• 제목/요약/키워드: Average Effect Size

검색결과 1,107건 처리시간 0.026초

그라인딩 처리 횟수에 따른 나노피브릴화 셀룰로오스 매트의 공극 특성 (Effect of the Number of Passes through Grinder on the Pore Characteristics of Nanofibrillated Cellulose Mat)

  • 심규정;류재호;윤혜정
    • 펄프종이기술
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    • 제45권1호
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    • pp.35-41
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    • 2013
  • In this study, we investigated the effect of the number of passes through agrinder on the pore characteristics of nanofibrillated cellulose (NFC) mat. The beaten pulp suspension was used to make NFC suspension using a grinder. To evaluate the pore characteristics of a NFC mat, the surface morphology of the dried NFC mat was observed with FE-SEM and the specific surface area was analyzed with BET nitrogen gas adsorption. The structure of NFC mat was changed with the different number of passes and drying methods. The specific surface area of NFC mat increased with the increase in the number of passes. The 20-passed NFC mat had 20 times larger specific surface area ($141m^2/g$) compared to the 0-passed NFC mat. The specific surface area was strongly correlated with the average pore size in NFC mat. The average pore diameter in NFC mat was calculated from the gas sorption isotherms using BJH model. The value was 13 - 15 nm, indicating that the NFC mat had mesoporous structure.

컴퓨터 기반 가상현실 프로그램의 국내 임상재활 적용 효과: 메타분석 (Effects of Computer Based Virtual Reality Program on Clinical Rehabilitation in Korea: A Meta-analysis)

  • 권재성
    • 디지털융복합연구
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    • 제13권7호
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    • pp.293-304
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    • 2015
  • 본 연구에서는 국내 임상재활 현장에서 적용된 컴퓨터 기반 가상현실 프로그램의 효과를 알아보기 위하여 ICF 분류 기준을 근거하여 메타분석을 실시하였다. 국내 논문 데이터베이스에서 1995년~2014년까지 게재된 연구들 중 15편을 선정하였다. 연구의 질적 평가는 PEDro score를 사용하였고 대상 논문들의 표본수와 사전-사후 평균, 표준편차를 사용하여 메타분석을 실시하였다. 연구결과 선정된 연구는 PEDro score 6점 이상이었고 연구 대상자는 338명이었다. 효과크기 분석 결과 분석대상의 통합된 효과크기는 1.030, ICF 분류의 활동과 참여 1.120, 감각기능 1.199로 큰 효과크기를 보였고 정신기능의 효과크기는 0.557로 중간효과크기를 나타내었다. 본 연구의 결과로 임상재활 현장에서 가상현실 프로그램이 전통적인 재활 치료에 대한 대체 또는 보조적 치료 프로그램으로서의 효과가 입증되었다. 특히 ICF 분류의 활동과 참여, 신체기능의 감각기능에 대한 효과가 입증되었고 신체기능의 정신기능에 대한 효과는 통계적 근거가 미흡하였다.

석탄입자 크기가 가스화에 미치는 영향 (The Effect of the Size of Coal Particles on Gasification Reactions)

  • Cho, Seok-Yeon;Seo, Kyung-Won
    • 에너지공학
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    • 제6권1호
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    • pp.77-86
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    • 1997
  • 본 연구에서는 Alaska Usibelli 아역청탄이 사용되는 실린더형 석탄 가스화기내에서 석탄의 입자크기가 반응성 유동장과 주요 생성물의 농도분포에 미치는 영향을 고찰하기 위하여 미분탄 입자의 크기를 40 $\mu\textrm{m}$, 60 $\mu\textrm{m}$, 100 $\mu\textrm{m}$, 120 $\mu\textrm{m}$ 및 140 $\mu\textrm{m}$로 각각 나누어 전산모사를 수행하였다. 모사결과, 가스화기내에서 석탄의 입자크기가 가스화 생성물의 농도분포에 커다란 영향을 미침을 알 수 있었다. 입자의 크기가 100 $\mu\textrm{m}$일 때 가스화기 출구에서 주 생성물인 CO와 H$_2$가 최대로 생성되고 이때 이들의 평균 몰분율은 각각 0.62, 0.16(dry basis, inert free)으로 예측되었다 또한 냉가스 효율도 입자크기가 100 $\mu\textrm{m}$일때 최고치 83%로 예측되었다.

