• 제목/요약/키워드: Fine particle content

검색결과 224건 처리시간 0.023초

Physicochemical characteristics of rice variety for dry-milled flour

  • Yoon, Mi-Ra;Kwak, Jieun;Lee, Jeom-Sig;Won, Yong-Jae;Kim, Mi-Jung;Choi, Induck;Jeon, Yong-Hee;Kim, Sun Lim
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.294-294
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    • 2017
  • Rice (Oryza sativa L.) is one of the main agricultural crops in Asian countries, including Korea, and is considered as the most important staple food in the world. Rice is also processed into flour, which is consumed through various foods such as cake, noodle, bread, and confectionary. Rice flour quality is highly dependent on variety and milling conditions. Producing rice flour with fine particles is more difficult than wheat flour because of its grain hardness. The Korean rice varieties representing different amylose contents were selected for this study. The relationship between the morphological and starch characteristics of rice kernels and the appropriate varieties for producing good-quality, dry-milled rice flour were examined. The hardness of the rice kernels was determined by measuring the pressure at the grain breakage point. The damaged starch content of the rice flour was determined using a Megazyme starch damage assay kit. The particle-size distribution of the rice flour was measured as the volume-base distribution using a laser-diffraction particle size analyzer. The mean particle-size distribution of the dry-milled flour obtained was between $65.3{\sim}105.1{\mu}m$ among the rice varieties. The opaque, non-glutinous, Seolgaeng rice demonstrated a narrow peak at the fine size, whereas the entire particle-distribution range for other varieties was wide. Seolgaeng exhibited significantly lower damaged starch content of dry-milled flour than the other varieties (p < 0.05). Seolgaeng showed lowest in energy consumption on rice flour production with 200 mesh particle size. Accordingly, it is possible to produce dry-milled rice flour which is similar to wheat flour that would considerably reduce milling costs.

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습식사이클론을 이용한 광물찌꺼기의 정밀분급과 탈수 (Fine Particle Classification and Dewatering of Tailing Using Hydrocyclone)

  • 김종걸;유경근;최홍일;최의규;박제현
    • 자원리싸이클링
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    • 제24권4호
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    • pp.56-60
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    • 2015
  • 광물찌꺼기의 효율적인 활용을 위하여 부유선별공정에서 배출되어 1차 분급된 시료를 대상으로 정밀분급을 실시하였다. 0.1 MPa - 0.3 MPa의 주입압력(공급유량)과 5% - 15%의 광액농도 조건에서 2인치 습식사이클론을 이용하여 분급시험을 진행한 결과, 주입압력 (공급유량)이 감소할수록 광액농도가 증가할수록 분리입도는 증가하였다. 광액농도 5%와 주입압력 0.3 MPa의 조건에서 overflow와 underflow의 평균입도는 각각 $6.56{\mu}m$$55.45{\mu}m$를 나타내었다. 분급효율은 광액농도를 증가시키거나 주입압력을 감소시킬수록 이상적인 분급효과에 근접하였다. 광액농도가 증가할수록 탈수효과는 증가하며, 주입압력에 따른 변화는 크지 않았다. 광액농도 15 %와 주입압력 0.3 MPa의 조건에서 underflow의 함수율은 27.9%로 나타났다.

전해석출에 의한 단계적 Ni-SiC 복합코팅층 제조공정에 관한연 (A Study on the Graded Ni-SiC Composite Coating by Electrodeposition)

  • 김선규
    • 한국표면공학회지
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    • 제30권5호
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    • pp.347-354
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    • 1997
  • Composite plating is a method of co-depositing fine particles of metallic, non-metallic compound or polymers in the plated layer to improve material properties such as were-resistance, lubrication, or corrosion resistance. Graded Ni-Sic composite coating were produced in this research. Prior to produce Graded Ni-SiC composite coatings, effects of particle size, particle content, pH of electrolyte, temperature, current density, stirring rate on the amount of SiC deposited in the Ni layer were investigated. By manipulating current density and plating time properties of these coating were evaluated by micro-indentation hardness test.

