SAE PT-172-2015 The Use of Nano Composities in Automotive Applications (To Purchase Call 1-800-854-7179 USA Canada or 303-397-7956 Worldwide).pdf
《SAE PT-172-2015 The Use of Nano Composities in Automotive Applications (To Purchase Call 1-800-854-7179 USA Canada or 303-397-7956 Worldwide).pdf》由会员分享,可在线阅读,更多相关《SAE PT-172-2015 The Use of Nano Composities in Automotive Applications (To Purchase Call 1-800-854-7179 USA Canada or 303-397-7956 Worldwide).pdf(117页珍藏版)》请在麦多课文档分享上搜索。
1、 The use of Nanocomposites in Automotive ApplicationsP151546_PT-172.indb 1 12/11/15 9:19 AMOther SAE books of interest:Design of Automotive Composites By Charles Lu and Srikanth Pilla(Product Code: PT-164)Biocomposites in Automotive Applications By Charles Lu and Srikanth Pilla(Product Code: PT-165)
2、CAE Design and Failure Analysis of Automotive Composites By Charles Lu and Srikanth Pilla(Product Code: PT-166)For more information or to order a book, contact: SAE INTERNATIONAL400 Commonwealth Drive Warrendale, PA 15096Phone: +1.877.606.7323 (U.S. and Canada only) or +1.724.776.4970 (outside U.S.
3、and Canada)Fax: +1.724.776.0790 Email: CustomerServicesae.org Website: books.sae.orgP151546_PT-172.indb 2 12/11/15 9:19 AMThe use of Nanocomposites in Automotive ApplicationsBy Charles Lu and Srikanth PillaWarrendale, Pennsylvania, USAP151546_PT-172.indb 3 12/11/15 9:19 AMCopyright 2016 SAE Internat
4、ional eISBN: 978-0-7680-8284-5Copyright 2016 SAE International. 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 International. For permission and lice
5、nsing requests, contact SAE Permissions, 400 Commonwealth Drive, Warrendale, PA 15096-0001 USA; e-mail: copyrightsae.org; phone: 724-772-4028; fax: 724-772-9765.Printed in the United States of AmericaLibrary of Congress Catalog Number 2015958978SAE Order Number PT-172http:/dx.doi.org/10.4271/pt-172I
6、nformation contained in this work has been obtained by SAE International from sources believed to be 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 responsi
7、ble for any errors, omissions, or damages arising out of use of this information. This work is published 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
8、, the assistance of an appropriate professional should be sought.ISBN-Print 978-0-7680-8237-1ISBN-PDF 978-0-7680-8284-5ISBN-epub 978-0-7680-8285-2ISBN-prc 978-0-7680-8286-9To purchase bulk quantities, please contactSAE Customer Service e-mail: CustomerServicesae.org phone: +1.877.606.7323 (inside US
9、A and Canada) +1.724.776.4970 (outside USA) fax: +1.724.776.0790Visit the SAE Bookstore atbooks.sae.org400 Commonwealth DriveWarrendale, PA 15096E-mail: CustomerServicesae.orgPhone: +1.877.606.7323 (inside USA and Canada)+1.724.776.4970 (outside USA)Fax: +1.724.776.0790P151546_PT-172.indb 4 12/11/15
10、 9:19 AMvTable of Contents Introduction to Nanocomposites . 1Perspectives of nanocomposites in the automotive industry 7Nanomaterials A New Dimension in Automotive Engineering (2006-01-0105) .9Nanocomposites: Recent Development and Potential Automotive Applications (2008-01-1263) 17Nanotechnology Ap
11、plications in Future Automobiles (2010-01-1149) .27Nano-fiber reinforced composites . 39Polyamide 6 Reinforced With Carbon Nanotubes for Automotive Parts 41(2008-36-0132)Mechanical Properties of MWCNT/Elastomer Nanocomposites and the Cellulation Model (2009-01-0606) .47Development of a Transparent N
12、anocomposite for Automobile Polymer Glazing (2012-01-0749) .53Nano-platelet reinforced composites 59Twenty-Year Review of Polymer-Clay Nanocomposites at Toyota Central R thus, it has superior electrical conductivity. The CNT also has very high thermal conductivity: 3500 W/m/K, compared to 385 W/m/K
13、for copper 1-6. Due to the exceptional mechanical, thermal, and electrical properties, carbon nanotubes have long been considered as ideal reinforcement fillers to make strong, multifunctional composites. CNTs can be dispersed into polymer matrices through conventional molding processes to form fibe
