• 제목/요약/키워드: Groove Design

검색결과 264건 처리시간 0.031초

휴반용 분무기의 Nozzle에 관한 연구(V) -원거리용 Nozzle- (A Study on the Wide Reach Nozzle of Sprayer (V) -The Long Range Nozzle-)

  • 옹장우;이상우
    • 한국농공학회지
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    • 제17권4호
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    • pp.3991-4000
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    • 1975
  • It is the aim of this study to investigate the influence of the factors in the sprayer nozzle for the travelling distance and to get nozzle design data in relation to the nozz1e with and without swirl plate. The factors of sprayer nozzle are composed of the spraying pressure, the helical angle of swirl plate, the helical groove depth of swirl plate, the distance of vortex chamber the slope of nozz1e cap, the curvature of nozzle cap and the hole diameter of nozz1e cap. The travelling distance and the size of sprayed particle are experimeted indoors by the factorial arrange-ment according to the 5 each level of the above factors. The results of this stupy are summarized as follows; 1. In the nozzle with swirl p1ate there were remarkable significance among factors each other, while without swirl plate were no significance. 2. The helical angle and groove depth in the nozzle with swirl plate were the highest effective factors. The effect of helical angle was very remarked in the quadratic curve with minium value. 3. The correlation betweenthe travelling distance and the sprayed particle size was no high and under 250 micron in the case with swirl plate, and there was higher correlation in the case without swirl plate. 4. The new ideal development of the swirl plate using of the most effective helical angle and groove depth will probably show the possiblities to make effective travelling distance over 8 meters and more over and to make average particle diameter under 300 micron.

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실리콘 v-groove를 이용한 광섬유-광검출기 어레이 모듈 제작 (Fabrication of the Optical Fiber-Photodiode Array Module Using Si v-groove)

  • 정종민;지윤규;박찬용;유지범;박경현;김홍만
    • 전자공학회논문지A
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    • 제31A권6호
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    • pp.88-97
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    • 1994
  • We describe the design, fabrication, and performance of the optical fiber-photodiode 1$\times$12 arry module using mesa-type InS10.53T GaS10.47TAS/INP 1$\times$12 PIN photodiode array. We fabricated the PIN PD array for high-speed optical fiber parallel data link optimizing quantum efficiency, operating speed sensitivity from the PIN-FET structure, and electrical AC crosstalk. For each element of the array, the diameter of the photodetective area is 80 $\mu$m, the diameter of the p-metal pad is 90 $\mu$m, and the photodiode seperation is 250 $\mu$m to use Si v-groove. Ground conductor line is placed around diodes and p-metal pads are formed in zigzag to reduce Ac capacitance coupling between array elements. The dark current (IS1dT) is I nA and the capacitance(CS1pDT) is 0.9 pF at -5 V. No signifcant variations of IS1dT and CPD from element to element in the array were observed. We calulated the coupling efficiency for 10/125 SMF and 50/125 GI MMF, and measured the responsivity of the PD array at the wavelength is 1.55 $\mu$ m. Responsivities are 0.93 A/W for SMF and 0.96 A/W for MMF. The optical fiber-PD array module is useful in numerous high speed digital and analog photonic system applications.

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다이아몬드 코어드릴 공정의 구멍가공 특성과 모델링 (Drilling Characteristics and Modeling of Diamond Core Drilling Processes)

  • 윤관우;정성종
    • 한국공작기계학회논문집
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    • 제17권4호
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    • pp.95-103
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    • 2008
  • Diamond core drills are applied to drill difficult-to-cut materials. This paper proposes basic understanding of ceramic drilling mechanics and characteristics of main factors affecting tool life, tool wear, cutting force, and chipping thickness. In contrast to conventional drilling, the core drilling process make deep grooves on the workpiece. One difficulty of it is the evacuation of chips from the drilled groove. As the drilling depth increases, an increased amount of chips tend to cluster together and clog the groove. Eventually severe wear develops and diamond grits are separated from the drill body. To relieve the clogging problem and to evacuate chips from the groove easily, the helical drilling process is applied for the core drilling process. To analyze drilling characteristics and derive optimal drilling conditions, tool life, tool wear, cutting force, and chipping thickness are quantified through the monitoring system and the Taguchi method. Mathematical models for the tool life and chipping thickness are derived from the response surface method. Optimal drilling database has been constructed through the experimental models.

