SAE AIR 5774-2012 Composite Fuel Tanks Fuel System Design Considerations《复合燃料罐、燃油系统设计考虑》.pdf
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1、_ SAE Technical Standards Board Rules provide that: “This report is published by SAE to advance the state of technical and engineering sciences. The use of this report is entirely voluntary, and its applicability and suitability for any particular use, including any patent infringement arising there
2、from, is the sole responsibility of the user.” SAE reviews each technical report at least every five years at which time it may be revised, reaffirmed, stabilized, or cancelled. SAE invites your written comments and suggestions. Copyright 2012 SAE International All rights reserved. No part of this p
3、ublication may be reproduced, stored in a retrieval system or transmitted, in any form or by any means, electronic, mechanical, photocopying, recording, or otherwise, without the prior written permission of SAE. TO PLACE A DOCUMENT ORDER: Tel: 877-606-7323 (inside USA and Canada) Tel: +1 724-776-497
4、0 (outside USA) Fax: 724-776-0790 Email: CustomerServicesae.org SAE WEB ADDRESS: http:/www.sae.org SAE values your input. To provide feedback on this Technical Report, please visit http:/www.sae.org/technical/standards/AIR5774 AEROSPACE INFORMATION REPORT AIR5774 Issued 2012-12 Composite Fuel Tanks,
5、 Fuel System Design Considerations RATIONALE It has been discussed for quite some time that an industry standard is needed to outline the important considerations when developing the fuel system in a composite airplane and/or composite structure that contains the fuel system. After much consideratio
6、n, an industry working group was formed to develop this AIR. This industry working group consisted of members from major airframers, system suppliers, component manufacturers, and government agencies. FOREWORD This report is intended to give guidance for the design of modern fuel systems within the
7、context of composite fuel tanks. It is a compilation of industry references and best practices regarding fuel system design and composite structure. SAE AIR5774 Page 2 of 47 TABLE OF CONTENTS 1. SCOPE 4 1.1 Purpose . 4 1.2 Background . 4 1.3 Field of Application 4 2. REFERENCES 4 2.1 Applicable Docu
8、ments 4 2.1.1 SAE Publications . 4 2.1.2 ASTM Publications 5 2.1.3 FAA Publications . 5 2.1.4 U.S. Government Publications 5 2.1.5 Other Publications . 5 2.2 Related Publications . 6 2.2.1 SAE Publications . 6 2.2.2 ASTM Publications 6 2.2.3 FAA Publications . 7 2.2.4 U.S. Government Publications 7
9、2.2.5 Other Publications . 7 2.3 Definitions . 8 2.4 Acronyms and Abbreviations 9 3. DISCUSSION AND PREFERRED PRACTICES 10 3.1 Fuel Types 10 3.1.1 Summary of Jet Fuel Grades 10 3.1.2 Fuel Additives 12 3.1.3 Future Fuels 12 3.2 Materials 13 3.2.1 Characteristics 13 3.2.2 Considerations 14 3.2.3 Obsol
10、escence . 15 3.3 Corrosion . 15 3.3.1 Weathering 15 3.3.2 Cavitation 15 3.3.3 Galvanic and Dissimilar Materials . 15 3.3.4 Microbes 16 3.3.5 Surface Treatments and Coatings 17 3.4 Electromagnetic Effects (EME) . 17 3.4.1 Lightning Compatibility 18 3.4.2 High Intensity Radiated Field (HIRF) 22 3.4.3
11、Electro Magnetic Interference (EMI) . 23 3.4.4 Electrostatics . 23 3.4.5 Implementation Considerations 24 3.5 Fault Current . 25 3.6 Sealing 25 3.6.1 Permeability 25 3.6.2 Leakage 26 3.6.3 Micro-Cracking 26 3.6.4 Sealing for Penetrations 26 3.6.5 Material Compatibility 26 3.6.6 Thermal Expansion . 2
12、6 3.6.7 Preservation 26 3.6.8 Glass Transition Temperature 26 3.7 Component installation considerations . 26 3.7.1 Transport Elements . 27 3.7.2 Components, Line Replaceable Units (LRUs) 28 3.7.3 Tank Wire Harnesses (TWH) 28 SAE AIR5774 Page 3 of 47 3.8 Structural Considerations 28 3.8.1 Operating P
