1、 IEC 60282-1Edition 7.0 2009-10INTERNATIONAL STANDARD NORME INTERNATIONALEHigh-voltage fuses Part 1: Current-limiting fuses Fusibles haute tension Partie 1: Fusibles limiteurs de courant IEC60282-1:2009 THIS PUBLICATION IS COPYRIGHT PROTECTED Copyright 2009 IEC, Geneva, Switzerland All rights reserv
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16、ition 7.0 2009-10INTERNATIONAL STANDARD NORME INTERNATIONALEHigh-voltage fuses Part 1: Current-limiting fuses Fusibles haute tension Partie 1: Fusibles limiteurs de courant INTERNATIONAL ELECTROTECHNICAL COMMISSION COMMISSION ELECTROTECHNIQUE INTERNATIONALE XCICS 29.120.50 PRICE CODECODE PRIXISBN 2-
17、8318-1064-6 Registered trademark of the International Electrotechnical Commission Marque dpose de la Commission Electrotechnique Internationale 2 60282-1 IEC:2009 CONTENTS FOREWORD.6 1 General 8 1.1 Scope8 1.2 Normative references 8 2 Normal and special service conditions.8 2.1 Normal service condit
18、ions8 2.2 Other service conditions 10 2.3 Special service conditions10 2.4 Environmental behaviour .10 3 Terms and definitions .10 3.1 Electrical characteristics 10 3.2 Fuses and their component parts .14 3.3 Additional terms.15 4 Ratings and characteristics .17 4.1 General .17 4.2 Rated voltage 17
19、4.3 Rated insulation level (of a fuse-base) .18 4.4 Rated frequency 19 4.5 Rated current of the fuse-base.19 4.6 Rated current of the fuse-link.19 4.7 Temperature-rise limits20 4.8 Rated breaking capacity.22 4.8.1 Rated maximum breaking current.22 4.8.2 Rated minimum breaking current and class 22 4.
20、9 Limits of switching voltage .22 4.10 Rated transient recovery voltage (rated TRV).24 4.10.1 General .24 4.10.2 Representation of TRV.25 4.10.3 Representation of rated TRV25 4.11 Time-current characteristics.26 4.12 Cut-off characteristic .27 4.13 I2t characteristics 27 4.14 Mechanical characterist
21、ics of strikers.27 4.15 Special requirement for Back-Up fuses intended for use in switch-fuse combination according to IEC 62271-105 .28 4.15.1 General .28 4.15.2 Maximum body temperature under pre-arcing conditions 29 4.15.3 Maximum arcing withstand time .29 5 Design, construction and performance 2
22、9 5.1 General requirements with respect to fuse operation 29 5.1.1 General .29 5.1.2 Standard conditions of use.29 5.1.3 Standard conditions of behaviour .30 5.2 Identifying markings.30 5.3 Dimensions .31 6 Type tests.31 60282-1 IEC:2009 3 6.1 Conditions for making the tests31 6.2 List of type tests
23、 31 6.3 Common test practices for all type tests.31 6.3.1 General .31 6.3.2 Condition of device to be tested .32 6.3.3 Mounting of fuses 32 6.4 Dielectric tests.32 6.4.1 Test practices32 6.4.2 Application of test voltage for impulse and power-frequency test 32 6.4.3 Atmospheric conditions during tes
24、t.33 6.4.4 Lightning impulse voltage dry tests.33 6.4.5 Power-frequency voltage dry tests33 6.4.6 Power-frequency wet tests .33 6.5 Temperature-rise tests and power-dissipation measurement 34 6.5.1 Test practices34 6.5.2 Measurement of temperature .35 6.5.3 Measurement of power dissipation .36 6.6 B
25、reaking tests .36 6.6.1 Test practices36 6.6.2 Test procedure 43 6.6.3 Alternative test methods for Test Duty 3.47 6.6.4 Breaking tests for fuse-links of a homogeneous series .48 6.6.5 Acceptance of a homogeneous series of fuse-links by interpolation 49 6.6.6 Acceptance of a homogeneous series of fu
26、se-links of different lengths.50 6.7 Tests for time-current characteristics .50 6.7.1 Test practices50 6.7.2 Test procedures.50 6.8 Tests of strikers.51 6.8.1 General .51 6.8.2 Strikers to be tested.51 6.8.3 Operation tests 51 6.8.4 Test performance 52 6.9 Electromagnetic compatibility (EMC)53 7 Spe
27、cial tests.53 7.1 General .53 7.2 List of special tests53 7.3 Thermal shock tests 53 7.3.1 Test sample.53 7.3.2 Arrangement of the equipment .54 7.3.3 Test method 54 7.4 Power-dissipation tests for fuses not intended for use in enclosures.54 7.5 Waterproof test (ingress of moisture).54 7.5.1 Test co
28、nditions 54 7.5.2 Test sample.54 7.5.3 Test method 54 7.6 Tests for Back-Up fuses for use in switch-fuse combination of IEC 62271-105 .54 7.6.1 General .54 7.6.2 Pre-arcing temperature rise test.54 7.6.3 Arcing duration withstand test 55 4 60282-1 IEC:2009 7.7 Oil-tightness tests55 8 Routine tests 5