A Comparison of the Heat Transfer Performance of Thermosyphon Using a Straight Groove and a Helical Groove

  • Han Kyuil;Cho Dong-Hyun
    • Journal of Mechanical Science and Technology
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    • 제19권12호
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    • pp.2296-2302
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    • 2005
  • This study is focused on the comparison of heat transfer performance of two thermosyphons having 60 straight and helical internal grooves. Distilled water has been used as working fluid. Liquid fill charge ratio defined by the ratio of working fluid volume to total internal volume of thermosyphon, the inclination angle and operating temperature were used as experimental parameters. The heat flux and heat transfer coefficient are estimated from experimental results. The conclusions of this study may be summarized as follows; Liquid fill charge ratio, inclination angle and geometric shape of grooves were very important factors for the operation of thermosyphon. The optimum liquid fill charge ratio for the best heat flux were $30\%$. The heat transfer performance of helically grooved tube was higher than that of straight grooved tube in low inclination angle (less than $30^{\circ}$), but the results were opposite in high inclination angle (more than $30^{\circ}$). As far as optimum inclination angle concerns, range of $25^{\circ}\~30^{\circ}$ for a helically grooved tube and about $40^{\circ}$ for a straight grooved tube are suggested angles for the best results.

펄스 레이저 가공에 의한 마이크로 그루브 패턴이 골 세포 유착에 미치는 영향 분석 (Analysis of the Effect of Micro-groove Patterns on Osseointegration using Pulsed Laser Processing)

  • 하석재;성시명;김혜진
    • Design & Manufacturing
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    • 제18권3호
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    • pp.30-36
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    • 2024
  • As the demand for biomaterials and medical devices increases due to advancements in medical technology and the rising average lifespan of the population, the importance of surface treatment technology for biometallic materials used in orthopedic implants is highlighted. Achieving stable mechanical attachment between the implant and human bone, specifically bone cell adhesion, is crucial. Without proper adhesion, issues such as inflammation and reduced load-bearing capacity can occur, leading to the need for implant reimplantation. Therefore, this paper focuses on creating a micro-groove pattern using a pulsed nanosecond laser on the surface of a titanium alloy (Ti6Al4V), a biometallic material, to promote cell adhesion. To evaluate the effectiveness of the pattern in enhancing cell adhesion, MG-63 osteoblasts were cultured on the micro-groove patterned surface, and their adhesion and morphological changes were analyzed. This study confirms the potential of laser processing as a surface treatment method for biometallic materials.

축-베어링 시스템의 연성 특성을 고려한 볼 베어링의 선정 (Ball-Bearing Selection Considering Flexibility of Shaft-Bearing System)

  • 윤기찬;최동훈
    • Tribology and Lubricants
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    • 제16권1호
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    • pp.39-45
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    • 2000
  • In this paper, the effects of shaft and bearing flexibilities are investigated for the accurate modeling of a shaft-bearing system supported by ball bearings. Generally, rolling bearings are modeled by simple rigid pin-joint in the mechanical design. However, they can no longer be modeled by ideal boundary conditions in the advanced applications because the rigid pin-joint model cannot satisfy the current trends of mechanical design decreasing mass and reducing volume. Consequently the flexible support model of ball bearing is investigated using the static analysis module developed by A .B. Jones and T. A. Harris. A simple two-bearing system, supported by two deep groove ball bearings and radially loaded on the shaft midway between the bearings, is utilized to validate the coupled model of shaft-bearing system. Numerical computations using the model indicate that the shaft span length, locating/floating bearing arrangements and applied bearing size are significant factors in determining the mechanical behaviors. The flexible support model of ball bearing can be escaped to over-estimate in the bearing fatigue life. The proposed simple design formulation obtained by numerical simulations can approximately predict a rate of bearing life reduction as a function of shaft span length/shaft diameter (L/d).

공형압연 공정에서 소재 표면흠 발생억제를 위한 패스 스케줄 설계 (Pass Schedule Design to Inhibit Surface Cracks Generation on Workpiece in Groove Rolling Process)

  • 나두현;이영석
    • 대한기계학회논문집A
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    • 제34권10호
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    • pp.1443-1453
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    • 2010
  • 본 연구에서는 소재 표면흠 발생을 억제하기 위해 유한요소법을 사용하여 세아베스틸 선재 조압연 라인 공정을 모사하였다. 선재 조업연 라인의 2 번 공형을 설계하였고 이 공형을 압연 라인에 적용하였다. 또한 유한요소법을 사용하여 3 번, 4 번 공형 롤 갭이 변경된 새로운 패스 스케줄을 제안하였다. 본 연구에서는 전단응력비에 의존적인 전단파괴 모델을 사용하였고 소재의 손상된 요소 수를 비교하였다. 손상된 요소는 표면흠을 의미한다. 결과적으로 2 번 공형이 변경된 후 불량률은 이전 공형보다 1.43% 감소되었다. 그리고 새로운 패스 스케줄의 손상된 요소 수는 현재 패스 스케줄보다 37.6% 감소되었다.

