EN 61621-1997 en Dry Solid Insulating Materials - Resistance Test to High-Voltage Low-Current Arc Discharges《干燥固体绝缘材料 耐高压低电流电弧放电的试验 IEC 61621 1997》.pdf
《EN 61621-1997 en Dry Solid Insulating Materials - Resistance Test to High-Voltage Low-Current Arc Discharges《干燥固体绝缘材料 耐高压低电流电弧放电的试验 IEC 61621 1997》.pdf》由会员分享,可在线阅读,更多相关《EN 61621-1997 en Dry Solid Insulating Materials - Resistance Test to High-Voltage Low-Current Arc Discharges《干燥固体绝缘材料 耐高压低电流电弧放电的试验 IEC 61621 1997》.pdf(17页珍藏版)》请在麦多课文档分享上搜索。
1、STD-BSI BS EN bLb21-ENGL 1778 I Lb2LibbS b84723 015 9 BRITISH STANDARD Dry, solid insulating materials - Resistance test to high-voltage, low-current arc discharges The European Standard EN 61621 : 1997 has the status of a British Standard ICs 29.035.01 NO COPYING WITHOUT BSI PERMISSION EXCEPT AS PE
2、RMITTED BY COPYRIGHI LAW BS EN 61621 : 1998 IEC 61621 : 1997 BS EN 61621 : 1998 AmdNo. Date National foreword Text affected This British Standard is the English language version of EN 61621 : 1997. It is identical with IEC 61621 : 1997. The K participation in its preparation was entrusted by Technic
3、al Committee GEI15, Ins- materials, to Subcommittee GEI15/5, Methods of test, which has the responsibiliy to: - aid enquirem to undemtand the te - present to the responsible internationavEuropean committee any enquiries on the interpretation, or proposals for change, and keep the UK interests inform
4、ed; - monitor related international and European developments and promulgate them in the UK. This British Standard, having been prepared under the direction of the Eectrotechnicai Sector Board, was published under the authority of the Standards Board and comes into effect on 15 February 1998 O BSI 1
5、998 A list of organizations represented on this subcommittee can be obtained on request to its secretary. From 1 January 1997, all IEC publications have the number 6o added to the old number. For instance, IEC 27-1 has been renumbered as IEC 60027-1. For a period of time during the change over from
6、one numbering system to the other, publications may contain identifiers from both systems. Cross-references Attention is drawn to the fact that CEN and CENELEC Standards normally include an annex which lists nonnative references to intedonal publications with their corresponding European publication
7、s. The British Standards which implement these international or European publications may be found in the MI Standards Catalogue under the section entitled International Standards Correspondence Index, or by using the %in failure is also considered to have occurred if the arc causes a material to bu
8、rn and the burning continues when the arc is interrupted. NOTE 1 - When the arc disappears into the material, the circuit current usually changes and a noticeable change in sound takes place. NOTE 2 - For some materials, the trend towards failure increases over a fairly long interval of time before
9、all parts of the arc between the electrodes have disappeared. Failure only occurs when the entire arc has disappeared. NOTE 3 - For some materials, a persistent scintillation may be observed close to the electrodes after the arc has disappeared. This scintillation shall not be considered as part of
10、the arc. NOTE 4 - Burning of the material accompanying the arc is only considered as failure if the burning continues between arc interruptions. Otherwise the test is continued until a conducting path is formed. NOTE 5 - The first disappearance of the entire arc is considered as failure even if the
11、material recovers for subsequent arcing. 3.2 arc resistance total time in seconds from the start of test until specimen failure 4 Apparatus 4.1 Test circuit The principal components of the electrical circuit for the apparatus are shown in figure 1. NOTE - In the secondary circuit wiring the stray ca
12、pacitance should be less than 40 pF. Large stray capacitance may disturb the arc shape and influence the test results. 4.1.1 Transformer, T, A transformer with a rated secondary potential (on open circuit) of 15 kV, and a rated secondary current (on short circuit) of 60 mA, line frequency (48 Hz to
13、62 Hz). 4.1.2 Variable autotransformer, TC Rated 1 kVA and suitable for the line voltage. NOTE - A constant primary voltage supply f2 % is recommended. Page 6 EN 61621 : 1997 4.1.3 Voltmeter, VL AC voltmeter with an accuracy of +0,5 %, capable of reading line voltage :lg %. 4.1.4 Milliammeter, A A t
14、rue r.m.s. a.c. milliammeter capable of reading 10 mA to 40 mA with an accuracy of 15 %. Since this milliammeter is used only when setting up or making changes in the circuit, it may be shorted out by a bypass switch when not in use. NOTE - Although provision has been made for the suppression of rad
15、io frequency components of current in the arc, it may be desirable to check for their presence when the apparatus is first constructed. This is best done by use of a suitable thermocouple type r.f. milliammeter temporarily inserted in series with the milliammeter. 4.1.5 Current control resistors, Ri
16、o, R, R, and R, Four resistors are required in series with the primary of T,. These resistors must be adjustable, to some extent, to permit exact settings of the currents during calibration. RIO is always in the circuit to provide a 10 mA current. 4.1.6 Suppressing resistor, R, Rated at 15 khl i 1.5
17、 khl and at least 24 W. This resistor, along with the inductors (see 4.1.7) is used to suppress parasitic high frequency in the arc circuit. 4.1.7 Air core inductors, X, 1,2 H to 1,5 H NOTE - A single coil of this inductance is not practical. A satisfactory inductor may be constructed by connecting
18、in series eight coils of 3 O00 to 5 O00 turns of wire wound on insulating non-metallic cores of about 12,7 mm diameter and 153 mm inside length. 4.1.8 Breaker, 8 Motor driven or electronically operated interrupter used to give the required cycles for the three lower steps of the test by opening and
19、closing the primary circuit according to the schedule in table 1. with an accuracy of 10,008 s. 4.1.9 Timer, TT A stop watch or electric interval timer accurate to fl s. 4.1.10 Contactor C, When the draft shield, enclosing the electrode assembly, is in lowered position, it actuates a normally open (
20、NO) microswitch which, in turn, operates contactor C, and connects the transformer Tv to the circuit, allowing application of HV to the electrodes. With the draft shield raised, the transformer is disconnected and the operator is protected. STD-BSI BS EN bLb21-ENGL 1998 - Lb2LibbS Ub84732 191 Page 7
21、 EN 61621 : 1997 4.2 Electrodes and electrode assembly 4.2.1 Electrodes The electrodes are made from 2,4 mm f 0,05 mm diameter tungsten rod which is free from cracks, pits or rough spots. The free electrode length shall be a minimum of 20 mm. It is recommended that the electrodes are mounted in a sh
22、ank which allows correct orientation of the electrode tip after sharpening. The electrode tip shall be ground and polished to produce an angle of 30“ i 1“ to the axis, to achieve a fiat elliptical face. As an example, figure 2 shows the electrodes mounted in a suitable shank. NOTE 1 - Tungsten weldi
23、ng rods have been found to be suitable for use as electrodes. NOTE 2 - A steel jig for securing the electrodes during sharpening io ensure finishing the pointed tips to the proper geometry is helpful. 4.2.2 Electrode assembly This assembly provides a means of holding the electrodes and the test spec
24、imen at the proper angle for applying the arc to the top surface of the test specimen. It shall be constructed so that the top surface of each specimen is at the same height for each test. Each electrode shall be adjusted so that it rests independently on the test specimen with a force of 0,5 N f 0,
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