SAE J 2983-2012 Recommended Practice for Determining Material Properties of Li-Battery Separator《确定锂电池隔板材料性能的推荐性实施规程》.pdf
《SAE J 2983-2012 Recommended Practice for Determining Material Properties of Li-Battery Separator《确定锂电池隔板材料性能的推荐性实施规程》.pdf》由会员分享,可在线阅读,更多相关《SAE J 2983-2012 Recommended Practice for Determining Material Properties of Li-Battery Separator《确定锂电池隔板材料性能的推荐性实施规程》.pdf(19页珍藏版)》请在麦多课文档分享上搜索。
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/J2983_201212 SURFACE VEHICLE RECOMMENDED PRACTICE J2983 DEC2012 Issued 2012-12 Re
5、commended Practice for Determining Material Properties of Li-Battery Separator RATIONALE As the market for Li-battery continues to grow, due to the evolution of motive and stationary power applications, new separator concepts are being proposed for incorporation into the batteries. There are a varie
6、ty of properties that could be measured and a variety of methodologies to perform testing. This Recommended Practice (RP) provides a set of test methods for the characterization of the Li-battery separators properties, which if used consistently across different materials, will facilitate the compar
7、ison of the properties of Li-battery separator. TABLE OF CONTENTS 1. SCOPE 2 2. REFERENCES 2 2.1 Applicable Document 2 3. DEFINITIONS . 4 4. SAMPLE PREPARATION . 4 5. MANUFACTURING PARAMETERS . 4 5.1 Thickness (g80m) . 4 5.2 Air Permeability (measure of time required for 100mL of air to pass through
8、 film). 5 5.3 Porosity . 5 6. CHEMISTRY/CUSTOMER SPECIFIC PARAMETERS 7 6.1 Pore size . 7 6.2 Tensile strength . 7 6.3 Shrinkage 8 6.4 Shutdown 9 6.5 Resilience to puncture during cell manufacturing . 10 6.6 Separator wetting 10 6.7 Chemical Stability 11 6.8 Skew 12 6.9 Melt Integrity 13 6.10 Melt Te
9、mperature (DSC method) 14 6.11 Impact of separator on Ion Conductivity/Electrical Resistance . 14 6.12 HiPotential (HiPot) insulation resistance/Dielectric breakdown . 16 SAE J2983 Issued DEC2012 Page 2 of 19 7. R Telephone: 03-3588-8002; Fax: 03-3583-0462; http:/www.jsa.or.jp/default_english.asp JI
10、S P 8117 Paper and board - Determination of air permeance and air resistance (medium range) - Gurley method 2.1.4 United States Publications NASA/TM-2010-216099: “Battery Separator Characterization and Evaluation Procedures for NASAs Advanced Lithium-ion batteries”, May 2010. USABC “Procedure for de
11、termining shutdown temperature of battery separators” (http:/www.uscar.org/guest/article_view.php?articles_id=86) UL2591, “Investigation for Battery Separator”, Issue 2, March 2009 ORNL/TM-2012/247 (“Standard Test Method for Fatigue Evaluation of Polymeric Separators for Li-ion Cells”, E. Lara-Curzi
12、o and T.M. Trejo, 2011 is recommended SAE J2983 Issued DEC2012 Page 4 of 19 3. DEFINITIONS Except as noted below, all definitions are in accordance with SAE J1715. 4. SAMPLE PREPARATION Except where indicated, the tests in this recommended practice are to be performed at standard laboratory atmosphe
13、re, defined in ASTM D618-00 (Standard practice for Conditioning Plastics for Testing, Section 3). Some of the test techniques discussed in the following section require preparation of samples with an accurate surface area. Preparation of such a sample is described in ASTM D6287-09 (Standard Practice
14、 for Cutting Film and Sheeting Test specimens) In all cases, samples should be conditioned (e.g., dried) using the manufacturers recommended practice Except where indicated, the tests of this recommended practice are to be performed on a dry separator. It is possible that the addition of a solvent o
15、r electrolyte impact the performance of the separator. Users of this RP are urged to consider the interaction of the separator and solvent and perform tests on wet separators when deemed necessary, such as when a significant change in behavior is suspected to occur. The safety issues related with ha
16、ndling of electrolytes should be considered before doing the tests. 5. MANUFACTURING PARAMETERS 5.1 Thickness (g80m) In order to accurately and repeatedly measure thickness, some degree of pressure is applied to the film. The acceptable pressure to be applied to the film during thickness measurement
17、 is determined by the films porosity, composition and compressibility. NOTE: Compression modulus of the material should be taken under consideration when selecting the pressure to be applied when measuring thickness. The pressure which yields the smallest degree of film compression is to be selected
18、. Thickness measurements are described in 2 separate ASTM documents, whose main difference is the pressure to be applied: ASTM D5947-06: Standard Test Methods for Physical Dimensions of Solid Plastic Specimens ASTM D2103-08: Standard Specifications for Polyethylene Film and Sheeting The user is task
19、ed with selecting the best method based on the criteria described above. SAE J2983 Issued DEC2012 Page 5 of 19 Basis Weight (grams / cm2) Sample preparation: Preparation of the sample area is critical to accurate determination of the basis weight - repeatable surface area is necessary. A sufficient
20、amount of sample needs to be prepared to yield a recordable value on the balance. Equipment specification: Balance accurate to 4 decimal places ( 1mg) Sample size: Surface area of at least 225 cm2(equivalent of 15 x 15 cm) Measurement environment: standard laboratory atmosphere (see Section 3) Measu
21、rement frequency: measure each sample 3 times, and then average. Number of samples: g116 3 5.2 Air Permeability (measure of time required for 100mL of air to pass through film). The method as described in JIS P 8117 (“Paper and board Determination of air permeance and air resistance (medium range) -
22、 Gurley method”, 2009), is recommended with the following clarification g120 for rapid elution times, the head fitting may need to change to a smaller footprint (0.645cm2= 0.1 sq inch). This smaller head fitting increases elution time to improve measurement resolution. g120 normal head = 1 sq inch (
23、= 6.45 cm2) In the event that the user does not have equipment to perform Gurley measurement, the alternative burette method, as described in ASTM D726 - 94 (“Standard Test Method for Resistance of Nonporous Paper to Passage of Air“) may be used, with the following clarification g120 The user must b
24、e able to transform the burette method result into an equivalent Gurley measurement result. The user is encouraged to measure Gurley and empirically determine the correlation factor. 5.3 Porosity 5.3.1 Calculated porosity Requirements: Thickness (3.2), basis weight (3.3) and specific gravity (sg). %
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