• 제목/요약/키워드: Pitch ratio

검색결과 527건 처리시간 0.03초

소아 편평족 환자에서 Pressure Based Customized 3-Dimensional Printing Insole의 유용성 (Effect of Pressure Based Customized 3-Dimensional Printing Insole in Pediatric Flexible Flat Foot Patients)

  • 이시욱;최정훈;권혁준;송광순
    • 대한족부족관절학회지
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    • 제24권3호
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    • pp.113-119
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    • 2020
  • Purpose: A flatfoot that fails to form a longitudinal foot arch is a common lower limb deformity in children. This study evaluated the structural and functional effects of the insole for pediatric flexible flat foot (PFFF). Materials and Methods: Twenty-nine PFFF patients (20 boys and 9 girls, 58 feet) with bilateral symptomatic flatfoot deformities between February 2017 and May 2019 were included in this study. Sixteen patients (32 cases, study group) were treated with a pressured based 3-dimensional printing insole, and 13 patients (26 cases, control group) were followed up regularly without any treatment. Flatfoot was diagnosed by a lateral talo-first metatarsal angle of more than 4° in convex downward and talocalcaneal angles of more than 30° and a calcaneal pitch of less than 20°. The foot pressures, including the midfoot pressure, total foot pressure, and the ratio of the midfoot pressure to the total foot pressure, were evaluated by pedobarography. The clinical scores were assessed using the visual analogue scale (VAS), American Orthopaedic Foot and Ankle Society (AOFAS), and Pediatrics Outcomes Data Collection Instrument (PODCI) scores. Results: The mean age of the study group was 9.16 years, and the mean age of the control group was 7.73 years. The mean follow-up period was 16 months. The change in the lateral talocalcaneal angle was -4.664°±1.239° in the study group and -0.484°±1.513° in the control group. A significant difference in the amount of change of the lateral talocalcaneal angle was observed between the two groups (p=0.034). The midfoot pressures were similar in the two groups. Conclusion: Pressure based customized 3-dimensional printing insole in PFFF may have some effect on the hindfoot bony alignment, but it does not affect the changes in midfoot pressure.

90도 요철이 설치된 회전덕트에서 유출이 열/물질전달에 미치는 영향 (Effects of Bleeding on Heat/Mass Transfer in a Rotating Channel with Transverse Ribs)

  • 박석환;전윤홍;김경민;이동현;조형희
    • 한국유체기계학회 논문집
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    • 제9권1호
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    • pp.25-31
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    • 2006
  • The present study investigates the effects of bleed flow on heat/mass transfer and pressure drop in a rotating channel with transverse rib turbulators. The hydraulic diameter $(D_h)$ of the square channel is 40.0mm. The bleed holes are located between the rib turbulators on leading surface and the hole diameter (d) is 4.5 mm. The square rib turbulators are installed on both leading and trailing surfaces. The rib-to-rib pitch is 10.0 times of the rib height(e) and the rib height-to-hydraulic diameter ratio $(e/D_h)$ is 0.055. The tests were conducted at various rotation numbers (0, 0.2, 0.4), while the Reynolds number and the rate of bleed flow to main flow (BR) were fixed at 10,000 and $10\%$, respectively. The results suggest that the heat/mass transfer characteristics in the internal cooling passage are influenced by rib turbulators, bleed flow and the Coriolis force induced by rotation. For the rotating ribbed passage with bleed flow, the heat/mass transfer on the leading surface is hardly affected by bleed flow, but that on the trailing surface decreases due to the diminution of main flow. The results also show that the friction factor decreases with the bleed flow.

