• 제목/요약/키워드: erosion resistance

검색결과 250건 처리시간 0.032초

침식저항도 차이에 따른 지형발달 및 지형인자에 대한 연구 - 2차원 수치지형발달모형을 이용하여 - (A Theoretical Study on the Landscape Development by Different Erosion Resistance Using a 2d Numerical Landscape Evolution Model)

  • 김동은
    • 자원환경지질
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    • 제55권5호
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    • pp.541-550
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    • 2022
  • 구조지형은 기반암 단층과 암석의 경연차와 같은 약대를 따라 풍화, 침식의 프로세스의 영향을 받아 만들어진 지형이다. 지구 조지형은 현재 활동하고 있는 지진, 화산, 단층과 같은 지구조운동으로 인해 만들어진 지형이다. 우리나라와 같이 판의 내부에 위치하여 지구조운동의 영향이 상대적으로 적고 기후적 특성을 고려하면 실제 현장에서 이 둘을 명확하게 구분하는 것은 어렵다. 최근 활성단층 연구의 증가에 따라 지구조지형에 초점을 맞추어 연구가 진행되고 있으나 더 명확한 지구조지형을 분류하기 위해서는 기반암의 특성에 따른 구조지형의 발달 양상에 대한 이해가 필요하며 기반암의 특성만을 따로 비교분석하기에는 현재 지형은 지구조운동과 기후의 영향을 동시에 받았기 때문에 구조적 요인만을 대상으로 하기에는 한계가 있다. 본 연구는 2차원 수치지형발달모형을 이용하여 기후와 지구조운동에 의한 요인을 제한하고, 기반암의 차이에 따른 지형의 시공간적 발달특성에 대해 연구하였다. 기반암 차이에 따른 지형특성을 구분하기 위해 사면·하천과 관련된 지형분석을 하였다. 연구결과 침식가능성이 높은 지형은 평균고도, 기복량, 경사도, 하천차수, 하천경사도지수 모두 낮게 나왔다. 또한 기반암 하천분석 결과 기반암 경계부분에서 천이점이 나왔다. 실제 지형을 연구할 때 지금까지는 지구조운동으로 인한 것인지, 구조적 요인을 받은 것인지 구분할 때 천이점에 있는 기반암의 차이만 고려하였다. 본 연구는 지구조지형과 구조지형을 분류할 때 구조지형으로 분류하기 위해서는 기반암의 차이뿐만 아니라 다양한 지형인자들을 고려하여 종합적으로 판단하여야 할 것임을 시사한다.

지반-구조물 경계면의 루핑 포텐셜 평가 (Evaluation of Roofing Potential at the Ground-structure Interface)

  • 박정만;김강현;신종호
    • 한국지반환경공학회 논문집
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    • 제19권3호
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    • pp.25-33
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    • 2018
  • 파이핑은 가장 대표적인 제방의 붕괴 유형으로 불투수성 수리구조물과 지반 경계면에서 Backward Erosion Piping인 루핑(Roofing)이 흔하게 발생한다. 루핑에 대한 검토는 주로 경험적 방법인 크립비를 이용하지만 이는 지반-구조물 경계면의 특성을 고려하지 않는 문제가 있다. 본 연구에서는 지반-구조물 경계면 특성이 루핑에 미치는 영향을 평가하기 위해 모형시험과 수치해석을 이용하여 파이핑 위험도를 고찰하였다. 모형시험에서 경계면 조도가 커질수록 파이핑 포텐셜이 감소함을 확인하였으며, 이를 수치해석에 적용하였다. 기존의 일반적인 수치해석방법은 수위차만을 고려하므로 경계면에서의 입자거동을 적절히 모사할 수 없다. 논문에서는 침투해석을 통해 침투력을 구하고, 입자해석기법을 이용해 파이핑의 입자거동을 모사한 침투-입자거동 연계해석을 수행하여 지반-구조물 경계면 조건에 따른 루핑 포텐셜을 조사하였다. 해석결과 경계면의 조도가 감소할수록 루핑 발생 확률이 증가함을 확인하였다.

