• 제목/요약/키워드: particle size control

검색결과 608건 처리시간 0.041초

진공상온분사(VKS) 공정에서의 비행입자 가속 기구 및 속도제어를 위한 가스 유량 효과에 관한 연구 (Research on Acceleration Mechanism of Inflight Particle and Gas Flow Effect for the Velocity Control in Vacuum Kinetic Spray Process)

  • 박형권;권주혁;이일주;이창희
    • 한국재료학회지
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    • 제24권2호
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    • pp.98-104
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    • 2014
  • Vacuum kinetic spray(VKS) is a relatively advanced process for fabricating thin/thick and dense ceramic coatings via submicron-sized particle impact at room temperature. However, unfortunately, the particle velocity, which is an important value for investigating the deposition mechanism, has not been clarified yet. Thus, in this research, VKS average particle velocities were derived by numerical analysis method(CFD: computational fluid dynamics) connected with an experimental approach(SCM: slit cell method). When the process gas or powder particles are accelerated by a compressive force generated by gas pressure in kinetic spraying, a tensile force generated by the vacuum in the VKS system accelerates the process gas. As a result, the gas is able to reach supersonic speed even though only 0.6MPa gas pressure is used in VKS. In addition, small size powders can be accelerated up to supersonic velocity by means of the drag-force of the low pressure process gas flow. Furthermore, in this process, the increase of gas flow makes the drag-force stronger and gas distribution more homogenized in the pipe, by which the total particle average velocity becomes higher and the difference between max. and min. particle velocity decreases. Consequently, the control of particle size and gas flow rate are important factors in making the velocity of particles high enough for successful deposition in the VKS system.

쇠고기죽 제조 시 쌀입자 크기가 죽의 품질에 미치는 영향 (Effect of Grain Size on the Physicochemical & Nutritional Properties of Beef Porridge)

  • 김혜란;김민지;양윤형;이근종;김미리
    • 한국식생활문화학회지
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    • 제25권1호
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    • pp.70-75
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    • 2010
  • The object of this study was to investigate the effects of rice particle size on the physicochemical properties of beef-rice porridge. The pH of beef-rice porridge was decreased as compared to that of the control, while the redness of beef porridge increased according to rice particle size. The viscosity of flour in the beef-rice porridge was the highest among three porridges, at $40^{\circ}C$. The protein content of beef-rice porridge was increased 3-fold over that of rice porridges. The total amino acid content of the beef-rice porridge was 3071.2 mg/100 g, and that of rice porridge was 1147.5 mg/100 g. As compared to rice porridge, the maximum amounts of the amino acids Lys and Thr were increased beef-rice porridge. Sensory evaluation results showed that the beef-rice porridge with a particle size half that of rice had the highest scores in color, taste, texture, and overall preference. Based on these results, it is suggested that beef-rice porridge with a particle size half (0.7-2.5 mm) that of rice has optimal quality in terms of both physicochemical and sensory properties.

용액 내 스파크 방전을 이용한 나노입자 제조 및 특성 평가 (Formation of Nanoparticles by Spark Discharge in Liquid)

  • 최후미;김장아;정승교;윤주호;김태성
    • 한국입자에어로졸학회지
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    • 제8권1호
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    • pp.37-43
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    • 2012
  • In this study, we designed a 'spark in liquid' system. The spark discharge between two electrodes were used to generate particles by using sufficient temperature to evaporate a part of electrodes. The power supply system provides a continuous spark discharge by discharging of the capacitor to ionize the electrodes in liquid. The DC spark discharge system operates with 1-10 kV voltage. Processed copper and graphite rods were used to both electrodes with 1-3 mm diameter. There are several variables which can control the particle size and concentration such as gap distance between electrodes, applied voltage, operating liquid temperature, electrode type and liquid type. So we controlled these variables to confirm the change of particle size distribution and concentration of particles contained in liquid as wt%. 'spark in liquid' system is expected to apply nanoink by control of concentration with analysis of characteristics.

아연 착화합물 입자형성에 미치는 금속염 및 다가알코올 첨가의 영향 (Effects of the Addition of Metallic Salts and Polyhydric Alcohols on the Formation of Zinc Complex-compound Particle)

  • 인세진
    • 공업화학
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    • 제23권1호
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    • pp.8-13
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    • 2012
  • 본 연구에서는 프린터 토너의 대전량 제어제로 사용되는 아연 착화합물 제조시 금속염과 다가알코올을 첨가함에 따라 변화되는 입자 형태와 평균 입도에 대해 고찰하였다. 아연 착화합물을 제조하기 위해 염화아연과 3,5-di-tert-butyl salicylic acid를 사용하였다. 다가알코올을 첨가함에 따른 입자형태 변화를 확인하기 위해 아연 착화합물 제조시 polyethylene glycol (PEG-300), glycerin 및 ethylene glycol을 첨가하였고, 금속염인 지르코늄 옥시클로라이드를 첨가함으로써 변화되는 입자크기를 확인하였다. 또한 금속염과 다가알코올을 동시에 첨가하여 입도변화를 확인한 결과, 각각 단독으로 첨가했을 때보다 아연 착화합물의 평균 입도가 더 많이 감소하는 것을 확인할 수 있었다. 특히, 지르코늄 착화합물의 함유량이 30 wt%이고 염화아연에 대한 PEG-300의 몰비를 3으로 하였을 때 아연 착화합물의 평균 입도가 1.84 ${\mu}m$로 순수한 아연 착화합물의 평균 입도(5.28 ${\mu}m$)의 34.9%로 가장 많이 감소한 것을 알 수 있었다.