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Effects of Mechanically Activated Milling and Calcination Process on the Phase Stability and Particle Morphology of Monoclinic Zirconia Synthesized by Hydrolysis of ZrOCl2 Solution

  • Lee, Young-Geun;Ur, Soon-Chul;Mahmud, Iqbal;Yoon, Man-Soon
    • 한국재료학회지
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    • 제23권10호
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    • pp.543-549
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    • 2013
  • The purpose of this paper was to investigate the effect of a high-energy milling (HEM) process on the particle morphology and the correlation between a thermal treatment and tetragonal/monoclinic nanostructured zirconia powders obtained by a precipitation process. To eliminate chloride residue ions from hydrous zirconia, a modified washing method was used. It was found that the used washing method was effective in removing the chloride from the precipitated gel. In order to investigate the effect of a pre-milling process on the particle morphology of the precipitate, dried $Zr(OH)_4$ was milled using a HEM machine with distilled water. The particle size of the $Zr(OH)_4$ powder exposed to HEM reduced to 100~150 nm, whereas that of fresh $Zr(OH)_4$ powder without a pre-milling process had a large and irregular size of 100 nm~1.5 ${\mu}m$. Additionally, modified heat treatment process was proposed to achieve nano-sized zirconia having a pure monoclinic phase. It was evident that two-step calcining process was effective in perfectly eliminating the tetragonal phase, having a small average particle of ~100 nm with good uniformity compared to the sample calcined by a single-step process, showing a large average particle size of ~300 nm with an irregular particle shape and a broad particle size distribution. The modified method is considered to be a promising process for nano-sized zirconia having a fully monoclinic phase.

Application of adaptive neuro-fuzzy system in prediction of nanoscale and grain size effects on formability

  • Nan Yang;Meldi Suhatril;Khidhair Jasim Mohammed;H. Elhosiny Ali
    • Advances in nano research
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    • 제14권2호
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    • pp.155-164
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    • 2023
  • Grain size in sheet metals in one of the main parameters in determining formability. Grain size control in industry requires delicate process control and equipment. In the present study, effects of grain size on the formability of steel sheets is investigated. Experimental investigation of effect of grain size is a cumbersome method which due to existence of many other effective parameters are not conclusive in some cases. On the other hand, since the average grain size of a crystalline material is a statistical parameter, using traditional methods are not sufficient for find the optimum grain size to maximize formability. Therefore, design of experiment (DoE) and artificial intelligence (AI) methods are coupled together in this study to find the optimum conditions for formability in terms of grain size and to predict forming limits of sheet metals under bi-stretch loading conditions. In this regard, a set of experiment is conducted to provide initial data for training and testing DoE and AI. Afterwards, the using response surface method (RSM) optimum grain size is calculated. Moreover, trained neural network is used to predict formability in the calculated optimum condition and the results compared to the experimental results. The findings of the present study show that DoE and AI could be a great aid in the design, determination and prediction of optimum grain size for maximizing sheet formability.

세라믹 섬유 제조 및 가공 공정에서 발생된 공기중 섬유의 농도 및 크기 분포 (Determination of Airborne Fiber Size and Concentration in RCF Manufacturing and Processing Factories)

  • 신용철
    • 한국환경보건학회지
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    • 제26권4호
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    • pp.21-28
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    • 2000
  • Various man-made mineral fibers(MMMF) including refractory ceramic fiber(RCF) have been used widely in industries as insulation materials. The effect of fibrous dust on human health depends on fiber size, concentration (exposure level), and durability in biological system. Therefore, these parameters should be determined to evaluate accurately the potential risk of fibers on human health. The purpose of this study was to characterize the size of airborne fiber and the workers' exposure to airborne fibers in refractory ceramic fiber manufacturing and processing factories. Airborne fibers were collected on 25-mm mixed cellulose ester membrane filters at personal breathing zones, and analyzed by A and B counting rules of the National Institute for Occupational Safety and Health(NIOSH) Method # 7400. The average ratios of the fiber density by B rule to the fiber density by A rule was 0.84. This result indicates that the proportion of respirable fibers (<3 ${\mu}{\textrm}{m}$ diameter) in air samples was high. The average diameter and length of airborne fibers were 1.05${\mu}{\textrm}{m}$ and 35${\mu}{\textrm}{m}$, respectively. The average fiber concentrations (GM) of all personal samples was 0.26f/cc, and the average concentration was highest at blanket cutting and packing processes. The fifty seven percent of personal air samples was exceeded the proposed American Conference of Governmental Industrial Hygienists(ACGIH) Threshold Limit Value(TLV), i.e. 0.2 f/cc. It was concluded that the RCF industrial workers had the higher potential health risk due to small fiber diameter, long fiber length, and high exposure level to the airborne fibers.

