SAE ARP 5672-2009 Aircraft Precipitation Static Certification《航空器的雨滴静电干扰检定》.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 theref
2、rom, 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 2016 SAE InternationalAll rights reserved. No part of this publi
3、cation 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: +1 724-776-4970 (out
4、side USA)Fax: 724-776-0790Email: CustomerServicesae.orgSAE WEB ADDRESS: http:/www.sae.orgSAE values your input. To provide feedbackon this Technical Report, please visithttp:/www.sae.org/technical/standards/ARP5672AEROSPACERECOMMENDED PRACTICEARP5672Issued 2009-12Reaffirmed 2016-04Aircraft Precipita
5、tion Static CertificationRATIONALEARP5672 has been reaffirmed to comply with the SAE five-year review policy.FOREWORD Whenever a reference document appears in this Recommended Practice, it carries the minimum revision level of the reference document acceptable to meet the intended requirements. Late
6、r versions of the reference document are also acceptable but earlier versions are not acceptable. In all cases, other documents shown to be equivalent to the reference document are also acceptable. TABLE OF CONTENTS 1. SCOPE . 3 2. RELATED DOCUMENTS . 3 2.1 FAA Advisory Circulars (AC) . 3 2.2 SAE Pu
7、blications . 4 2.3 Military Documents 4 2.4 Other Publications . 4 2.5 Definitions and Acronyms . 4 2.5.1 Definitions . 4 2.5.2 Acronyms 5 3. BACKGROUND 6 4. P-STATIC PROTECTION DESIGN AND COMPLIANCE 6 5. DEFINE AIRCRAFT CONFIGURATION, OPERATING CONDITIONS AND MATERIALS . 6 6. ESTABLISH THE AIRCRAFT
8、 P-STATIC CHARGING ENVIRONMENT . 7 6.1 Aircraft Environment 7 6.2 Rotorcraft Environment . 8 7. DESIGN AIRCRAFT P-STATIC PROTECTION . 8 7.1 Design of Aircraft Structure and Parts 8 7.1.1 Electrical Bonding of Exposed Structure or Parts . 9 7.1.2 Non-Conducting Structures or Parts . 10 7.1.3 Windows
9、and Window Heat Systems . 10 7.2 Design Method for P-Static Dischargers . 10 7.2.1 Static Discharger Complement and Locations . 10 7.2.2 Characteristics of Static Dischargers 14 7.2.3 Discharger Types and Construction . 14 7.2.4 Discharger Mounting Methods 15 7.2.5 Static Discharger Qualification an
10、d Characteristics 16 8. VERIFY P-STATIC PROTECTION EFFECTIVENESS 16 8.1 Similarity Assessment . 17 8.2 Test . 17 8.2.1 Surface Bonding Verification . 17 8.2.2 P-Static Ground Tests . 17 8.2.3 Surface Charge Application 19 8.2.4 Noise Detection . 19 8.2.5 Examples of Noise Generating Items Found Duri
11、ng Ground Test. 20 8.2.6 Aircraft P-Static Flight Tests . 20 8.3 Analysis . 21 9. IMPLEMENT CORRECTIVE MEASURES . 21 10. MAINTENANCE 21 10.1 Maintenance Definitions 22 10.2 Maintenance Procedures 23 10.2.1 Control of Bonding Straps and Leads . 23 10.2.2 Control of Surface Coating 23 10.2.3 Control o
12、f Static Dischargers 24 10.2.4 Control of Panel Bonding 24 10.3 Configuration Deviation List (CDL) . 24 FIGURE 1 - STATIC DISCHARGER LAYOUT (BEECH 1900D) . 12 FIGURE 2 - STATIC DISCHARGER LAYOUT (CESSNA 525C) . 13 FIGURE 3 - STATIC DISCHARGER LAYOUT (CESSNA 750) . 13 FIGURE 4 - STATIC DISCHARGER LAY
13、OUT (777) . 14 FIGURE 5 - STATIC DISCHARGER COMPONENTS . 15 FIGURE 6 - STATIC DISCHARGER WICK COMPONENTS . 15 FIGURE 7 - STATIC DISCHARGER RETAINER . 16 FIGURE 8 - P-STATIC GROUND TEST FLOW . 18 FIGURE 9 - COTTON AND CARBON/NYLON WICK STATIC DISCHARGERS 28 FIGURE 10 - NICHROME/MICROPOINT STATIC DISC
14、HARGERS . 28 FIGURE 11 - CARBON (COMPOSITE TIP) STATIC DISCHARGER 29 FIGURE 12 - NULL-FIELD (ORTHO-DECOUPLED) STATIC DISCHARGER 29 FIGURE 13 - TRAILING TYPE NULL FIELD STATIC DISCHARGER . 29 TABLE 1 - PRECIPITATION PARTICLE PARAMETERS FOR SUBSONIC AIRCRAFT 8 TABLE 2 - ELECTROSTATIC DISCHARGE TYPES A
15、ND PREVENTION 9 TABLE 3 - STATIC DISCHARGER COMPLEMENT 11 TABLE 4 - STATIC DISCHARGER CHARACTERISTICS (FROM MIL-STD-9129E) 16 SAE INTERNATIONAL ARP5672 2 OF 291. SCOPE Aircraft surface precipitation static (p-static) charge can be generated when aircraft fly through ice particles, rain, snow and dus
16、t. However, in the context of p-static protection, this document is used for providing guidance for any thing that charges the outer surface of the aircraft (e.g. engine exhaust). P-static discharges from the aircraft can disrupt aircraft communication, navigation, and surveillance radios, and can d
17、amage aircraft radomes and windshields. This SAE Aerospace Recommended Practice (ARP) defines design considerations for aircraft p-static control and related methods to verify acceptable aircraft p-static performance. This ARP addresses p-static charging due to the aircraft flying through ice partic
18、les, rain, snow and dust. It does not address other triboelectric charging that may be present in an aircraft, such as triboelectric fuel charging or environmental control system or air conditioning static charging. It does not address electrostatic charging created by passengers or crewmembers, or
19、electrostatic discharge hazards to electronics and systems. The purpose of this document is to provide information and guidance concerning an acceptable means, but not the only means, of compliance with Parts 23, 25, 27, and 29 (23.867, 25.899, 27.610, and 29.610) of the Federal Aviation Regulations
20、 (FAR) and European Aviation Safety Agency (EASA), applicable to aircraft for protection against the adverse effects of precipitations static. This ARP provides general information on aircraft surface p-static charging mechanisms and the impact p-static has on aircraft systems. It addresses elements
21、 of effective aircraft p-static control design. Finally, it defines methods for verifying acceptable aircraft p-static control. Accordingly, this material is neither mandatory nor regulatory in nature and does not constitute a regulation. Aircraft p-static control should be addressed early in the ai
22、rcraft design to be effective. Effective aircraft design features and effective verification methods will result in an aircraft that can be operated in p-static charging conditions without adverse impact to the aircraft systems. The existing reports and guidance do not provide standards for aircraft
23、 design to control p-static or standard methods to verify acceptable aircraft p-static control. This document provides acceptable approaches to design effective aircraft p-static control, and provides acceptable methods to verify the design effectiveness. Existing aircraft certification regulations
24、in Title 14 CFR 25.899, 27.610(d) and 29.610(d), specifically address aircraft p-static control. These regulations include the requirement to minimize the accumulation of electrostatic charge in order to reduce to an acceptable level the effects of static electricity on the functioning of essential
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