SAE T-124-2011 Automotive Carbon Fiber Composites From Evolution to Implementation (To Purchase Call 1-800-854-7179 USA Canada or 303-397-7956 Worldwide).pdf
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1、Automotive Carbon Fiber Composites From Evolution to Implementation Jackie D. Rehkopf SAE International technology profiles Automotive Carbon Fiber Composites T-124 Book.indb 1 11/22/11 9:06 AMOther SAE books of interest: Care and Repair of Advanced Composites By William Cole, Keith B. Armstrong, ph
2、one 877-606-7323 (U.S. and Canada only) or 724-776-4970 (outside U.S. and Canada); fax 724-776-0790; e-mail CustomerServicesae.org; website http:/books.sae.org. T-124 Book.indb 2 11/22/11 9:06 AMWarrendale, PA, USA Automotive Carbon Fiber Composites: From Evolution to Implementation By Jackie D. Reh
3、kopf T-124 Book.indb 3 11/22/11 9:06 AM Copyright 2012 SAE International. eISBN: 978-0-7680-7577-9400 Commonwealth Drive Warrendale, PA 15096-0001 USA E-mail: CustomerServicesae.org Phone: 877-606-7323 (inside USA and Canada)724-776-4970 (outside USA) Fax: 724-776-1615 Copyright 2012 SAE Internation
4、al. All rights reserved. No part of this publication may be reproduced, stored in a retrieval system, distributed, or transmitted, in any form or by any means without the prior written permission of SAE. For permission and licensing requests, contact SAE Permissions, 400 Commonwealth Drive, Warrenda
5、le, PA 15096-0001 USA; e-mail: copyrightsae.org; phone: 724-772-4028; fax: 724-772-9765. ISBN 978-0-7680-3495-0 Library of Congress Catalog Number 2011942089 SAE Order Number T-124 DOI 10.4271/T-124 Information contained in this work has been obtained by SAE International from sources believed to be
6、 reliable. However, neither SAE International nor its authors guarantee the accuracy or completeness of any information published herein and neither SAE International nor its authors shall be responsible for any errors, omissions, or damages arising out of use of this information. This work is publi
7、shed with the understanding that SAE International and its authors are supplying information, but are not attempting to render engineering or other professional services. If such services are required, the assistance of an appropriate professional should be sought. To purchase bulk quantities, pleas
8、e contact: SAE Customer Service E-mail: CustomerServicesae.org Phone: 877-606-7323 (inside USA and Canada)724-776-4970 (outside USA) Fax: 724-776-1615 Visit the SAE Bookstore at http:/store.sae.org T-124 Book.indb 4 11/22/11 9:06 AM Automotive Carbon Fiber Composites | v Contents Executive Summary i
9、x Chapter 1 Introduction 1 1.1 A Brief History of Carbon Fiber Composites 2 1.2 Carbon Fiber Implementation Timeline . 2 1.3 Closing Thoughts .11 Chapter 2 Carbon Fiber Composite Constituents: Fiber and Resin Types for Automotive Applications .17 2.1 Carbon Fiber Primer 18 2.1.1 Carbon Fiber History
10、 .20 2.1.2 Carbon Fiber Developments .22 2.1.3 Developments in Conversion Processes and Post-Treatments .28 2.1.4 Future Developments Around the Carbon Fiber 29 2.2 Resins for the Automotive Industry 29 2.2.1 Characteristics of Different Resins Used in CFCs 30 2.2.2 Resin Developments .31 2.2.3 Resi
11、ns with Reduced Cure Time 31 2.2.4 Resins with Targeted Performance 32 2.2.5 Resins for Targeted Processing Methods .33 2.3 Closing Thoughts .34 Chapter 3 Carbon Fiber Composite Construction .39 3.1 The Splendid Variety of CFCs for Automotive Applications 40 3.2 Fiber Reinforcement Forms .42 3.2.1 B
12、onded .42 3.2.2 Unidirectional Tapes .42 3.2.3 Stitched 42 3.2.4 Knits 43 3.2.5 Wovens .43 3.2.6 Braids .45 T-124 Book.indb 5 11/22/11 9:06 AMvi | Automotive Carbon Fiber Composites 3.3 Constructions .46 3.3.1 Laminates 46 3.3.2 Filament Winding 47 3.3.3 Stitching Preforms .48 3.3.4 Three-Dimensiona
