• 제목/요약/키워드: Depth & Width

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디젤엔진 피스톤 링 코팅 층의 마찰특성 (Frictional characteristics of coating layer in diesel engine piston ring)

  • 장정환;주병돈;이호진;김은화;문영훈
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2009년도 춘계학술대회 논문집
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    • pp.294-297
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    • 2009
  • The frictional behaviors of Cermets/Cr-Ceramics and Cu-Al coatings of piston ring were investigated. Friction tests were carried out by pin-on-disk test and materials properties of coating layer were analyzed by nano indentation tester. Higher friction coefficient was obtained at harder coating with rougher surface. In case of hard-coating, the scratch depth, width and pile-up height had close relationship with indentation hardness. So the scratch width, depth and pile-up height increases with decreasing friction coefficient. But in case of soft-coating, the friction coefficients are strongly dependent on the morphological characteristics after nano scratching more than indentation hardness.

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정밀제어용 표면부착형 영구자석 동기전동기의 코깅토크 및 토크리플 저감 설계 (Design of Cogging Torque and Torque Ripples Reduction for High Precision Controlled SPMSM)

  • 김창기;이상곤;정상용
    • 전기학회논문지
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    • 제58권10호
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    • pp.1923-1929
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    • 2009
  • The design of SPMSM(surface mounted permanent magnet synchronous motor) has been performed to reduce cogging torque and torque ripples. In general, cogging torque and torque ripples are affected by the shapes of teeth width, yoke depth, magnet pole arc, etc. Particularly, the minimum design point of cogging torque and torque ripples are different so that the design of SPMSM should be done to compromise both of them for precision application. In this paper, the design of PMSM for EPS(electric power steering) system is performed to verify the validity, and the design characteristics versus teeth width, yoke depth, and magnet pole arc are investigated in order to find out the minimum point of cogging torque and torque ripples. In addition, skew of PM is applied for cogging torque reduction.

고분자 전해질 연료전지용 바이폴라 플레이트의 유로 연구 (Study on the channel of bipolar plate for PEM fuel cell)

  • 안범종;고재철;조영도
    • 한국가스학회지
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    • 제8권2호
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    • pp.15-27
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    • 2004
  • 본 논문은 상용 프로그램인 Fluent를 이용하여 고분자 전해질 연료전지(polymer electrolyte membrane fuel cell)의 바이폴라 플레이트 위에 새겨진 유로형상을 분석함으로서 연료전지의 성능을 향상시키는데 그 목적이 있다. 수소 소모량이 가장 많은 유로크기를 구하기 위하여 0.5 ${\~}$ 3.0mm의 범위에 대해 시뮬레이션을 수행하였으며, 유로너비, 지면너비, 유로깊이가 적을수록 아노드에서 수소이용율이 높음을 알 수 있었다. 유로너비가 증가하면 유로의 전체길이를 감소하므로 유로에서 압력하락이 감소하게 되며, 지면너비를 증가시키면 수소가 지면 밑으로 확산하여 수소의 순 소비가 감소하기 때문이다. 또한 유로너비를 변화시키는 것은 지면너비를 변화시키는 것보다 수소 소모에 민감하게 영향을 끼침을 알 수 있었다. 유로깊이에 따른 수소 소모량의 변화는 유로너비에 비해 크지 않으나 유로깊이는 바이폴라 플레이트의 부피에 크게 영향을 미치므로 가능한 한 적게 하여야 한다. 그러나 현실적으로 기계가공이 가능한 1mm이상의 유로에서는 유로너비 1.0mm, 지면너비 1.0mm, 유로깊이 0.5mm에서 수소 이용율이 가장 높았으며 최적 유로크기로 판단된다. 시뮬레이션결과로부터 최적 유로크기로 성형한 2cm${\times}$2cm크기의 대각선형과 5자형 유동장에 MEA를 결합한 단위전지의 성능을 100W 연료전지평가시스템을 이용하여 측정하였다. 측정결과는 대각선형과 5자형에서 유사하게 높은 OCV가 나타났으며, 전류밀도는 0.6V이하에서는 대각선형이 $2-40mA/m^2$ 더 높았으나 0.7-0.8V에서는 S자형이 $5-10mA/m^2$ 더 높게 나타났다.질을 향상시키고 의료자원의 효율적인 이용을 촉진하기 위해 호스피스 완화의료 서비스의 표준화와 제도화가 필요하다.를 활용한 사용자인터페이스(UI)디자인의 가능성을 확대시킬 수 있을 것이다. 스크린의 사용에 있어서 사용자의 시각적 한계성을 극복하기 위한 새로운 GUI의 시도와 제안은 향후 모바일 기기 디자인의 새로운 방향성을 제시하고 있다.각되며 이를 위해서는 호스피스 관련 기관뿐만 아니라 국가적 차원의 아동 호스피스에 대한 관심과 지원이 요구된다고 생각한다. 양상과 일치하였고 표준조건(water flux 1 cm/일)에서 예측된 이동소요시간에 따라 metolcarb는 most mobile, molinate와 fenobucarb, isazofos는 mobile내지 most mobile, dimepiperate는 moderately mobile이나 mobile, diazinon은 mobile, fenitrothion과 parathion은 slightly mobile 또는 mobile, chloipyrifos-methyl은 immobile이나 slightly mobile 등급에 속하는 것으로 나타났다.히 요구되고 있는 현실이다.브로 출시에 따른 마케팅 및 고객관리와 관련된 시사점을 논의한다.는 교합면에서 2, 3, 4군이 1군에 비해 변연적합도가 높았으며 (p < 0.05), 인접면과 치은면에서는 군간 유의차를 보이지 않았다 이번 연구를 통하여 복합레진을 간헐적 광중합시킴으로써 변연적합도가 향상될 수 있음을 알 수 있었다.시장에 비해 주가가 비교적 안정적인 수준을 유지해 왔다고 볼 수 있다.36.4%)와 외식을 선호(29.1%)${\lrcorner}$ 하기 때문에 패스트푸드를 이용하게 된 것으로 응답 하였으며, 남 여 대학생간에는 유의한