Assessment of vertical wind loads on lattice framework with application to thunderstorm winds

  • Mara, T.G.;Galsworthy, J.K.;Savory, E.
    • Wind and Structures
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    • 제13권5호
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    • pp.413-431
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    • 2010
  • The focus of this article is on the assessment of vertical wind vector components and their aerodynamic impact on lattice framework, specifically two distinct sections of a guyed transmission tower. Thunderstorm winds, notably very localized events such as convective downdrafts (including downbursts) and tornadoes, result in a different load on a tower's structural system in terms of magnitude and spatial distribution when compared to horizontal synoptic winds. Findings of previous model-scale experiments are outlined and their results considered for the development of a testing rig that allows for rotation about multiple body axes through a series of wind tunnel tests. Experimental results for the wind loads on two unique experimental models are presented and the difference in behaviour discussed. For a model cross arm with a solidity ratio of approximately 30%, the drag load was increased by 14% when at a pitch angle of $20^{\circ}$. Although the effects of rotation about the vertical body axis, or the traditional 'angle of attack', are recognized by design codes as being significant, provisions for vertical winds are absent from each set of wind loading specifications examined. The inclusion of a factor to relate winds with a vertical component to the horizontal speed is evaluated as a vertical wind factor applicable to load calculations. Member complexity and asymmetric geometry often complicate the use of lattice wind loading provisions, which is a challenge that extends to future studies and codification. Nevertheless, the present work is intended to establish a basis for such studies.

주름높이의 변화를 고려한 판형열교환기의 완전발달유동 및 열전달 수치해석 (Numerical Simulation of the Fully Developed Flow and Heat Transfer of a Plate Heat Exchanger Taking into Account Variation in the Corrugation Height)

  • 모정하
    • 대한기계학회논문집B
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    • 제36권1호
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    • pp.1-8
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    • 2012
  • 본 연구에서는 주름높이가 고려된 판형열교환기의 완전발달유동 및 열전달특성을 수치적으로 해석하였다. 여러 개의 단위셀(5개 또는 7개)을 연결한 다중셀에 입구부와 출구부가 부착된 모델을 기본으로 P/H비 변화($2.0{\leq}P/H{\leq}4.0$)에 따른 모델에 대하여 수치해석을 수행하였다. 작동유체는 물이며, 수치조건은 쉐브론각 $20^{\circ}$, $300{\leq}Re{\leq}1,500$이다. 그리고 마찰인자는 $f=CRe^m$의 형태로, Colburn 계수는 $j=CRe^m$의 형태로 상관관계식을 제시하였다. 수치해석 결과 완전발달유동은 세 번째 셀부터 시작되었으며, 누셀트수는 P/H비가 작을수록 큰 값을 나타냈다.

공기식 PVT 컬렉터에 적용된 타공 베플의 변수에 따른 열 성능 향상을 위한 연구 (A Study for Improving Thermal Performance According to Variables of Perforated Baffle in Air-type PVT Collector)

  • 유지숙;김진희;김준태
    • 한국태양에너지학회 논문집
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    • 제39권6호
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    • pp.83-91
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    • 2019
  • Photovoltaic thermal (PVT) collectors are devices that simultaneously produce electricity and heat. Research on conventional air-type PVT collector focuses on installing baffles to enhance the collector's thermal performance. However, the baffles have pressure drop inside the collector which degrades the thermal performance. Thus, it is necessary to design baffles to smoothen the flow inside the air-type PVT collector. Alternatively, installing perforated baffles in air-type PVT collectors can reduce the collector weight, but parameters such as the diameter of the perforated holes and the height of the perforated plates should be considered. Therefore, the main aim of this study was to analyze thermal characteristics of each variable of perforated baffles installed inside air-type PVT collector. For this purpose, the uniformity of air flow in the collector was compared through NX program, and the resultant heat gain and thermal efficiency of the air-type PVT collector were compared and analyzed. Therefore, the main aim of this study was to analyze thermal characteristics of each variable (Baffle angle, length, height, pitch, perforated ratio) of perforated baffles installed inside air-type PVT collector. For this purpose, the uniformity of air flow in the collector was compared through CFD program, and the resultant heat gain and thermal efficiency of the air-type PVT collector were compared and analyzed. As a result, the maximum outlet temperature was increased by 1.45 times and the heat gain was increased by 193.8 Wth, depending on the perforated baffle plate, compared to the collector without the baffle. The heat transfer performance showed that the maximum internal velocity was 1.61 times higher and the Reynolds number was 1.06 times higher depending on the parameters of the baffle plate.