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기계적 합금화한 W-Cu 복합분말 소결체의 열물성 평가 (The Evaluation of Thermal Properties for W-Cu Composite Sintered from Mechanically Alloyed Powders)

  • 오낭렴;김대건;석명진;김영환;김영도;문인형
    • 한국분말재료학회지
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    • 제7권3호
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    • pp.154-160
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    • 2000
  • In order to enhance sinterability of W-Cu composites used for heat sink materials, mechanical alloying process where both homogeneous mixing of component powders and fine dispersion of minor phase can be easily attained was employed. Nanostructured W-Cu powders prepared by mechanical alloying showed W grain size ranged of 20-50 nm and were able to be efficiently sintered owing to the fine particle size as well as uniform distribution of Cu phase. The thermal properties such as electrical resistivity, coefficient of thermal expansion and thermal conductivity were evaluated as functions of temperature and Cu content. It was found that the coefficient of thermal expansion could be controlled by changing Cu content. The measured electrical resistivities and thermal diffusivities were also varied with Cu content. The thermal conductivities calculated from the values of resistivities and diffusivities showed similar tendency as a function of temperatures. However, this is in contradiction with thermal conductivities of pure W and Cu which decrease with increasing temperature.

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Quality Characteristics and Ginsenosides Composition of Ginseng-Yakju According to the Particle Size of Ginseng Powder

  • Lee, Je-Hyuk;Choi, Kang Hyun;Sohn, Eun-Hwa;Jang, Ki-Hyo
    • Preventive Nutrition and Food Science
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    • 제18권4호
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    • pp.234-241
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    • 2013
  • The aim of this study was to develop rice wine (Yakju) containing various amounts and particle sizes of ginseng powder and to analyze the physicochemical characteristics and content of ginsenosides in ginseng-Yakju. Soluble solid content, pH, ethanol concentration, acidity, amino acid content, and evaluation of preference showed no difference between four kinds of Yakju groups, regardless of ginseng supplementation and particle size of the ginseng powder. During fermentation of Yakju containing ginseng, the contents of ginsenosides Rb1, Rb2, Rb3, and Rc were decreased. Otherwise, the content of ginsenoside Rh1 was increased highly by brewing microorganisms in Yakju. Recovery ratios of ginsenosides in ginseng-Yakju were approximately 25.4% (coarse ginseng power) and 23.8% (fine ginseng powder), which were superior to the recovery ratio of ginsenosides in Yakju containing ginseng slices (5%).

하수관 손상으로 인한 지하공동 및 지반함몰 발생에 대해 세립분 함량이 미치는 영향의 실험적 평가 (Experimental Evaluation of the Effect of Fine Contents on the Formation of Underground Cavities and Ground Cave-ins by Damaged Sewer Pipes)

  • 곽태영;이승환;정충기;백성하
    • 한국지반공학회논문집
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    • 제37권11호
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    • pp.93-105
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    • 2021
  • 본 연구에서는 매립토의 세립분 함량이 파손된 하수관으로 인해 유발되는 지하 공동 및 지반함몰에 미치는 영향을 평가했다. 국내 강우 조건 및 지반 조건을 모사하였으며, 서로 다른 세 가지 세립분 함량(7.5%, 15%, 25%)을 적용해 지반함몰 모사시험을 수행했다. 모형지반을 조성한 뒤 하수관 손상부를 모사한 부분을 통해 지하수를 유입하고 배출시키는 과정을 두 차례 반복하며, 지표면 침하량 및 배토량을 측정했다. 또한 모형시험 중에 일정 시간 간격으로 디지털 이미지를 촬영하고 이를 PIV 기법을 통해 분석하여 내부 변위 및 변형(지하 공동 형성 과정)을 측정하였다. 시험 결과, 지하수 유입 및 배출 단계가 반복됨에 따라, 세립분 함량이 높을수록 배토량이 적고 지하 공동 형성이 억제되는 것으로 나타났다. 다만, 지표면 붕괴로 확인되는 지반함몰은 세립분 함량이 15%인 경우에만 발생했다. 이는 배토된 흙의 세립분 함량 변화를 통해 서퓨전(suffusion) 현상에 기인한 것으로 분석되어, 세립분 함량이 서퓨전 현상 발현에 미치는 영향과 이에 따른 지반 강도 변화에 대한 추가연구가 필요함을 확인했다.

The Effects of TiN Particles on the HAZ Microstructure and Toughness in High Nitrogen TiN Steel

  • Jeong, H.C.;An, Y.H.;Choo, W.Y.
    • International Journal of Korean Welding Society
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    • 제2권1호
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    • pp.25-28
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    • 2002
  • In the coarse grain HAZ adjacent to the fusion line, most of the TiN particles in conventional Ti added steel are dissolved and austenite grain growth is easily occurred during welding process. To avoid this difficulty, thermal stability of TiN particle is improved by increasing the nitrogen content in steel. In this study, the effect of hlgh nitrogen TiN particle on preventing austenite grain growth in HAZ was investigated. Increased thermal stability of TiN particle is helpful for preventing the austenite grain growth by pinning effect. High nitrogen TiN particle in simulated HAZ were not dissolved even at high temperature such as 1400'E and prevented the austenite grain growth in simulated HAZ. Owing to small austenite grain size in HAZ the width of coarse grain HAZ in high nitrogen TiN steel was decreased to 1/10 of conventional TiN steel. Even high heat input welding, the microstructure of coarse grain HAZ consisted of fine polygonal ferrite and pearlite and toughness of coarse grain HAZ was significantly improved.