연속용융 도금라인 용 고내침식 Fe계 합금 개발 (Development of High Erosion Resistant Fe-based Alloy for Continuous Hot Dipping Line)

  • 백민숙;김용철;백경철;곽준섭;윤동주
    • 한국표면공학회지
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    • 제53권3호
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    • pp.95-103
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    • 2020
  • In this study, the material used in the hot dip galvanizing equipment was poorly corrosion-resistant, so it was performed to solve the cost and time problems caused by equipment replacement. The theoretical calculation was performed using the DV-Xα method(Discrete Variational Local-density approximation method). The alloy (STS4XX series) of the equipment currently used has a martensite phase. Therefore, the theoretical calculation was performed by applying P4 / mmm, which is a tetragonal structure. The new alloy was chosen by designing theoretical values close to existing materials. Considering elements that contribute to corrosion, most have high prices. Therefore, the design was completed by adjusting the content using only the components of the reference material in the theoretical design. The final design alloys were chosen as D6 and D9. Designed D6 and D9 were dissolved and prepared using an induction furnace. After the heat treatment process was completed, the corrosion rate of the alloys was confirmed by using the potentiodynamic polarization test. The surface of the prepared alloys were processed horizontally and then polished to # 1200 using sand paper to perform potentiodynamic polarization test. Domestic products: 4.735 mpy (mils / year), D6: 0.9166 mpy, D9: 0.3372 mpy, alloys designed than domestic products had a lower corrosion rate. Therefore, the designed alloy was expected to have better erosion resistance.

해양 환경 하에서 16.7Cr-10Ni-2Mo 스테인리스강의 표면 손상에 미치는 캐비테이션의 영향 (Effect of cavitation on surface damage of 16.7Cr-10Ni-2Mo stainless steel in marine environment)

  • 정상옥;한민수;김성종
    • Corrosion Science and Technology
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    • 제14권5호
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    • pp.239-246
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    • 2015
  • Stainless steel is generally known to have characteristics of excellent corrosion resistance and durability, but in a marine environment it can suffer from localized corrosion due to the breakdown of passivity film due to chloride ion in seawater. Furthermore, the damage behaviors are sped up under a cavitation environment because of complex damage from electrochemical corrosion and cavitation-erosion. In this study the characteristics of electrochemical corrosion and cavitation erosion behavior were evaluated on 16.7Cr-10Ni-2Mo stainless steel under a cavitation environment in natural seawater. The electrochemical experiments have been conducted at both static conditions and dynamic conditions inducing cavitation with different current density parameters. The surface morphology and damage behaviors were compared after the experiment. After the cavitation test with time variables morphological examinations on damaged specimens were analyzed by using a scanning electron microscope and a 3D microscope. the galvanostatic experiment gave a cleaner surface morphology presented with less damage depth at high current density regions. It is due to the effect of water cavitation peening under the cavitation condition. In the cavitation experiment, with amplitude of $30{\mu}m$ and seawater temperature of $25^{\circ}C$, weight loss and cavitation-erosion damage depth were dramatically increased after 5 hours inducing cavitation.

해양 환경 하에서 431 스테인리스강의 하이브리드 실험을 통한 캐비테이션 손상 거동 (Cavitation Damage Behavior for 431 Stainless Steel by Hybrid Test in Sea Water)

  • 정상옥;김성종
    • 한국표면공학회지
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    • 제46권6호
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    • pp.271-276
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    • 2013
  • The demand for stainless steel is continuously increasing with the development in offshore industry due to its excellent corrosion resistance characteristics. However, it suffers cavitation-erosion in application of high rotating fluid and the damage accelerates in combination with electrochemical corrosion because of Cl-ion in sea water. This paper investigated the complex damage behavior for 431 stainless steel, that is one of martensite stainless steels, through the hybrid test in sea water. Various experiments were carried out, including potential measurement, anodic/cathodic polarization experiment and Tafel analysis. Surface morphology was observed and damage depth was analyzed by SEM and 3D microscope after each experiment, respectively. The results revealed that more active potential was observed under cavitation condition than static condition due to breakdown of passive film and activation of charge transfer, and that higher corrosion current density was obtained under cavitation condition due to synergistic effect of corrosion and erosion.

댐.제방유실 사고사례를 통한 재해경감 대책기술 (Disaster reduction technique based on the case study on embankment failures)

  • 홍병만;김현태;강병윤;류기정
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2005년도 지반공학 공동 학술발표회
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    • pp.117-128
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    • 2005
  • Korea is affected by typhoon 2-3 times a year, and 50${\sim}$60 % of annual rainfall is concentrated during summer with heavy daily precipitation. Recently such natural conditions cause many of failures or damages of reservoirs and embankments. Overflow by heavy flood is the main cause that results 54.2 % of total embankment failures with damages of spillway, outlet channel and stilling basin. Since damages by overflow are triggered by scour of soils nearby the structures, use of proper backfill materials with great resistance against erosion should be considered and application of suitable construction method to protect erosion may be adopted. Most failures of levee are caused by piping along the surface of cross-structure underneath levee. Such failures may be protected by deep consideration of piping at the stage of design and good quality control during construction. Sufficient magnitude of spillway and outlet channel is the ideal way to prevent failures by the flood. For existing structures, remodeling with reinforcement to protect against flood with review of required storage of dam should be considered.

