• 제목/요약/키워드: Rotating-types

검색결과 201건 처리시간 0.023초

강제선회시험을 이용한 수중운동체의 수평면 안정성 평가에 관한 연구 (Horizontal Stability Estimation of Underwater Vehicle Using Rotating Arm Test)

  • 한지훈;정재훈;이성범;장근영;이승건
    • 한국항해항만학회:학술대회논문집
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    • 한국항해항만학회 2016년도 춘계학술대회
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    • pp.110-112
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    • 2016
  • 최근 해저 자원 개발 또는 생산 활동에 따른 수중작업의 수요 증대와 수중 유도무기체계 개발의 일환으로 다양한 형태의 수중운동체 기술이 발전되고 있다. 또한, 해양에 존재하는 광물 자원의 탐사 및 채취, 수중탐사 및 작업, 해양 방위력의 증강 등은 수중운동체의 개발 필요성을 더욱 증가시키고 있으며, 이에 따라 수중운동체에 대한 연구가 활발하게 수행되고 있다. 이에 본 논문에서는 수중운동체의 강제선회시험을 이용하여 유체력 미계수를 획득하고 이를 통해 수중운동체의 수평면 안정성을 평가 해 보았다.

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회전식 수리저항성능 실험기를 이용한 지반의 수리저항특성과 전기비저항 특성의 상관관계 (Relationship between Electrical Resistivity and Hydraulic Resistance Capacity measured by Rotating Cylinder Test)

  • 김영상;정신현
    • 한국해안·해양공학회논문집
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    • 제27권1호
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    • pp.1-8
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    • 2015
  • 우리나라 남서해안은 풍력발전에 최적지로 평가받고 있으며 최근 해상풍력 구조물을 포함하는 해안구조물의 건설이 증가하고 있다. 그러나 우리나라 남서해안의 조차는 3~8 m까지 발생하여 남서해안에 설치되는 풍력기초들은 횡방향력과 조류의 다방향 흐름에 의한 세굴로 전체 구조물에 예상치 못한 진동에 의한 불안정성이 야기될 수 있다. 이 연구에서는 회전식 수리저항성능 실험기를 이용하여 인공지반시료의 수리저항성능을 평가하였으며 전기비저항 측정결과와 비교하여 수리저항성능과 전기비저항 특성과의 상관관계에 대한 연구를 진행하였다. 실험결과 일방향 한계전단응력과 양방향 한계전단응력을 상한계와 하한계로 표시하고 전기비저항 특성과 상관관계를 도시하면 조립토와 세립토가 비교적 명확히 구분되고 한계전단응력과의 상관관계 도출이 가능한 것으로 나타났다.

신개념 기계식 선박평형수 처리장치의 디스크 형상에 따른 유동특성에 관한 수치해석 연구 (Numerical study on fluid characteristics due to disc shape in a novel mechanical ballast water treatment system)

  • 손상호;김영철;최경관
    • Journal of Advanced Marine Engineering and Technology
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    • 제39권1호
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    • pp.19-27
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    • 2015
  • 최근에 국제해사기구(IMO)에서 선박 평형수 처리장치(Ballast water treatment system, BWTS)와 관련된 국제 규정을 강화함에 따라 이에 대응할 수 있는 BWTS 기술개발의 중요성이 대두되고 있다. 지금까지는 세계 각국에서 선박 평형수 처리기술을 처리방식에 따라 크게 물리적 방식(막분리, 원심분리, 자외선 등)과 화학적 처리방식(염소처리, 오존처리, 화확약품 등)으로 개발하여 왔으나, 기존의 기술 방식들은 추가적인 구동전력, 낮은 생산성, 잔류처리 문제 등으로 기술적인 보완이나 대안이 요구되고 있다. 본 연구에서는 기존과는 다른 새로운 방식의 기계식 방식 평형수 처리장치의 설계를 위한 유동해석 연구이다. 고속 회전하는 몇 가지 디스크 형상에 따라 유동에서 발생하는 여러 가지 유동특성을 전산유체해석(CFD)를 통하여 분석하였다. 평판형 및 계단형 형상에서는 반경을 따라서 국부적으로 공동현상이 발생가능하며, 원주형에서는 전단응력 강도를 높일 수 있었다.