13、l Braids .48 3.3.5 Nanostitching and Fuzzy Fibers .49 3.4 Closing Thoughts .50 Chapter 4 Manufacturing Processes for Carbon Fiber Composites.53 4.1 Introduction 54 4.2 Injection Molding 55 4.3 Compression Molding 56 4.4 Thermoforming56 4. 5 Sheet and Strand Molding Compound 57 4.6 Spray Forming 57 4
14、.7 Pultrusion 57 4.8 Filament Winding 58 4.9 Resin Infusion Processes 59 4.10 Out-of-Autoclave Processing of Structural Components .60 4.11 Quickstep Process 62 4.12 Preforming Processes .62 4.13 Other Processes .63 4.14 Tooling .63 4.15 Closing Thoughts .65 Chapter 5 Machining and Joining .69 5.1 M
15、achining .70 5.1.1 Tool Drilling .70 5.1.2 Tool Wear Compensation .73 5.1.3 Tool Cutting/Trimming .74 5.1.4 Abrasive Waterjet Cutting 74 5.1.5 Laser Cutting .76 5.2 Joining .76 5.2.1 Bonding .76 5.2.2 Mechanical Fasteners .79 5.3 Closing Thoughts .82 T-124 Book.indb 6 11/22/11 9:06 AM Automotive Car
16、bon Fiber Composites | vii Chapter 6 Reclaiming/Recycling Carbon Fiber Composites .85 6.1 Introduction 86 6.2 Reclaiming and Recycling CFCs88 6.3 Implementation of Recycled CFCs .90 6.4 Closing Thoughts .92 Chapter 7 Implementation and Longevity .95 7.1 Design and Modeling .96 7.1.1 Fiber Orientatio
17、n and Composite Construction .96 7.1.2 Computer Aided Engineering .97 7.1.3 Mechanical Behavior of CFCs 97 7.2 Physical Testing 99 7.3 Quality Control .100 7.4 Non-Destructive Evaluation 101 7.5 Repair .104 7.6 Closing Thoughts .105 Chapter 8 Concluding Thoughts .107 8.1 Manufacturing and Assembly i
18、n Legacy Plants .108 8.2 Advancing with the Advancements of Other Materials .109 8.3 Industry and Public Acceptance.113 8.4 Closing Thoughts .115 About the Author .117 T-124 Book.indb 7 11/22/11 9:06 AMT-124 Book.indb 8 11/22/11 9:06 AM Automotive Carbon Fiber Composites | ix Executive Summary The a
19、dvantages of carbon fiber composites (CFCs) in automotive design are high stiff- ness, high specific strength (strength-to-weight ratio), excellent fatigue endurance, cor- rosion resistance, generally good impact resistance, and flexibility in design that permits them to be tailored to design requir
20、ements. Composites also facilitate a lower parts count by reducing the number of subassemblies and fasteners. Replacing metal with CFCs can provide significant weight reduction, which has become particularly important in our current society that is facing high fuel prices and much more stringent emi
21、ssions standards. Aside from passenger vehicles, heavy-duty on-highway trucks and military vehicles are also exploring the use of CFC components to enable better fuel economy and/or increase payload. Unfortunately, CFCs also have notable disadvantages, including relatively high material and fabricat
22、ion costs, poor compressive and shear properties, and the necessity for non-destructive inspection techniques to detect flaws or damage. The main factors in the automotive industry driving fiber development and resin de- velopment center around cost, performance, cure time, and processing method. Th
23、e years 2010 and 2011 have seen an incredible amount of cooperation and partnerships between companies operating at different points in the value stream to bring new ma- terials and processing technologies to market quicker. Carbon fibers and matrix res- ins, and their developments, are not independ
24、ent of the other aspects of manufactur- ing a carbon fiber composite component, nor are they necessarily independent of each other. Different resins process differently with regard to the time, temperature, and pressure required for fiber wet-out and consolidation. Additionally, different fiber-res-
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