• Title/Summary/Keyword: 미세 핀

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Mode III Fracture Toughness of Single Layer Graphene Sheet Using Molecular Mechanics (분자역학을 사용한 단층 그래핀 시트의 모드 III 파괴인성)

  • Nguyen, Minh-Ky;Yum, Young-Jin
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.38 no.2
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    • pp.121-127
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    • 2014
  • An atomistic-based finite bond element model for predicting the tearing mode (mode III) fracture of a single-layer graphene sheet (SLGS) is developed. The model uses the modified Morse potential for predicting the maximum strain relationship of graphene sheets. The mode III fracture of graphene under out-of-plane shear loading is investigated with extensive molecular mechanics simulations. Molecular mechanics is used for describing the displacements of atoms in the area near a crack tip, and linear elastic fracture mechanics is used outside this area. This work shows that the molecular mechanics method can provide a reliable and yet simple method for determining not only the shear properties of SLGS but also its mode III fracture toughness in the armchair and the zigzag directions; the determined mode III fracture toughness values of SLGS are $0.86MPa{\sqrt{m}}$ and $0.93MPa{\sqrt{m}}$, respectively.

FMEA of Electrostatic Precipitator for Preventive Maintenance (전기집진기 예지보전 단계에서의 고장모드영향분석)

  • Han, Seung-Hun;Lee, Jeong-Uk;Lee, Sun-Youp;Hwang, Jong-Deok;Kang, Dae-Kon
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.26 no.6
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    • pp.706-714
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    • 2020
  • Currently, 90 % of the world's population breathes air with a fine dust content exceeding the World Health Organization's annual average exposure limit (10 ㎍/㎥). Global efforts have been devoted toward reducing secondary pollutants and ultra-fine dust through regulations on nitrogen oxides released over land and sea. Domestic efforts have also aimed at creating clean marine environments by reducing sulfur emissions, which are the primary cause of dust accumulation in ships, through developing and distributing environment-friendly ships. Among the technologies for reducing harmful emissions from diesel engines, electrostatic precipitator offer several advantages such as a low pressure loss, high dust collection efficiency, and NOx removal and maintenance. This study aims to increase the durability of a ship by improving equipment quality through failure mode effects analysis for the preventive maintenance of an electrostatic precipitator that was developed for reducing fine dust particles emitted from the 2,427 kW marine diesel engines in ships with a gross tonnage of 999 tons. With regard to risk priority, failure mode 241 (poor dust capture efficiency) was the highest, with an RPN of 180. It was necessary to determine the high-risk failure mode in the collecting electrode and manage it intensively. This was caused by clearance defects, owing to vibrations and consequent pin loosening. Given that pin loosening is mainly caused by vibrations generated in the hull or equipment, it is necessary to manage the position of pin loosening.

펄스 고전압을 이용한 해수모세관방전에서 고전압 펄스 방전특성 연구

  • Seok, Dong-Chan;Yu, Seung-Min;Hong, Eun-Jeong;No, Tae-Hyeop;Lee, Bong-Ju
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.02a
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    • pp.248-248
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    • 2011
  • 유전체 모세관을 이용한 해수에서의 펄스고전압 방전 특성을 연구하였다. 내경 1, 2, 3 mm의 구멍이 뚫린 Quartz 블럭에 외경 1, 2, 3 mm의 SUS 핀을 삽입하였고 삽입된 핀의 끝이 해수에 담구어 지도록 하여 고전압 방전을 발생 시켰다. 인가된 펄스 고전압은 5 kHz의 반복 주파수를 가지며, Pulse 폭을 $1{\sim}2.5{\mu}sec$까지 변화 시켜 전압전류 파형과 방전양상을 살펴 보았다. 방전은 펄스폭 변화에 따라 전해전도 전류에 의한 모세관 가열, 모세관내 미세기포형성, 기포내의 코로나 방전 개시 그리고 글로우 또는 아크방전으로 발전하는 것을 확인하였다. 모세관의 길이는 각각의 구경에 대하여 5 mm, 10 mm 두 가지로 변화하여 실험하였고, 모세관 길이 10 mm 조건에서는 방전이 매우 불안정 하였다. 각각의 방전조건별로 1~5분간 방전을 진행하여 해수내의 유리염소의 농도 변화를 살펴본 결과 방전모드가 글로우 또는 아크 방전 모드에서 단위 에너지당 유리염소 발생 수율이 큰 폭으로 증가하는 것을 확인할 수 있었다.

