AECMA PREN 3475-603-2009 Aerospace series Cables electrical aircraft use Test methods Part 603 Resistance to wet arc tracking Edition P 4《航空航天系列.航空用电缆.测试方法.第603部分 耐湿电弧漏电痕迹.版本P4》.pdf
《AECMA PREN 3475-603-2009 Aerospace series Cables electrical aircraft use Test methods Part 603 Resistance to wet arc tracking Edition P 4《航空航天系列.航空用电缆.测试方法.第603部分 耐湿电弧漏电痕迹.版本P4》.pdf》由会员分享,可在线阅读,更多相关《AECMA PREN 3475-603-2009 Aerospace series Cables electrical aircraft use Test methods Part 603 Resistance to wet arc tracking Edition P 4《航空航天系列.航空用电缆.测试方法.第603部分 耐湿电弧漏电痕迹.版本P4》.pdf(10页珍藏版)》请在麦多课文档分享上搜索。
1、ASD STANDARD NORME ASD ASD NORM prEN 3475-603 Edition P 4 June 2009 PUBLISHED BY THE AEROSPACE AND DEFENCE INDUSTRIES ASSOCIATION OF EUROPE - STANDARDIZATIONAvenue de Tervuren, 270 - B-1150 Brussels - Tel. + 32 2 775 8126 - Fax. + 32 2 775 8131 - www.asd-stan.orgICS: 49.060 Supersedes edition P 3 of
2、 October 2006 and will supersede EN 3475-603:2007 Descriptors: Aerospace industry, aircraft equipment, electrical cable, test ENGLISH VERSION Aerospace series Cables, electrical, aircraft use Test methods Part 603: Resistance to wet arc tracking Srie arospatiale Cbles lectriques usage aronautique Mt
3、hodes dessais Partie 603 : Rsistance lamorage et la propagation darc lectrique, essai humide Luft- und Raumfahrt Elektrische Leitungen fr Luftfahrtverwendung Prfverfahren Teil 603: Lichtbogenfestigkeit, feucht This “Aerospace Series“ Prestandard has been drawn up under the responsibility of ASD-STAN
4、 (The AeroSpace and Defence Industries Association of Europe - Standardization). It is published for the needs of the European Aerospace Industry. It has been technically approved by the experts of the concerned Domain following member comments. Subsequent to the publication of this Prestandard, the
5、 technical content shall not be changed to an extent that interchangeability is affected, physically or functionally, without re-identification of the standard. After examination and review by users and formal agreement of ASD-STAN, it will be submitted as a draft European Standard (prEN) to CEN (Eu
6、ropean Committee for Standardization) for formal vote and transformation to full European Standard (EN). The CEN national members have then to implement the EN at national level by giving the EN the status of a national standard and by withdrawing any national standards conflicting with the EN. Edit
7、ion approved for publication 10 June 2009 Comments should be sent within six months after the date of publication to ASD-STAN Electrical Domain Copyright 2009 by ASD-STAN Copyright ASD-STAN Provided by IHS under license with AECMA Not for ResaleNo reproduction or networking permitted without license
8、 from IHS-,-,-prEN 3475-603:2009 2 Contents Page Foreword2 1 Scope 3 2 Normative references 3 3 Specimen requirements 3 4 Preparation of specimen.4 5 Apparatus .5 6 Method 8 7 Requirements.9 Foreword This standard was reviewed by the Domain Technical Coordinator of ASD-STANs Electrical Domain. After
9、 inquiries and votes carried out in accordance with the rules of ASD-STAN defined in ASD-STANs General Process Manual, this standard has received approval for Publication. Copyright ASD-STAN Provided by IHS under license with AECMA Not for ResaleNo reproduction or networking permitted without licens
10、e from IHS-,-,-prEN 3475-603:20093 1 Scope This standard specifies a method of assessing the behaviour of cable insulation subject to an electric arc initiated and maintained by contaminating fluid along the surface of the insulation. This standard shall be used together with EN 3475-100. The primar
11、y aim of this test is: to produce, in a controlled fashion, continuous failure effects, which are representative of those, which may occur in service when a typical cable bundle is damaged and subjected to aqueous fluid contamination. Electrical arcing occurs along the surface of the insulation betw