기울어진 덕트 내 헬리컬 코일의 자연대류 열전달 (Natural Convection Heat Transfer of an Inclined Helical Coil in a Duct)

  • 박주현;정범진
    • 에너지공학
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    • 제23권2호
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    • pp.13-20
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    • 2014
  • 헬리컬 코일이 덕트 내부에 있을 때, 기울기에 따른 자연대류 열전달을 실험적으로 측정하였다. 고부력 조건을 구현하기 위하여 유사성에 기초하여 열전달 실험을 대신하여 물질전달 실험을 수행하였다. RaD 수 $4.55{\times}10^6$에서, 턴(Turn) 수를 1~10, P/D를 1.3~5, 헬리컬 코일의 기울기를 $0^{\circ}{\sim}90^{\circ}$까지 변화시켰다. 헬리컬 코일의 턴 수가 1일 때, 측정된 $Nu_D$ 수는 McAdams의 수평관 자연대류 열전달 상관식과 거의 일치하였다. 기울어진 덕트 내 헬리컬 코일의 자연대류 열전달은 피치, 턴 수, 덕트 높이에 따라 복합적으로 변화하였고 이는 속도 효과, 굴뚝 효과, 예열 효과로 분석되었다. 본 연구의 결과는 Compact heat exchanger에서의 자연대류 열전달에 대한 현상학적 분석에 기여한다.

자화 유도 결합 플라즈마의 산화물 건식 식각 특성에 관한 연구

  • 정희운;김혁;이우현;김지원;황기웅
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제45회 하계 정기학술대회 초록집
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    • pp.230-230
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    • 2013
  • 플라즈마를 활용한 미세 패턴의 건식 식각은 반도체 소자 공정에 있어서 가장 중요한 기술 중 하나이다. 한편, 매년 발행되는 ITRS Roadmap 에 따르면 DRAM 의 1/2 pitch 는 감소하는 동시에 Contact A/R (Aspect Ratio) 는 증가하고 있다. 이러한 추세 속에서 기존의 공정을 그대로 활용할 경우 식각물의 프로파일 왜곡 혹은 휨 현상이 발생하고 식각 속도가 저하되며 이러한 특성들이 결과적으로는 생산성의 저하로 이어질 수 있다. 이러한 현상을 최소화하기 위해서는 무엇보다 독립된 plasma parameter 들이 식각물의 프로파일 혹은 식각 속도 등에 어떠한 영향을 주는 지에 대한 학문적 이해가 필요하다. 본 논문에서는 최소 CD (Critical Dimenstion) 100nm, 최대 A/R 30 인 HARC (High Aspect Ration Contact hole) 의 식각 특성이 plasma parameter 에 따라 어떻게 변하는지 확인해 보고자 한다. 산화물의 식각은 대표적인 high density plasma source 중의 하나인 ICP에서 진행하였으며 기존에 알려진 plasma parameter 에 더하여 자장의 인가가 산화물의 식각 특성에 어떠한 영향을 주는지 살펴보고자 전자석을 ICP 에 추가로 설치하여 실험을 진행하였다. 결과적으로, plasma parameter 에 따른 혹은 자장의 세기 변화에 따른 산화물의 식각 실험을 플라즈마 진단 실험과 병행하여 진행함으로써 다양한 인자에 따른 산화물의 식각 메커니즘을 정확하게 이해하고자 하였다. 실험 내용을 요약하면 다음과 같다. 먼저, 전자석의 전류 인가 조건에 따라 축 방향 혹은 반경 방향으로의 자장의 분포가 달라질 수 있음을 확인하였고 플라즈마 진단 결과 축 방향 혹은 반경 방향으로의 자장이 증가하였을 때 고밀도의 플라즈마가 형성될 수 있음은 물론 반경 방향으로의 플라즈마 밀도의 균일도가 향상됨을 확인할 수 있었다. 또한 ICP 조건에서 바이어스 주파수, 압력, 바이어스 파워, 소스 파워, 가스 유량 등의 plasma parameter 가 산화물의 식각 특성에 미치는 영향 및 메커니즘을 규명하였고 이 과정을 통해 최적화된 프로파일을 바탕으로 축 방향 혹은 반경 방향으로 증가하는 자장을 인가하였을 때 (M-ICP 혹은 자화 유도 결합 플라즈마) ICP 대비 산화물의 식각 속도가 증가함은 물론 PR-to-oxide 의 선택비가 개선될 수 있음을 확인할 수 있었다. 자장의 인가에 따른 산화물의 정확한 식각 메커니즘은 향후의 실험 진행을 통해 이해하고 이를 통해 궁극적으로는 산화물의 식각 공정이 나아가야 할 올바른 방향을 제시하고자 한다.

