• 제목/요약/키워드: Weathering mechanism

검색결과 34건 처리시간 0.029초

암반풍화도에 따른 지질공학적 특성 저감효과 (Effects of Rock Weathering on the Degradation of Engineering Properties)

  • 이창섭;조태진
    • 터널과지하공간
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    • 제15권6호
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    • pp.411-424
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    • 2005
  • 풍화작용은 심부에서 생성된 암석이 지표에서 파괴되고 변질되어 현재의 환경조건과 평형을 이루는 산물을 형성하는 과정이다. 본 연구에서는 국내에서 가장 분포면적이 넓은 화강암질암의 풍화단계별 시료를 채취하여 편광현미경관찰, X-선 회절분석, 전자현미경관찰, 화학분석, 물성시험등을 수행하였다. 실험결과에 의거하여 풍화에 의해 형성되는 2차광물, 특히 점토광물의 형성과정을 확인하였고, 풍화에 따른 암석의 공학적인 성질변화와 물성저하의 메카니즘을 규명하였다.

제주도 한라산조면암의 풍화특성에 관한 연구 (A Study of Weathering Characteristic of Baeknokdam Trachyte in Jeju Island)

  • 이창섭;조태진;이상배;원경식
    • 지질공학
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    • 제17권2호
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    • pp.235-251
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    • 2007
  • 한라산 정상부의 백록담 암체는 백록담조면현무암이 분포하는 동측구역과 한라산조면암이 분포하는 서측구역으로 구분된다. 백록담에서 진행되는 풍화, 암벽붕괴, 낙반은 전반적으로 백록담 서측구역에 분포하는 한라산 조면암의 풍화작용과 밀접한 연관성을 가지며, 동측구역에서는 개별 암석 블록들의 국지적 붕락현상이 발생한다. 본 연구에서는 한라산조 면암 분포지역의 지질학적 및 지형학적 특성을 조사하였으며, 풍화단계별로 조면암 시료를 채취하여 편광현미경분석, X-선 회절분석, 전자현미경관찰, 지화학분석, 공학적 물성시험 등을 수행하였다. 실험결과에 의거하여 한라산조면암의 광물 암석학적 특성변화, 화학적 특성변화와 물리적 특성변화를 분석하였으며, 백록담을 구성하는 조면암체의 풍화특성과 원인을 조사하여 풍화 메커니즘을 고찰하였다.

영양 사암을 대상으로 한 에틸실리케이트 계열 처리제의 강화효과 평가 (Quantitative Evaluation for Effectiveness of Consolidation Treatment by Using the Chemical of Ethyl Silicate Series for the Sandstone in Yeongyang)

  • 이장존;한민수;송치영;전병규;도민환
    • 보존과학연구
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    • 통권30호
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    • pp.125-136
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    • 2009
  • Stone cultural heritages in Korea have a severe damages from chemical and biological weathering because most of them have been situated in outdoors without any suitable protection systems, and this in turn causes deformation and structural damage. To counteract these problems and increase durability, various kinds of conservation materials are used in the conservation and restoration treatments. However until now there are not many practical and technological experiments on this subject. This paper attempts quantitative evaluation of effectiveness about chemical of ethylsilicate based resin for sandstone in Yeongyang-gun. It takes a long time to evaluate durability and side effect after conservation materials treatment. So we use artificial weathering through freezing§ thawing experimental method. As a result of this experiment, porosity and absorptance increased, and elastic wave speed, elastic modules, unconfined compression strength and tensile strength decreased more than before. This study plans to make a scientific method study about weathering factor and mechanism, and to deduce correlation between artificial weathering and natural weathering.

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인공풍화 실험을 이용한 보존처리제의 물성 변화 연구 (A Study on the Change of Conservation Materials Properties Using Artificial Weathering Test)

  • 도민환;한민수;이장존;전병규;송치영
    • 보존과학연구
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    • 통권29호
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    • pp.149-162
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    • 2008
  • Because stone cultural heritages in Korea are mostly situated outdoors without any notable protection, there are severe damages from physical, chemical and biological weathering. And this in turn causes deformation and structural damage. To counteract this problem and increase durability, various kinds of conservation materials are used in the conservation and restoration treatment. However, there are not many practical and technological experiments on this subject. Accordingly this research is for analysis of effect for treatment to make use a resin of the ethyl silicate for the granite in Mt. Nam of Gyeongju. It takes a long time to confirm the test result regarding durability and side effects of the conservatives after treatment. So we built up an artificial environment through freezing and melting test, and evaluated the conservation materials. As a result of this experiment, porosity and absorptivity was increased in accordance with processing of freezing and melting test. But other things such as elastic wave speed, elastic modulus, uniaxial compressive strength and tensile strength was decreased. It will make a plan to form a method of research systematically for mechanism and element of weathering and to elicit a correlation among experiment of artificial weathering and practical natural weathering from next research.

