• 제목/요약/키워드: Void formation

검색결과 164건 처리시간 0.023초

COMPARATIVE ANALYSIS OF STRUCTURAL CHANGES IN U-MO DISPERSED FUEL OF FULL-SIZE FUEL ELEMENTS AND MINI-RODS IRRADIATED IN THE MIR REACTOR

  • Izhutov, Aleksey.L.;Iakovlev, Valeriy.V.;Novoselov, Andrey.E.;Starkov, Vladimir.A.;Sheldyakov, Aleksey.A.;Shishin, Valeriy.Yu.;Kosenkov, Vladimir.M.;Vatulin, Aleksandr.V.;Dobrikova, Irina.V.;Suprun, Vladimir.B.;Kulakov, Gennadiy.V.
    • Nuclear Engineering and Technology
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    • 제45권7호
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    • pp.859-870
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    • 2013
  • The paper summarizes the irradiation test and post-irradiation examination (PIE) data for the U-Mo low-enriched fuel that was irradiated in the MIR reactor under the RERTR Program. The PIE data were analyzed for both full-size fuel rods and mini-rods with atomized powder dispersed in Al matrix as well as with additions of 2%, 5% and 13% of silicon in the matrix and ZrN protective coating on the fuel particles. The full-size fuel rods were irradiated up to an average burnup of ${\sim}60%^{235}U$; the mini-rods were irradiated to an average burnup of ${\sim}85%^{235}U$. The presented data show a significant increase of the void fraction in the U-Mo alloy as the U-235 burnup rises from ~ 40% up to ~ 85%. The effect of irradiation test conditions and U-235 burnup were analyzed with regard to the formation of an interaction layer between the matrix and fuel particles as well as generation of porosity in the U-Mo alloy. Shown here are changes in distribution of U fission products as the U-235 burnup increases from ~ 40% up to ~ 85%.

개별요소법을 활용한 도로함몰 발생과 전개거동 예측 (DEM Simulation on the Initiation and Development of Road Subsidence)

  • 김연호;박성완
    • 한국지반공학회논문집
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    • 제33권7호
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    • pp.43-53
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    • 2017
  • 최근 도시지역에서 빈번하게 발생하는 도로함몰은 지하에 생성된 동공으로 인해 지표면이 붕괴되는 현상을 의미한다. 지하 공간에서 동공 생성 과정과 생성된 동공이 도로함몰로 이어지는 현상을 이해하기 위해서는 동공의 형성 메커니즘을 명확히 이해할 필요가 있다. 따라서 본 연구에서는 실제 사례와 여러 모델 시험 결과를 분석하여 두 가지 가능한 메커니즘을 제시하였으며 각 메커니즘에 대해 개별요소법 기반의 수치해석 시뮬레이션을 수행하였다. 특히, 도로함몰 영향인자 중 토사 유출구의 크기와 지반의 간극비, 지반 구성 입자 형상의 영향을 확인하기 위한 수치해석을 통해 유출구 특성과 지반 조건에 따라 입자 손실과 지표 침하가 다르게 발생할 수 있음을 확인하였다. 또한, 불연속 침하 해석 결과로 본 연구에서 제시한 도표를 통해 동공의 지름과 심도를 통해 지반의 포화 시 거동을 예측할 수 있다.

해양구조용 강재의 국부취화영역에 관한 연구 (Local brittle zone of offshore structural steel welds)

  • 김병천;엄정현;이종섭;이성학;이두영
    • Journal of Welding and Joining
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    • 제7권2호
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    • pp.35-48
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    • 1989
  • This study is concerned with a correlation of microstructure and local brittle zone (LBZ) in offshore structural steel welds. The influence of the LBZ on fracture toughness was investigated by means of simulated heat-affected zone (HAZ) tests as well as welded joint tests. Micromechanical processes involved in void and cleavage microcrack formation were also identified using notched round tensile tests and subsequent SEM observations. The LBZ in the HAZ of a multiphase welded joint is the interstitially reheated coarse grained HAZ, which is influenced by metallurgical factors such as effective grain size, the major matrix structure and the amount of high-carbon martensite-austenite (M-A) constituents. The experimental results indicate that Chirpy energy was found to scale monotonically with the amount of M-A constituents, confirming that the M-A constituent is the major microstructural factor controlling the HAZ toughness. In addition, voids and microcracks are observed to initiate at M-A constituents by the shear cracking process. Thus, the M-A constituent played an important role in initiating the voids and microcracks, and consequently caused brittle fracture.

