• Title/Summary/Keyword: automobile ignition coil

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Partial Discharge Characteristics of Epoxy for Ignition Coil (점화코일용 에폭시의 부분방전 특성)

  • Shin Jong-Yeol;Hong Jin-Woong
    • Journal of the Korean Society of Safety
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    • v.19 no.4 s.68
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    • pp.141-149
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    • 2004
  • The automobile equipped with a gasoline engine uses the ignition coil, namely, a high voltage generator, to make the mixed fuel ignited and burned in the combustion chamber, which results in the power to drive the engine. The ignition coil functions to convert a low voltage of the primary into a hiか voltage of the secondary by switching method, which will be transmitted to the electrode. Here, if the ignition coil has a defect even a little, it cannot function well. In this study, it was chosen epoxy molding ignition coil in recently and epoxy resin which is insulation material as specimens, and it was measured the characteristics of the partial discharge occurring to the specimens when those were applied to a voltage, and thereby, it was researched and analyzed the distribution of phase angle, amount and count of discharge due to the changing voltage, And as the result is applying to the actual automobile ignition system, it can be expected the enhancement of the performance of the ignition coil and the reliability of the electrical equipment.

Electrical properties of insulating oils for automobile ignition coil (자동차 점화코일용 절연유의 전기적 특성)

  • 신종열;홍진웅
    • Transactions of the Korean Society of Automotive Engineers
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    • v.7 no.5
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    • pp.172-177
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    • 1999
  • In this paper, the physical and electrical properties of the synthetic fluids No. 2 class Ⅶ used the insulating oils for automobile ignition coil are studied. Also, benzotriazole(BTA) as the streaming electrification suppressant additive is added to the oil, and the change of physical and electrical properties due to different BTA concentration is investigated. To investigate the electrical characteristics, the breakdown strength of each specimen by an experiment for AC breakdown and the changes of conductivity by measuring volume resistivity are analyzed. It is considered that the effective content of BTA as charge suppressant additive is about 10[ppm] from the results of AC breakdown and volume resistivity test.

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Temperature Dependence on the Partial Discharge of Epoxy Molding Ignition Coil According to Applied Voltage (에폭시 성형 점화코일의 인가전압에 따른 부분 방전 온도 의존성)

  • Shin, Jong-Yeol;Hong, Jin-Woong
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.28 no.2
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    • pp.85-91
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    • 2015
  • A gasoline engine automobile uses high voltage generation of the ignition coil, igniting and burning mixed fuel in the combustion chamber, which drives the engine. When the electronic control unit intermits a current supplied to the power transistor, counter electromotive force with a low voltage is generated by self induction action in the ignition primary coil and a high voltage is induced by mutual induction action with the primary ignition coil in the second ignition coil. The high voltage is supplied to the ignition plug in the combustion chamber, causing a spark, igniting the compressed mixed fuel. If a very small defect occurs inside the insulating material when a voltage is applied in said ignition coil, the performance of the insulation material will get worse and breakdown by a partial discharge of corona discharge. Thus, in this experiment, we are to contribute to improve the performance and ensure the reliability of the ignition coil by investigating partial discharge characteristics according to the change of voltage and temperature when a voltage is applied to the specimen of the epoxy molding ignition coil.

Stability Analysis of the Ignition Coil using Partial Discharge (부분방전법을 이용한 점화코일의 안정도 해석)

  • Park, Hee-Doo;Kim, Tag-Yong;Shin, Hyun-Taek;Kim, Weon-Jong;Shin, Jong-Yeol;Hong, Jin-Woong
    • Journal of the Korean Society of Safety
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    • v.21 no.1 s.73
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    • pp.53-58
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    • 2006
  • This paper has been addressed on the discharge characteristics of the ignition coil by Weibull function. It analyzed discharge number and amount of discharge using Weibull distribution to know the inter-relationship between partial discharge and mileage. We detected the discharge which happens for 10 seconds. The applied voltage increased by 0.5[kV] at discharge inception voltage. We diagnosed failure rate using the shape parameters. As a result, we confirmed that the failure rate was increased, because the shape parameter showed the value of 5 according to increasing mileage degradation. Also, it is considered to increase the degradation of inner insulator of ignition coil. Because failure rate of virgin was increased from 0[%] to 25[%] after degradation, stability analysis of the ignition coil using Weibull analysis is possible.

Contact Stress Analysis of Stick Type Ignition Coil Jacket PBT (Stick Type Ignition Coil Jacket PBT의 접촉응력해석)

  • Kim Yangsul;Kim Namsu;Lee Jongseok
    • Transactions of the Korean Society of Automotive Engineers
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    • v.13 no.1
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    • pp.45-50
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    • 2005
  • Stick type ignition coil(called a Cigar coil) is a kind of transformer for an automobile modulaized of distributer and electric cable. A material of cigar coil is PBT $GF30\%$ resin. This is an excellent engineering plastic with both mechanical and electrical properties. When we insert an HV terminal into the PBT $GF30\%$ resin jacket, it breaks the jacket, because the HV terminal is bigger than the jacket. It is a fatal on durability of a part. In this study, We used ANSYS FEM tool in order to stress analysis by contact. In order to automatically estimate possible maximum diameter of an HV terminal, we used an APDL. In the contact part, we considered the relation of the HV terminal's diameter with the amount of stress that occurred. This relation is able to be applied, in part, to the dimensions of the part design.