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A large eddy simulation on the effect of buildings on urban flows

  • Zhang, Ning;Jiang, Weimei;Miao, Shiguang
    • Wind and Structures
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    • 제9권1호
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    • pp.23-35
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    • 2006
  • The effect of buildings on flow in urban canopy is one of the most important problems in local/micro-scale meteorology. A large eddy simulation model is used to simulate the flow structure in an urban neighborhood and the bulk effect of the buildings on surrounding flows is analyzed. The results demonstrate that: (a) The inflow conditions affect the detailed flow characteristics much in the building group, including: the distortion or disappearance of the wake vortexes, the change of funneling effect area and the change of location, size of the static-wind area. (b) The bulk effect of the buildings leads to a loss of wind speed in the low layer where height is less than four times of the average building height, and this loss effect changes little when the inflow direction changes. (c) In the bulk effect to environmental fields, the change of inflow direction affects the vertical distribution of turbulence greatly. The peak value of the turbulence energy appears at the height of the average building height. The attribution of fluctuations of different components to turbulence changes greatly at different height levels, in the low levels the horizontal speed fluctuation attribute mostly, while the vertical speed fluctuation does in high levels.

Effects of dietary energy levels on growth performance in lactating sows and piglets

  • Huang, Shuai Qi;Kim, In Ho
    • 농업과학연구
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    • 제45권4호
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    • pp.645-653
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    • 2018
  • Twenty-five sows and 265 piglets (Landrace ${\times}$ Yorkshire) were used to evaluate the effects of dietary energy level on the pre-weaning and post-weaning performance of piglets and first parity sows. Sows with an average initial B.W. of $217.54{\pm}25.47kg$ were randomly assigned to 2 treatments. The treatments consisted of a T1 diet containing 3,100 kcal, and the T2 diet contained 3400 kcal of metabolizable energy (ME)/kg, respectively. Data were analyzed using Duncan statements to test the effect of the dietary energy levels on growth performance in lactating sows and piglets. In this study, Dietary T2 sows had a greater number of weaned piglets per litter (p < 0.05). Dietary T2 had a higher (p < 0.05) body weight than that of T1 in the weanlings, meanwhile it had a higher total average daily gain (p < 0.05) than that of T1. Dietary T1 had a higher average feed intake than that of T2 in gestation and lactation. There were no significant differences on the litter size or litter birth weight. No differences (p > 0.05) were noted in the survival of the piglets as well as in the backfat thickness and body weight loss in sows. In conclusion, these results show that high-energy diets had no effect on the body weight and backfat thickness of sows during gestation and lactation but influenced the body weight and average daily gain of weanling pigs during the lactation period.

기계적 분쇄화 및 스파크 플라즈마 소결에 의한 TiAl 합금의 제조 (Fabrication of TiAl Alloys by Mechanical Milling and Spark Plasma Sintering)

  • 김민수;김준식;황승준;홍영환;오명훈
    • 열처리공학회지
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    • 제17권1호
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    • pp.17-22
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    • 2004
  • In the present study, newly developed spark plasma sintering(SPS) technique was introduced to refine the grain size of ${\gamma}$-based TiAl intermetallic compounds. Ti-46Al-1.5Mo and Ti-46Al-1.5Mo-0.2C(at%) prealloyed powders were produced by mechanical milling(MM) in high-energy attritor. The mechanically milled powders were characterized by XRD and SEM for the microstructural evolution as a function of milling time. And then, the MMed powders were sintered by both spark plasma sintering and hot pressing in vacuum (HP). After the sintering process, MM-SPSed specimens were heat-treated in a vacuum furnace (SPS-VHT) and in the SPS equipment(MM-SPS) for microstructural control. It was found from microstrutural observation that the microstructure consisting of equiaxed ${\gamma}$-TiAl with a few hundred nanometer in average size and ${\alpha}_2-Ti_3Al$ particles were formed after both sintering processes. It was also revealed from hardness test and three-point bending test that the effect of grain refinement on the hardness and bending strength is much higher than that of carbon addition. The fully lamellar microstructures, which is less than $80{\mu}m$ in average grain size was obtained by SPS-VHT process, and the fully lamellar microstructure which is less than $100{\mu}m$ in average grain size was obtained by MM-SPS for a relatively shorter heat-treatment time.

MDF 시멘트 복합재료의 강도 특성에 미치는 첨가재의 영향 (Effect of Additives on the Strength Characteristics of MDF Cement Composites)

  • 김태현;최상흘
    • 한국세라믹학회지
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    • 제29권11호
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    • pp.893-899
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    • 1992
  • Composite specimens, which are composed MDF cement of HAC-PVA system were prepared by adding carbon fiber, hydrated silica and SiC powder, and we studied effect of additives on the flexural strength of the composites. All of additives is effective in the improvement of flexural strength of the composite specimens. The size of average pore diameter in the specimens which have high flexural strength property was small. Specimen mixed with hydrated silica was effective in the particle compact property. Flexural strength of carbon fiber reinforced MDF cement composites were improved because of crack deflection of carbon fiber in cementitious matrix.

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