크롬산납 무기안료 입자 제어 및 안정성에 관한 연구 (Studies on Particle Size Control and Stability of Lead Chromate Pigment Particles)

  • 박찬규;정대윤;장상목;이상록
    • 공업화학
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    • 제19권3호
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    • pp.264-269
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    • 2008
  • 크롬산납안료입자의 합성과정에서 반응조건의 변화에 따른 입자의 성장특성, 첨가제 첨가에 의한 영향, 그리고 마이크로캡슐화에 관하여 조사하였다. 크롬산납 무기안료의 합성과정에서 생성용액의 pH가 낮을수록, 반응물질의 초기농도가 묽을수록 입자크기가 작은 균일한 분산입자를 얻을 수 있었다. 교반속도가 큰 경우에서 평균입자크기의 감소 및 증가에 대한 변화폭이 크게 나타남을 알 수 있었다. 합성된 크롬산납 안료입자의 숙성과정에 황산알루미늄을 첨가하여 표면처리 함으로써 입자크기의 제어가 가능하였고, 입자의 입도분포 상태를 최적 분산 상태로 유지하는 효과가 있음을 알 수 있었다. 안료입자의 마이크로캡슐화가 진행되는 용액의 pH 범위를 9~10, 반응온도를 $90^{\circ}C$ 이상으로 유지하고 마이크로캡슐화 후 충분한 건조를 통해 입자의 수분함량을 0.5% 이하로 유지할 때 최적의 마이크로캡슐화가 됨을 알 수 있었다.

한 도시 분진의 유해성 입도 분포에 대한 조사 연구 (Particle Size Distribution of Suspended Particulates in the Atmosphere of a Seoul Residential Area)

  • 한의정;정용;권숙표
    • Journal of Preventive Medicine and Public Health
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    • 제19권1호
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    • pp.130-136
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    • 1986
  • The particle size of suspended particulates was measured by a Anderson air sampler from Mar. 1982 to Feb. 1984 in a part of Seoul. It was concluded as follows : 1) The arithmetic concentration of suspended particulates was $147.8{\mu}g/m^3$ in Spring, 136.9 in Summer, 131.9 in Autumn and 158.1 in Winter respectively. 2) The cumulative distribution of suspended particulates size in logarithmic diagram showed similar to normal log distribution. 3) The atmospheric particulate matters showed a bimodal size distribution on the base of unit particle concentrations, which divided at approximately $2{\mu}m$ in the diameter. 4) While the fine particulates less than $2.1{\mu}m\;was\;35.4{\sim}45.0%$, the coarse particulates was $55.0{\sim}64.5%$. 5) The higher the concentration of suspended particulates, the more increased the ratio of fine particulates. The higher the concentration of suspended particulates, the lower median size of suspended particulate as well. 6) The respirable dust particulates less than $4.7{\mu}m\;was\;52.2{\sim}62.9%$ in seasonal average through the 2 year samples. With the above result, air pollution concerned with public health could be evaluated and the control measures also are suggested.

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초기 알루미나 분체의 입자크기가 주입성형법에 의해 제조된 튜브형 α-알루미나 지지체의 기공구조 및 기체 투과 특성에 미치는 영향 (Effect of Precursor Alumina Particle Size on Pore Structure and Gas Permeation Properties of Tubular α-alumina Support Prepared by Slip Casting Process)