Electroplating process for the chip component external electrode

  • Lee, Jun-Ho
    • 한국표면공학회:학술대회논문집
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    • 한국표면공학회 2000년도 추계학술발표회 초록집
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    • pp.1-2
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    • 2000
  • In chip plating, several parameters must be taken into consideration. Current density, solution concentration, pH, solution temperature, components volume, chip and media ratio, barrel geometrical shape were most likely found to have an effect to the process yields. The 3 types of barrels utilized in chip plating industry are the onventional rotating barrel, vibrational barrel(vibarrel), and the centrifugal type. Conventional rotating barrel is a close type and is commonly used. The components inside the barrel are circulated by the barrel's rotation at a horizontal axis. Process yield has known to have higher thickness deviation. The vibrational barrel is an open type which offers a wide exposure to electrolyte resulting to a stable thickness deviation. It rotates in a vertical axis coupled with multi-vibration action to facilitate mixed up and easy transportation of components. The centrifugal barrel has its plated work centrifugally compacted against the cathode ring for superior electrical contact with simultaneous rotary motion. This experiment has determined the effect of barrel vibration intensity to the plating thickness distribution. The procedures carried out in the experiment involved the overall plating process., cleaning, rinse, Nickel plating, Tin-Lead plating. Plating time was adjusted to meet the required specification. All other parameters were maintained constant. Two trials were performed to confirm the consistency of the result. The thickness data of the experiment conducted showed thatbthe average mean value obtained from higher vibrational intensity is nearer to the standard mean. The distribution curve shown has a narrower specification limits and it has a reduced variation around the target value. Generally, intensity control in vi-barrel facilitates mixed up and easy transportation of components. However, it is desirable to maintain an optimum vibration intensity to prevent solution intrusion into the chips' internal electrode. A cathodic reaction can occur in the interface of the external and internal electrode. 2H20 + e $\rightarrow$M/TEX> 20H + H2.. Hydrogen can penetrate into the body and create pressure which can cause cracks. At high intensity, the chip's motion becomes stronger, its contact between each other is delayed and so plating action is being controlled. However, the strong impact created by its collision can damage the external electrode's structure there by resulting to bad plating condition.

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The intrinsic instabilities of fluid flow occured in the melt of Czochralski crystal growth system

  • Yi, Kyung-Woo;Koichi Kakimoto;Minoru Eguchi;Taketoshi Hibiya
    • 한국결정성장학회:학술대회논문집
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    • 한국결정성장학회 1996년도 The 9th KACG Technical Annual Meeting and the 3rd Korea-Japan EMGS (Electronic Materials Growth Symposium)
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    • pp.179-200
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    • 1996
  • The intrinsic instabilities of fluid flow occurred in the melt of the Czochralski crystal growth system Czochralski method, asymmetric flow patterns and temperature profiles in the melt have been studied by many researchers. The idea that the non-symmetric structure of the growing equipment is responsible for the asymmetric profiles is usually accepted at the first time. However further researches revealed that some intrinsic instabilities not related to the non-symmetric equipment structure in the melt could also appear. Ristorcelli had pointed out that there are many possible causes of instabilities in the melt. The instabilities appears because of the coupling effects of fluid flow and temperature profiles in the melt. Among the instabilities, the B nard type instabilities with no or low crucible rotation rates are analyzed by the visualizing experiments using X-ray radiography and the 3-D numerical simulation in this study. The velocity profiles in the Silicon melt at different crucible rotation rates were measured using X-ray radiography method using tungsten tracers in the melt. The results showed that there exits two types of fluid flow mode. One is axisymmetric flow, the other is asymmetric flow. In the axisymmetric flow, the trajectory of the tracers show torus pattern. However, more exact measurement of the axisymmetrc case shows that this flow field has small non-axisymmetric components of the velocity. When fluid flow is asymmetric, the tracers show random motion from the fixed view point. On the other hand, when the observer rotates to the same velocity of the crucible, the trajectory of the tracer show a rotating motion, the center of the motion is not same the center of the melt. The temperature of a point in the melt were measured using thermocouples with different rotating rates. Measured temperatures oscillated. Such kind of oscillations are also measured by the other researchers. The behavior of temperature oscillations were quite different between at low rotations and at high rotations. Above experimental results means that the fluid flow and temperature profiles in the melt is not symmetric, and then the mode of the asymmetric is changed when rotation rates are changed. To compare with these experimental results, the fluid flow and temperature profiles at no rotation and 8 rpm of crucible rotation rates on the same size of crucible is calculated using a 3-dimensional numerical simulation. A finite different method is adopted for this simulation. 50×30×30 grids are used. The numerical simulation also showed that the velocity and flow profiles are changed when rotation rates change. Futhermore, the flow patterns and temperature profiles of both cases are not axisymmetric even though axisymmetric boundary conditions are used. Several cells appear at no rotation. The cells are formed by the unstable vertical temperature profiles (upper region is colder than lower part) beneath the free surface of the melt. When the temperature profile is combined with density difference (Rayleigh-B nard instability) or surface tension difference (Marangoni-B nard instability) on temperature, cell structures are naturally formed. Both sources of instabilities are coupled to the cell structures in the melt of the Czochralski process. With high rotation rates, the shape of the fluid field is changed to another type of asymmetric profile. Because of the velocity profile, isothermal lines on the plane vertical to the centerline change to elliptic. When the velocity profiles are plotted at the rotating view point, two vortices appear at the both sides of centerline. These vortices seem to be the main reason of the tracer behavior shown in the asymmetric velocity experiment. This profile is quite similar to the profiles created by the baroclinic instability on the rotating annulus. The temperature profiles obtained from the numerical calculations and Fourier transforms of it are quite similar to the results of the experiment. bove esults intend that at least two types of intrinsic instabilities can occur in the melt of Czochralski growing systems. Because the instabilities cause temperature fluctuations in the melt and near the crystal-melt interface, some defects may be generated by them. When the crucible size becomes large, the intensity of the instabilities should increase. Therefore, to produce large single crystals with good quality, the behavior of the intrinsic instabilities in the melt as well as the effects of the instabilities on the defects in the ingot should be studied. As one of the cause of the defects in the large diameter Silicon single crystal grown by the

