• 제목/요약/키워드: Nozzle Tip

검색결과 233건 처리시간 0.024초

에어리스 스프레이 도장용 노즐 팁 설계에 관한 연구 (A Study on Design of Nozzle Tip for Airless Spray Coating)

  • 김동건;김순경
    • 한국기계가공학회지
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    • 제11권6호
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    • pp.183-188
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    • 2012
  • This study was carried out to design the spray nozzle tip for airless spray coating. Airless spray coating is the process of coating an object with a liquid spray of paint or other fluid. The nozzle tip controls the fluid flow rate and creates back pressure in the system. The nozzle tip also defines the spray pattern by the size and shape of the orifice. The spray pattern of nozzle tip was investigated numerically using ANSYS CFX ver. 14.0. It was observed that performance result of designed nozzle tip was correspond well, compared with that of GARCO nozzle tip.

Infleunce of Nozzle Tip Size on the Preparation of Nano-Sized Tin Oxide Powder by Spray Pyrolysis Process

  • Yu, Jaekeun;Kim, Donghee
    • 한국재료학회지
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    • 제23권2호
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    • pp.81-88
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    • 2013
  • In this study, using a tin chloride solution as the raw material, a nano-sized tin oxide powder with an average particle size below 50 nm is generated by a spray pyrolysis process. The properties of the tin oxide powder according to the nozzle tip size are examined. Along with an increase in the nozzle tip size from 1 mm to 5 mm, the generated particles that appear in the shape of droplets maintain an average particle size of 30 nm. When the nozzle tip size increases from 1 mm to 2 mm, the average size of the generated particles is around 80-100 nm, and the ratio of the independent particles with a compact surface structure increases significantly. When the nozzle tip size is at 3 mm, the majority of the generated particles maintain the droplet shape, the average size of the droplet-shaped particles increases remarkably compared to the cases of other nozzle tip sizes, and the particle size distribution also becomes extremely irregular. When the nozzle tip size is at 5 mm, the ratio of droplet-shaped particles decreases significantly and most of the generated particles are independent ones with incompact surface structures. Along with an increase in the nozzle tip size from 1 mm to 3 mm, the XRD peak intensity increases, whereas the specific surface area decreases greatly. When the nozzle tip size increases up to 5 mm, the XRD peak intensity decreases significantly, while the specific surface area increases remarkably.

핀틀 형상이 노즐 유동에 미치는 영향에 대한 실험적 연구 (A study on the pintle-tip shapes effect of nozzle flow using cold-flow test)

  • 김중근;박종호;이종훈;전민경
    • 한국항공우주학회지
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    • 제38권10호
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    • pp.985-991
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    • 2010
  • 노즐 목 근처에 설치된 핀틀 형상이 노즐 내부 유동과 추력에 미치는 영향을 공압 실험으로 고찰하여 제시하였다. 핀틀 이동으로 노즐 목 면적이 감소하면 연소실 압력은 부드럽게 상승하나 추력은 핀틀 형상에 따라 증가 패턴이 다르게 나타났다. 동일한 노즐 목과 연소실 압력 조건에서 추력은 전체적으로 핀틀 형상이 오목한 것 보다는 볼록한 것이 컸다. 노즐 벽면 압력과 핀틀에 작용하는 하중은 핀틀 형상은 물론 핀틀 위치 및 노즐 목면적에 따라 큰 차이를 보였다.

분무열분해 공정에 의한 코발트 산화물 나노 분체 제조에 미치는 노즐 팁 크기의 영향 (Effect of Nozzle Tip Size on the Preparation of Nano-Sized Cobalt Oxide Powder by Spray Pyrolysis Process)