  • 양은목;이혜련;조철희
    • 멤브레인
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    • 제26권5호
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    • pp.372-380
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    • 2016
  • 본 연구에서는 입자크기가 다른 3가지 ${\alpha}$-알루미나 분체로부터 주입성형법과 소결법을 혼용하여 튜브형 ${\alpha}$-알루미나 지지체를 제조하여 초기 ${\alpha}$-알루미나 분체의 입자크기와 소결 온도가 지지체의 기공구조와 기체투과 특성에 미치는 영향을 고찰하였다. 평균입경이 0.2, 0.5, $1.7{\mu}m$${\alpha}$-알루미나 분체를 사용했을 시 제조된 ${\alpha}$-알루미나 지지체는 각각 약 80, 130, 200 nm의 평균 기공경을 가졌으며 평균 기공경은 소결 온도 보다는 초기 알루미나 분체의 입자크기에 의존하였다. 모든 시편에서 소결 온도가 증가할수록 지지체의 부피 밀도는 증가하였고 겉보기 기공률은 감소하였다. He, $N_2$, $O_2$, $CO_2$에 대하여 $30^{\circ}C$에서 단일기체 투과 특성을 평가한 결과, 기체 투과도는 기공경 제곱에 비례하여 증가하였고 기공률이 증가함에 따라서 직선적으로 증가하였다. 이를 토대로 제조된 ${\alpha}$-알루미나 지지체의 기체 투과는 점성유동(viscous flow)에 의하여 이루어지며, ${\alpha}$-알루미나 지지체의 기체 투과 특성은 초기 ${\alpha}$-알루미나 분체의 입자크기와 소결온도를 제어함으로써 조절될 수 있음을 확인할 수 있었다.

Development, validation and implementation of multiple radioactive particle tracking technique

  • Mehul S. Vesvikar;Thaar M. Aljuwaya;Mahmoud M. Taha;Muthanna H. Al-Dahhan
    • Nuclear Engineering and Technology
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    • 제55권11호
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    • pp.4213-4227
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    • 2023
  • Computer Automated Radioactive Particle Tracking (CARPT) technique has been successfully utilized to measure the velocity profiles and mixing parameters in different multiphase flow systems where a single radioactive tracer is used to track the tagged phase. However, many industrial processes use a wide range of particles with different physical properties where solid particles could vary in size, shape and density. For application in such systems, the capability of current single tracer CARPT can be advanced to track more than one particle simultaneously. Tracking multiple particles will thus enable to track the motion of particles of different size shape and density, determine segregation of particles and probing particle interactions. In this work, a newly developed Multiple Radioactive Particle Tracking technique (M-RPT) used to track two different radioactive tracers is demonstrated. The M-RPT electronics was developed that can differentiate between gamma counts obtained from the different radioactive tracers on the basis of their gamma energy peak. The M-RPT technique was validated by tracking two stationary and moving particles (Sc-46 and Co-60) simultaneously. Finally, M-RPT was successfully implemented to track two phases, solid and liquid, simultaneously in three phase slurry bubble column reactors.

Polyol Process를 통한 PEM Fuel Cell용 Pt/C촉매 제조 (Preparation of Pt/C catalyst for PEM fuel cells using polyol process)

  • 오형석;김한성
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2006년도 추계학술대회
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    • pp.443-446
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    • 2006
  • Carbon-supported Platinum (Pt) is the potential electro-catalyst material for anodic and cathodic reactions in fuel cell. Catalytic activity of the metal strongly depends on the particle shape, size and distribution of the metal in the porous supportive network. Conventional preparation techniques based on wet impregnation and chemical reduction of the metal precursors often do not provide adequate control of particle size and shape. We have proposed a novel route for preparing nano sized Pt colloidal particles in solution by oxidation of ethylene glycol. These Pt nano particles were deposited on large surface area carbon support. The process of nano Pt colloid formation involves the oxidation of solvent ethylene glycol to mainly glycolic acid and the presence of its anion glycolate depends on the solution pH. In the process of colloidal Pt formation glycolate actsas stabilizer for the Pt colloidal particle and prevents the agglomeration of colloidal Pt particles. These mono disperse Pt particles in carbon support are found uniformly distributed in nearly spherical shape and the size distribution was narrow for both supported and unsupported metals. The average diameter of the Pt nano particle was controlled in the range off to 3 nm by optimizing reaction parameters. Transmission electron microscopy, CV and RRDE experiments were used to compliment the results.

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MR-EMR 복합공정에 의한 탄탈륨분말의 제조시 온도변화에 따른 분말의 특성 (Characteristics of Powder with Change of Temperature in Production of Tantalum Powder by MR-EMR Combination Process)

  • 배인성;윤재식;박형호;윤동주;이민호;설경원;김병일
    • 한국분말재료학회지
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    • 제10권6호
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    • pp.395-405
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    • 2003
  • In the conventional metallothermic reduction (MR) process for obtaining tantalum powder in batch-type operation. it is difficult to control morphology and location of deposits. On the other hand, a electronically mediated reaction (EMR) process is capable to overcome these difficulties and has a merit of continuous process, but it has the defect that the reduction yield is poor. MR-EMR combination process is a method that is able to overcome demerits of MR and EMR process. In this study, a MR-EMR combination process has been applied to the production of tantalum powder by sodium reduction of $K_2$TaF$_{7}$. The total charge passed through external circuit and average particle size (FSSS) were increased with increasing reduction temperature. The proportion of fine particle (-325 mesh) was decreased with increasing reduction temperature. The yield was improved from 65% to 74% with increasing reduction temperature. Considering the charge, impurities, morphology, particle size and yield, an reduction temperature of 1,123 K was found to be optimum temperature for MR-EMR combination process.