ASTM D6147-1997(2002) Test Method for Vulcanized Rubber and Thermoplastic Elastomer&8212 Determination of Force Decay (Stress Relaxation) in Compression《测定硫化橡胶和热塑弹性体压缩情况下强制变形(应力放松).pdf
《ASTM D6147-1997(2002) Test Method for Vulcanized Rubber and Thermoplastic Elastomer&8212 Determination of Force Decay (Stress Relaxation) in Compression《测定硫化橡胶和热塑弹性体压缩情况下强制变形(应力放松).pdf》由会员分享,可在线阅读,更多相关《ASTM D6147-1997(2002) Test Method for Vulcanized Rubber and Thermoplastic Elastomer&8212 Determination of Force Decay (Stress Relaxation) in Compression《测定硫化橡胶和热塑弹性体压缩情况下强制变形(应力放松).pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D 6147 97 (Reapproved 2002)Test Method forVulcanized Rubber and Thermoplastic ElastomerDetermination of Force Decay (Stress Relaxation) inCompression1This standard is issued under the fixed designation D 6147; the number immediately following the designation indicates the year oforigina
2、l adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 This standard specifies two methods for determining thedecrease i
3、n counterforce exerted by a test specimen of vulca-nized rubber or thermoplastic elastomer which has beencompressed at a constant deformation under specified condi-tions of time and temperature.1.2 This document was developed based on testing in airand liquids.1.3 This standard does not purport to a
4、ddress all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:D 573 Standa
5、rd Test Method for RubberDeterioration inan Air Oven2D 1349 Standard Practice for RubberStandard Tempera-tures for Testing2D 3182 Standard Practice for RubberMaterials, Equip-ment, and Procedures for Mixing Standard Compoundsand Preparing Standard Vulcanized Sheets2D 3767 Standard Practice for Rubbe
6、rMeasurement ofDimensions2D 4483 Standard Practice for Determining Precision forTest Method Standards in the Rubber and Carbon BlackIndustries2E 145 Specification for GravityConvection and Forced-Ventilation Ovens33. Terminology3.1 Definitions of Terms Specific to This Standard:3.1.1 Compressive Str
7、ess, nthe time-dependent force nec-essary to maintain a constant compressive strain, divided bythe original cross-sectional area over which the force isapplied.3.1.2 Force Decay, nthe decrease in stress which hasoccurred after a specified time-interval, during application of aconstant deformation, e
8、xpressed as a percentage of the stress atthe commencement of that time-interval. (Stress relaxation is asynonym.)4. Summary of Test Method4.1 Method AThe test specimen is compressed at the testtemperature, and it is maintained at this temperature through-out the test period, all force measurements b
9、eing made at thetest temperature.4.2 Method BThe test specimen compression and theinitial measurement of the counterforce take place at 23 6 2C(73 6 4F); the test specimen is then stored in a chambercontrolled at the test temperature, but it is removed from thechamber for each of the subsequent forc
10、e measurements, whichare made at 23 6 2C (73 6 4F).4.3 The two methods, A and B, of carrying out the measure-ment do not give the same values of force decay and compari-son of values obtained from the two methods must be avoided.The method selected for use depends on the purpose of the test.Thus, fo
11、r fundamental studies and in applications wheresealing at elevated temperatures is a problem, method A maybe preferred, and in applications where temperature cyclingfrom normal to an elevated temperature is a problem, methodB may be preferred.5. Significance and Use5.1 When a constant strain is impo
12、sed on rubber, the forcenecessary to maintain that strain is not constant but decreaseswith time; this phenomenon is called force decay (stressrelaxation). Conversely, when rubber is subjected to a constantstress, an increase in the deformation takes place in time; thisbehavior is called creep. Thes
13、e phenomena are of practicalsignificance in rubber articles, such as seals and gaskets.1This practice is under the jurisdiction of ASTM Committee D11 on Rubber andis the direct responsibility of Subcommittee D11.14 on Time and Temperature-Dependent Physical Properties.Current edition approvedDec. 10
14、, 2002. Published January 2003. Originallyapproved in 1997. Last previous edition approved in 1997 as D 6147 97.2Annual Book of ASTM Standards, Vol 09.01.3Annual Book of ASTM Standards, Vol 14.04.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, Uni
15、ted States.5.2 The processes responsible for force decay may be eitherphysical or chemical in nature, and under all normal conditionsboth processes will occur simultaneously. However, at ambientor low temperatures and/or short times, force decay is domi-nated by physical processes, while at elevated
16、 temperaturesand/or long times, chemical processes are dominant. Hence, itis neither safe to extrapolate time/force decay curves in orderto predict force decay after periods considerably longer thanthose covered by the test, nor to use tests at higher tempera-tures as accelerated tests to give infor
17、mation on force decay atlower temperatures.5.3 In addition to the need to specify the temperature andtime-intervals in a force decay test, it is also necessary tospecify the initial stress and the previous mechanical history ofthe test specimen, since these may also influence the measuredforce decay
18、, particularly in rubbers containing fillers.6. Apparatus6.1 Compression Device, consisting of two parallel, flatplates, between the faces of which the test specimens arecompressed. The two devices shown schematically in Fig. 1and Fig. 2 were found to be acceptable through interlaboratorytesting. Ma
19、terial of construction of the jig shall not be subjectto attack from the test environment (for example acidic oil).6.2 The finish of the surface of the compression plates shallnot exceed 0.6 m (24 micro inches) arithmetical meandeviation from the mean line of the profile. The plates shall besufficie
20、ntly rigid to withstand the stress without bending, andof sufficient size to ensure that the whole of the compressed testspecimen is within the area of the plates.6.3 The compression device shall be connected with suit-able equipment for compressing the test specimen to thespecified compression with
21、in 30 s. It shall be capable of settingand maintaining the compression during the whole duration oftest and shall be such that it can be kept in an oven at thespecified test temperature. Care shall be taken to ensure thatthere is no loss of heat from the test specimen, for example byconduction throu
22、gh metal parts which are connected with theoutside of the oven.6.4 Counterforce measuring device, capable of measuringcompression forces in the desired range with an accuracy of61 %. The device may be such as to contain the test specimensduring the whole duration of the test, in which case continuou
23、smeasurements are possible. Alternatively, a testing machinemay be used in which the counterforce is measured afterprescribed time-intervals on test specimens, compressed in asuitable jig, by applying a slight increase in the compression ofthe test specimen. This additional compression shall be assm
24、all as possible and in no case more than a force of 1N or halfpercent (12 %) of original load for balance type machine and0.1 mm (0.004 in) or 2 % of original deflection for stress-straintype machines, in a time not greater than 30 s after commenc-ing the additional compression.6.5 Oven, with temper
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