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The Landform Developments in Relation with the Geologic Structures

  • Kim, Joo-Hwan
    • 동굴
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    • 제69호
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    • pp.9-20
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    • 2005
  • Geologic Structures are reflected on the landform development. So lots of studies are emphasized on the individual processes and mechanism of the relationship between geologic structures and landforms. In this study, many cases are represented, such as : weathering, stream directions and structures expecially joints, gnamas, meander bending etc. New D-D Diagrams and photos are available to explain the relations of two factors. Landform developments are depend on geologic structures.

의성 탑리리 오층석탑의 염풍화 특성과 메커니즘 해석 (Salt Weathering Characteristics and Mechanism Interpretation of the Five-Storied Stone Pagoda in Tapri-ri, Uiseong)

  • 이미혜;이명성;이재만;전유근
    • 보존과학연구
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    • 통권33호
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    • pp.57-67
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    • 2012
  • 의성 탑리리 오층석탑은 박리박락, 입상분해, 표면변색 등 물리적 및 화학적 훼손이 발생하여 석탑의 표면이 심하게 훼손되어 있으며, 특히 주요 훼손영역에서는 염에 의한 백화현상이 발생하고 있다. 석탑에서 발생한 염의 SEM-EDS 분석 및 X-선 회절분석 결과, 대표적인 염은 석고로 나타났으며, 일부 영역에서 타라나카이트도 확인되었다. 석탑과 동일한 암석을 선택하여 염풍화 실험을 실시한 결과, 암석의 표면은 염 결정 성장과 함께 염에 의한 백화현상이 발생하였으며 내부는 미세균열 및 공극을 따라 염 수용액이 이동하고 결정화되면서 풍화(박리박락, 입상분해)되는 것으로 나타났다.

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Atmospheric Corrosion Process for Weathering Steel

  • Nagano, Hiroo;Yamashita, Masato
    • Corrosion Science and Technology
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    • 제7권2호
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    • pp.119-124
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    • 2008
  • Steel is generally not corrosion resistant to water with formation of non protective rusts on its surface. Rusts are composed of iron oxides such as $Fe_3O_4$, $\alpha-$, $\beta-$, $\gamma-$and ${\delta}-FeOOH$. However, steel, particularly weathering steel containing small amounts of Cu, Ni and Cr etc., shows good corrosion resistance against rural, industrial or marine environment. Its corrosion rate is exceedingly small as compared with that of carbon steel. According to the exposure test results undertaken in outdoor environments, the atmospheric corrosion rate for weathering steel is only 1 mm for a century. Atmospheric corrosion for steels proceeds under alternate dry and wet conditions. Dry condition is encountered on steel surface on fine or cloudy days, and wet condition is on rainy or snowy days. The reason why weathering steel shows superior atmospheric corrosion resistance is due to formation of corrosion protective rusts on its surface under very thin water layer. The protective rusts are usually composed of two layer rusts; the upper layer is ${\gamma}-FeOOH$ termed as lepidocrocite, and inner layer is nano-particle ${\alpha}-FeOOH$ termed as goethite. This paper is aimed at elucidating the atmospheric corrosion mechanism for steel in comparison with corrosion in bulky water environment by use of empirical data.The summary is as follows: 1. No corrosion protective rusts are formed on steel in bulky water. 2. Atmospheric corrosion for steel is the corrosion under wetting and drying conditions. Corrosion and passivation occur alternately on steel surface. Steel, particularly weathering steel with small amounts of alloying elements such as Cu, Ni and Cr etc. enhances forming corrosion protective rusts by passivation.