12、een damage sites on adjacent cables; and to examine the aptitude of the insulation to track, to propagate electric arc to the electrical origin. Originally defined for 115 Vac network, this test also proposes conditions for 230 Vac network. Unless otherwise specified in product standard, only 115 Va
13、c conditions shall be satisfied. Six levels of prospective fault current have been specified for concerned cable sizes (see Clause 7). It is agreed that sizes larger than 051 need not be assessed since the short-circuit phenomenon becomes dominant at low line impedances. Unless otherwise specified i
14、n the technical/product standard sizes 002, 006 and 020 cable shall be assessed. 2 Normative references The following referenced documents are indispensable for the application of this document. For dated references, only the edition cited applies. For undated references, the latest edition of the r
15、eferenced document (including any amendments) applies. EN 2350, Aerospace series Circuit breakers Technical specification. EN 3197, Aerospace series Installation of aircraft electrical and optical interconnection systems.1)EN 3475-100, Aerospace series Cables, electrical, aircraft use Test methods P
16、art 100: General. EN 3475-302, Aerospace series Cables, electrical, aircraft use Test methods Part 302: Voltage proof test. A-A-52083, Tape, lacing and tying, glass. 2)3 Specimen requirements Cables to be tested shall be of traceable origin and shall have passed the high voltage dielectric test defi
17、ned in the product standard. 1) Published as ASD Prestandard at the date of publication of this standard. 2) Published by: Department of Defense Industrial Supply Center, ATTN: DISC-BBEE, 700 Robbins Avenue, Philadelphia, PA 19111-5096 USA. Copyright ASD-STAN Provided by IHS under license with AECMA
18、 Not for ResaleNo reproduction or networking permitted without license from IHS-,-,-prEN 3475-603:20094 4 Preparation of specimen Cut seven separate lengths approximately 0,5 m consecutively from one length of cable, and strip each of the ends of insulation to permit electrical connection. Clean eac
19、h length of cable with a clean cloth moistened with propan-2-ol (isopropyl alcohol) fluid. Damage two lengths of the cable by inflicting a cut around the total circumference at the mid-point of the length, taking care to ensure that the cut penetrates to the conductor around the full circumference a
20、nd has a width of 0,5 mm to 1,0 mm. Lay up the seven cables as follows: a) Form the cables in a six around one configuration as shown in Figure 1. b) Displace the damaged cables longitudinally such that a separation of (10 0,5) mm of undamaged insulation is provided as shown in Figure 2. This is cal
21、led the test zone. c) Ensure that cables are straight and geometrically parallel, and restrained by ties such that they are in continuous contact within the test zone. d) Position the ties (4 1,0) mm away from outer each notch and then at 15 mm to 20 mm spacing towards the ends of the specimen as sh
22、ow in Figure 2. The tie material used adjacent to the notch shall be PTFE glass lacing tape conforming to A-A-52083 type IV, finish D, size 3. e) Number the cables as shown in Figure 1 such that the fault cables are numbers A1 and B1 and the centre is N. Cables C1, A2, B2 and C2 are grouped around N
23、. Key 1 Drop needle A1-A2 : Phase A B1-B2 : Phase B C1-C2 : Phase C N : Neutral cable connected to earth Figure 1 Specimen configuration A1 B1C2 N C1B2 A2(10 2) mm 1Copyright ASD-STAN Provided by IHS under license with AECMA Not for ResaleNo reproduction or networking permitted without license from
24、IHS-,-,-prEN 3475-603:2009 5 Key 1 Test zone (10 0,5) mm 2 Notch 0,5 mm to 1 mm 3 15 mm to 20 mm 4 Tape lacing 5 Drop needle Figure 2 Test configuration 5 Apparatus 5.1 Electrical equipment Connect the seven cables of the test specimen within the circuit shown in Figure 3. This circuit shall have th
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