• 제목/요약/키워드: Current pulse

검색결과 1,866건 처리시간 0.036초

파형전류전해에 의한 Pb-Sn합금의 조성변화 및 균일전착력 (The Change of Composition and the Throwing Power of Pb-Sn Alloy Electrodeposits in Pulse Plating)

  • 예길촌;김용웅
    • 한국표면공학회지
    • /
    • 제22권4호
    • /
    • pp.197-206
    • /
    • 1989
  • The Composition and throwing power-of Pb-Sn alloy deposits are investigated in tems of the pulse parameters in pulse plating. Microhardness and intermal srress of alloy deposots are measured. The current efficiency of pulse plating is lower than that of D.C.plating while cathode overpotential and macro-throwing power noticebly increase with increasing peak current density. The Pb content of P.C. plated alloy deposits with increasing average current density, is relatively lower than of D.C. plated deposits at the same average current density. The internal stress of Pb-Sn alloy is not detected and the microhardness are 9.0kg/mm2 and 11kg/mm2 for D.C. plated P.C. plated deposits, respectively.

  • PDF

100 ns급 대용량 자기펄스 압축시스템의 최적화 (Optimization of the Large Scale Magnetic Pulse Compression System of 100 ns-order)

  • 이용우;이영우
    • 한국정보통신학회:학술대회논문집
    • /
    • 한국해양정보통신학회 2003년도 추계종합학술대회
    • /
    • pp.442-445
    • /
    • 2003
  • 본 연구에서는 엑시머 레이저 여기용으로 40 J급 자기펄스압축시스템(WC : magnetic pulse compression system)을 개발하고, MPC의 각단에서 최적조건을 구하였다. MPC 시스템은 DC 전원 공급기, 펄스 트랜스, 네 단의 포화인덕터로 이루어져 있다. MPC 각 단에서 포화인덕터의 회전수는 140회, 26회, 5회와 1회이며, 각단에서의 최적 용량는 각각 34 nF, 28.9 nF, 22.1 nF, 22.1 nF이다. MPC 시스템의 개선으로 우리는 43 kV의 전압, 8.25 kA의 전류와 360 ns의 펄스폭을 얻을 수 있었으며, 이때 최대 펄스 압축율은 77.7, 전류 이득은 71.7이었다.

  • PDF

방전에너지에 따라 동전극과 흑연전극이 방전가공면에 미치는 영향 (Influence on EDM Surface with the Copper and Graphite Electrode According to the Discharge Energy)

  • 최재용;전언찬;정재현
    • 한국정밀공학회지
    • /
    • 제14권5호
    • /
    • pp.53-59
    • /
    • 1997
  • This study has been performed to inmvestigate MRR(metal removal rate), REW(relative electrode wear), surface roughness, heat transumutation layer and microhardness distribution in cross-section of the machined surface with various pulse-on duration and peak pulse current, using the copper and graphite electrode on the heat treated STD11 which is extensively used for metallic molding steel with the EDM. The results obtained are as follows; a) There exists critical pulse-on duration(If Ip equals 5A, .tau. on is 50 .mu. s) which shows the the maximum MRR in accordance with peak oulse current and the MRR decreases when the pulse-on duration exceeds the critical pulse-on during because of the abnormal electric discharge. b) Safe discharge is needed to make maximum of MRR and the metalic organization must be complicated for discharge induction. c) Graphite has much more benefits than copper electrode when rapid machining is done without electrode wear. d) The most external surface has the highest microhardness because of car- burizing from heat analysis of the dielectric fluid and the lower layar of the white covered layer has lower microhar dness than base matal because of softening.

  • PDF

전열화학포용 2.4MJ 펄스 파워 전원의 제어기 설계 (The Controller Design of a 2.4MJ Pulse Power Supply for a Electro-Thermal-Chemical Gun)

  • 김종수;진윤식;이홍식;임근희;김진성
    • 대한전기학회논문지:시스템및제어부문D
    • /
    • 제55권12호
    • /
    • pp.511-517
    • /
    • 2006
  • The key issues in high power, high energy applications such as electromagnetic launchers include safety, reliability, flexibility, efficiency, compactness, and cost. To explore some of the issues, a control scheme for a large current wave-forming was designed, built and experimentally verified using a 2.4MJ pulse power system (PPS). The PPS was made up of eight capacitors bank unit, each containing six capacitors connected in parallel. Therefore there were 48 capacitors in total, with ratings of 22kV and 50kJ each. Each unit is charged through a charging switch that is operated by air pressure. For discharging each unit has a triggered vacuum switch (TVS) with ratings of 200kA and 250kV. Hence, flexibility of a large current wave-forming can be obtained by controlling the charging voltage and the discharging times. The whole control system includes a personal computer(PC), RS232 and RS485 pseudo converter, electric/optical signal converters and eight 80C196KC micro-controller based capacitor-bank module(CBM) controllers. Hence, the PC based controller can set the capacitor charging voltages and the TVS trigger timings of each CBM controller for the current wave-forming. It also monitors and records the system status data. We illustrated that our control scheme was able to generate the large current pulse flexibly and safely by experiments. The our control scheme minimize the use of optical cables without reducing EMI noise immunity and reliability, this is resulting in cost reduction. Also, the reliability was increased by isolating ground doubly, it reduced drastically the interference of the large voltage pulse induced by the large current pulse. This paper contains the complete control scheme and details of each subsystem unit.