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ECAE 전단 가공된 5083 알루미늄 합금의 고변형률 변형거동 (High Strain Rate Deformation Behavior of 5083 Aluminum Alloy Prepared via Equal Channel Angular Extrusion)

  • 김양곤;고영건;신동혁;이성학
    • 대한금속재료학회지
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    • 제47권7호
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    • pp.397-405
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    • 2009
  • The high strain rate deformation behavior of ultra-fine grained 5083 aluminum alloys prepared via equal channel angular (ECA) extrusion was investigated in this study. The microstructure of ECA extruded specimens consisted of ultra-fine grains, and contained a considerable amount of second phase particles, which were fragmented and distributed homogeneously in the matrix. According to the dynamic torsion test results, the maximum shear stress and fracture shear strain of the route A (no rotation) specimen were lower than those of route C ($180^{\circ}$ rotation) specimen since that adiabatic shear bands of $100{\mu}m$ in width were formed in the route A specimen. The formation of adiabatic shear bands was addressed by concepts of critical shear strain, deformation energy required for void initiation, and microstructural homogeneity associated with ECA operations.

Spectroscopic Ellipsometry를 이용한 표면 및 박막의 분석 (Analysis of Surface and Thin Films Using Spectroscopic Ellipsometry)

  • 김상열
    • 한국광학회지
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    • 제1권1호
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    • pp.73-86
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    • 1990
  • The technique of Spectroscopic Ellipsometry (SE) has been examined with emphasis on its inherent sensitivity to the existence of thin films or surface equivalents. A brief review of related theories like the Fresnel reflection coefficients, the effect of a multilayer upon reflectivities, together with the validity of the effective medium theory and the modelling procedure, is followed by a short description of the experimental setup of a rotating polarizer type SE as well as the necessful expressions which lead to tan and cos. Out of its numerous, successful applications, a few are exampled to convince a reader that SE can be applied to a variety of research fields related to surface, interface and thin films. Specifically, those are adsorption and/or desorption on metals or semiconductors, oxidation process, formation of passivation layers on an electrode, thickness determination, interface between semiconductor and its oxide, semiconductor heterojunctions, surface microroughness, void distribution of dielectric, optical thin films, depth profile of multilayered samples, in-situ or in-vitro characterization of a solid surface immersed in electrolyte during electrochemical, chemical, or biological treatments, and so on. It is expected that the potential capability of SE will be widely utilized in a very near future, taking advantage of its sensitivity to thin films or surface equivalents, and its nondestructive, nonperturbing characteristics.

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Assessment of the swelling potential of Baghmisheh marls in Tabriz, Iran

  • Asghari-Kaljahi, Ebrahim;Barzegari, Ghodrat;Jalali-Milani, Shahrokh
    • Geomechanics and Engineering
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    • 제18권3호
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    • pp.267-275
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    • 2019
  • Tabriz is a large Iranian city and the capital of the East Azerbaijan province. The bed rock of this city is mainly consisted of marl layers. Marl layers have some outcrops in the northern and eastern parts of city that mainly belong to the Baghmisheh formation. Based on their colors, these marls are classified into three types: yellow, green, and gray marls. The city is developing toward its eastern side wherein various civil projects are under construction including tunnels, underground excavation, and high-rise building. In this regard, the swelling behavior assessment of these marls is of critical importance. Also, in lightweight structures with foundation pressure less than swelling pressure, several problems such as walls cracking and jamming of door and windows may occur. In the present study, physical properties and swelling behavior of Baghmisheh marls are investigated. According to the X-ray diffractometer (XRD) results, the marls are mainly composed of Illite, Kaolinite, Montmorillonite, and Chloride minerals. Type and content of clay minerals and initial void ratio have a decisive role in swelling behavior of these marls. The swelling potential of these marls was investigated using one-dimensional odometer apparatus under stress level up to 10 kPa. The results showed that yellow marls have high swelling potential and expansibility compared to the other marls. In addition, green and gray marls showed intermediate and low swelling potential and swelling pressure, respectively.

Mode-I fracture toughness of carbon fiber/epoxy composites interleaved by aramid nonwoven veils

  • Beylergil, Bertan;Tanoglu, Metin;Aktas, Engin
    • Steel and Composite Structures
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    • 제31권2호
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    • pp.113-123
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    • 2019
  • In this study, carbon fiber/epoxy (CF/EP) composites were interleaved with aramid nonwoven veils with an areal weight density of $8.5g/m^2$ to improve their Mode-I fracture toughness. The control and aramid interleaved CF/EP composite laminates were manufactured by VARTM in a [0]4 configuration. Tensile, three-point bending, compression, interlaminar shear, Charpy impact and Mode-I (DCB) fracture toughness values were determined to evaluate the effects of aramid nonwoven fabrics on the mechanical performance of the CF/EP composites. Thermomechanical behavior of the specimens was investigated by Dynamic Mechanical Analysis (DMA). The results showed that the propagation Mode-I fracture toughness values of CF/EP composites can be significantly improved (by about 72%) using aramid nonwoven fabrics. It was found that the main extrinsic toughening mechanism is aramid microfiber bridging acting behind the crack-tip. The incorporation of these nonwovens also increased interlaminar shear and Charpy impact strength by 10 and 16.5%, respectively. Moreover, it was revealed that the damping ability of the composites increased with the incorporation of aramid nonwoven fabrics in the interlaminar region of composites. On the other hand, they caused a reduction in in-plane mechanical properties due to the reduced carbon fiber volume fraction, increased thickness and void formation in the composites.

