• 제목/요약/키워드: reflective crack

검색결과 6건 처리시간 0.016초

피로파괴에 반사형 광탄성 실험법 응용 (Application of the Reflective Photoelastic Experimental Method to Fatigue Fracture)

  • 남병군;황재석;이효재;백운철
    • 대한기계학회논문집A
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    • 제24권5호
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    • pp.1297-1304
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    • 2000
  • The reflective photoelastic experiment can be used more effectively than the transparent type in industrial fields. Therefore the reflective photoelastic experimental hybrid method applied to the fatigue fracture problems is introduced in this research. It is verified that the reflective photoelastic experimental hybrid method is very useful on the determination of crack propagation velocity and stress intensity factor of the fatigue crack and on the separation of stress components in the vicinity of fatigue crack tip etc.

고탄성 응력흡수층의 반사균열 저항특성 연구 (Behavior of High-elastic Stress Absorbing Interlayer for Reflective Cracking Resistance)

  • 박태순;이요섭
    • 대한토목학회논문집
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    • 제26권3D호
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    • pp.445-451
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    • 2006
  • 본 연구는 노후 콘크리트 포장의 아스팔트 덧씌우기에서 발생하는 반사균열을 억제하기 위한 방안으로 노후 콘크리트와 아스팔트 표층 사이에 응력을 흡수할 수 있는 중간층 혼합물을 개발하기 위하여 수행되었다. 고탄성 응력흡수층은 휨 변형과 수평변형으로 인하여 발생하는 균열응력을 흡수 또는 분산 시킬 수 있는 탄성과 유연성, 균일성 및 불투수성이 요구된다. 본 연구로부터 국외제품을 모델로 국산 바인더를 개발 하였으며 이를 사용하여 제작된 혼합물 시편은 시방규격에 만족하였다. 기존 덧씌우기 공법과 비교한 시험으로부터 고탄성 응력흡수 중간층이 설치된 경우 설치되지 않은 경우에 비하여 전단파괴수명과 수평변위저항도는 약 4배가 증가되었으며 표층재료의 선정에 따라 전단파괴수명은 5배, 수평변위저항도는 9배가 증가되어 고탄성 응력흡수 중간층이 반사균열 억제에 우수한 것으로 본 연구에 나타났다.

Multi-Scale Heterogeneous Fracture Modeling of Asphalt Mixture Using Microfabric Distinct Element Approach

  • Kim Hyun-Wook;Buttler William G.
    • 한국도로학회논문집
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    • 제8권1호
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    • pp.139-152
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    • 2006
  • Many experimental and numerical approaches have been developed to evaluate paving materials and to predict pavement response and distress. Micromechanical simulation modeling is a technology that can reduce the number of physical tests required in material formulation and design and that can provide more details, e.g., the internal stress and strain state, and energy evolution and dissipation in simulated specimens with realistic microstructural features. A clustered distinct element modeling (DEM) approach was implemented In the two-dimensional particle flow software package (PFC-2D) to study the complex behavior observed in asphalt mixture fracturing. The relationship between continuous and discontinuous material properties was defined based on the potential energy approach. The theoretical relationship was validated with the uniform axial compression and cantilever beam model using two-dimensional plane strain and plane stress models. A bilinear cohesive displacement-softening model was implemented as an intrinsic interface and applied for both homogeneous and heterogeneous fracture modeling in order to simulate behavior in the fracture process zone and to simulate crack propagation. A disk-shaped compact tension test (DC(T)) with heterogeneous microstructure was simulated and compared with the experimental fracture test results to study Mode I fracture. The realistic arbitrary crack propagation including crack deflection, microcracking, crack face sliding, crack branching, and crack tip blunting could be represented in the fracture models. This micromechanical modeling approach represents the early developmental stages towards a 'virtual asphalt laboratory,' where simulations of laboratory tests and eventually field response and distress predictions can be made to enhance our understanding of pavement distress mechanisms, such its thermal fracture, reflective cracking, and fatigue crack growth.

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아스팔트 콘크리트 포장용 균열실링재의 부착특성 평가 (Evaluation of Adhesion Characteristics of Crack Sealants Used in Asphalt Concrete Pavement)

