BS 4N 100-6-1999 Aircraft oxygen systems and equipment - Guidance and recommendations on the selection of materials for use with oxygen《飞行器供氧系统和设备 选择与氧一起使用的材料的指南和推荐方法》.pdf
《BS 4N 100-6-1999 Aircraft oxygen systems and equipment - Guidance and recommendations on the selection of materials for use with oxygen《飞行器供氧系统和设备 选择与氧一起使用的材料的指南和推荐方法》.pdf》由会员分享,可在线阅读,更多相关《BS 4N 100-6-1999 Aircraft oxygen systems and equipment - Guidance and recommendations on the selection of materials for use with oxygen《飞行器供氧系统和设备 选择与氧一起使用的材料的指南和推荐方法》.pdf(10页珍藏版)》请在麦多课文档分享上搜索。
1、| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | BRITISH STANDARD AEROSPACE SERIES BS 4N 10
2、0-6: 1999 ICS 49.090 NO COPYING WITHOUT BSI PERMISSION EXCEPT AS PERMITTED BY COPYRIGHT LAW Aircraft oxygen systems and equipment Part 6: Guidance and recommendations on the selection of materials for use with oxygenThis British Standard, having been prepared under the direction of the Engineering S
3、ector Committee, was published under the authority of the Standards Committee and comes into effect on 15 October 1999 BSI 10-1999 The following BSI references relate to the work on this standard: Committee reference ACE/38 Draft for comment 96/706267 DC ISBN 0 580 29546 X BS 4N 100-6:1999 Amendment
4、s issued since publication Amd. No. Date Comments Committees responsible for this British Standard The preparation of this British Standard was entrusted to Technical Committee ACE/38, Aircraft oxygen equipment, upon which the following bodies were represented: British Airways British Compressed Gas
5、es Association Civil Aviation Authority Health and Safety Executive Ministry of Defence Society of British Aerospace Companies Limited South Bank UniversityBS 4N 100-6:1999 BSI 10-1999 i Contents Page Committees responsible Inside front cover Foreword ii 1 Scope 1 2 Normative references 1 3 Selectio
6、n of metallic materials 1 4 Selection of non-metallic materials 3 5 Selection of combinations of materials 4 Bibliography 5 Table 1 Typical test results 6ii BSI 10-1999 BS 4N 100-6:1999 Foreword This Part of BS 4N 100 has been prepared by Technical Committee ACE/38 and specifies general requirements
7、 for oxygen systems and equipment for use on aircraft and ground support equipment. It partially supersedes BS 3N100 which is withdrawn upon publication of all seven parts. BS 4N 100 consists of the following parts: Part 1: Design and installation; Part 2: Tests for the compatibility of materials in
8、 the presence of oxygen; Part 3: Testing of equipment and systems; Part 4: Guide to the physiological factors; Part 5: Guide to fire and explosion hazards associated with oxygen; Part 6: Guidance and recommendations on the selection of materials for use with oxygen; Part 7: Guide to cleaning, labell
9、ing and packaging. This part of BS N 100 is classed as a guide and provides guidance and recommendations on the selection of materials for use with oxygen to minimize the risk of ignition and combustion. NOTE The latest revision of an aerospace series standard is indicated by a prefix number. A Brit
10、ish Standard does not purport to include all the necessary provisions of a contract. Users of British Standards are responsible for their correct application. Compliance with a British Standard does not of itself confer immunity from legal obligations. Summary of pages This document comprises a fron
11、t cover, an inside front cover, pages i and ii, pages 1 to 5 and a back cover. The BSI copyright notice displayed in this document indicates when the document was last issued. BSI 10-1999 1 BS 4N 100-6:1999 1 Scope This part of BS N 100 provides guidance and recommendations on the selection of mater
12、ials for use with oxygen to minimize the risk of ignition and combustion. The guidance and recommendations may be used equally well in non-aerospace applications. 2 Normative references The following normative documents contain provisions which, through reference in this text, constitute provisions
13、of this part of this British Standard. For dated references, subsequent amendments to, or revisions of, any of these publications do not apply, for undated references the latest edition of the publication referred to applies. BS 4 N 100-2, Aircraft oxygen systems and equipment Tests for the compatib
14、ility of materials in the presence of oxygen. 3 Selection of metallic materials 3.1 The selection of metals to minimize the risk of ignition and the effects of fire depends on several factors as follows: a) the working regime i.e. gas flow conditions, rapid state changes; b) the working environment
15、i.e. pressure velocity, mass flow rate and temperature; c) the level of filtration and/or the chance of particle creation within the system; d) the nature of combustion and ability to self- quench. When heated in 100 % oxygen under pressure, alloys of iron (steel, stainless steel) and aluminium (inc
16、luding aluminium bronze) evolve large quantities of energy and burn vigorously once ignitions occur. Under some circumstances, burning continues even if the pressurized oxygen is replaced by ambient air. At much higher temperatures, copper and nickel alloys (including brass, tin-bronze, cupro-nickel
17、, monel) will ignite but rapidly extinguish once the ignition source is removed. Any metal that can be ignited in ambient air (magnesium, titanium for example) should never be selected. 3.2 Since 1985, various test methods have been investigated to assist with the ranking of metals for selection. Tw
18、o of these methods are reported in ASTM special technical publications (STP) (see bibliography) and represent “in-use” modes of ignition as follows: a) Particle impact (P.I.) 2,000mm aluminium particle in a supersonic oxygen flow at 27.6 MPa impacts a heated target of the test material at right angl
19、es. The ranking criterion is the maximum temperature at which ignition and consumption of the target does not occur. b) Promoted combustion (P.C.) Test material specimen subjected to the heat released by a burning aluminium promoter in oxygen at pressure. The ranking criteria are as follows: 1) the
20、minimum oxygen pressure required to support self-sustained combustion; 2) the propagation rate. Based on the results reported, the following table shows the relative performance of common metals used in oxygen systems. (Results obtained using samples of solid section uniform proportions).2 BSI 10-19
21、99 BS 4N 100-6:1999 Table 1 Typical test results Metal Type P.I. temp. 8C P.C. pressure MPa Aluminium alloy 6061 -33 0.7 Aluminium bronze 7 % Al 312 1.4 Carbon/Alloy steel 9 % Ni 202 3.5 Ductile cast iron 3.5 Stainless steel 17-4 PH 6.9 14-5 PH 31 13-4 PH 33 304 47 6.9 316 52 6.9 Copper alloys Brass
22、 (CZ grades) 347 48.3 Tin bronze 307 48.3 Copper(pure) 55.2 Nickel alloys Inconel 718 202 3.5 Inconel 600 332 6.9 Nickel (pure) 357 68.9 Monel 400 55.2 Generally, the temperature limit is defined by non- metals being used in the system: the pressure is the maximum developed in the system under consi
23、deration i.e. the pressure developed at maximum operating temperature, or the setting of any protection devices (relief valve or bursting disc). Whilst the information reflects the best data available, it is recognized that many metals have been in use for years at pressure conditions well in excess
24、 of those listed, without compromising safety. Two particular factors are involved and make a significant effect i.e. systems design and temperature/ pressure combinations experienced. Aluminium particularly (and other metals that similarly form an oxide film) can safely be used at conditions well a
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