  • 김동희;유재근
    • 자원리싸이클링
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    • 제25권6호
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    • pp.41-49
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    • 2016
  • 본 연구에서는 코발트 염화물($CoCl_2$) 용액을 원료로 하여 분무열분해 반응에 의하여 평균입도 50 nm 이하의 코발트 산화물($Co_3O_4$) 분말을 제조하였으며 원료용액이 분사되는 노즐 팁의 크기 변화에 따른 입자들의 특성 변화를 파악하였다. 노즐 팁의 크기가 1 mm인 경우에는 형성된 대부분의 액적형태는 구형을 이루고 있으며 표면은 매우 치밀한 조직을 나타내고 있음을 알 수 있었다. 최종 형성된 입자들의 평균입도는 20 ~ 30 nm이었다. 노즐 팁의 크기가 2 mm인 경우에는 형성된 액적형태는 일부는 구형을 이루고 있었지만 상당 부분은 심하게 분열된 형태를 나타내고 있었다. 노즐 팁 크기가 5 mm인 경우에는 구형을 이루는 액적형태는 거의 존재하지 않았으며 거의 대부분 심하게 분열된 상태를 나타내고 있었다. 액적형태의 표면조직은 다른 노즐 팁 경우에 비하여 치밀함이 크게 감소하였다. 형성된 입자들의 평균입도는 약 25 nm이었다. 노즐 팁 크기가 1 mm로부터 2 mm 및 3 mm로 증가함에 따라 XRD 피크들의 강도는 거의 변화가 없는 반면 노즐 팁 크기가 5 mm로 증가되는 경우에는 피크의 강도가 현저히 감소하게 되었다. 노즐 팁 크기가 1 mm로부터 2 mm 로 증가함에 따라 입자들의 비표면적은 감소하였으며 5 mm로 증가되는 경우에는 비표면적이 현저히 증가하였다.

Effect of Nozzle Tip Size on the Fabrication of Nano-Sized Nickel Oxide Powder by Spray Pyrolysis Process

  • Kim, Donghee;Yu, Jaekeun
    • 한국재료학회지
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    • 제23권9호
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    • pp.489-494
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    • 2013
  • In this study, by using nickel chloride solution as a raw material, a nano-sized nickel oxide powder with an average particle size below 50 nm was produced by spray pyrolysis reaction. A spray pyrolysis system was specially designed and built for this study. The influence of nozzle tip size on the properties of the produced powder was examined. When the nozzle tip size was 1 mm, the particle size distribution was more uniform than when other nozzle tip sizes were used and the average particle size of the powder was about 15 nm. When the nozzle tip size increases to 2 mm, the average particle size increases to roughly 20 nm, and the particle size distribution becomes more uneven. When the tip size increases to 3 mm, particles with an average size of 25 nm and equal to or less than 10 nm coexist and the particle size distribution becomes much more uneven. When the tip size increases to 5 mm, large particles with average size of 50 nm partially exist, mostly consisting of minute particles with average sizes in the range of 15~25 nm. When the tip size increases from 1 mm to 2 mm, the XRD peak intensities greatly increase while the specific surface area decreases. When the tip size increases to 3 mm, the XRD peak intensities decrease while the specific surface area increases. When the tip size increases to 5 mm, the XRD peak intensities increase again while the specific surface area decreases.

미세 수관 노즐의 전기유체역학적 수적 분사특성 (Electrohydrodynamic Water Droplet Ejection Characteristics from a Micro-Water-Nozzle)

  • 문재덕
    • 전기학회논문지
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    • 제59권9호
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    • pp.1632-1637
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    • 2010
  • A micro-water-nozzle, as one of a cooling means of micro-electronic devices, has been proposed and investigated. The I-V characteristics of the micro-water-nozzle and effect of applied voltage on the meniscus formation and deformation and ejection processes of de-ionized water on the micro-water-nozzle tip have been investigated. The water ejection processes, such as a drop formation, a drop deformation, a dripping, a cone jet, and an atomization, were taken place on the micro-water-nozzle tip by the electrohydrodynamic forces acted by the DC and AC high voltages applied on the meniscus of the micro-water-nozzle tip. The I-V characteristics of the micro-water-nozzle-to-plate electrode system were different from that of the same metal-point electrode system, due to the meniscus formation and water droplet ejection at the nozzle tip. The positive and negative DC and AC high voltages showed the water droplets ejection, the ejection rates of 1.8, 1.5 and 1.2 g/h respectively, which, however, showed that the proposed micro-water-nozzle-to-plate electrode system could be used as one of an effective pumping means.