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$^{99m}Tc$용 콜리메타의 성능과 SPECT 화상의 영향 (Comparison of SPECT Images with $^{99m}Tc$ Collimators)

  • 이만구;이정옥;박성옥
    • 대한방사선기술학회지:방사선기술과학
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    • 제24권2호
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    • pp.35-40
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    • 2001
  • Performance of SPECT imaging systems which use a rotating gamma camera, are affected by characteristics of the detector-collimator assembly, the data acquisition method, and the filter used in imaging reconstruction. The purpose of this study Is to examine image qualifies of SPECT with different types of low energy collimators. The SPECT imaging system in this study is a digital gamma camera system GCA-901A(Toshiba) and a data processing unit Scintipac-700(Shimadzu). The four types of collimators compared are UHR(ultra high resolution), LEHR(low energy high resolution), LEGP(low energy general purpose), and I-123 PAR(Parallel), with 0.27, 0.66, 1.00, and 2.06 relative sensitivity, respectively. In this case of the same collimators, the spatial resolutions measured in the slice plane showed a slight difference in the FWHM values(mean values of UHR, LEHR, LEGP, and I-123 PAR were 11.3 mm, 13.6 mm, 15.8 mm, and 20.4 mm, respectively) between the center and the circumference of the field of view, in the radial direction, but a large difference in the tangential direction, with lower FWHM values(values of UHR, LEHR, LEGP, and I-123 PAR were 8.4 mm, 8.7 mm, 9.3 mm, and 10.8 mm at 12 cm from the center, respectively). In comparison of SPECT images with the four types of collimators, except for the I-123 PAR collimator, image qualities of UHR, LEHR, and LEGP collimators showed only a slight difference. From the point of for, it is expected that the LEGP collimator would be suitable for SPECT imaging with $^{99m}Tc$.

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내구시험을 통한 베어링의 열화 특성과 그리스의 화학적 열화 특성 연관성 분석 (Correlation Analysis Between Chemical Degradation Characteristics of Grease and Degradation Characteristics of Bearing Through Durability Test)

  • 강보식;이충성;류경하
    • 한국산업융합학회 논문집
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    • 제25권6_3호
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    • pp.1239-1246
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    • 2022
  • This paper introduces the effect of grease on the degradation characteristics of bearings used as key components of packaging equipment and automation systems. Bearings parts are installed to fix and support the rotating body of the system, and performance degradation of the bearings has a great effect on the life of the system too. When bearings are used in various devices and systems, the grease is applied to reduce friction and improve fatigue life. Determining the type of lubricant (grease) is important because it has a great influence on the operating environment and lifespan and ensures long lifespan of systems and facilities. However, studies that simultaneously compared and analyzed the change in mechanical degradation characteristics and the comparison of chemical degradation characteristics according to grease types under actual operating conditions are insufficient. In this paper, three types of small harmonic drive, high-load reducer, and low-load reducer grease used in power transmission joint modules are experimentally selected and finally injected into ball bearings with a load (19,500N) to improve bearing durability. Degradation characteristics were tested by attaching to test equipment. At this time, after the durability test under the same load conditions, the mechanical degradation characteristics, that is temperature, vibration according to the three greases types. In addition, the chemical degradation characteristics of the corresponding grease was compared to present the results of mutual correlation analysis.

