SAE AIR 5431-2004 Repair Tooling《检修工具》.pdf
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1、 AEROSPACE INFORMATION REPORT Repair Tooling Issued 2004-12 AIR5431 TABLE OF CONTENTS 1. SCOPE 2 2. REFERENCES.2 3. GENERAL3 4. MATERIALS.4 5. TOOLS (EXAMPLES) 9 6. PREPARATION OF TOOL SURFACES 13 7. MAINTENANCE AND STORAGE15 8. INSPECTION OF TOOLING15 APPENDIX A TOOL MANUFACTURING METHOD (ONE SPECI
2、FIC EXAMPLE)16 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
3、arising therefrom, 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 2011 SAE International All rights reserved. No pa
4、rt of this publication 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
5、 724-776-4970 (outside USA) Fax: 724-776-0790 Email: CustomerServicesae.org SAE WEB ADDRESS: http:/www.sae.orgSAE values your input. To provide feedback on this Technical Report, please visit http:/www.sae.org/technical/standards/AIR5431Reaffirmed 2011-11RATIONALEThis document has been reaffirmed to
6、 comply with the SAE five-year review policy. SAE AIR5431 - 2 - 1. SCOPE: This SAE Aerospace Information Report (AIR) offers information about the use of support tooling for composite repair processes, as well as descriptions of some of the different tooling materials used and their applications. If
7、 the repair document requires the use of tooling, refer to this AIR for additional information. 1.1 Purpose: The purpose of this AIR is to provide a general information and guidance in selecting materials and provide an example of a manufacturing technique for tooling used in the repair of thermoset
8、ting composite components. 2. REFERENCES: 2.1 SAE Publications: Available from SAE, 400 Commonwealth Drive, Warrendale, PA 15096-0001. ARP4916 Masking and Cleaning of Epoxy and Polyester Matrix Thermosetting Composite Materials ARP5143 Vacuum Bagging of Thermosetting Composite Repairs ARP5144 Heat A
9、pplication for Thermosetting Resin Curing ARP5319 Impregnation of Dry Fabric and Ply Lay Up 2.2 OEM Manuals 2.3 Other References: Composites Volume 1 Engineered Materials Handbook ASM International METALS PARK , OHIO 44073 SAE AIR5431 - 3 - 3. GENERAL: As the use of the composite material has increa
10、sed over the past years, the size and the number of the components has also increased, as has the geometrical contour complexity. Also the wider use of complex composite components has increased the need for repair tooling.The need for performance of larger repairs and the geometric complexity neces
11、sary leads to the situation that these repairs cannot be performed without any aid of tooling in order to support the total shape of the component and/or to restore and retain the geometric contour in the repair area. In particular , large area repairs done without tooling, often led to scrapping th
12、e component due to distortion. The tooling/mold must be manufactured to sustain the specific curing cycle load without deformation, leakage or other damage. To achieve an effective and economical repair it is essential that the most appropriate tooling material and process is used. The factors influ
13、encing the material and process must be investigated; especially the materials thermal characteristics. To choose the most appropriate tooling material, tooling manufacturing technique and repair tool type, the following options and factors must be considered: a. The geometric contour, the complexit
14、y of the repair part, and the required dimensional tolerances (including spring back). b. Coefficient of Thermal Expansion (CTE) - An important factor is the coefficient of thermal expansion of the component material and the repair tool material. Selecting an inappropriate factor can result in subse
15、quent distortion of the component. c. Schedule - The time available to complete the repair. d. Required Tool Life e. Cure Temperature, Pressure and Repair Size f. Dimensional stability and resistance to creep at the cure temperature, especially if the tool will be used many times. SAE AIR5431 - 4 -
16、4. MATERIALS: The component to be repaired is the reference for the dimension and the geometric contour of the tool. If the tool is not totally enclosed in the vacuum bag, the tool must be vacuum tight. All repair tools must sustain the pressure and the temperature used for the repair. The thermal m
17、ass and conductivity of the tooling material should be compatible with the selected repair process. In most cases, the repairs will be performed at elevated temperatures. Tool durability is influenced by the different maximum operating temperatures of the materials. When selecting tooling materials
18、consider the following characteristics: - Thermal expansion coefficient compatible with the component materials to prevent distortion of the component during the repair cure cycle. - Low thermal mass with high thermal conductivity for autoclave and oven processing. The thermal mass of a given toolin
19、g material, shown in the figure 3, is found by multiplying its specific heat by its density for a given volume. - Low thermal conductivity for heat blanket or lamp cure. - Low weight for ease of handling. - Ability to maintain contour at the repair cure temperature. The following repair tooling mate
20、rials should be considered: - composite tooling Carbon Fiber Reinforced Plastic (CFRP) (Made from Wet lay up or Prepregs) Glass Fiber Reinforced Plastic (GFRP) (made from Wet lay up or Prepregs) - metallic tooling materials Aluminum SteelElectroformed Nickel- elastomer tooling material Rubber room t
21、emperature vulcanizing (RTV) Elastomer Silicone Rubber Sheet (for surfacing or caul sheet) - non metallic castable compounds Plastics Plaster, Gypsum or Cast Ceramic - can be reinforced with glass fibers SAE AIR5431 - 5 - 4. (Continued): The specific properties of these materials are: TABLE 1 Toolin
22、g Mat. Tooling Properties Comments CFRP - low density - low CTE - low thermal conductivity - low heat mass - preferred material for repair tools for CFRP parts- high cost GFRP - low density - low CTE (similar to steel and nickel) - low thermal conductivity - medium heat mass - preferred material for
23、 repair tools for GFRP parts and acceptable for AFRP(Aramid Fiber Reinforced Plastic) parts - difficult for CFRP parts - low cost Aluminum - medium density - high CTE - very high thermal conductivity - medium heat mass - very difficult for CFRP/AFRP parts due to high CTE.- can be used for flat surfa
24、ces and single curvatures- low cost Steel - high density - medium CTE - high thermal conductivity - high heat mass - acceptable material for repair tools for CFRP/ AFRP/GFRP parts due to CTE - medium cost Nickel(electroformed)- high density - medium CTE - high thermal conductivity - high heat mass -
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