• 제목/요약/키워드: discharge sparks

검색결과 19건 처리시간 0.023초

데스크톱 건성 방전가공 시스템의 개발 및 실험적 성능평가 (Development of Desktop Dry Electrical Discharge Machining (EDM) System and Experimental Performance Evaluations)

  • 이상원;오영석;안수홍
    • 한국정밀공학회지
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    • 제27권1호
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    • pp.119-124
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    • 2010
  • This paper addresses the design and fabrication of desktop die-sinking dry electrical discharge machining (EDM) system and its experimental performance analysis. The developed desktop dry EDM machine has the horizontal configuration with the size of $300{\times}200{\times}260mm$. The experimental performance analysis is conducted to investigate the effects of EDM conditions and dielectric gas temperature on the surface roughness of EDMed slots and number of EDM sparks. The experimental results demonstrate that low feed rate and large electrode displacement are good for better surface roughness and more number of EDM sparks. In addition, low temperature of dielectric gas results in better surface roughness.

고주파 전기회로의 개폐불꽃에 의한 LPG-공기 혼합가스의 점화한계에 관한 연구 (A Study on the Minimnum Ignition Limit for LPG-Air Mixtures by Switching Sparks in Radio-frequency Circuits)

  • 지승욱;송현직;이춘하;박원주;이광식;이동인
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1996년도 하계학술대회 논문집 C
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    • pp.1854-1856
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    • 1996
  • This study describes the minimum ignition limit for LPG-Ai-r mixtures by switching sparks in radio-frequency limits using RF power supply and IEC type ignition spark apparatus. As a result, the minimum ignition limit voltage is increased in proportional to the rate of increasing of frequency in LPG-Air mixed gas. Especially, increment between 10[kHz] and 30[kHz] is typical. It is considered that ignition is caused by one discharge until 10 [kHz] and, beyond 10[kHz] ignition is caused by more than two discharges. The reason is analysed that energy loss is caused by existing pause interval between discharges.

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고주파 전기회로의 개폐불꽃에 의한 LPG-공기 혼합가스의 최소점화한계전압에 관한 연구 (A Study on the Minimum Ignition Limit Voltages for LPG-Air Mixtures by Discharge Sparks in Radio-frequency Circuits)

  • 이춘하;김재욱;지승욱;송현직;이광식;이동인
    • 한국가스학회지
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    • 제2권4호
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    • pp.79-84
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    • 1998
  • 본 논문은 고주파 발생장치와 IEC형 불꽃점화 시험장치를 이용하여 라디오 주파수 범위내에서 발생하는 개폐불꽃에 의한 LPG-Air 5.25[Vol$\%$]의 혼합가스에 대한 최소점화한계전압을 구하였다. 그 결과 LPG-Air 혼합가스는 주파수가 높을수록 최소점화한계전압도 높아졌으며, 특히 3[KHz]에서 10[KHz]사이에서 현저히 증가함을 알 수 있었다. 이는 3[KHz]까지는 1회의 방전에너지에 의해 점화가 발생되지만 3[KHz]이상에서는 2회 이상의 방전에너지가 누적되어 점화가 일어남을 알 수 있었고 그 이유는 방전과 방전간의 휴지기간이 존재하므로써 생기는 에너지의 손실이 그 원인으로 생각된다. 본 연구결과는 가스가 존재하는 위험장소에서도 안전하게 사용될 수 있는 통신장비나 각종탐지기 등에 응용될 수 있는 본질안전 방폭형 고주파 전기기기의 연구개발을 위한 기본자료로서 뿐만 아니라 이들 장비의 방폭성능에 대한 시험자료로도 활용가능할 것으로 사료된다.

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설계인자 변화에 따른 소형 전기집진장치의 최적효율 예측 (Predicted Optimum Efficiency due to Changes in the Design Parameters of the Small Electrostatic Precipitator)

  • 서정민;이병인;정문섭;박정호;임우택;박출재;최금찬
    • 한국환경과학회지
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    • 제22권9호
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    • pp.1187-1197
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    • 2013
  • The result of a small electrostatic precipitator which is in order to decrease indoor air pollution for optimal efficiency was shown as follows. Although the closer distance between the discharge electrode and dust collecting electrode shows the better throughput efficiency by forming strong electrostatic Field, it does not have profound impact in case of optimal dust collecting area. G.P(gas passage) which is the distance from dust collecting electrode to dust collecting electrode is a crucial factor to decide dust collecting efficiency. The narrower distance of G.P shows the better throughput efficiency whereas it decreases when the distance is too narrow since sparks ensue by increasing the capacity of electrostatic charging system 5 mm regards as optimal efficiency in this experiment. Although the higher voltage shows the higher dust collecting efficiency overall, the experiment was not able to keep performing since the sparks which decrease dust collecting efficiency ensue over 40 kV. The efficient and safe voltage state is considered 3.6 kV in this experiment. The most crucial factor for dust collecting efficiency of an electrostatic precipitator which is in order to decrease indoor air pollution is applied voltage. In addition, optimal raw gas flow rate(2.4 m/sec) is more important factor than the excessive increase of dust collecting area.

ED-Drilling의 방전가공 특성 (Machining Characteristics of ED-Drilling)

  • 김창호;허관도;예상돈
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2000년도 추계학술대회 논문집
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    • pp.827-830
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    • 2000
  • This paper describes the machining characteristics of the sintered carbide and die steel by electric discharge drilling with various tubular electrodes. Electrical discharge machining(EDM) removes material from the workpiece by a series of electrical sparks that cause localized temperatures high enough to melt or vaporise the metal in the vicinity of the charge. In the experiment, four types of electrode which have different diameter are used with the application of continuous direct current and axial electrode feed. The controlled factors include the dimension of the electrode. In drilling by EDM, the dielectric flushed down the interior of the rotating tube electrode, in order to facilitate the removal of machining debris from the hole.