  • 이재준;김승훈;백종은;임재규;김용주
    • 한국도로학회논문집
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    • 제17권2호
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    • pp.55-62
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    • 2015
  • Cracking is an inevitable fact of asphalt concrete pavements and plays a major role in pavement deterioration. Pavement cracking is one of the main factors determining the frequency and method of repair. Cracks can be treated with a number of preventative maintenance actions, including overlay surface treatments such as slurry sealing, crack sealing, or crack filling. Pavement cracks can show up as one or all of the following types: transverse, longitudinal, fatigue, block, reflective, edge, and slippage. Crack sealing is a frequently used pavement maintenance treatment because it significantly extends the pavement service life. However, crack sealant often fails prematurely due to a loss of adhesion. Because current test methods are mostly empirical and only provide a qualitative measure of the bond strength, they cannot accurately predict the adhesive failure of the sealant. This study introduces a laboratory test aimed at assessing the bonding of hot-poured crack sealant to the walls of pavement cracks. A pneumatic adhesion tensile testing instrument (PATTI) was adopted to measure the bonding strength of the hot-poured crack sealant as a function of the curing time and temperature. Based on a limited number of test results, the hot-poured crack sealants have very different bonding performances. Therefore, this test method can be proposed as part of a newly developed performance-based standard specification for hot-poured crack sealants for use in the future. PURPOSES : The purpose of this study was to evaluate both the adhesion and failure performance of a crack sealant as a function of its curing time and curing temperature. METHODS: A pneumatic adhesion tensile testing instrument (PATTI) was adopted to measure the adhesion performance of a crack sealant as a function of the curing time and curing temperature. RESULTS: With changes in the curing time, curing temperature, and sealant type, the bond strengths were found to be significantly different. Also, higher bond strengths were measured at lower temperatures. Different sealant types produced completely different bond strengths and failure behaviors. CONCLUSIONS: The bonding strength of an evaluated crack sealant was shown to differ depending on various factors. Two sealant types, which were composed of different raw materials, were shown to perform differently. The newly proposed test offers the possibility of evaluating and differentiating between different crack sealants. Based on alimited number of test results, this test method can be proposed as part of a newly developed performance-based standard specification for crack sealants or as part of a guideline for the selection of hot-poured crack sealant in the future.

포장가속시험 및 경제성 분석을 통한 절삭 덧씌우기와 비절삭 덧씌우기의 비교 (Comparison of Asphalt Concrete Inlay and Overlay for Rehabilitation of Aged Cement Concrete Pavement through Accelerated Pavement Testing and Life-Cycle Cost Analysis)

  • 서영찬;권홍준;이응준
    • 한국도로학회논문집
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    • 제19권6호
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    • pp.75-81
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    • 2017
  • PURPOSES : So far, aged cement concrete pavement on express highways has been rehabilitated mainly with asphalt concrete inlay. However, potholes were the major problem, and they shortened the life of the inlay mainly owing to the poor drainage of water once it infiltrated the interface of the concrete and asphalt. The purpose of this study is to compare the performance and economic efficiency of asphalt overlay and inlay. METHODS : Overlay and inlay were compared through accelerated pavement testing, and a life-cycle cost analysis was conducted in this study using the CA4PRS program. RESULTS and CONCLUSIONS : It was found from accelerated pavement testing that the overlay exhibited reflective crack resistance that was more than twice as effective as that of inlay. The total cost (construction cost + user cost) within the analysis period (20 years) of the overlay was 37% lower than that of the inlay.

차선재료의 내구성 향상을 위한 내마모성 시험 적용 연구 (Abrasion-Resistant Road Markings for Improved Durability Lane to Wear Simulators Test)

  • 이창근;박진환;오흥운
    • 한국도로학회논문집
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    • 제13권3호
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    • pp.75-82
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    • 2011
  • 도로표지용 도료의 품질기준은 KS M 6080의 품질기준을 만족하는 제품들의 경우에도 시공 후 일정기간이 경과한 후에는 도료 자체의 부착력 문제로 교통량 증가에 따른 자동차 차륜에 의한 도료 자체의 마모 손실에 의하여 재귀반사 기능을 부여하는 유리알의 마모 및 탈리로 시인성이 급격히 저하되고 있다. 이에 따른 야간 교통 사고율 증가와 동시에 추가 교통 안전을 위한 부가 보완시공으로 안전시설 제비용이 직접비용으로 유발되고 있으며, 직접비용보다 추가공사로 인한 교통체증으로 사회간접 비용이 증가되고 있다. 특히, 차선의 품질 규격이 KS M 6080 제품에 만족한다 하더라도 빗물의 수막(水膜)에 의한 유리알의 굴절율 차로 재귀반사기능을 하는 차선 도료용 유리알의 기능을 발휘하지 못하여 운전자의 시인성은 열악함을 알 수 있다. 따라서, 국외에서 많이 사용되고 있는 마모성이 우수한 수용성 차선도료, 고성능 융착식 도료, 상온경화형 도료를 도입하여 성능을 비교 검토하였다. 본 연구에서는 차선재료의 내구성 향상을 위해 EN 1436규격에 의한 내마모성 시험을 수용성, 융착식, 상온경화형 도료에 실시하여, 재귀반사도 성능이 우수한 차선재료의 적용 가능성을 확인하였다.