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EB-PVD법으로 코팅된 Y2O3의 내플라즈마 특성 (Plasma Resistances of Yttria Deposited by EB-PVD Method)

  • 김대민;윤소영;김경범;김희식;오윤석;이성민
    • 한국세라믹학회지
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    • 제45권11호
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    • pp.707-712
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    • 2008
  • Plasma resistant nanocrystalline $Y_2O_3$ films were deposited on alumina substrates through the electron-beam PVD technique. Increasing substrate temperature to $600^{\circ}C$ resulted in the textured microstructures with significantly enhanced adhesion force of the coating to the substrate. During the exposure to fluorine plasma, erosion rate of the coated specimen was higher than that of a sintered yttria specimen, but significantly lower than that of a single crystalline alumina. Considering the adhesion and erosion behaviors observed in the coated specimen prepared at $600^{\circ}C$, the deposition technique appears effective in reducing contamination particles generated from the ceramic parts in the plasma environment.

Meander Flume Outlet Sediment Scour Analysis of a Boxed Culvert

  • Thu Hien Thi Le;VanChienNguyen;DucHauLe
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2023년도 학술발표회
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    • pp.35-35
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    • 2023
  • The main reason for its instability is sediment scouring downstream of hydraulic structures. Both physical and numerical models have been used to investigate the influence of soil properties on scour hole geometry. Nevertheless, no research has been conducted on resistance parameters that affect sedimentation and erosion. In addition, auxiliary structures like wing walls, which are prevalent in many real-world applications, have rarely been studied for their impact on morphology. The hydraulic characteristics of steady flow through a boxed culvert are calibrated using a 3D Computational Fluid Dynamics model compared with experimental data in this study, which shows a good agreement between water depth, velocity, and pressure profiles. Test cases showed that 0.015 m grid cells had the lowest NRMSE and MAE values. It is also possible to quantify sediment scour numerically by testing roughness/d50 ratios (cs) and diversion walls at a meander flume outlet. According to the findings, cs = 2.5 indicates a close agreement between numerical and analytical results of maximum scour depth after the culvert; four types of wing walls influence geometrical deformation of the meander flume outlet, resulting in erosion at the concave bank and deposition at the convex bank; two short headwalls are the most appropriate solution for accounting for small changes in morphology. A numerical model can be used to estimate sediment scour at the meander exit channel of hydraulic structures based on the roughness parameter of soil material and headwall type.

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해수 열교환기용 재료의 부식특성에 관한 전기 화학적 연구 (An Electrochemical Study on the Corrosion Property of Materials for Sea Water Heat Exchange System)

  • 김진경;김강희;김성종;박근현;문경만
    • Journal of Advanced Marine Engineering and Technology
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    • 제26권1호
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    • pp.99-107
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    • 2002
  • Recently all kinds of structural materials are subjected to the severe corrosive environment. Especially corrosion problems of heat exchanger such as galvanic corrosion, erosion and cavitation raised by both contaminated solution and high velocity of fluid to increase cooling effect of heat exchanger have been frequently reported in these days. In this study two kinds of sheet materials and five kinds of tube materials are used for galvanic corrosion characteristics and their corrosion current density calculation. The tube materials having the most galvanic corrosion resistance between tube and sheet of heat exchanger were Al Brass(68700) and Al Brass(C6872TS) and although Ti tube predominantly indicated the highest individual corrosion resistance among those five tube materials. it appeared that Ti tube can be allowed as sheet materials to get galvanic corrosion easily. However it is considered that Cu-Ni tube materials is not only easy to produce galvanic corrosion significantly between tube and sheet regardless of kinds of sheet materials but also is appeared considerably its own high corrosion current density

장시간 연소용 초소형 저삭마 목삽입재 선정을 위한 내열성능 평가 (Thermal Performance Evaluations on High-Erosion Resistance Materials for Very Small Nozzle Throat Inserts)

  • 강윤구;박종호
    • 한국항공우주학회지
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    • 제37권12호
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    • pp.1245-1251
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    • 2009
  • 고온/고압, 장시간 연소조건에서 비삭마에 가까운 삭마 특성을 갖는 초소형 목삽입재 선정을 위한 연구를 수행하였다. 평가 소재로서 C/SiC, CIT, W/$Y_2O_3$를 선정하였으며, 연소시간 20초의 내열성능평가모타로 시험하였다. 시험 결과 W/$Y_2O_3$가 가장 우수하였으나, 균열이 발생하였다. 본 연구를 통하여 각 소재들의 열반응 특성 및 내열 성능을 이해할 수 있었으며, W/$Y_2O_3$의 적용가능성을 확인하였다.