송풍유무에 따른 우분퇴비화 효과분석 및 우분퇴비의 입상화방법별 특성비교 (Analysis of the Composting Effect on Cow Manure by Aeration and Comparison of Characteristics of Cow Manure Pellet Composts According to Granulation Processing Method)

  • 정광화;김중곤;이동준;;곽정훈
    • 유기물자원화
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    • 제25권2호
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    • pp.69-76
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    • 2017
  • 2015년 기준으로 국내에서 발생된 가축분뇨 중의 80%가 퇴비로 전환되어 유기성 비료자원으로서 농경지에 시용되었다. 현재 이용되고 있는 가축분 퇴비의 형태는 분말형이 주를 이루고 있으며 입상 형태 퇴비로서는 직경 5~10 mm 크기의 원기둥 모양으로 가공된 펠릿이 일부 사용되고 있다. 본 연구에서는 우분을 부숙시킨 분말형 퇴비를 원기둥 막대 형태의 펠릿과 구(구슬) 형태(Sphere type)의 펠릿으로 가공하였을 때의 특성을 비교, 분석하였다. 분말 형태 퇴비의 질소농도는 건물량 기준으로 1.05% 이었으며 원기둥 막대 형태와 구 형태로 펠릿화된 이후에는 각각 1.23%와 1.24%로서 가공방법에 따른 차이는 거의 발생하지 않는 것으로 나타났다. 입상화 가공효과를 분석한 결과, 스쿠루 압착식과 원통 회전형 입상화 방식 등의 두 가지 가공방식 모두에서 원료의 수분함량이 입상화가공에 있어 가장 큰 영향요소인 것으로 나타났다. 수분 함량 20% 수준으로 건조하였을 때의 비중은 분말형 퇴비에 비해 원기둥 막대 형태와 구 형태 펠릿퇴비는 각각 1.38과 1.13 수준이었다. 퇴비수송과 취급에 관련되는 요소인 압축강도는 원기둥 막대형과 구 형태 펠릿퇴비에서 각각 $27.6kg/cm^2$$11.3kg/cm^2$ 수준으로서 원기둥 막대형태 펠릿퇴비가 더 높았다.

Study on Optimal Working Conditions for Picking Head of Self-Propelled Pepper Harvester by Factorial Test

  • Kang, Kyung-Sik;Park, Hoon-Sang;Park, Seung-Je;Kang, Young-Sun;Kim, Dae-Cheol
    • Journal of Biosystems Engineering
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    • 제41권1호
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    • pp.12-20
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    • 2016
  • Purpose: Pepper prices have risen continuously because of a decrease in cultivation area; therefore, mechanical harvesting systems for peppers should be developed to reduce cost, time, and labor during harvest. In this study, a screw type picking head for a self-propelled pepper harvester was developed, and the optimal working conditions were evaluated considering helix types, winding directions of helix, and rotational speeds of the helix. Methods: The screw type was selected for the picking head after analyzing previous studies, and the device consisted of helices and a feed chain mechanism for conveying pepper branches. A double helix and a triple helix were manufactured, and rotational speeds of 200, 300, and 400 rpm were tested. The device was controlled by a variable speed (VS) motor and an inverter. Both the forward and reverse directions were tested for the winding and rotating directions of the helix. An experiment crop (cultivar: Longgreenmat) was cultivated in a plastic greenhouse. The test results were analyzed using the SAS program with ANOVA to examine the relationship between each factor and the performance of the picking head. Results: The results of the double and triple helix tests in the reverse direction showed gross harvest efficiency levels of 60-95%, mechanical damage rates of 8-20%, and net marketable portion rates of 50-80%. The dividing ratio was highest at a rotational speed of 400 rpm. Gross harvest efficiency was influenced by the types of helix and rotational speed. Net marketable portion was influenced by rotational speed but not influenced by the type of helix. Mechanical damage was not influenced by the type of helix or rotational speed. Conclusions: Best gross harvest efficiency was obtained at a rotational speed of 400 rpm; however, operating the device at that speed resulted in vibration, which should be reduced.

드럼 브레이크 시스템의 비정상 열전달 해석 (Unsteady State Heat Transfer Analysis of Drum Brake System)

  • 이계섭;국종영;천인범
    • 한국자동차공학회논문집
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    • 제7권9호
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    • pp.172-181
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    • 1999
  • The brakes employed on commercial vehicles must be able to withstand three types of demanding services which are use-emergency stops from high speed, many repeated stops as in a delivery or bus route, and speed control in mountain descents. Two type of friction brakes are in use ; drum breaks and disc brakes. Drum brakes are of the internally expanding type in which two shoes fitted externally with friction material are forced outward against the inside of a rotating drum on the wheel unit. In this case, the Braking power is produced by the friction force between a drum and a lining, and is converted into heat. In this research an unsteady state heat transfer analysis for drum brake system of heavy truck has been performed by ABAQUS/standard code in the case of single-braking and the repeated braking condition. The temperature histories obtained by the finite Element analysis have been compared with the result calculated by the simplified formulation and the result obtained by the experiment of real vehicle conditions.

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