에폭시 프라이머 도료의 에어리스 스프레이 분사 시간에 따른 팁 노즐 침식마모경향과 분사특성 연구 (A study on the erosive wear of spray tip nozzle by epoxy primer paint impingement and the spraying characteristics)

  • 김진억;조연호;천제일;한명수
    • Corrosion Science and Technology
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    • 제14권2호
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    • pp.59-63
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    • 2015
  • Airless spray which is widely used for painting to ship blocks and hull sides is the coating method for attaching atomized paint material to the substrate using spray tip nozzle with compressed air. When the paint material which has high solid contents such as epoxy primer paint is atomized by passing through spray tip nozzle with high pressure, the nozzle composed of tungsten carbide(WC) undergoes the erosive wear, leading to widening of nozzle hole. The deformation of nozzle hole induces improper spray pattern and coating failures such as finger pattern and sagging because the conditions of spray pump pressure and paint flow rate for developing full spray pattern are changed. In this study, an appropriate replacement cycle of spray tip was predicted by measuring the erosive wear tendency as increasing the spraying time of epoxy primer paint.

선택적 촉매 환원법을 위한 외부 혼합형 이유체 노즐 개발에 대한 실험적 연구 (Development of an external twin-fluid nozzle for Selective Catalytic Reduction)

  • 박정근;이충원
    • 한국분무공학회지
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    • 제9권2호
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    • pp.24-33
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    • 2004
  • The effect of the working fluid flow conditions and nozzle geometry on the spray performance of a twin-fluid nozzle used in Selective Catalytic Reduction is investigated experimentally. The liquid pressure is varied in the range of 0.3atm to 1.5atm and the air pressure is varied from the 0.5atm to 3.0atm. relative position between liquid nozzle(internal nozzle) and air nozzle(external nozzle) tip changes front 1mm inside the air nozzle to 1mm outside the air nozzle. The orifice diameter of the air nozzle is varied with 5mm. 6mm and 7mm. Spray visualization is realized with CCD-Camera. SMD(Sauter Mean Diameter) and mean particle velocities are measured by PDPA(Phase Doppler Particle Analyzer) under various experimental conditions. The measuring point is 300mm away from the nozzle tip in the downstream spray. The experimental results are that spray angle is depended air flow rate because nozzle diameter, air pressure and nozzle tip relative positions are related air flow rate. SMD is depended air flow rate and water flow rate. Also, SMD is increased when water flow rate is bigger. SMD is decreased when Air flow rate is bigger.

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새도우마스크 제조공정 중 발생되는 폐액으로부터 니켈 페라이트 나노 분말 제조 (Fabrication of Nano-Sized Ni-ferrite Powder from Waste Solution Produced by Shadow Mask Processing)

  • 유재근;서상기
    • 한국분말재료학회지
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    • 제10권4호
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    • pp.262-269
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    • 2003
  • Nano-sized Ni-ferrite powder was fabricated by spray pyrolysis process using the waste solution resulting from shadow mask processing. The average particle size of the powder was below 100 nm. The effects of the concentration of raw material solution, the nozzle tip size and air pressure on the properties of powder were studied. As the concentration increased, the average particle size of the powder gradually increased and its specific surface area decreased, but size distribution was much wider and the fraction of the Ni-ferrite phase greatly increased as the concentration increasing. As the nozzle tip size increased from 1 mm to 2 mm, the average particle size of the powder decreased. In case of 3 mm nozzle tip size, the average particle size of the powder increased slightly. On the other hand, in case of 5 mm nozzle tip size, average particle size of the powder decreased. Size distribution of the powder was unhomogeneous, and the fraction of the Ni-ferrite phase decreased as the nozzle tip size increasing. As air pressure increased up to 1 kg/$cm^2$, the average particle size of the powder decreased slightly, on the other hand, the fraction of the Ni-ferrite phase was almost constant. In case of 3kg/$cm^2$ air pressure, average particle size of the powder and the fraction of the Ni-ferrite phase remarkably decreased, but size distribution was narrow.

선박용 중속디젤엔진 연료분사노즐 해석 연구 (Study on Simulation of Fuel Injection Nozzle for Marine Medium Speed Diesel Engine)

  • 양영준
    • 한국기계가공학회지
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    • 제12권3호
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    • pp.41-47
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    • 2013
  • This study was carried out to improve the design of fuel injection nozzle for marine medium speed diesel engine. For this purpose, fuel injection nozzle was modeled and simulated using CATIA V5R19 and FLUENT & MSC Nastran. Analyses of flow and heat transfer, respectively, were performed to find the optimal design of fuel injection nozzle. As the results, big pressure drop, which may lead to cavitation damage, was occurred at inlet of fuel injection hole with diameter 0.3mm. Furthermore, it was confirmed that the increase of mean temperature of fuel injection nozzle was almost a half in comparison with that of fuel injection nozzle tip.