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레이저 유도에칭을 이용한 티타늄 미세채널 제조 (Fabrication of Titanium Microchannels by using Ar+ Laser-assited Wet Etching)

  • 손승우;이민규;정성호
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2004년도 추계학술대회 논문집
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    • pp.709-713
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    • 2004
  • Characteristics of laser-assisted wet etching of titanium in phosphoric acid were investigated to examine the feasibility of this method for fabrication of high aspect ratio microchannels. Laser power, number of scans, etchant concentration, position of beam waist and scanning speed were taken into consideration as the major process parameters exerting the temperature distribution and the cross sectional profile of etched channels. Experimental results indicated that laser power influences on both etch width and depth while number of scans and scanning speed mainly affect on the etch depth. At a low etchant concentration, the cross sectional profile of an etched channel becomes a U-shape but it gradually turns into a V-shape as the concentration increases. On the other hand, surface of the laser beam focus with respect to the sample surface is found to be a key factor determining the bubble dynamics and thus the process stability. It is demonstrated that metallic microchannels with different cross sectional profiles can be fabricated by properly controlling the process parameters. Microchannels of aspect ratio up to 8 with the width and depth ranges of 8∼32 m and 50∼300 m, respectively, were fabricated.

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A study on the machinability of SUS304

  • Lim, K.Y.;Yu, K.H.;Seo, N.S.
    • 한국정밀공학회지
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    • 제10권1호
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    • pp.34-41
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    • 1993
  • SUS304 is wellknown as difficult-to-machine materials. It is easy to appear workhardened, and workhardening is one of the causes of groove wear on the tool. In this paper, the author would like to compare the width of flank wear with that of groove wear, and to find whether the groove wear can be used as a criterion of a tool life. The design of the twelve tests provides three levels for each variable (speed: 200m/min, 118m/min, 70m/min; feed: 0.3mm/rev, 0.17mm/rev, 0.1mm/rev; depth of cut: 0.4mm, 0.28mm, 0.2mm). The study of tool-life testing by statistical technique follows usual most scientific sequence. So the tool-life predicting equation is calculated by the method of least squares. The overall adequacy of the model can be verified by the analysis of variance. The results obtained are as follows : 1) When SUS304 is cut in 200(m/min), the width of flank wear is much larger than that of groove wear. 2) In cutting speed 118m/min, flank wear is a little larger than groove wear and in the cutting speed 70m/min, the latter is a little larger so that it is reasonable to determine the tool life according the crierion by groove wear in the low cutting speed (less than 70m/min). 3) Owing to the burr the depth of engagement along the cutting edge is extended toward the shank.

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Strength degradation of reinforced concrete piers wrapped with steel plates under local corrosion

  • Gao, Shengbin;Ni, Jie;Zhang, Daxu;Ge, Hanbin
    • Steel and Composite Structures
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    • 제24권6호
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    • pp.753-765
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    • 2017
  • This paper aims to investigate the strength degradation of reinforced concrete piers wrapped with steel plates which corrode at the pier base by employing a three dimensional elasto-plastic finite element formulation. The prediction accuracy of the employed finite element analysis method is firstly verified by comparing the analytical results with test results. Then, a series of parametric studies is carried out to investigate the effects of steel plate's corrosion position along width direction, corrosion depth along plate thickness, corrosion range along width direction, and steel plate-concrete bonding degradation on the strength of the piers. It is observed that the strength degradation of the piers is closely related to steel plate's corrosion position, corrosion depth and corrosion range in the case of local corrosion on the webs. In contrast, when the base of flanges corrodes, the strength degradation of the piers is only related to steel plate's corrosion depth and corrosion range, and the influence of corrosion position on the strength degradation is very gentle. Furthermore, the strength of the piers decreases with the degradation of steel plate-concrete bonding behavior. Finally, the maximum strength of the piers obtained from numerical analysis corresponding to different bonding behavior is compared with theoretical results within an accepted error.

