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Vacuum interrupter, high reliability component of distribution switches, circuit breakers and contactors
Slade Paul G., Li Wang-Pei, Mayo Stephen, Smith R. Kirkland, Taylor Erik D.
Journal of Zhejiang University-SCIENCE A (Applied Physics & Engineering), 2007, 8(3): 1-.
https://doi.org/10.1631/jzus.2007.A0335
The use of vacuum interrupters (VIs) as the current interruption component for switches, circuit breakers, reclosers and contactors operating at distribution voltages has escalated since their introduction in the mid-1950’s. This electrical product has developed a dominating position for switching and protecting distribution circuits. VIs are even being introduced into switching products operating at transmission voltages. Among the reasons for the VI’s popularity are its compactness, its range of application, its low cost, its superb electrical and mechanical life and its ease of application. Its major advantage is its well-established reliability. In this paper we show how this reliability has been achieved by design, by mechanical life testing and by electrical performance testing. We introduce the “sealed for life” concept for the VI’s integrity. We discuss this in terms of what is meant by a practical leak rate for VIs with a life of over 30 years. We show that a simple high voltage withstand test is an easy and effective method for monitoring the long-term vacuum integrity. Finally we evaluate the need for routine inspection of this electrical product when it is used in adverse ambient environments.
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Failure analysis of a kind of low power connector
ZHOU Yi-lin, ZENG Ning, XU Liang-jun, JÖRGENS Stefan
Journal of Zhejiang University-SCIENCE A (Applied Physics & Engineering), 2007, 8(3): 7-.
https://doi.org/10.1631/jzus.2007.A0384
A kind of low power connector used e.g. in household appliances was partly burned in routine experiment. The heat sources were four paralleled contacts constructed by springs (Sn/CuSn-alloy) in socket and a plug sheet (Ni/Steel) while mating. The contact interfaces were detected by scanning electronic microscope (SEM) and X-ray energy dispersive spectroscopy (XEDS), obvious wear tracks and various contaminants, including element Si, Al, Na, K, S, Cl, O, etc., were found. The contamination degrees on the four paralleled contacts were different, so that the ratio of average contact resistance on the four contacts was about 5:8:3:1. The maximum contact resistance on contacts of the plug sheet reached 28 Ω. The main failure reasons were fretting and contamination between the contact interfaces. Fretting simulation showed that connection resistance of connectors was raised up, even to ohms level. When the current increased to 5 A, the socket housing was heated and decomposed. By the thermal analysis, it was estimated that the connector would be burned under the lower current if the current was not evenly distributed on the four paralleled contacts caused by uneven contamination. Improvement methods for connector failure are also discussed.
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Approach for electrodynamic force for compensation in low voltage circuit breaker WP 630-1.2 type
LU Na, XU L.J., Miedziński B.
Journal of Zhejiang University-SCIENCE A (Applied Physics & Engineering), 2007, 8(3): 8-.
https://doi.org/10.1631/jzus.2007.A0393
Undesirable repulsive force between contact members due to both a current path shrink near a real contact area and/or so-called pinch effect is particularly onerous for power switch applications, and results in either contact floating or bouncing which are associated with an electric arc following contact welding. This problem is of great importance for any circuit breaker especially for compact low voltage vacuum circuit breakers. To avoid contact floating at closure and during any inrush current under short circuit conditions, the electrodynamic repulsive force can be employed successfully if we use a special compensation system flexibly combined with the contact itself. However to select and design the compensation system properly, its efficiency has to be known. This paper presents an approach to obtain the electrodynamic force value depending on different shaped (rectangular, square, circle and arch) copper plates used in the compensator by using ANSYS for current values 40 kA RMS. Curve-fitting was done according to the calculating results, the optimization designing of compensation unit is based on them.
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Simulation and reliability analysis of shunt active power filter based on instantaneous reactive power theory
CUI Yu-long, LIU Hong, WANG Jing-qin, SUN Shu-guang
Journal of Zhejiang University-SCIENCE A (Applied Physics & Engineering), 2007, 8(3): 13-.
https://doi.org/10.1631/jzus.2007.A0416
This paper first discusses the operating principle of instantaneous reactive power theory. Then, the theory is introduced into shunt active power filter and its control scheme is studied. Finally, Matlab/Simulink power system toolbox is used to simulate the system. In the simulation model, as the most common harmonic source, 3-phase thyristor bridge rectifier circuit is constructed. The simulation results before and after the shunt active filter was switched to the system corresponding to different firing angles of the thyristors are presented and analyzed, which demonstrate the practicability and reliability of the proposed shunt active filter scheme.
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Study on the failure mechanism of Ag-Ce contacts in DC level
MENG Fan-bin, LU Jian-guo, LU Ning-yi, CHEN Zhi-chao, CHEN Qi
Journal of Zhejiang University-SCIENCE A (Applied Physics & Engineering), 2007, 8(3): 19-.
https://doi.org/10.1631/jzus.2007.A0449
Nominal contact resistance, minimum erosion and material transfer are required with low cost materials working in a wide currents range for DC relays. Ag-Ni contact materials have low contact resistance, but the erosion and material transfer are large at high current level. Ag-SnO2 contact materials have good anti-welding properties and resistance to arc erosion, but they have large contact resistance during working and are easily block SnO2 from flocking together on the surface at low current level. In this paper, the failure mechanisms of Ag-Ce contact material were studied. The surface morphologies of the contacts after electrical endurance test for Ag-Ce contact material were compared with that of Ag-Ni and Ag-SnO2 contact materials. The effect of Ce on the surface morphologies of the contacts after electrical endurance test was analyzed.