Design and Implementation of Electric Current Control Device for Ignition Coil in Spark Ignition Engine (스파크 점화기관의 점화코일 전류제어장치 설계 및 구현)

  • Lee, Geum-Boon;Choi, Seok-Won;Kim, Doo-Hyun;Cho, Beom-Oon
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.16 no.12
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    • pp.2682-2688
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    • 2012
  • In this paper, we design and implement a electric current controller for ignition coil to measure the amount of current and to supply the additional current under vehicle driving conditions in spark ignition engines. The proposed controller can provide the stable current and prevent the overcurrent by measuring the amperage of primary ignition in real time. Also it enhances the performance of vehicle engine by controling the amount of ignition energy that make power increase and fuel burn more completely. The power and torque of the normal vehicle is evaluated as performance index for the experimental validation of the control module. The experimental results using dynamometer equipment show that after control module-mounted elevates the average of 10% more in both power and torque compared with before module-mounted.

Experimental Research to Improve the Output Characteristic of CDI System (CDI시스템의 출력발생향상을 위한 실험적 연구)

  • 전병실;김종규
    • The Transactions of the Korean Institute of Electrical Engineers
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    • v.31 no.11
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    • pp.146-154
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    • 1982
  • This paper proposes a new circuit for the CDI system to have a constant ignition power at the engine speed range of 500 to 7500 rpm and the battery voltage range of 12 to 16 volts in the 4-cylinder automobile. The proposed CDI system has a closed-loop with a PWM DC-DC converter controlled by the error signal between capacitor voltage and reference voltage. In order to decrease the capacitor charging time, the primary winding of ignition coil is made to be shorted during capacitor charging. An experimental suystem is fabricated and the results obtained thereof are found to be satisfactory.

Development of Electric Current Control Unit for Automobile Ignition Coil (자동차 점화코일 충전 전류제어 장치 개발)

  • Kim, Doo-Hyun;Choi, Seok-Won;Cho, Beom-Joon
    • Proceedings of the Korea Multimedia Society Conference
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    • 2012.05a
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    • pp.156-157
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    • 2012
  • 본 논문은 불꽃 점화 방식 엔진에서 차량의 주행상태에 따른 점화코일의 전류량을 측정하여 추가적인 전류를 공급하는 충전 전류제어 장치를 고안하였다. 점화 코일의 전류를 안정적으로 공급하고 과전류를 방지함으로써 차량 엔진의 출력 향상 및 효율적인 연소가 가능하도록 하였으며, 다이나모 장비를 이용하여 출력과 토크에 대한 성능평가를 하였다. 실험결과는 제안하는 장치의 유효성을 보여주었다.

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A Study on Correlation of Effective Discharge Energy and Exhaust Emission of Gasoline Vehicle (가솔린자동차의 유효방전에너지와 배기가스와의 상관관계 연구)

  • Yoo, Jongsik;Kim, Chulsoo
    • Transactions of the Korean Society of Automotive Engineers
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    • v.22 no.7
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    • pp.70-75
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    • 2014
  • The experiment was done on traveling at the speed of 20km/h, 60km/h and 100km/h using the performance testing mode for chassis dynamometer. The experimental method were employed to measure the waveform of secondary ignition coil and exhaust emission. In this experiment, the correlation between the secondary waveform coming from ignition coil and exhaust emission were measured in decrepit vehicle. The secondary waveform characterized by the value of effective discharge energy. The following results are obtained by analyzing the data relativity between the effective discharge energy and exhaust emission. The variation rate of effective discharge energy was largest 60km/h, 20km/h, 100km/h velocity in the ordered named. As the vehicle velocity increases, the average variation rate of CO and $NO_X$ decreases and that of HC and $CO_2$ decrease. The value of effective discharge energy, CO, $NO_X$ and fuel consumption is measured badly in case of car with failures in MAP, spark plug and good in case of car with before and after maintenance regardless of vehicle velocities. The value of effective discharge energy is to be nearly parabolic shape as vehicle velocity increases. As the value of effective discharge energy increases, the value of $NO_X$, HC and $CO_2$ decrease, the value of CO increase. The most sensible factors of exhaust emission were CO, $NO_X$, and the small variation factors were HC, $CO_2$.

Dielectric Characteristics due to BTA in Insulating Liquids for the Ignition Coil of Automobile (자동차 점화장치용 절연유의 BTA 함유에 따른 유전특성)

  • 신종열;조돈찬;조경순;이수원;홍진웅
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 1997.04a
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    • pp.253-256
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    • 1997
  • Recently, mixture insulating oils is widely used in respect that the physical and the electrical properties is more excellentthan mineral oils, such as alkylbenzene oils and silicone oils, and that cost is lower than alkylbenzene oils or silicone oils. Also, it is important to research for the additive BTA(Benzotriazole) as a study for the phenomena of streaming electrification of mineral oils. So, mixture insulating oils class 7-2, is selected as a specimen in this experiments, and the contents of BTA in specimen are 0.2[ppm], 10[ppm] and 30[ppm], respectively. Then, the physical and the electrical properties for each specimen is made researches.

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