SAE ARP 6229-2012 Fluoride Offgassing in Fluoropolymer Insulations《含氟聚合物绝缘材料中氟气排放》.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/ARP6229 AEROSPACE RECOMMENDED PRACTICE ARP6229 Issued 2012-12 Fluoride Offgassing
5、 in Fluoropolymer Insulations RATIONALE This report provides information to the user community on the potential of fluoride offgassing from fluoropolymer wire insulation and recommendations to protect against potential effects. Although there have been some published advisories related to this subje
6、ct, no publication existed prior to this ARP which pulls together current knowledge for communication to industry OEMs and end-users. 1. SCOPE This SAE Aerospace Recommended Practice (ARP) shall be limited to information about corrosion caused by fluoride offgassing of fluoropolymer-based wire insul
7、ation. It reviews published reports of corrosion caused by this phenomenon, describes scenarios where this may be a concern, mitigation options, and references a test method which can be used to evaluate wire insulations where needed. 1.1 Purpose This document provides basic information to wire manu
8、facturers, OEMs, and end users about fluoride offgassing from wire insulation, including effects, applications of concern, test methods, and recommendations. 2. REFERENCES The following publications form a part of this document to the extent specified herein. The latest issue of SAE publications sha
9、ll apply. 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 appli
10、cable laws and regulations unless a specific exemption has been obtained. 2.1 SAE Publications Available from SAE International, 400 Commonwealth Drive, Warrendale, PA 15096-0001, Tel: 877-606-7323 (inside USA and Canada) or 724-776-4970 (outside USA), www.sae.org. AS4373 Test Methods for Insulated
11、Electric Wire AIR5717 Mitigating Wire Insulation Damage During Processing and Handling ARP6400 Recommended Practice for Processing and Handling Wire and Cable with Silver Plated Conductors and Shields AS22759 Wire, Electrical, Fluoropolymer-Insulated, Copper or Copper Alloy SAE ARP6229 Page 2 of 4 2
12、.2 Other Publications “Fluoropolymer degradation resulting in corrosion of packaged pre-wired connector assemblies”, FSFC NASA Advisory #: NA-GSFC-2003-03, April 15, 2003 “Cause and effects of fluorocarbon degradation in electronics and opto-electronic systems” Predmore, Roamer E.; Canham, John S. P
13、h.D; NASA Goddard Space Flight Center, Materials Engineering Branch; 2003 “A corrosion puzzle of pre-wired connectors in sealed storage bags” by June Cabourne, Senior Project Manager at Cristek Interconnects, Inc. c. 1998 GIDEP EA-P-98-02 Problem Advisory “Wire outgassing” 1998 “ISS Fiber Optic Fail
14、ure Investigation Root Cause Report”, NASA GSFC, August 1, 2000 “Effect of Insulation on Red Plague Corrosion in Silver-Plated Wire”, Steven Gullerud, Peter Ibarra, Steve Zingheim, and Richard Reimer, TE Connectivity, AEISS Presentation, October 12, 2011 3. BACKGROUND 3.1 Definition and Mechanism Du
15、ring processing of fluoropolymers, exposure to high temperatures can cause the polymer to degrade in the presence of air and water to produce carbonyl fluoride end groups. These end groups remain in the polymer and can later hydrolyze in the presence of moisture to produce carbon dioxide and hydrofl
16、uoric acid. This reaction can occur over a long period of time, at a rate limited by the diffusion of water into the fluoropolymer material. In wire insulation, this phenomenon is referred to as either fluoride offgassing or fluoride outgassing. The total potential of fluoride offgassing from a fluo
17、ropolymer insulation is finite, and limited by the amount of carbonyl fluoride groups present within the polymer. Observed parts per million (ppm) of extractable hydrogen fluoride in wire insulation ranges from 10 to 1000. 3.2 History Insulation off-gassing is a known issue in the satellite manufact
18、uring industry since the late 1990s.The issue was first publically reported by Cristek Interconnects, Inc. in mid-1997 concerning corrosion on pre-wired connectors in sealed bags that were terminated to AS22759/33 insulated wire. This resulted in a subsequent Government Industry Data Exchange Progra
19、m (GIDEP) Problem Advisory in 1998 regarding the offgassing of XL-ETFE insulated wire. A second GIDEP was published by Goddard Space Flight Center in 2003, again observing corrosion on connector assemblies caused by fluoride offgassing in wire assemblies stored in sealed bags for 2 years. While the
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