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Research on the overload protection reliability of moulded case circuit-breakers and its test device
LI Kui, LU Jian-guo, WU Yi, QIN Zhi-jun, YAO Dong-mei
Journal of Zhejiang University-SCIENCE A (Applied Physics & Engineering), 2007, 8(3): 20-.
https://doi.org/10.1631/jzus.2007.A0453
This paper analyzed the reliability and put forward the reliability index of overload protection for moulded case circuit breaker. The success rate was adopted as its reliability index of overload protection. Based on the reliability index and the reliability level, the reliability examination plan was analyzed and a test device for the overload protection of moulded case circuit-breaker was developed. In the reliability test of overload protection, two power sources were used, which reduced the time of conversion and regulation between two different test currents in the overload protection test, which made the characteristic test more accurate. The test device was designed on the base of a Windows system, which made its operation simple and friendly.
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Testing results analysis of contact materials’ electrical contact performance
WANG Jing-qin, WANG Hai-tao, WEN Ming, ZHU Yan-cai
Journal of Zhejiang University-SCIENCE A (Applied Physics & Engineering), 2007, 8(3): 21-.
https://doi.org/10.1631/jzus.2007.A0459
Because of the different ways in which contact materials work, the basic requirements for silver metal oxide contact materials are different. They are anti-welded and anti-erosion when closed, anti-erosion when broken, and arc easily moved and have smaller contact resistance. In this paper, La2O3 is used as a stable oxide in contact material to replace CdO. A new type of Ag/SnO2-La2O3-Bi2O3 contact material is first obtained through using powder metallurgical method. Then electrical contact material parameter tester is used to test the electrical contact performance of the contact material. Through experiments, the arcing voltage and current curves, arcing energy curves, fusion power curves while broken and contact resistance while closed were obtained. Analysis of the results showed that the addition of La2O3 makes the contact material have the following advantages: smaller electrical wear, smaller arc energy, smaller contact resistance and arc is more easily extinguished.
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Research of network technology for Intelligent Circuit Breaker Controller
LIU Jiao-min, FAN Tong-rang, TONG Kuan-zhang
Journal of Zhejiang University-SCIENCE A (Applied Physics & Engineering), 2007, 8(3): 22-.
https://doi.org/10.1631/jzus.2007.A0464
With the current development trend of Ethernet gradually towards the control network of plant-floor layer and devices layer, much management information on Intelligent Circuit Breaker Controller (ICBC) is becoming distributed and networked. This paper describes a mixing structure of complex industrial field control network based on Ethernet frame, then mainly discusses three network management methods of ICBC, such as the interconnection method based on PCI, embedded gateway and embedded Web server. At the same time, it also gives the basic hardware framework of implementing interconnection, the type of main components, and the real-time operation system supporting the embedded TCP/IP protocols and Web server.
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New method for capturing arc of moving on switching apparatus
LIU Jiao-min, WANG Jing-hong
Journal of Zhejiang University-SCIENCE A (Applied Physics & Engineering), 2007, 8(3): 23-.
https://doi.org/10.1631/jzus.2007.A0469
The switching arc that occurs in contact gap when contact of low voltage apparatus closes or breaks in electric circuit is harmful to the contacts, insulation, and reliability of electrical gear because of its very high temperature. As arcing time is very short in switching gear, it is very difficult to observe arc phenomena directly for researchers. Therefore, visualization of switching arc is important for understanding arc phenomena, to analyze the arc features, and to improve the design and reliability of switching gear. Based on analyzing the visualization methods proposed by researchers, a new switching arc capturing approach is introduced in this paper. Arc image acquisition, and image processing techniques were studied. A switching arc image acquisition and visual simulation software based on high speed CCD camera hard ware system was designed and implemented to yield enhanced arc image with good visual effect.
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Study on reliability technology of contactor relay
LIU Guo-jin, ZHAO Jing-ying, WANG Hai-tao, YANG Chen-guang, SUN Shun-li
Journal of Zhejiang University-SCIENCE A (Applied Physics & Engineering), 2007, 8(3): 25-.
https://doi.org/10.1631/jzus.2007.A0481
In this paper, the reliability of contactor relay is studied. There are three main parts about reliability test and analysis. First, in order to analyze reliability level of contact relay, the failure ratio ranks are established as index base on the product level. Second, the reliability test method is put forward. The sample plan of reliability compliance test is gained from reliability sample theory. The failure criterion is ensured according to the failure modes of contactor relay. Third, after reliability test experiment, the analysis of failure physics is made and the failure reason is found.
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Inspection-replacement policy of system under predictive maintenance
LIU Bao-you, FANG You-tong, WEI Jin-xiang, WANG Yong-liang
Journal of Zhejiang University-SCIENCE A (Applied Physics & Engineering), 2007, 8(3): 28-.
https://doi.org/10.1631/jzus.2007.A0495
In general, every system is in one of the three states: normal, abnormal, or failure state. When the system is diagnosed as abnormal state, it needs predictive maintenance. If the system fails, an identical new one will replace it. The predictive maintenance cannot make the system “as good as new”. Under these assumptions, the reliability index and the inspection-replacement policy of a system were studied. The explicit expression of the reliability index and the average income rate (i.e., the long-run average income per unit time) are derived by using probability analysis and vector Markov process method. The criterion of feasibility for the optimal inspection-replacement policy under the maximum average income rate is obtained. The numerical example shows the optimal inspection-replacement policy can raise the average income rate when the optimal inspection-replacement policy is feasible.
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30 articles
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