유구지역 화강암질 편마암의 풍화작용에 의한 광물 조성의 변화 (Mineralogical Changes in the Weathering Profiles of Carnin Gneiss in the Yoogoo Area, Korea)

  • 이석훈;김수진
    • 한국광물학회지
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    • 제13권3호
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    • pp.121-137
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    • 2000
  • 공주군 유구 일대의 화강암질편마암은 온대습윤기후의 지형적 영향에 기인한 산성환경 및 양호한 배수조건에서의 풍화작용으로 두께가 8m인 깊은 saprolite층과 50cm 이상의 두꺼운 토양층을 형성하였다. 풍화단면에서는 흑운모/질석혼합층 광물, 삼팔면체, 할로이사이트, 캐올리나이트, 일라이트, 이팔면체질식, 스백타이트, 깁사이트, 침철석 등의 풍화광물이 확인되었다. 흑운모의 변질은 질석화작용이 미약한 반면에 풍화단면 전반에서 고령토화작용이 매우 현저한 풍화양상을 보여주며, 흑운모-흑운모/질석 혼합층 광물-질석, 흑운모-할로이사이트, 캐올리나이트, 깁사이트 및 흑운모-일 라이트의 풍화과정을 나타낸다. 흑운모의 풍화작용으로 생성된 고령토광물은 주로 할로이사이트이며, 고령토화작용으로 방출된 Fe는 변질된 흑운모 주변에서 침철석을 형성한다 사장석은 용해-침전작용으로 관상의 할로이사이트를 형성한다. 할로이사이트의 산출양상은 사장석의 용해유형에 따라 방향성이 강한 할로이사이트 집합체와 매우 구불구불한 할로이사이트 집합체로 나타난다. 모암에서 철을 함유하고 있던 광물은 용해되어 모암광물의 가상을 유지한 채 또는 그 주변에서 침철석을 형성한다. 연구지역 화강암질편마암의 단면은 풍화도가 증가할수록 모암 구성광물이 감소하는 반면에 점토광물의 양이 증가하는 전형적인 풍화 양상을 보여주며, 광물의 풍화작용은 산성환경과 양호한 배수환경과 같은 지역적인 조건에 영향을 받아 복잡하고 다양한 풍화광물을 형성하였다.

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플라스틱 소재의 탈변색 열화 메커니즘 분석 (A Study for Degradation Mechanism of Plastic Materials)

  • 윤형준;정원욱;변두진;최기대
    • 한국신뢰성학회지:신뢰성응용연구
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    • 제7권4호
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    • pp.173-181
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    • 2007
  • Out door exposure to daylight and weather climate conditions can cause adverse effect on the properties of automotive plastic materials. The effects of sunlight exposure, especially ultra violet (UV) radiation, can break down the chemical bonds in a polymeric material. This degradation process is called photo-degradation and ultimately leads to color changes, cracking, chalking, the loss of physical properties and deterioration of other properties. To explore the effect of sunlight exposure on the automotive materials, this study investigated photo-oxidation degree and surface property change of molding parts by analytical methods. For the further study, accelerated weathering test methods are proposed, which can correlate with out door weathering, to predict long term performance of automotive plastic materials.

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용해성 암석의 용식 진전에 대한 암석-광물학적 특성 연구 (Petro-mineralogical and Solubility Characterization in Soluble Rocks)

  • 정의진;윤운상;여상진;김정환;이근병;노영욱
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2002년도 봄 학술발표회 논문집
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    • pp.253-260
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    • 2002
  • Chemical weathering processes related with mineralogical characters and ground water condition are very essential engineering problems in soluble rock masses. Detailed geological mapping were performed and 8 samples were collected from the 2 formations including various rock faces to deduce the possibility of the limestone cavity formation and their mechanism. Petrological descriptions and various petro-mineralogical experiments such as XRD analysis, clay mineral analysis, absorptivity test, impurity analysis were conducted to evaluate the cavity making processes. Laboratory solubility test for rock specimen were also carried out under the strong acid (pH=1) condition. From the experimental data and geological mapping data, it is found that the formation of limestone cavities in limestones are strongly related with geological structures such as beddings, cleavages and the contents of impurities rather than CaCO$_3$contents. In case of dolomites, rock textures, grain size, amounts and types of clay minerals as well as geological structures are major controlling factors of cavity forming processes

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