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반응소결 탄화규소의 다양한 α-SiC 조성에 따른 기계적 특성과 전기저항 특성에 관한 연구 (A Study on the Mechanical Properties and Specific Resistivity of Reaction-Bonded Silicon Carbide According to α-SiC of Various Mixed Particle Size)

  • 김영주;박영식;정연웅;송준백;박소영;임항준
    • Composites Research
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    • 제25권6호
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    • pp.172-177
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    • 2012
  • 저저항 Si-SiC 소결체 제조를 위해 ${\alpha}$-SiC에서 조성과 C의 양을 변화시키면서 반응소결 특성을 고찰하였다. 시료준비는 정수압으로 성형체를 제조하였고, 용융Si 반응소결을 통해 시험편을 준비하였다. 반응소결체의 미세구조, 기계적 특성 및 전기저항 분석 결과 용융Si과 반응 후 미립의 ${\beta}$-SiC가 생성되었고, 치밀한 소결체를 형성하였다. 미립 ${\beta}$-SiC 생성량은 카본 양 에 따라 증가하였다. 그리고 C함량 10wt%이내에서 기계 R전기저항특성은 입도조성 영향이 크고 카본 함량 10wt%이상에서는 상전이 반응의 영향이 큼을 알 수 있었다.

Cu(In,Ga)Se2 박막의 KF 처리가 CIGS태양전지에 미치는 영향 (Effect of KF Treatment of Cu(In,Ga)Se2 Thin Films on the Photovoltaic Properties of CIGS Solar Cells)

  • 정광선;차은석;문선홍;안병태
    • Current Photovoltaic Research
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    • 제3권2호
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    • pp.65-70
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    • 2015
  • We applied KF on CIGS film to modify CIGS surface with a wider-bandgap surface layer. With the KF deposition the surface of CIGS film had fine particle on the CIGS surface at 350 and $300^{\circ}C$. No fine particle was detected at 500 and $250^{\circ}C$. With the KF treatment, the Ga and O content increased at the surface, while the In and Cu content decreased. The valence band maximum was lowered with KF treatment. The composition profile and band structure were positive side of applying KF on the CIGS surface. However, the efficiency decreased with the KF treatment due to high series resistance, probably due to too thick surface layer. A smaller amount of KF should be supplied and more systematic analysis is necessary to obtain a reproducible higher efficiency CIGS solar cells.

Deformation analysis of high CFRD considering the scaling effects

  • Sukkarak, Raksiri;Pramthawee, Pornthap;Jongpradist, Pornkasem;Kongkitkul, Warat;Jamsawang, Pitthaya
    • Geomechanics and Engineering
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    • 제14권3호
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    • pp.211-224
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    • 2018
  • In this paper, a predictive method accounting for the scaling effects of rockfill materials in the numerical deformation analysis of rockfill dams is developed. It aims to take into consideration the differences of engineering properties of rockfill materials between in situ and laboratory conditions in the deformation analysis. The developed method is based on the modification of model parameters used in the chosen material model, which is, in this study, an elasto-plastic model with double yield surfaces, i.e., the modified Hardening Soil model. Datasets of experimental tests are collected from previous studies, and a new dataset of the Nam Ngum 2 dam project for investigating the scaling effects of rockfill materials, including particle size, particle gradation and density, is obtained. To quantitatively consider the influence of particle gradation, the coarse-to-fine content (C/F) concept is proposed in this study. The simple relations between the model parameters and particle size, C/F and density are formulated, which enable us to predict the mechanical properties of prototype materials from laboratory tests. Subsequently, a 3D finite element analysis of the Nam Ngum 2 concrete face slab rockfill dam at the end of the construction stage is carried out using two sets of model parameters (1) based on the laboratory tests and (2) in accordance with the proposed method. Comparisons of the computed results with dam monitoring data indicate that the proposed method can provide a simple but effective framework to take account of the scaling effect in dam deformation analysis.