14、r reinforced nanocomposites. A polystyrene nanocomposite with only 1% CNT is reported to have exhibited a 36-42% increase in elastic stiffness and 25% increase in tensile strength 1-7. The properties of PMMA (polymethyl methacrylate) nanocomposites with a 5% CNT content have shown increases in tensi
15、le strength and modulus by 90% and 150%, respectively 1-8. The integration of carbon nanotubes also has improved the fracture toughness of polymers. An epoxy based nanocomposite with 3% CNT fibers has shown a 62% increase in fracture toughness, and the same composite with only 0.5% CNT fibers has it
16、s fatigue life increased by almost 10 times 1-9. Further, due to the strong interfaces between CNT fibers and polymer matrices, the dynamic mechanical properties of the nanocomposites have been improved: with an addition of CNT of only 0.5-1%, the damping ratio of the epoxy based composites has been
17、 increased by 1400% 1-10. Although significant improvements exist, CNT nano-fiber composites have not exhibited the ideal properties as promised. This is due to the poor dispersions of the CNT fibers in polymer matrices. Because of the van der Waals interactions between individual nanotubes, the CNT
18、 fibers are often agglomerated. In addition, the long CNT fibers can become highly wavy (non-straight) during the molding processes and thus significantly lose their strength. Different techniques have been attempted in achieving consistent dispersion and alignment of the CNT fibers in polymer matri
19、ces. These include the in situ polymerization of nanocomposites, the use of polymers to coat nanotube surfaces, ultrasonic dispersion of carbon nanotubes in solution, the electrospinning technique, etc. The use of a high magnetic field to align the nanotubes has been attempted, and the resultant CNT
20、 nanocomposite has exhibited a much improved modulus and transition temperature 1-11. (2) Nano-Platelet Reinforced CompositesThe most commonly used nano-platelets are the layered silicates. Layered silicates are from the smectite family of clays, so the nano-platelets are also referred to as nano-cl
21、ays. The most widely used nano-clay employed in composites is the modified montmorillonite clay. Montmorillonite is a two-to-one layered smectite clay mineral with a platy structure. Each layer has two tetrahedral sheets containing an octahedral sheet between them. Individual platelet thicknesses ar
22、e just 1 nm, but the lateral dimensions are in the range of 100-1000 nm, resulting in unusually high aspect ratios. The specific surface area of the nano-clay filler is estimated to be approximately 700,000 m2/kg. Hundreds or thousands of these layers are stacked together with van der Waals forces t
23、o form clay particles 1-12.Nano-clay reinforced nanocomposites are of great interest in the industry because they show substantial enhancements of material properties. Two decades ago, Toyota introduced the first nano-clay polymer nanocomposites. With the incorporation of only 4.2% nano-clay platele
24、ts, a doubling of the tensile modulus and strength is achieved for nylon based nanocomposites, along with an 80oC increase in the heat distortion temperature 1-13. Subsequent studies have shown that nano-clay composites have exhibited many other advantages, including enhanced barrier characteristics
- 1.请仔细阅读文档,确保文档完整性,对于不预览、不比对内容而直接下载带来的问题本站不予受理。
- 2.下载的文档,不会出现我们的网址水印。
- 3、该文档所得收入(下载+内容+预览)归上传者、原创作者;如果您是本文档原作者,请点此认领!既往收益都归您。
下载文档到电脑,查找使用更方便
10000 积分 0人已下载
下载 | 加入VIP,交流精品资源 |
- 配套讲稿:
如PPT文件的首页显示word图标,表示该PPT已包含配套word讲稿。双击word图标可打开word文档。
- 特殊限制:
部分文档作品中含有的国旗、国徽等图片,仅作为作品整体效果示例展示,禁止商用。设计者仅对作品中独创性部分享有著作权。
- 关 键 词:
- SAEPT1722015THEUSEOFNANOCOMPOSITIESINAUTOMOTIVEAPPLICATIONSTOPURCHASECALL18008547179USACANADAOR3033977956WORLDWIDEPDF

链接地址:http://www.mydoc123.com/p-1028225.html