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The development of the Ionizer using clean room (청정환경용 정전기 제거장치 개발)

  • Jeong, Jong-Hyeog;Woo, Dong Sik
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.19 no.1
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    • pp.603-608
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    • 2018
  • Although the voltage-applied discharge method is most widely used in the semiconductor and display industries, periodic management costs are incurred because the method causes defects due to the absorption of ambient fine dust and causes emitter tip contamination due to the discharge. The emitter tip contamination problem is caused by the accumulation of fine particles in ambient air due to the corona discharge of the ionizer. Fuzzy ball generation accelerates the wear of the emitter tip and deteriorates the performance of the ionizer. Although a mechanical cleaning method using a manual brush or an automatic brush is effective for contaminant removal, it requires management of additional mechanical parts by the user. In some cases, contaminants accumulated in the emitter may be transferred to the wafer or product. In order to solve this problem, we developed an ionizer for a clean environment that can remove the pencil-type emitter tip and directly ionize the surrounding gas molecules using the tungsten wire located inside the ion tank. As a result of testing and certification by the Korea Institute of Machinery and Materials, the average concentration was $0.7572particles/ft^3$, the decay time was less than two seconds, and the ion valance was 7.6 V, which is satisfactory.

Fabrication of Micro-electrodes using Liner Block Moving Electrical Discharge Grinding and Characteristics of Micro-hole Machining of Graphene Nanoplatelet-reinforced Al2O3Composites (블록직선이송 방전연삭에 의한 미세전극 가공 및 그래핀 강화 알루미나 복합소재의 마이크로 홀 가공특성)

  • Jeong, Hyeon-A;Lee, Chang Hoon;Kang, Myung Chang
    • Journal of the Korean Society of Manufacturing Process Engineers
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    • v.16 no.1
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    • pp.149-156
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    • 2017
  • Graphene nanoplatelet (GNP)-reinforced alumina ($Al_2O_3$) is a promising material for micro-partapplications, particularly micro-nozzle shapes, because of its excellent wearresistance. In this study, a $Al_2O_3$/GNPcomposite with 15 vol% graphene nanoplatelets (GNP) was highly densified and fabricated via spark plasma sintering for micro-electrical discharge drilling (Micro-ED drilling) and the wear resistance property of the composite is evaluated via the ball-on-disk method. In addition, the diameter and shape of the micro-electrodes machined by wire electrical discharge grinding (WEDG), block electrical discharge grinding (BEDG), and new linear block moving electrical discharge grinding (LBMEDG) methods are systematically compared and analyzed to observe the micro-hole machining in the micro-ED drilling of the $Al_2O_3$/15vol% GNP composite.

Effect of Electrode Diameter on Pine Ceramic Pattern Formed by Using Pin-To-Pin Type Electro-Hydrodynamic Printing (핀-핀 형 전극의 전기-수력학 프린팅에서 전극 직경이 미세 세라믹 패턴 형성에 미치는 영향)

  • Lee Dae-Young;Yu Jae-Hun;Yu Tae-U;Hwang Jungho;Kim Yong-Jun
    • Transactions of the Society of Information Storage Systems
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    • v.1 no.1
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    • pp.108-114
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    • 2005
  • The generation of fine relics of suspensions is a significant interest as it holds the key to the fabrication of electronic devices. These processes offer opportunities for miniaturization of multilayer circuits, for production of functionally graded materials, ordered composites and far small complex-shaped components. Some novel printing methods of depositing ceramic and metal droplets were suggested in recent years. In an electro-hydrodynamic printing, the metallic capillary nozzle can be raised to several kilovolts with respect to the infinite ground plate or pin-type electrode positioned a few millimeters from the nozzle tip. Depending on the electrical and physical properties of the liquid, for a given geometry, it Is possible to generate droplets in any one of three modes, dripping, cone-jet and multi-jet. In this experiment, an alumina suspension flowing through a nozzle was subjected to electro-hydrodynamic printing using pin-type electrodes in the cone-jet mode at different applied voltages. The pin-type electrodes of 1, 100, 1000${\mu}m$ in diameter were used to form fine ceramic patterns onto the substrates. Various feature sizes with applied voltages and electrode diameters were measured. The feature sizes increased with the electrode diameter and applied voltages. The feature size was as fine as $30 {\mu}m$.

