• 제목/요약/키워드: Metal wire

검색결과 497건 처리시간 0.027초

AN INTRODUCTION TO SEMICONDUCTOR INITIATION OF ELECTROEXPLOSIVE DEVICES

  • Willis K. E.;Whang, D. S.;Chang, S. T.
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 1994년도 제3회 학술강연회논문집
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    • pp.21-26
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    • 1994
  • Conventional electroexplosive devices (EED) commonly use a very small metal bridgewire to ignite explosive materials i.e. pyrotechnics, primary and secondary explosives. The use of semiconductor devices to replace “hot-wire” resistance heating elements in automotive safety systems pyrotechnic devices has been under development for several years. In a typical 1 amp/1 watt electroexplosive devices, ignition takes place a few milliseconds after a current pulse of at least 25 mJ is applied to the bridgewire. In contrast, as for a SCB devices, ignition takes place in a few tens of microseconds and only require approximately one-tenth the input energy of a conventional electroexplosive devices. Typically, when SCB device is driven by a short (20 $\mu\textrm{s}$), low energy pulse (less than 5 mJ), the SCB produces a hot plasma that ignites explosive materials. The advantages and disadvantages of this technology are strongly dependent upon the particular technology selected. To date, three distinct technologies have evolved, each of which utilizes a hot, silicon plasma as the pyrotechnic initiation element. These technologies are 1.) Heavily doped silicon as the resistive heating initiation mechanism, 2.) Tungsten enhanced silicon which utilizes a chemically vapor deposited layer of tungsten as the initiation element, and 3.) a junction diode, fabricated with standard CMOS processes, which creates the initial thermal environment by avalanche breakdown of the diode. This paper describes the three technologies, discusses the advantages and disadvantages of each as they apply to electroexplosive devises, and recommends a methodology for selection of the best device for a particular system environment. The important parameters in this analysis are: All-Fire energy, All-Fire voltage, response time, ease of integration with other semiconductor devices, cost (overall system cost), and reliability. The potential for significant cost savings by integrating several safety functions into the initiator makes this technology worthy of attention by the safety system designer.

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Reduction of Electromagnetic Field from Wireless Power Transfer Using a Series-Parallel Resonance Circuit Topology

  • Kim, Jong-Hoon;Kim, Hong-Seok;Kim, In-Myoung;Kim, Young-Il;Ahn, Seung-Young;Kim, Ji-Seong;Kim, Joung-Ho
    • Journal of electromagnetic engineering and science
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    • 제11권3호
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    • pp.166-173
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    • 2011
  • In this paper, we implemented and analyzed a wireless power transfer (WPT) system with a CSPR topology. CSPR refers to constant current source, series resonance circuit topology of a transmitting coil, parallel resonance circuit topology of a receiving coil, and pure resistive loading. The transmitting coil is coupled by a magnetic field to the receiving coil without wire. Although the electromotive force (emf) is small (about 4.5V), the voltage on load resistor is 148V, because a parallel resonance scheme was adopted for the receiving coil. The implemented WPT system is designed to be able to transfer up to 1 kW power and can operate a LED TV. Before the implementation, the EMF reduction mechanism based on the use of ferrite and a metal shield box was confirmed by an EM simulation and we found that the EMF can be suppressed dramatically by using this shield. The operating frequency of the implemented WPT system is 30.7kHz and the air gap between two coils is 150mm. The power transferred to the load resistor is 147W and the real power transfer efficiency is 66.4 %.

선박조립과정의 FCAW 적용시 적정 보호가스 유량에 대한 연구 (A Study of Optimum Shielding Gas Flow Rate in FCAW for Shipbuilding)

