SAE J 2979-2012 Test Method for Vulcanized Rubber and Thermoplastic Elastomer Determination of Compressive Stress Relaxation (CSR) Response《测定硫化橡胶和热塑弹性体压缩应力松弛(CSR)反应的试验方法》.pdf
《SAE J 2979-2012 Test Method for Vulcanized Rubber and Thermoplastic Elastomer Determination of Compressive Stress Relaxation (CSR) Response《测定硫化橡胶和热塑弹性体压缩应力松弛(CSR)反应的试验方法》.pdf》由会员分享,可在线阅读,更多相关《SAE J 2979-2012 Test Method for Vulcanized Rubber and Thermoplastic Elastomer Determination of Compressive Stress Relaxation (CSR) Response《测定硫化橡胶和热塑弹性体压缩应力松弛(CSR)反应的试验方法》.pdf(18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 theref
2、rom, 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 pub
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4、(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/J2979_201205SURFACEVEHICLERECOMMENDEDPRACTICEJ2979 MAY2012 Issued 2012-05Test Method
5、 for Vulcanized Rubber and Thermoplastic ElastomerDetermination of Compressive Stress Relaxation (CSR) Response RATIONALEASTM and ISO procedures exist that address Compression Stress Relaxation (CSR) in general, but they do not provide specific details on several factors involved in determining the
6、CSR response, nor do they deal with the Automotive Standard (ASD) CSR Test Jig. This test method addresses those limitations along with a methodology that produces better accuracy and reproducibility. This test method and ASD fixtures have been used extensively over the past 10 years by Material or
7、MTSs TestWorks 4.X. See an example of the plot from the TestWorks software - Section 8.1 - Figure 1. 4.9 Excel File or equivalent to record data (required) (General Format noted in Appendix B)4.10 Ovens (required) The ovens should have precise cabinet temperature control obtained through air exchang
8、e and circulation uniformity (in time and space) and is critical to measurement repeatability and reproducibility at isothermal temperatures. Small units capable of obtaining 1.0 C around a set temperature are best suited for CSR measurement. Select ovens with air exchange rates based on ASTM E145 r
9、equirements should be consideredSAE J2979 Issued MAY2012 Page 7 of 18 4.11 Other Optional Accessories 4.11.1 Basket for Oil Testing - used with 1 gal Paint Can or Stainless Steel Test Containers (holds 28 ASD CSR jigs) - (Appendix A.2) 4.11.2 Pressure Vessel and Basket for Coolant Testing - 2 L Parr
10、 Pressure Vessel basket (holds 18 ASD CSR jigs) - (Appendix A.3) 4.11.3 Pressure Vessel and Stirring Hot Plate - Use device similar to that described ASTM D572 for coolant testing. Fortest mixtures requiring stirring to maintain uniformity use a stirring hot plate with temperature control. Provision
11、s for a pressure gauge and relief valve are also required. (Appendix A.4)4.11.4 Compression Stress Relaxation (CSR) Spring Test Set (Optional) - (Appendix A.5) 5. TEST SPECIMEN 5.1 Samples should be prepared using good molding procedures and equipment to achieve good consolidated void free and defec
12、t free samples with smooth parallel flat surfaces observed with normal corrected vision. (ASTM D3182 and SAE J2643) 5.2 Molded Button of diameter 12.7 mm 0.5 mm (0.500 in 0.010 in) and thickness 6.3 mm 0.3 mm (0.250 in 0.005 in) 5.3 Button thickness measurements are taken from the center of the butt
13、on 5.4 Measure thickness using a dial or digital caliper (4.4) in a central area to avoid edge effects 5.5 Number of Test Specimens - A minimum of three test specimens shall be used for each material. 6. DURATION AND TEMPERATURE OF TEST 6.1 Temperature of Test - The temperature of test shall be agre
14、ed upon by the customer and the supplier. The ambient test temperature shall be 23 C 2 C (73 F 4 F). For an ambient test temperature controlled environment, it is recommended that the counterforce measurement not be started until the jig temperature reaches 23 C 2 C (73 F 4 F).6.2 If ambient test te
15、mperature is not controlled, it is recommended that it be recorded for each measurement interval and that the counterforce measurement not be started until the jig temperature reaches 2 C (4 F) of ambient test temperature. Highlight the measurements of the CSR jig temperatures when they are not with
16、in the range of 23 C 2 C (73 F 4 F). These outliers could be a source of variation. 6.3 The time-interval between vulcanization and/or post cure of the button and the initial compression shall be at least 24 h at ambient conditions. 6.4 The measurement of the “initial sealing force” should be perfor
17、med 60 min after the samples are compressed. This is considered the initial sealing force (F0) for the % Retained Sealing Force calculation. The time period for the test evaluation begins at the time that the CSR jig containing the sample is placed in the test environment (oven or test fluid).6.5 Su
18、bsequent Test Time Intervals - Approximately 2 h are required after each time-interval, to attain ambient temperature unless the jigs are cooled with a fan, as well as perhaps 1 h to perform the sealing force measurement. This cool down and test time is included in the duration of test hours. It is
19、suggested, for reasons of consistency, that people try to perform testing within these timeframes, so that there is a period of 3 h between removal of the sample from the test environment and being placed back in that environment for additional aging. The counterforce measurement should not be start
20、ed until the jig temperature reaches 2 C (4 F) of ambient temperature. SAE J2979 Issued MAY2012 Page 8 of 18 6.6 Test Interval Considerations - For purposes of testing uniformity, test intervals are often specified that correspond to reasonable laboratory test times. Test intervals are often set up
21、so that samples can be tested at the same time of day. Since time for this kind of testing requires the samples be cooled for a given period of time before testing and also includes the time for testing, the defined test intervals do not reflect the total amount of aging to which the samples might h
22、ave been exposed. Because of this, the total amount of time the sample might have been exposed to the aging environments for longer period such as 1008 h varies with the number of intermediate test intervals the samples were tested at. The magnitude of the effects of these different exposure times c
23、an vary depending on the type of material, the environmental test conditions, and the number of intermediate intervals at which the samples were tested. 7. PROCEDURE Test Preparation 7.1 Refer to the ASD Template (Excel file) as an example for the format that is recommended for recording data and ca
24、lculations (Appendix B i.e., 4 materials, 3 test buttons for each material requires 12 jigs to be assembled. 7.6 Place the CSR Jig Base in the centering cup, making sure that the open section is in line with the tighter section of the centering cup and lay the 1st shim in the center. 7.7 Place the 3
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