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3차원 실장용 TSV의 펄스전류 파형을 이용한 고속 Cu도금 충전 (High Speed Cu Filling Into TSV by Pulsed Current for 3 Dimensional Chip Stacking)

  • 김인락;박준규;추용철;정재필
    • 대한금속재료학회지
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    • 제48권7호
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    • pp.667-673
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    • 2010
  • Copper filling into TSV (through-silicon-via) and reduction of the filling time for the three dimensional chip stacking were investigated in this study. A Si wafer with straight vias - $30\;{\mu}m$ in diameter and $60\;{\mu}m$ in depth with $200\;{\mu}m$ pitch - where the vias were drilled by DRIE (Deep Reactive Ion Etching) process, was prepared as a substrate. $SiO_2$, Ti and Au layers were coated as functional layers on the via wall. In order to reduce the time required complete the Cu filling into the TSV, the PPR (periodic pulse reverse) wave current was applied to the cathode of a Si chip during electroplating, and the PR (pulse-reverse) wave current was also applied for a comparison. The experimental results showed 100% filling rate into the TSV in one hour was achieved by the PPR electroplating process. At the interface between the Cu filling and Ti/ Au functional layers, no defect, such as a void, was found. Meanwhile, the electroplating by the PR current showed maximum 43% filling ratio into the TSV in an hour. The applied PPR wave form was confirmed to be effective to fill the TSV in a short time.

아티큘레이티드 타워 형태의 부이 구조물에 관한 파랑 중 운동응답 및 앵커 지지력에 관한 모형시험 연구 (Model Test on Motion Responses and Anchor Reaction Forces of an Articulated Tower-Type Buoy Structure in Waves)

  • 권용주;남보우;김남우;원영욱;박인보;김시문
    • 한국해양공학회지
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    • 제33권3호
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    • pp.214-221
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    • 2019
  • A series of model tests was performed to evaluate the survivability of an articulated tower-type buoy structure under harsh environmental conditions. The buoy structure consisted of three long pipes, a buoyancy module, and top equipment. The scale model was made of acrylic pipe and plastic with a scale ratio of 1/22. The experiments were carried out at the ocean engineering basin of KRISO. The performance of the buoy structure was investigated under waves only and under combined environmental conditions from sea state (SS) 5 to 7. A nonlinear time-domain numerical simulation was conducted using the mooring analysis program OrcaFlex. The survivability of the buoy was analyzed based on three factors: the pitch motion, submergence of the top structure, and anchor reaction force. The model test results were directly compared to the results of numerical simulations. The effects of the sea state and combined environment on the performance of the buoy structure were investigated.

다구찌 실험 계획법을 활용한 평삭 가공에서의 표면 거칠기에 대한 절삭조건 영향 분석 (Effects of Cutting Parameters on Surface Roughness in Planing Using Taguchi Method)

  • 서동현;권예필;김영재;최환진;전은채
    • 한국기계가공학회지
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    • 제20권8호
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    • pp.93-98
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    • 2021
  • The complex effects of the machining parameters make it is difficult to control and predict surface roughness. The theoretical surface roughness observed during mechanical machining with a round tool is determined by the tool radius and pitch. However, it was revealed that other parameters, such as the depth of cut and cutting speed, also affect surface roughness. This study adapted the Taguchi method, which can analyze the effects of cutting parameters quantitatively with an efficient number of experiments, to optimize the parameters for better surface roughness. Experiments were designed based on an orthogonal array, and the quantitative effects on the surface roughness were analyzed using the S/N ratio. The surface roughness was affected by all parameters, especially the tool radius. The optimum cutting parameter values obtained in this study showed better surface roughness than the other combinations of the parameters.