  • 이훈동;심천식;송하철;염재선
    • 대한조선학회논문집
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    • 제48권1호
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    • pp.76-83
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    • 2011
  • FCAW(Flux Cored Arc Welding) is a widely used welding method in shipbuilding. It also conducts WPS(Welding Procedure Specification) requested by the classification variations of the factors which affect the quality on the welded area such as thickness of base metal, type of welding wire and shielding gas etc. which has to be satisfied. CO2 is commonly used as a shielding gas for FCAW due to the economic point of view. The amount of shielding gas is stated when classification certify WPS. However, the shielding gas is unnecessarily used at the shipyard leaning only on the welder's experience as there are classification standards for using the shielding gas. It causes production cost to rise. Also recently, CO2 is a main contributor for global warming, and large amounts of CO2 are discharged into the atmosphere during shipbuilding processes without any filtration. Therefore it was confirmed by the security of the welded area as a result of conducting the destructive and non-destructive tests with setting up the factors and the standards by using the Taguchi method. Then the FCAW shielding gas's amounts were calculated precisely when assembling a ship. It will be applied to cost reduction and prevention of environmental pollution at the shipyard.

선박 골블록의 경사 필렛 이음부의 적정 용접조건 (I) (Optimal Welding Condition for the Inclined and Skewed Fillet Joints ill the Curved Block of a Ship (I))

  • 박주용
    • 한국해양공학회지
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    • 제18권6호
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    • pp.79-83
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    • 2004
  • The curved blocks which compose the bow and stem of a ship contain many skewed joints that are inclined horizontally and vertically. Most of these joints have a large fitness error and are continuously changing their form and are not easily accessible. The welding position and parameter values should be appropriately set in correspondence to the shape and the inclination of the joints. The welding parameters such as current, voltage, travel speed, and melting rate, are related to each other and their values must be in a specific limited range for the sound welding. These correlations and the ranges are dependent up on the kind and size of wire, shielding gas, joint shape and fitness. To determine these relationships, extensive welding experiments were performed. The experimental data were processed using several information processing technologies. The regression method was used to determine the relationship between current voltage, and deposition rate. When a joint is inclined, the weld bead should be confined to a the limited size, inorder to avoid undercut as well as overlap due to flowing down of molten metal by gravity. The dependency of the limited weld size which is defined as the critical deposited area on various factors such as the horizontally and vertically inclined angle of the joint, skewed angle of the joint, up or down welding direction and weaving was investigated through a number of welding experiments. On the basis of this result, an ANN system was developed to estimate the critical deposited area. The ANN system consists of a 4 layer structure and uses an error back propagation learning algorithm. The estimated values of the ANN were validated using experimental values.

Orthodontic bracket bonding to glazed full-contour zirconia

  • Kwak, Ji-Young;Jung, Hyo-Kyung;Choi, Il-Kyung;Kwon, Tae-Yub
    • Restorative Dentistry and Endodontics
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    • 제41권2호
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    • pp.106-113
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    • 2016
  • Objectives: This study evaluated the effects of different surface conditioning methods on the bond strength of orthodontic brackets to glazed full-zirconia surfaces. Materials and Methods: Glazed zirconia (except for the control, Zirkonzahn Prettau) disc surfaces were pre-treated: PO (control), polishing; BR, bur roughening; PP, cleaning with a prophy cup and pumice; HF, hydrofluoric acid etching; AA, air abrasion with aluminum oxide; CJ, CoJet-Sand. The surfaces were examined using profilometry, scanning electron microscopy, and electron dispersive spectroscopy. A zirconia primer (Z-Prime Plus, Z) or a silane primer (Monobond-S, S) was then applied to the surfaces, yielding 7 groups (PO-Z, BR-Z, PP-S, HF-S, AA-S, AA-Z, and CJ-S). Metal bracket-bonded specimens were stored in water for 24 hr at $37^{\circ}C$, and thermocycled for 1,000 cycles. Their bond strengths were measured using the wire loop method (n = 10). Results: Except for BR, the surface pre-treatments failed to expose the zirconia substructure. A significant difference in bond strengths was found between AA-Z ($4.60{\pm}1.08MPa$) and all other groups ($13.38{\pm}2.57-15.78{\pm}2.39MPa$, p < 0.05). For AA-Z, most of the adhesive remained on the bracket. Conclusions: For bracket bonding to glazed zirconia, a simple application of silane to the cleaned surface is recommended. A zirconia primer should be used only when the zirconia substructure is definitely exposed.