13、ressures . 29 3.8.2 Tank deflections 30 3.8.3 Fuel Quantity Indicating System (FQIS) . 31 3.8.4 Transport Element/Coupling Flexibility . 32 3.8.5 Penetrations 32 3.8.6 Required flow area 33 3.8.7 Unusable fuel 33 3.8.8 Component support and attachment 33 3.8.9 Access Provisions . 34 3.9 Durability a
14、nd Damage Tolerance 34 3.9.1 Maintenance Considerations 34 3.9.2 Damage Tolerance/Impact Resistance . 34 3.9.3 Rotor Burst 38 3.9.4 Crash load survivability . 38 3.9.5 Inadvertent Ejection 38 3.9.6 Ballistic survivability 38 3.9.7 Explosion Containment . 38 3.9.8 Fire Resistance . 38 3.9.9 Reparabil
15、ity . 38 3.10 Environmental Considerations 39 3.10.1 Contamination . 39 3.10.2 Temperature 40 3.11 Testing 42 3.11.1 Structural Testing 42 3.11.2 Proof Pressure and Leakage 42 3.11.3 System Functional Testing 42 3.11.4 EME Testing 42 3.11.5 Component Testing . 43 3.11.6 Electrical Bonding . 43 3.12
16、Fuel Tank Ullage Flammability 43 3.12.1 Flammability Background 43 3.12.2 FAA and EASA Fuel Tank Flammability Exposure Requirements . 44 3.12.3 Effects of Composite Structure on Fuel Tank Ullage Flammability 45 3.12.4 Military/General Aviation Applications 45 3.13 Ignition Prevention 46 4. NOTES 47
17、FIGURE 1 POINT IMPACT - INNER SKIN DAMAGE EXAMPLE 36 FIGURE 2 FLAT IMPACT - FORK LIFT/STORAGE RACK DROP DAMAGE . 36 FIGURE 3 LARGE BROAD IMPACT LOADING AND UNLOADING FLAT DROP DAMAGE . 37 FIGURE 4 LOADING AND UNLOADING ROTATED DROP DAMAGE 37 SAE AIR5774 Page 4 of 47 1. SCOPE This SAE Aerospace Infor
18、mation Report (AIR) is a compilation of engineering references and data useful to the technical community that can be used to ensure fuel system compatibility with composite structure. This AIR is not a complete detailed design guide and is not intended to satisfy all potential fuel system applicati
19、ons. Extensive research, design, and development are required for each individual application. 1.1 Purpose This document is intended to serve as guidance to airframe and equipment manufacturers for the design and installation of fuel systems into composite structure. This document is not intended to
20、 be a fully definitive specification, but concentrates on areas where it is felt guidance is needed. The purpose of this AIR is to compile one definitive source of the references, rules, regulations, and preferred practices for the development of a fuel system in composite structure. This AIR sets f
21、orth some useful design considerations for work with composites as it relates to the fuel system. 1.2 Background The development and installation of a fuel system in composite structure introduces a variety of design situations which are different from aluminum. The differences are related to the pr
22、operties of the composite material. As an example these may include low electrical and thermal conductivity, greater design sensitivity to penetrations, reduced shielding from electromagnetic radiation, reduced conductivity of lightning, and potential corrosion in graphite aluminum interfaces. 1.3 F
23、ield of Application This AIR applies to the aerospace industry and specifically to aircraft that use common petroleum fuels. 2. REFERENCES 2.1 Applicable Documents The following publications form a part of this document to the extent specified herein. The latest issue of SAE publications shall apply
24、. The applicable issue of other publications shall be the issue in effect on the date of the purchase order. In the event of conflict between the text of this document and references cited herein, the text of this document takes precedence. Nothing in this document, however, supersedes applicable la
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