PSG 광도파박막을 이용한 $1.3/1.55\mum$ WDM coupler의 설계 및 제작 (Design and fabrication of the $1.3/1.55\mum$ WDM coupler with the PSG waveguide films)

  • 전영윤;김한수;이용태;이형종
    • 한국광학회지
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    • 제6권4호
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    • pp.310-316
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    • 1995
  • 유한영역에서의 조화함수전개법으로 인접한 두 도파로 코어 중심간의 거리 및 도파로 변수에 따른 결합길이를 계산하여 $1.3/1.55\mum$ WDM coupler을 설계하였다. 저압화학기상증착법에 의해 PSG 도파박막을 제작하고 laser lithography와 $CF_4/O_2$ RIE 공정 등을 이용하여 WDM coupler를 제작하였다. 또한 광섬유를 지지 및 고정하기 위하여 Si 기판 위에 V-groove를 만들었으며 제작된 WDM coupler와 V-groove로 지지된 광섬유를 UV curing epoxy를 사용하여 접속하였다. 제작된 WDM coupler의 $1.3.\mum$, $1.55\mum$에서의 분지별 도파모드를 관측하고 분할비를 측정한 결과 최대 분할비는 각각 9dB, 12dB였다.

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The Study on the Design Factors of the Groove-Roller Seed Metering Device for Seeder of Foxtail millet & Sorghum

  • Choi, Il Su;Kang, Na Rae;Kim, Young Keun;Jun, Hyeon Jong;Choi, Yong;Kang, Tae Gyoung;Hyun, Chang Sik;Lee, Sang Hee;Kim, Jin Gu;Yu, Seoung Hwa;Chung, Sun Ok
    • Journal of Biosystems Engineering
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    • 제43권4호
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    • pp.303-310
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    • 2018
  • Purpose: This research was conducted to determine the design factors of a seed-metering device for the development of a seeder. The device allows the seeder to sow precisely one to three seeds of foxtail millet and sorghum. To obtain fundamental information regarding the design of the seed-metering device, examination of the physical properties of foxtail millet and sorghum was conducted. Methods: Based on the results of an adaptability test using an existing seeder with foxtail millet and sorghum, an experimental roller-type seed-metering device was made. The seeding factors considered during the experiment were the width, length, and depth, as well as the shape of the groove in the seed-metering roller. By adapting an analysis of variance, the experimental results of the seeding factors were analyzed. Results: The measured results of the respective lengths and widths of the seeds were 2.11 and 1.64 mm for foxtail millet, and 3.68 and 3.32 mm for sorghum, respectively. The weight of 1,000 seeds was 2.43 g for foxtail millet and 17.5 g for sorghum. The seeds were of an elliptical shape, considering the length and width. A sieve analysis showed that the size distribution of foxtail millet was quite regular whereas that of sorghum was irregular. Conclusions: The seeding results showed that the rates of incorrect planting were low when the groove of the roller-type metering device is an elliptical type. To sow one to three seeds, the groove of roller-type metering devices $2.0mm{\times}4.0mm{\times}1.5mm$ ($width{\times}length{\times}depth$) for foxtail millet, and $4.0mm{\times}8.0mm{\times}3.0mm$ and $4.5mm{\times}8.0mm{\times}3.0mm$ ($width{\times}length{\times}depth$) for Sorghum.

LPG 용기용 밸브패킹의 누설안전에 관한 수치적 연구 (Numerical Study on the Sealing Safety of a Valve Packing in a LPG Cylinder)

  • 김청균;김태환
    • 한국가스학회지
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    • 제11권1호
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    • pp.34-39
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    • 2007
  • 본 본문에서는 LPG 용기용 밸브의 개폐과정에서 발생하는 밸브패킹과 밸브시트의 상대접촉 마찰작용에 따른 밀봉성에 대한 FEM 해석결과를 제시하고 있다. 개폐용 밸브의 밀봉작용은 나일론-66으로 제조한 디스크 형상의 밸브패킹이 원형 파이프의 밸브시트 단면을 막아 LP 가스의 외부 송출을 차단하면서 완료된다. 밸브패킹은 밸브시트에 대하여 평면으로 접촉밀봉을 하는 경우와 원형홈의 둥근접촉 형상에 대한 밀봉 압착력을 확보하는 두 가지가 있다. FEM 해석 및 실험적 연구결과에 의하면, 밸브패킹을 사용하기 이전의 평면접촉 밀봉 작용력은 4.9 MPa로 높지만, 밸브를 사용한 이후의 원형홈 접촉 밀봉력은 4.4 MPa로 약간 낮게 나타났다. 그러나 이들 최대응력은 나일론 소재의 항복응력 83 MPa에 비하여 대단히 낮은 값이기 때문에 현재의 개폐밸브용 패킹은 과도하게 설계되었다 할 수 있다.

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