금속선의 주기적인 배열을 이용하여 기계적으로 형성한 파장 가변 장주기 광섬유 격자 (Tunable Mechanically Formed Long-Period Fiber Gratings using Periodically Arrayed Metal Wires)

  • 손경락;김광택
    • 한국광학회지
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    • 제16권5호
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    • pp.401-405
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    • 2005
  • 본 논문에서는 $250{\mu}m$ 직경의 황동선을 주기적으로 배열하여 기계적으로 형성한 장주기 광섬유 격자를 제안하였으며 전류제어로 파장가변 기능을 구현하였다. 광섬유 클래딩을 감싸고 있는 물질의 굴절률 변화가 공진파장의 함수임을 이용하여 클래딩 주위에 도포된 물질의 열 광학 계수가 금속선에 인가된 전력에 의해 제어되도록 함으로서 파장가변을 유도하였으며 주어진 파장 영역내에서 인가전력에 대한 공진파장의 가변 정도를 조사하였다. 글리세린의 열광학 효과를 이용한 경우 20 W 인가전력에 대하여 $LP_{03}$ 모드는 14nm, $LP_{04}$ 모드는 48 nm 정도의 파장가변이 가능함을 확인하였고, 단일모드 광섬유에 대한 기하 광학적 근사방법을 적용하여 해석한 결과와 잘 일치함을 보였다.

Auto-Focusing 미세부품 Yoke 조립 자동화 모듈 개발 (Development of automatic assembly module for yoke parts in auto-focusing actuator)

  • 하석재;박정연;박규섭;윤길상
    • Design & Manufacturing
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    • 제13권1호
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    • pp.55-60
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    • 2019
  • Smart-phone in the recently released high-end applied to the camera module is equipped with the most features auto focusing camera module. Also, auto focusing camera module is divided into voice coil motor, encoder, and piezo according to type of motion mechanism. Auto focusing camera module is composed of voice coil motor (VCM) as an actuator and leaf spring as a guide and suspension. VCM actuator is made of magnet, yoke as a metal, and coil as a copper wire. Recently, the assembly as yoke and magnet is made by human resources. These process has a long process time and it is difficult to secure quality. Also, These process is not economical in cost, and productivity is reduced. Therefore, an automatic assembly as yoke and magnet is needed in the present process. In this paper, we have developed an automatic assembly device that can automatically assemble yoke and magnet, and performed verifying performance. Therefore, by using the developed automatic assembly device, it is possible to increase the productivity and reduce the production cost.

자동차 난방 시트의 구조에 따른 열응력 해석에 대한 융합 연구 (Convergence Study on the Thermal Stress According to the Structure of Automotive Heating Seat)

  • 최계광;조재웅
    • 한국융합학회논문지
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    • 제10권7호
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    • pp.169-174
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    • 2019
  • 자동차 운전석의 따뜻하고 쾌적한 요구가 증가하고 있기 때문에 난방 시트의 연구 개발이 활발히 이루어지고 있다. 본 연구에서는 세 가지의 난방 시트 모델 A, B, C를 가지고 열응력해석과 구조해석을 시행하였다. 똑같은 재질로 열해석을 함으로서, 연구 결과에서는 모델 A가 모델 B나 모델 C보다 더 좋은 열전달을 가짐을 보여주었다. 이로써 모델들이 제품의 형상에 따라 같은 재질을 가졌다고 하더라도 열전달들이 서로 다른 것을 알 수 있었다. 더 안정적인 난방을 기대하기 위해 열선을 추가하는 것은 더 좋은 난방이 될 수 있지만 제품의 가격대비 성능을 고려한 측면에서 한계가 있다. 전반적으로 모든 면에서 모델 B가 모델 A나 모델 C보다 열적으로 가장 안전하다고 사료된다. 본 연구결과에 의하여 취득한 내구성과 안정성 있는 자동차 난방 시트 제품의 설계데이터를 사용하여 자동차 운전석에 융합하여 그 예술적인 분위기를 조성할 수 있다.