Flow Characteristics Analysis for the Chemical Decontamination of the Kori-1 Nuclear Power Plant

  • Cho, Seo-Yeon;Kim, ByongSup;Bang, Youngsuk;Kim, KeonYeop
    • 방사성폐기물학회지
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    • 제19권1호
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    • pp.51-58
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    • 2021
  • Chemical decontamination of primary systems in a nuclear power plant (NPP) prior to commencing the main decommissioning activities is required to reduce radiation exposure during its process. The entire process is repeated until the desired decontamination factor is obtained. To achieve improved decontamination factors over a shorter time with fewer cycles, the appropriate flow characteristics are required. In addition, to prepare an operating procedure that is adaptable to various conditions and situations, the transient analysis results would be required for operator action and system impact assessment. In this study, the flow characteristics in the steady-state and transient conditions for the chemical decontamination operations of the Kori-1 NPP were analyzed and compared via the MARS-KS code simulation. Loss of residual heat removal (RHR) and steam generator tube rupture (SGTR) simulations were conducted for the postulated abnormal events. Loss of RHR results showed the reactor coolant system (RCS) temperature increase, which can damage the reactor coolant pump (RCP)s by its cavitation. The SGTR results indicated a void formation in the RCS interior by the decrease in pressurizer (PZR) pressure, which can cause surface exposure and tripping of the RCPs unless proper actions are taken before the required pressure limit is achieved.

Geotechnical behaviour of nano-silica stabilized organic soil

  • Kannan, Govindarajan;Sujatha, Evangelin Ramani
    • Geomechanics and Engineering
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    • 제28권3호
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    • pp.239-253
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    • 2022
  • Suitable techniques to stabilize organic soil and improve its engineering behaviour are in demand. Despite various alternatives, nano-additives proved to be an effective stabilizer owing to their strength enhancing properties. The study focuses on using nano-silica as a potential stabilizer to improve organic silt. Soil was treated with four dosages of nano-silica namely 0.2%, 0.4%, 0.6% and 0.8% of dry weight of the soil. Nano-silica treated soil showed a strength increase of nearly 25% at a dosage of 0.4% after curing for two hours. Strength of the treated soil improved with age. Strength improved by nearly 62.9% after 28 days of curing and 221.4% after 180 days of curing due to formation of Calcium - Silicate - Hydrate (CSH) gel in the soil matrix. Dosage of 0.6% nano-silica is observed to be the optimum dosage. Coefficient of permeability and compression index showed an increase by 13.32 and 5.5 times respectively owing to aggregation of particles and creation of void spaces as visualized from the scanning electron micrographs. Further model foundation study and numerical parametric studies using PLAXIS 2D indicate that optimized and economic results can be obtained by varying the additive dosage with depth.

압축강도 300MPa 이상의 초고강도 분체콘크리트 개발을 위한 실험적 연구 (An Experimental Study on Mechanical Properties of Ultra-High Strength Powder Concrete)

  • 조병완;윤광원;박정훈;김헌
    • 콘크리트학회논문집
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    • 제22권3호
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    • pp.287-295
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    • 2010
  • 본 연구에 사용한 시멘트는 보통 포틀랜드 시멘트이며, 공극 최소화를 위한 충전재는 미세석영을 사용하였고 고강도화에 따른 취성파괴 문제를 개선하기위해 강섬유를 사용하여 압축강도 300 MPa 이상의 초고강도 분체콘크리트를 개발 하고자 하였다. 콘크리트의 강도를 크게 향상시키기 위한 연구의 일환으로 계면영역의 부착강도를 향상시킬 수 있는 크기 0.6 mm 이하의 규사, 백운석, 보크사이트, 페로실리콘을 선정한 후 각각의 배합비, 양생조건을 달리하여 압축강도를 비교분석 하였다. 초고강도 분체콘크리트는 보통콘크리트와 달리 사용재료의 영향이 대단히 중요하다. 분체 콘크리트의 압축강도 측정 결과 페로실리콘 > 보크사이트 > 백운석 > 규사 순으로 골재의 강도가 압축강도에 큰 영향을 미치는 경향을 알 수 있었으며 페로실리콘의 경우 시멘트 중량 기준하여 혼입량 110%일 때 가장 큰 강도를 나타내었다. SEM 촬영 결과 C-S-H수화물이 비교적 많이 생성되었고, 고온고압양생으로 토버모라이트와 조놀라이트가 생성된 것을 확인 하였다. 또한 골재의 세립화, 분체의 치밀충전화 및 반응성 재료의 사용으로 인해 페이스트가 고강도화 되고, 강섬유를 사용하여 인성을 보강함으로써, 28일 압축강도 341 MPa의 초고강도 분체콘크리트를 성공적으로 개발 하였다.