Relationships between Fish Communities and Environmental Variables in Islands, South Korea

  • Kwon, Yong-Su;Shin, Man-Seok;Yoon, Hee-Nam
    • Proceedings of the National Institute of Ecology of the Republic of Korea
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    • 제3권2호
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    • pp.84-96
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    • 2022
  • Most of the islands of Korea are distributed in the South and West Sea, and it consists of independent small stream. As a result, the fish community that inhabits the island's stream is isolated from the mainland and other island. This study utilized a Self-Organizing Map (SOM) and a random forest model to analyze the relationship between environmental variables and fish communities inhabiting islands in South Korea. Through the SOM analysis, the fish communities were divided into three clusters, and there were differences in biotic and abiotic factors between these groups. Cluster I consisted of sites with relatively larger island areas and a higher number of species and population. It was found that 15 out of 16 indicator species were included. Meanwhile, the remaining clusters had fewer species and populations. Cluster II, especially, showed the lowest impact from physical variables such as water width and depth. As a result of predicting the species richness using the random forest model, physical variables in habitats, such as stream width and water depth, had a relatively higher importance on species richness. On the other hand, forest area was the most important variables for predicting Shannon diversity, followed by maximum water depth, and gravel. The results suggest that this study can be used as basic data for establishing a stream ecosystem management strategy in terms of conservation and protection of biological resources in streams of islands.

Measured structural response of a long irregular pit constructed using a top-down method

  • Yang, Sun;Yufei, Che;Zhenxue, Gu;Ruicai, Wang;Yawen, Fan
    • Geomechanics and Engineering
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    • 제31권5호
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    • pp.489-503
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    • 2022
  • A 1257-m-long irregular deep foundation pit located in the central of Nanjing, China was constructed using the combined full-width and half-width top-down method. Based on the long-term field monitoring data, this study analyzed the evolution characteristics of the vertical movement of the columns, internal force of the struts, and axial force of the structural beam and slab. The relevance of the three mentioned above and their relationship with the excavation process, structural system, and geological conditions were also investigated. The results showed that the column uplift was within the range of 0.08% to 0.22% of the excavation depth, and the embedded depth ratio of the diaphragm wall and the bottom heave affected significantly on the column uplift. The differential settlement between the column and diaphragm wall remained unchanged after the base slab was cast. The final settlement of the diaphragm wall was twice the column uplift. The internal force of the struts did not varied monotonically but was related to numerous factors such as the excavation depth, number of struts, and environmental conditions. Additionally, the dynamic force and deformation of the columns, beams, and slabs were analyzed to investigate the inherent relationship and variation patterns of the responses of different parts of the structure.

Study on the effect of vacuum fusion infiltration technology on the properties of tungsten/copper joining interface

  • Hao-Jie Zhang;Xue-qin Tian;Xiao-Yu Ding;Hui-Yun Zheng;Lai-Ma Luo;Yu-Cheng Wu;Jian-Hua Yao
    • Nuclear Engineering and Technology
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    • 제56권6호
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    • pp.2367-2374
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    • 2024
  • In this paper, based on the need for high-strength connections between all-tungsten-oriented plasma materials and thermal sinking materials of copper and its alloys in nuclear fusion devices, a study on the effect of tungsten surface laser micro structuring on the interfacial bonding properties of W/Cu joints was carried out. In the experiment, the connectors were prepared by vacuum fusion infiltration technology, and the effects of microgroove structure on the mechanical and thermal conductivity of W/Cu connectors were investigated under different parameters (including microgroove pitch, microgroove depth, and microgroove taper). The maximum shear strength is 126.0 MPa when the pitch is 0.15 mm and the depth is 34 ㎛. In addition, the negative taper structure, i.e., the width of the entrance of the microstructure is smaller than the width of the interior of the microstructure, is also investigated. The shear tests show that there is an approximately linear relationship between the shear strength of W/Cu and taper. Compared with the positive taper, the shear strength of the samples with the same morphological density and depth of the tungsten surface is significantly higher.

그루브형상을 고려한 빗살무늬저널베어링의 유한요소해석 (An Analysis of Herringbone Groove Journal Bearing Considering Groove Shape)

  • 신동우;임윤철
    • 한국윤활학회:학술대회논문집
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    • 한국윤활학회 1999년도 제29회 춘계학술대회
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    • pp.162-169
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    • 1999
  • Herringbone groove journal bearing (HGJB) is developed to improve the static and dynamic performances of hydrodynamic journal bearing. Conventional studies on HGJB were based on the Narrow Groove theory assuming that the number of grooves approaches infinity. In this study, an oil lubricated HGJB is analyzed using Finite Element Method. Load carrying capacity, attitude angle, stiffness and damping coefficients are obtained numerically for various bearing configurations especially for the inclined width ratio and asymmetric ratio and compared with the results obtained using Finite Volume Method. The bearing load and stability characteristics are dependent on geometric parameters such as inclined width ratio, asymmetric ratio, groove depth ratio, groove width ratio, groove angle.

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