EN 50303-2000 en Group I Category M1 Equipment Intended to Remain Functional in Atmospheres Endangered by Firedamp and or Coal Dust《在有瓦斯和 或煤尘危险的大气中保持功能的1组M1类设备》.pdf
《EN 50303-2000 en Group I Category M1 Equipment Intended to Remain Functional in Atmospheres Endangered by Firedamp and or Coal Dust《在有瓦斯和 或煤尘危险的大气中保持功能的1组M1类设备》.pdf》由会员分享,可在线阅读,更多相关《EN 50303-2000 en Group I Category M1 Equipment Intended to Remain Functional in Atmospheres Endangered by Firedamp and or Coal Dust《在有瓦斯和 或煤尘危险的大气中保持功能的1组M1类设备》.pdf(24页珍藏版)》请在麦多课文档分享上搜索。
1、STD-BSI BS EN 50303-ENGL 2000 m Lb24bb 087957b 192 m BRITISH STANDARD Group I, Category M1 equipment intended to remain functional in atmospheres endangered by firedamp and/or coal dust The European standard EN 50303:2000 has the status of a British Standard ICs 29.260.20 NO COPYING WITHOUT BSI PERM
2、ISSION EXCEPT AS PERMITTED BY COPYRIGHT LAW BS EN i0303:2000 STD.BSI BS EN 50303-ENGL 2000 H Lb24667 0879577 027 BS EN 603032000 National foreword This British Standard is the officiai English ianguage version of EN 50303:2. The UK participation in its preparation was entrusted to Technid Committee
3、GEy31, Electrid apparatus for use in explosve atomspheres, which has the responsibility to: - aid enquirers to understand the text; - present to the responsible European committee any enquiries on the - monitor related internationai and European developments and prom and b) more than 6 % in total of
4、 magnesium, titanium and zirconium. O BSI 11-2000 STD.BSI BS EN 50303-ENGL 2000 E Lb24669 0879585 JT Page 8 EN 50303:2000 4.6.2 No exposed external parts of equipment shall be painted or coated with preparations containing, in metallic form, aluminium, magnesium, titanium or zirconium. 4.6.3 Light m
5、etal components, not forming part of the external enclosures, shall be so contained or guarded as to prevent abrupt stress and impact from other extraneous metallic objects during normal operation of the equipment. 4.7 Enclosures constructed of plastics or other materials susceptible to being charge
6、d by static electricity, for: - non-fixed equipment (e.9. portable, hand-held, rotating parts, cooling fans); or - fixed equipment which is likely to be charged by high velocity dust laden air (e.9. equipment intended to be located inside ventilating ducting); Prevention of dangerous electrostatic c
7、harges having a surface area normal conditions of electrostatic charges is projected in any direction of more than 100 ct? shall be so designed that under use, maintenance and cleaning, the danger of ignition of firedamp due to avoided. This requirement shall be satisfied by either: - suitable selec
8、tion of material so that the insulation resistance of the enclosure, measured according to the methods given in EN 50014 and prEN 13463-1, does not exceed 1 CB at (23 f 2) “C and (50 f 5) % relative humidity; or - by virtue of the size, shape and layout of the enclosure, or other protective methods
9、utilized, such dangerous electrostatic charges are not likely to occur. NOTE By virtue of its omission from this text and 7.4.2 of prEN 13463-1, the option described in 7.3.1 of EN 50014 of aiiachinga warning label, is not a permissible arrangement for Category Ml equipment. 4.8 Electric cables 4.8.
10、1 General 4.8.1.1 Electric cables, forming part of Category M1 equipment, shall be assessed for compliance as part of the equipment to which they are connected. Where cables are incorporated into an intrinsically safe circuit, the integrated equipment shall comply with EN 50020 Category ia“. NOTE At
11、 the present time, the explosion protection standards listed in clause 2 do not apply to electric cables because they ae not within their scope. The following clauses therefore deal with electric cables protected by virtue of containing circuits that ae safe with two faults. They repeat the requirem
12、ents previously incorporated in annex 111 of European Directive 82/13/EEC and may be amended or revised at a later date when a Group I Intrinsically Safe Systems Standard is published. 4.8.1.2 Electric cables, cable entries and connections shall be constructed according to good engineering practice
13、and provide ingress protection at least equal to that of the equipment to which they are connected. 4.8.2 Cables containing intrinsically safe circuits shall not contain any non-intrinsically safe circuits. Cables containing intrinsically safe circuits 4.8.3 4.8.3.1 Where a multicore cable contains
14、more than one intrinsically safe Category ia“ circuit its insulation shall have a radial thickness appropriate to the diameter of the conductor. In the case of polyethylene this shall be a minimum radial thickness of 0,2 mm. Additional requirements for cables containing more than one intrinsically s
15、afe circuit OBSI 11-2000 STD.BSI BS EN 50303-ENGL 2000 LbZ4bb9 087958b 031, m Page 9 EN 50303:2000 4.8.3.2 Before the multicore cable leaves the manufacturers works, the multicore cable shall have been submitted to at least one of the dielectric tests described below and the voltage withstand capabi
16、lity of the insulation confirmed in a document supplied by the cable manufacturer: dielectric test performed before the conductor cores are assembled into the cable: each core shall be tested at a voltage equal to 3 O00 V (rms) + (2 O00 times the radial thickness of the insulation in mm) V (rms). Th
17、e assembled cable is then firstly tested at a voltage value (rms) equal to 500 V applied between all armourings, or screens, of the cable joined together electrically and the bundle of all cores joined together electrically, and secondly at a voltage value (rms) equal to 1 O00 V applied between a bu
18、ndle comprising one half of the cable cores and a bundle comprising the other half of the cores. If the cable manufacturer decides otherwise, the dielectric tests may be performed using a d.c. voltage multiplied by a factor of 1,4 on the a.c. values. - dielectric test performed on an assembled cable
19、: a voltage equal to 1 O00 V (rms) is applied between all the armourings andlor screens of the cable joined together electrically and the bundle of all of the conductor cores joined together electrically. It is then tested at a voltage equal to 2 O00 V (rms) applied in succession between each conduc
20、tor core of the cable and the bundle formed by all of the other cores joined together electrically. If the cable manufacturer decides otherwise, the dielectric tests may be performed using a d.c. voltage multiplied by a factor of 1,4 on the a.c. values. 4.8.3.3 Where the above dielectric tests use a
21、n a.c. voltage, it shall be substantially of sinusoidal wave form and be at a frequency between 48 Hz and 62 Hz, supplied from a transformer of sufficient power taking account of the cable capacity. In the case of the dielectric tests on an assembled cable, the voltage shall be increased steadily to
22、 the specified value in a period not less than 10 seconds and then maintained for at least 60 seconds. 4.8.4 Assessment of equipment having multicore cables containing one or more intrinsically safe circuits 4.8.4.1 In assessing the suitability of a multicore cable containing intrinsically safe Cate
23、gory “ia“ circuits, a fault between the cores can be ignored if one of the two following requirements are satisfied: - the cable has successfully met the requirements of the dielectric tests above and each individual circuit is enclosed in a conducting screen providing at least 60 % coverage. - the
24、cable has successfully met the requirements of the dielectric tests above, is effectively protected against mechanical damage and each circuit within the cable has a peak voltage of equal to or less than 60 V in normal operation. 4.8.4.2 Where a multicore cable has successfully met the requirements
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