토끼 단일 심방근 세포에서 Na-Ca 교환전류의 특성에 관한 연구 (The Properties of Na-Ca Exchange Current in Single Atrial Cells of ,The Rabbit)

  • 염욱;호원경;서경필
    • Journal of Chest Surgery
    • /
    • 제22권4호
    • /
    • pp.548-561
    • /
    • 1989
  • In single atrial cells isolated from the rabbit the properties of inward current of Na-Ca exchange were investigated using the whole cell voltage clamp technique. The current was recorded during repolarization following brief 2 ms depolarizing pulse to +40 mV from a holding potential of * 70 mV. Followings are the results obtained: 1. When stimulated every 30 seconds, the inward currents were activated and reached peak values 6-12 ms after the beginning of depolarizing pulse. The mean current amplitude was 342 pA/cell. 2. The current decayed spontaneously from the peak activation and the time course of the relaxation showed two different phases fast and slow phase. The time constants were 10-18 ms and 60-140 ms, respectively. 3. The recovery of inward current was tested by paired pulse of various intervals. The peak current recovered exponentially with time constant of 140 ms and 1 p M isoprenaline accelerated the recovery process. 4. Relaxation time course was also affected by pulse interval and time constant of the fast phase was reduced almost linearly according to the decrease of pulse interval between 30 sec and 1 sec. 5. The peak activation was increased in magnitude by long prepulse stimulation, 5 p M Bay K, 1 p M isoprenaline or internal and external application of c-AMP. 6. The relaxation time constant of the fast phase was prolonged by 5 p M Bay K or c-AMP, and shortened by isoprenaline. However the time course of the slow relaxation phase was not so much changed. From the above results, it could be concluded that increase of the calcium current by Bay K or c-AMP results in the potentiation and prolongation of intracellular calcium transient, and the facilitation of Ca uptake by SR might be a mechanism of shortening the time constant of current relaxation by short interval stimulation or isoprenaline.

  • PDF

극박 다이아프램의 펄스 GTAW 공정 최적화에 관한 연구 (Study on the Optimization of Pulse GTAW Process for Diaphragm with Thin Thickness)

  • 박형진;황인성;강문진;이세헌
    • Journal of Welding and Joining
    • /
    • 제26권1호
    • /
    • pp.63-68
    • /
    • 2008
  • This paper has aimed to prevent excessive heat input by controlling arc distribution and heat input capacity with pulse GTAW in order to improve weld quality in 0.08mm pressure gauge diaphragm and flange welding parts. A design of experiment was designed using Box-Behnken method to optimize a welding process. The pulse GTAW parameters such as pulse current, base current, pulse duty, frequency and welding speed were set to input variables while hydraulic pressure that represents welding characteristics in diaphragm and flange joint were set to output variables. Based on the test result, a second regression equation was obtained between input and output variables and turned out significant. Besides, an influence of parameters has been confirmed through response surface analysis using the second-order regression equation and optimum welding condition was obtained through a grid-search method. The optimum welding condition was set to pulse current 84.4(A), base current 29.6(A), pulse duty 58.8(%), frequency 10(%), and welding speed 596(mm/min). Then, decent bead shape was acquired with no excessive heat input under the $2.3kgf/cm^2$ of hydrostatic pressure.

펄스파워용 X선제어 무도체스위치의 기본연구 (A Basic Study on X-ray Controlled Semiconductor Switch for Pulse Power)

  • Ko, Kwang-Cheol
    • 대한전기학회논문지
    • /
    • 제41권9호
    • /
    • pp.1013-1020
    • /
    • 1992
  • The conductivity variation of a high resistivity bulk silicon semiconductor, whose electrodes were deposited with aluminum vapor, was studied experimentally by measuring the X-ray intensity and current flow, which was developed by X-ray radiation while applying a pulse voltage to the silicon, in a load resistor connected to the semiconductor. The current flow observed immediately as the X-ray radiated, and when the X-ray decreased. It was found from the observation of switching current for the X-ray intensity and the voltage applied in the semiconductor that the switching current of the semiconductor increased as the intensity of the X-ray and the applied voltage increased. In case of lower applied voltage, the switching current for higher applied voltage depended on the intensity of the X-ray radiated due to the saturation of electron and hole.

  • PDF

실시간 공정신호를 통한 용접공정 알고리즘에 관한 연구 (A Study on Welding Process Algorithm through Real-time Current Waveform Analysis)

  • 윤진영;이영민;신순철;최해운
    • Journal of Welding and Joining
    • /
    • 제33권4호
    • /
    • pp.24-29
    • /
    • 2015
  • The current waveform was analysed to monitor the weld quality in real time process. The acquired current waveform was discretely analysed for the top and bottom limits of peaks as well as the pulse frequency measurement. Fast Fourier Transform was implemented in the program to monitor the pulse frequency in real time. The developed algorithm or program was tested for the validation purpose. The cross-section of weld profile was compared to the current waveform profile to correlate the monitored signal and the actual parts. Pulse frequency was also used as auxiliary tool for the quality monitoring. Based on the results, it was possible to evaluate the quality of welding by measure the current waveform profile and frequency measurement.