ASD-STAN PREN 3475-601-2006 Aerospace Series Cables Electrical Aircraft Use Test Methods Part 601 Smoke Density (Edition P 2)《航空航天系列 航空器用电缆的试验方法 第601部分 烟浓度 第P2版》.pdf
《ASD-STAN PREN 3475-601-2006 Aerospace Series Cables Electrical Aircraft Use Test Methods Part 601 Smoke Density (Edition P 2)《航空航天系列 航空器用电缆的试验方法 第601部分 烟浓度 第P2版》.pdf》由会员分享,可在线阅读,更多相关《ASD-STAN PREN 3475-601-2006 Aerospace Series Cables Electrical Aircraft Use Test Methods Part 601 Smoke Density (Edition P 2)《航空航天系列 航空器用电缆的试验方法 第601部分 烟浓度 第P2版》.pdf(23页珍藏版)》请在麦多课文档分享上搜索。
1、ASD STANDARD NORME ASD ASD NORM prEN 3475-601 Edition P 2 September 2006 PUBLISHED BY THE AEROSPACE AND DEFENCE INDUSTRIES ASSOCIATION OF EUROPE - STANDARDIZATION Gulledelle 94 - B-1200 Brussels - Tel. + 32 2 775 8126 - Fax. + 32 2 763 3565 - www.asd-stan.org ICS: 49.060 Supersedes edition P 1 of No
2、vember 2001 Descriptors: Aerospace industry, aircraft equipment, electrical cable test ENGLISH VERSION Aerospace series Cables, electrical, aircraft use Test methods Part 601: Smoke density Srie arospatiale Cbles lectriques usage aronautique Mthodes dessais Partie 601 : Densit de fume Luft- und Raum
3、fahrt Elektrische Leitungen fr Luftfahrtverwendung Prfverfahren Teil 601: Rauchdichte This “Aerospace Series“ Prestandard has been drawn up under the responsibility of ASD-STAN (The AeroSpace and Defence Industries Association of Europe - Standardization). It is published for the needs of the Europe
4、an 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 technical content shall not be changed to an extent that interchangeability is affected, physically or functionally, withou
5、t 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 (European Committee for Standardization) for formal vote and transformation to full European Standard (EN). The CEN national me
6、mbers 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. Edition approved for publication 30 September 2006 Comments should be sent within six months after the date of publication to AS
7、D-STAN Electrical Domain Copyright 2006 by ASD-STAN prEN 3475-601:20062 Contents Page Foreword .2 1 Scope3 2 Terms and definitions .3 3 Principle of method.4 4 Test apparatus.4 4.1 Test chamber .4 4.2 Manometer .4 4.3 Pressure regulator 4 4.4 Chamber wall thermocouple 4 4.5 Electric power supply .5
8、4.6 Radiant heat furnace.5 4.7 Pilot burner system.6 4.8 Specimen holder .6 4.9 Support for radiant heat furnace and specimen holder 7 4.10 Photometric system7 4.11 Exhaust hood.8 5 Test specimens .8 5.1 General .8 5.2 Number of specimens.9 5.3 Specimen length9 5.4 Specimen preparation.9 6 Condition
9、ing 9 7 Check and maintenance of the test apparatus.9 7.1 Furnace protection9 7.2 Periodic calibration procedure 9 7.3 Chamber cleaning .11 7.4 Adjustment of test chamber.12 8 Test performance 12 9 Calculation .13 10 Requirements 14 11 Report .14 Foreword This standard was reviewed by the Domain Tec
10、hnical Coordinator of ASD-STANs Electrical Domain. After 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. prEN 3475-601:20063 1 Scope This test method is intended for determinati
11、on of the specific optical density of smoke generated by electrical wire/cable insulation materials due to pyrolitic decomposition under the influence of radiant heat only or with simultaneous flame application. It is used for evaluation of insulation materials of electrical wire/cable used in the i
12、nteriors of aerospace vehicles but may be utilized in other applications as specified in applicable procurement documents. This standard should be used to measure and describe the properties of products in response to heat and flame under controlled laboratory conditions and should not be used to de
13、scribe or appraise the fire hazard or fire risk of materials, products, or assemblies under actual fire conditions. However results of this test may be used as elements of a fire risk assessment which takes into account all of the factors which are pertinent to an assessment of the fire hazard of a
14、particular end use. 2 Terms and definitions For the purposes of this document, the following terms and definitions apply. 2.1 Ds Specific Optical Density, is a dimensionless measure of the amount of smoke produced per unit area by a material when it is burned 2.2 Dm maximum value of Ds, that occurs
15、during the specified time of a test 2.3 F-mode Flaming mode, the pyrolitic decomposition of the specimen under the influence of radiant heat and with simultaneous flame application 2.4 NF-mode Non Flaming mode, the pyrolitic decomposition of the specimen under the influence of radiant heat only 2.5
16、T percent light transmission 2.6 Tt percent light transmission at the time t 2.7 Tm minimum percent light transmission 2.8 tDm time of the test in seconds at which the maximum optical smoke density occurs prEN 3475-601:20064 3 Principle of method The specimens are vertically arranged in a closed tes
17、t chamber and subjected to decomposition by radiant heat only or with flame application. The smoke density is measured by means of the reduction of light transmission as smoke accumulates and expressed in terms of specific optical density which is derived from a geometric factor and the measured lig
18、ht obscuration. 4 Test apparatus 4.1 Test chamber The test chamber shall be a square-cornered box with inside dimensions of (914 3) mm width, (610 3) mm depth, and (914 3) mm height. A typical test chamber is shown in Figure 1. The locations of size of items such as the chamber door, chamber control
19、s, flowmeters, etc., is optional except as mandated in the following sections. The interior surfaces (except for the chamber door, vents, etc.) shall be porcelain-enameled metal, or equivalent coated metal that is resistant to chemical attack and corrosion, and suitable for periodic cleaning. Commer
20、cially available panels of porcelain-enameled steel (interior surface) permanently laminated to a magnesia-insulation core and backed with galvanized steel (exterior surface) have been found acceptable. The chamber shall be equipped with a door such as indicated in Figure 1 to provide convenient acc
21、ess for changing test specimens, and for cleaning the chamber walls as required. The door shall have a viewing window to observe the chamber interior during a test, especially when any of the flamelets extinguish. The door shall have a seal so that when it is closed during tests, there will be no le
22、akage of chamber contents. A small positive pressure can be developed and maintained inside the test chamber. An inlet-outlet vent for pressure equalization shall be provided. The vent shall have a seal so that when it is closed during tests, there will be no leakage of chamber contents and a small
23、positive pressure can be developed and maintained inside the test chamber. To avoid an excessive increase of pressure in the chamber during testing an airtight safety disc is required, e.g. a sheet of aluminium foil of thickness not greater then 0,04 mm and a minimum area of 800 cm2 shall be provide
24、d in an opening of the chamber floor. 4.2 Manometer A device such as a manometer or pressure transducer shall be provided to monitor chamber pressure and leakage. The device shall have a range up to 15 hPa, and be connected to a suitable port in the test chamber wall. 4.3 Pressure regulator A pressu
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