.229-235
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    • 2010
  • 기존 건축물의 내화성능 보강과 화재 후 손상을 입은 구조물의 보수에 사용하기 위해 방화석고보드의 두께, 방화석고보드 적용에 따른 면적증가를 최소화하기 위한 시공방법, 종류 그리고 피복두께를 변화시켜 고강도 콘크리트의 내화성능을 평가하였다. 동일하게 제작한 8기의 고강도 콘크리트 기둥에 ISO-834 화재곡선에 따라 180분 내화시험을 실시하여 종방향철근 온도와 콘크리트의 깊이별 온도분포, 방화석고보드의 형상유지성능, 그리고 폭렬발생여부 등의 내화성능을 평가하였다. 15 mm 2장의 방화석고보드를 붙인 실험체의 경우 시공방법에 상관없이 보드가 탈락하여 폭렬이 발생하였다. 하지만, 두께가 30 mm인 경우에는 방화석고보드의 형상유지력이 손실되지 않으면 폭렬방지 및 온도제어가 가능함을 확인하였다. 폭렬발생으로 콘크리트 피복두께에 따른 효과는 비교할 수 없었으며, 보드 시공법에 따른 내화성능의 차이는 미미하다고 판단되었다.

팔라듐 표면처리를 통한 Massive Spalling 현상의 억제 (Retardation of Massive Spalling by Palladium Layer Addition to Surface Finish)

  • 이대현;정보묵;허주열
    • 대한금속재료학회지
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    • 제48권11호
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    • pp.1041-1046
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    • 2010
  • The reactions between a Sn-3.0Ag-0.5Cu solder alloy and electroless Ni/electroless Pd/immersion Au (ENEPIG) surface finishes with various Pd layer thicknesses (0, 0.05, 0.1, 0.2, $0.4{\mu}m$) were examined for the effect of the Pd layer on the massive spalling of the $(Cu,Ni)_6Sn_5$ layer during reflow at $235^{\circ}C$. The thin layer deposition of an electroless Pd (EP) between the electroless Ni ($7{\mu}m$) and immersion Au ($0.06{\mu}m$) plating on the Cu substrate significantly retarded the massive spalling of the $(Cu,Ni)_6Sn_5$ layer during reflow. Its retarding effect increased with an increasing EP layer thickness. When the EP layer was thin (${\leq}0.1{\mu}m$), the retardation of the massive spalling was attributed to a reduced growth rate of the $(Cu,Ni)_6Sn_5$ layer and thus to a lowered consumption rate of Cu in the bulk solder during reflow. However, when the EP layer was thick (${\geq}0.2{\mu}m$), the initially dissolved Pd atoms in the molten solder resettled as $(Pd,Ni)Sn_4$ precipitates near the solder/$(Cu,Ni)_6Sn_5$ interface with an increasing reflow time. Since the Pd resettlement requires a continuous Ni supply across the $(Cu,Ni)_6Sn_5$ layer from the Ni(P) substrate, it suppressed the formation of $(Ni,Cu)_3Sn_4$ at the $(Cu,Ni)_6Sn_5/Ni(P)$ interface and retarded the massive spalling of the $(Cu,Ni)_6Sn_5$ layer.

스퍼 기어의 진동 신호와 비 유막 두께(Specific Film Thickness)의 상관관계에 관한 실험적 연구 (Experimental Investigation to Establish Correlation Between Specific Film Thickness and Vibration Signals in Spur Gear System)

  • 김종식;;이상권
    • 대한기계학회논문집A
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    • 제38권9호
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    • pp.1005-1012
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    • 2014
  • 기어의 구동은 여러 기계요소에서 동력전달을 가능하게 해주는 가장 중요한 요소이다. 이러한 기어 접촉면에서의 상태는 마모, 재료의 변형 그리고 윤활 상태에 따라 크게 좌우되며, 이러한 상태 변화는 기어의 수명에 큰 영향을 준다. 따라서, 이러한 상태 진단에 대한 해법은 원활한 구동을 위한 필수요소이다. 기어의 상태 변화는 연마 마모(Abrasive wear), 점식 (Pitting), 스커핑(Scuffing), 스폴링(Spalling) 등을 유발하며, 이러한 마모들은 기어로부터 발생하는 진동 레벨을 상승시킨다. 본 연구에서는 스퍼 기어를 장착한 기어 박스를 이용한 실험적 연구를 통해 기어의 표면 피로 마모를 평가하기 위해 진동 신호로부터 구해진 통계적 변수들과 Stribeck Curve 와의 상관관계를 검증하였다.

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

  • Zhao, Yiding;Zhang, Yongxing;Yang, Junsheng
    • Advances in concrete construction
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    • 제8권4호
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    • pp.269-276
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    • 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.