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The Design and Experiment of a Planar Patch Sensor for Partial Discharge Diagnostics in 6.6 kV Rotating Machine Stator Windings

  • Yang, Sang-Hyun;Park, Noh-Joon;Park, Dae-Hee;Kim, Hee-Dong;Lim, Kwang-Jin
    • Transactions on Electrical and Electronic Materials
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    • 제10권5호
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    • pp.173-176
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    • 2009
  • In the stator windings of a 6.6 kV rotating machine, internal discharges, slot discharges, and surface discharges are mainly caused by internal voids and insulation degradation. If a partial discharge(PD) occurs in an inner-part of the stator windings, it will cause electromagnetic pulses with wide frequency ranges. Discharge sparks and electromagnetic pulses generated from a discharge source, can be detected using various RF resonators like an EM sensor. In order to detect these types of electromagnetic sources, a planar patch sensor was designed and fabricated using a CST-MWS simulation, and PD signals from an artificially defected stator winding were also measured by the sensor proposed in this study. Furthermore, an HFCT was used as a reference sensor and compared with the proposed new planar patch sensor. In the results of the experiment, the planar patch sensor showed a similar performance to the HFCT sensor.

나노간극에 발생하는 전기방전의 실험적연구 (Experimental Study on Electrical Discharge in Nanoscale Gaps)

  • 이영민;최해운
    • 대한기계학회논문집A
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    • 제35권5호
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    • pp.495-501
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    • 2011
  • 나노간극에서 발생하는 전기방전에 대해서 실험적으로 연구하고 그 결과를 분석하였다. Pt-Ir 합금으로 구성된 음극과 금으로 박막코팅된 양극사이에 전기방전을 하였다. 음극과 양극에서 전기장을 10V~80V 범위에서 제어하였으며, 간극은 50nm 에서 800nm 로 제어하였다. 이때 발생된 전기방전신호, 쇼트신호 등은 간접적으로 나노간극에서 발생하는 현상들을 이해할 수 있었다. 실험결과 전기방전은 전기장과 음극의 전극첨단의 반경에 매우 밀접하게 관련이 있었다. 작은 간극에서 발생하는 전기방전은 비교적 산포도가 크고 랜덤한 형태를 보였으며 음극 전극첨단의 반경에 민감하게 반응하였다.

Pattern Classification of Partial Discharge Data

  • Kim Sung-Ho;Bae Geum-Dong
    • International Journal of Fuzzy Logic and Intelligent Systems
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    • 제5권4호
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    • pp.347-352
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    • 2005
  • PD(Partial discharges) are small electrical sparks that occur within the electric insulation of cables, transformers and windings on motors. PD analysis is a proactive diagnostic approach that uses PD measurements to evaluate the integrity of this equipment. Recently, several diagnostic algorithms for classifying the type of PD and locating the defect position have been developed. In this work, a new PD recognition system is proposed, which utilizes approximate coefficients of wavelet transform as a feature vector, furthermore, introduces bank of Elman networks to recognize the various PD phenomena. In order to verify the performance of the proposed scheme, it is applied to the simulated PD data.

INTRODUCTION OF SPARK EROSION

  • 정창모
    • 대한치과보철학회지
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    • 제38권4호
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    • pp.402-411
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    • 2000
  • The dental profession is currently experiencing a technology explosion. Processes are being replaced by modern, inexpensive, and precise techniques that can be used to solve complex restorative problems. Electrical discharge machining(EDM, known as spark erosion in Europe) is a nonconventional, industrial technique that has application in dentistry. EDM may be defined as a metal removal process using a series of sparks to erode material from a workpiece in a liquid medium under carefully controlled conditions. EDM is recently adopted in the dental laboratory to fabricate precision attachments, hybrid tele-scope crowns, Ti-ceramic crowns. EDM has also been used to achieve a passive precision metal-to-metal fit between the substructure bar and the removable superstructure and to correct the fit of implant retained restorations. In this article, a brief history and explanation of EDM is discussed and a description of the use of this process for fabricating attachments and crowns or for correcting the fit of cast restorations is presented.

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Townsend 방전영역의 불꽃전압에 미치는 음극표면상태의 영향 (The Influence of the Cathode Surface State on the Spark Voltage in the Townsend Discharge Domain)

  • 백용현
    • 전기의세계
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    • 제28권1호
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    • pp.73-82
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    • 1979
  • There are a great number of papers on the Townsend discharge in gases, and many of them are concerned with the effect of the cathode. It has been regarded that there are two kinds of effect of the electrodes, especially of the cathode; (a) the effect caused by the difference of the cathode material and (b) the effect by the change of the cathode surface state even in the same material. Both of them may change the secondary coefficient following after the change of the work function, and the atter may further change the primary ionization coefficient as foreign atoms on the surface may be dseorbed in sparks to decrease the purity of the gas. Thus the two effects must be investigated independently to study the roles of the cathode in gas discharges. In this report the effect of the cathode material on the sparking voltage is described. The experiment is also carried out under the condition that the desorption of impurities from the cathode be negligible. From these the new correlativity between the work function of the cathode and the sparking voltage is obtained. In addition, the interesting character of the minimum point of the Paschen's curve can be found.

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