Voltage-Frequency-Island NoC를 위한 테이블 기반의 고장 감내 라우팅 기법 (Table-Based Fault Tolerant Routing Method for Voltage-Frequency-Island NoC)

  • 윤성재;이창림;김용석;한태희
    • 전자공학회논문지
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    • 제53권8호
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    • pp.66-75
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    • 2016
  • 반도체 공정 초미세화에 따라 에이징 (aging)과 공정 변이 (process variation)로 인한 칩에서의 물리적인 결함은 더욱 증가하고 있으며, 특히 금속 배선 스케일링 제한과 온 칩 데이터 통신량 증가에 따라 다수의 프로세서 코어로 구성된 네트워크-온-칩(Network-on-Chip, NoC)에서의 결함 감내 기법 연구가 활발히 진행되고 있다. 그러나 NoC에서 저전력 설계 기법으로 널리 채용되고 있는 VFI (Voltage-Frequency-Island)를 적용한 경우에서의 신뢰성 측면에 대한 연구가 부족한 실정이다. 본 논문에서는 신뢰성과 에너지 소모를 고려하여 VFI NoC에서 링크 고장이 발생하는 경우에도 정상적으로 통신을 유지할 수 있는 테이블 기반 라우팅 기법을 제안한다. 에너지 소모와 성능을 고려한 최적 경로와 고장 감내를 위한 우회 경로를 제공하며, 이때 우회 경로의 경우 필요한 최소한의 노드에만 라우팅 테이블을 저장하여 구현 복잡도를 완화하였다. 모의실험 결과를 통해 제안하는 기법은 전체 링크의 1%에서 고장이 발생하는 경우에도 정상적으로 통신함을 보였다. 또한 실시간으로 우회 경로를 탐색하는 고장 감내 라우팅 기법인 $d^2$-LBDR에 비해 링크에 고장이 발생하는 경우 평균 15.9%의 에너지 소모가 감소함을 보였으며, 실행 시간 측면에서는 평균 0.8% 감소하는 것을 확인 할 수 있었다.

PL 판정을 위한 저압용 스위치의 소손 패턴 해석기법 (Analysis Method for Damage Patterns of Low Voltage Switches for PL Judgment)

  • 최충석
    • 한국화재소방학회논문지
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    • 제24권5호
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    • pp.136-141
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    • 2010
  • 본 연구에서는 옥내 조명 설비의 전원을 ON/OFF 하기 위해 사용되는 저압용 스위치의 구조 및 발열 메커니즘을 제시하고, 에너지원의 종류에 따라 스위치의 고정금구 및 가동 접점 등의 소손패턴을 제시함으로써 향후 예상되는 PL 분쟁의 판단 근거를 확보하는데 있다. 스위치에 인가된 일반 화염은 한국산업규격(KS)의 난연성 시험 방법을 적용하였다. 또한 스위치에 공급된 전류는 대전류공급장치(PCITS)를 이용하였다. 실험이 진행될 때 주위의 온도는 $22{\pm}2^{\circ}C$, 습도는 40~60%를 유지시켰다. 스위치의 발열은 배선과 클립의 접속 불량, 가동 접점의 절연 열화 및 접촉 불량 등에 의해서 생성되는 것으로 판단된다. 일반 화염에 의해 소손된 스위치는 표면이 균일하게 탄화되었으며, 화원을 제거하면 자연 소화되었다. 일반화염에 의해 탄화된 스위치를 분해한 결과 고정금구 및 가동 접점 등은 비교적 양호한 형태를 보였으나 외함, 클립 지지대, 가동 접점, 표시램프 등에서 탄화 및 변색을 확인할 수 있었다. 과전류에 의해 소손된 스위치는 배선을 연결하는 클립 및 클립 지지대 등은 소손의 흔적이 거의 없으나 고정금구, 가동 접점, 표시 램프 등은 심하게 탄화되었다. 즉 접촉 저항이 큰 부분에서 집중적으로 소손되었고 내부에서 외부로 탄화가 진행되는 패턴을 나타냈다. 따라서 소손된 스위치의 탄화 패턴 및 금속 금구류의 특성을 분석하면 최초의 에너지원 판정이 가능하다.