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Single Chip Design of Advanced DVB-T Receiver with Diversity Reception (안테나 Diversity 기능을 적용한 DVB-T 수신칩 개발)

  • 권용식;박찬섭;김기보;장용덕;정해주
    • Proceedings of the Korean Society of Broadcast Engineers Conference
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    • 2002.11a
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    • pp.31-35
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    • 2002
  • 본 논문에서는 DVB-T 표준안의 모든 동작모드를 지원하며 임펄스 잡음 제거, 안테나 diversity 수신, 향상된 채널추정방법을 적용한 유럽향 디지털 TV 수신용 채널 칩셋의 설계에 관한 내용이다. 설계된 칩은 여러 개의 구성 블럭으로 구성되어있는데 여기에는 여러 가지의 향상된 알고리즘과 설계 아키텍쳐가 사용되었다. 가정용 가전기기들이 발생시키는 일정주기의 임펄스 잡음을 제거하기 위하여 임펄스 잡음 제거 블록을 AGC뒤에 사용하였다. 동기부는 대략적 주파수동기, 미세 주파수동기, 대략적 타이밍동기, 미세 타이밍 동기 등으로 이루어져 있으며 본 설계의 주파수 보상 영역은 $\pm$280Khz, 타이밍 보상 영역은 $\pm$500ppm이다. 파일럿 신호를 이용하여 채널추정과 보상을 수행하며 기존의 선형 보간기법과 함께 4개의 파일럿 신호를 이용한 보간기법을 사용하여 이동수신환경에 대응할 수 있도록 하였다. 이와 함에 수신성능을 개선할 수 있다고 알려진 안테나 diversity 기능을 채용하여 고정 및 이동 수신시의 수신성능을 향상시켰다. 안테나 diversity를 위해서 2개 이상의 수신 칩이 사용되며 이를 위해서 본 설계에서는 MRC(Maximum Ratio Combining)알고리즘을 사용하였다 본 설계는 5층 메탈 0.18um 공정을 사용하였으며 2.7Mbit 의 메모리 소자를 포함하여 대략 300 만 게이트의 회로크기를 갖으며 100 핀 PQFP로 제작되었다. 본 논문에서는 설계된 회로의 각 블록별 기능에 대한 설명과 함께 시뮬레이션 결과와 ASIC설계결과를 기술하였다.

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A study on the Development of CNC Lathe for Noncircular Cutting (비진원 가공용 CNC 선반 개발에 관한 연구)

  • 김경석;양승필;김성식;정현철;김정호;이도윤
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 1995.04b
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    • pp.45-51
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    • 1995
  • 자동차 엔진의 피스톤은 핀 구멍의 복잡한 형상과 2사이클 엔진의 경우 실린더쪽 흡기 및 배기 포트의 위치에 따라 균일하지 않은 열이나 응력 등의 영향에 의한 변형을 고려하여, 상온에서의 형상이 각종 평가 시험을 거쳐 엔진마다 다양한 형상을 갖는 피스톤으로 결정된다. 본 연구에서는 컴퓨터 제어에 의한 방법으로서 타원형상을 갖는 임의의 피스톤을 고속, 고정도로 가공할 수 있는 CNC(Computer Numerical Control)선반 개발에 관하여 연구 하였다. 피스톤 데이터를 퍼스널 컴퓨터로 입력하고 CNC 제어하므로 마스터캠의 제작 불필요, Recess 등과 같은 미세가공 가능, 피스톤의 형상변경 용이, 고속가공 등으로 모방절삭 방식보다 훨씬 높은 생산성 향상이 기대된다.

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