29、6 9 Application guide 56 9.1 Object .56 9.2 General .56 9.3 Application.56 9.3.1 Mounting56 9.3.2 Selection of the rated current of the fuse-link .57 9.3.3 Selection according to class (see 3.3.2) and minimum breaking current.58 9.3.4 Selection of the rated voltage of the fuse-link .59 9.3.5 Selecti
30、on of the rated insulation level .59 9.3.6 Time-current characteristics of high-voltage fuses60 9.3.7 Fuses connected in parallel60 9.4 Operation 61 9.4.1 Locking of the fuse-link in the service position61 9.4.2 Replacement of the fuse-link61 9.5 Disposal 61 Annex A (normative) Method of drawing the
31、 envelope of the prospective transient recovery voltage of a circuit and determining the representative parameters 62 Annex B (informative) Reasons which led to the choice of TRV values for Test Duties 1, 2 and 3 .64 Annex C (informative) Preferred arrangements for temperature-rise tests of oil-tigh
32、t fuse-links for switchgear66 Annex D (informative) Types and dimensions of current-limiting fuse-links specified in existing national standards67 Annex E (normative) Requirements for certain types of fuse-links intended for use at surrounding temperatures above 40 C70 Annex F (informative) Determin
33、ation of derating when the ambient temperature of the fuse exceeds 40 C.74 Annex G (informative) Criteria for determining Ittesting validity.82 Bibliography83 Figure 1 Terminology .14 Figure 2 Permissible switching voltages for fuse-links of small current ratings (Table 8).23 Figure 3 Representation
34、 of a specified TRV by a two-parameters reference line and a delay line 26 Figure 4 Various stages of the striker travel28 Figure 5 Example of a two-parameters reference line for a TRV complying with the conditions of the type test39 Figure 6 Breaking tests Arrangement of the equipment 43 Figure 7 B
35、reaking tests Typical circuit diagram for Test Duties 1 and 2 44 Figure 8 Breaking tests Typical circuit diagram for Test Duty 3 44 Figure 9 Breaking tests Interpretation of oscillograms for Test Duty 1 45 Figure 10 Breaking tests Interpretation of oscillograms for Test Duty 2 (calibration traces as
36、 in a) of Figure 9) 46 Figure 11 Breaking tests Interpretation of oscillograms for Test Duty 3 46 60282-1 IEC:2009 5 Figure A.1 Example of a two-parameters reference line for a TRV whose initial portion is concave towards the left 63 Figure A.2 Example of a two-parameters reference line for an expon
37、ential TRV 63 Figure C.1 Test tank for temperature-rise tests of oil-tight fuses .66 Figure C.2 Details of clamping arrangement for fuse-link in the tank .66 Figure F.1 Derating curves for some allowed temperature limits78 Figure F.2 Practical example: dimensions.79 Figure F.3 Extract from IEC 60890
38、 .80 Figure F.4 Practical example of application.81 Table 1 Altitude correction factors Test voltage and rated voltage 9 Table 2 Altitude correction factors Rated current and temperature rise.9 Table 3 Rated voltages.17 Table 4 Fuse-base rated insulation levels Series I .18 Table 5 Fuse-base rated i
39、nsulation levels Series II 19 Table 6 Limits of temperature and temperature rise for components and materials21 Table 7 Maximum permissible switching voltages .22 Table 8 Maximum permissible switching voltages for certain fuse-links of small current ratings.23 Table 9 Standard values of rated TRV Se
40、ries I.24 Table 10 Standard values of rated TRV Series II25 Table 11 Mechanical characteristics of strikers.28 Table 12 Electrical connection to the test circuit Conductor sizes .34 Table 13 Breaking tests Parameters 38 Table 14 TRV for Test Duty 2 Series I40 Table 15 TRV for Test Duty 2 Series II.4
41、1 Table 16 Breaking test requirements for fuse-links of a homogeneous series49 Table F.1 Temperature limits extracted from Table 6 77 6 60282-1 IEC:2009 INTERNATIONAL ELECTROTECHNICAL COMMISSION _ HIGH-VOLTAGE FUSES Part 1: Current-limiting fuses FOREWORD 1) The International Electrotechnical Commis
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