DIN ISO 7743-2016 Rubber vulcanized or thermoplastic - Determination of compression stress-strain properties (ISO 7743 2011)《硫化的或垫塑橡胶 压缩应力 应变特性的测定(ISO 7743-2011)》.pdf
《DIN ISO 7743-2016 Rubber vulcanized or thermoplastic - Determination of compression stress-strain properties (ISO 7743 2011)《硫化的或垫塑橡胶 压缩应力 应变特性的测定(ISO 7743-2011)》.pdf》由会员分享,可在线阅读,更多相关《DIN ISO 7743-2016 Rubber vulcanized or thermoplastic - Determination of compression stress-strain properties (ISO 7743 2011)《硫化的或垫塑橡胶 压缩应力 应变特性的测定(ISO 7743-2011)》.pdf(26页珍藏版)》请在麦多课文档分享上搜索。
1、August 2016 English price group 13No part of this translation may be reproduced without prior permission ofDIN Deutsches Institut fr Normung e. V., Berlin. Beuth Verlag GmbH, 10772 Berlin, Germany,has the exclusive right of sale for German Standards (DIN-Normen).ICS 83.060!%YE*“2543407www.din.deDIN
2、ISO 7743Rubber, vulcanized or thermoplastic Determination of compression stress-strain properties (ISO 7743:2011),English translation of DIN ISO 7743:2016-08Elastomere oder thermoplastische Elastomere Bestimmung des Druckverformungs-Verhaltens (ISO 7743:2011),Englische bersetzung von DIN ISO 7743:20
3、16-08Caoutchouc vulcanis ou thermoplastique Dtermination des proprits de constrainte/dformation en compression (ISO 7743:2011),Traduction anglaise de DIN ISO 7743:2016-08SupersedesDIN ISO 7743:2006-11www.beuth.deDocument comprises 26 pagesDTranslation by DIN-Sprachendienst.In case of doubt, the Germ
4、an-language original shall be considered authoritative.07.16 A comma is used as the decimal marker. Contents PageNational foreword . 3 Introduction . 5 1 Scope 6 2 Normative references 7 3 Terms and definitions . 7 4 Principle . 7 5 Apparatus and materials. 7 6 Calibration 8 7 Test pieces . 8 8 Numb
5、er of test pieces . 9 9 Time-lapse between vulcanization and testing 9 10 Conditioning 9 11 Temperature of test . 10 12 Procedure . 10 12.1 Measurement of test pieces . 10 12.2 Determination of stress-strain properties. 10 13 Expression of results 11 13.1 For methods A, B and C 11 13.2 For method D
6、. 12 14 Test report 13 15 Precision for methods A and D 13 Annex A (informative) Influence of test piece geometry . 14 Annex B (informative) Extrapolation of results to non-standard test pieces . 18 Annex C (normative) Calibration schedule 21 Annex D (informative) Precision for methods A and D 23 Bi
7、bliography 26 National Annex NA (informative) Bibliography . 4 DIN ISO 7743:2016-082 National foreword This standard (ISO 7743:2011) has been prepared by Technical Committee ISO/TC 45 “Rubber and rubber products” (Secretariat: DSM, Malaysia) The responsible German body involved in its preparation wa
8、s DIN-Normenausschuss Materialprfung (DIN Standards Committee Materials Testing), Working Committee NA 062-04-34 AA Prfung der physikalischen Eigenschaften von Kautschuk und Elastomeren. Attention is drawn to the possibility that some of the elements of this document may be the subject of patent rig
9、hts. DIN and/or DKE shall not be held responsible for identifying any or all such patent rights. The DIN Standards corresponding to the International Standards referred to in Clause 2 of this standard are as follows: ISO 815-1 DIN ISO 815-1 ISO 4287 DIN EN ISO 4287 ISO 23529 DIN ISO 23529 Amendments
10、 This standard differs from DIN ISO 7743:2006-11 as follows: a) a calibration method has been added; b) precision results have been added. Previous editions DIN ISO 7743: 1993-08, 2006-11 DIN ISO 7743:2016-083 National Annex NA (informative) Bibliography DIN ISO 815-1, Rubber, vulcanized or thermopl
11、astic Determination of compression set Part 1: At ambient or elevated temperatures DIN EN ISO 4287, Geometrical product specifications (GPS) Surface texture: Profile method Terms, definitions and surface texture parameters DIN ISO 23529, Rubber General procedures for preparing and conditioning test
12、pieces for physical test methods DIN ISO 7743:2016-084 Introduction Knowledge of compression stress-strain properties is important in the design of, for instance, bridge bearings, anti-vibration mountings and O-rings. Measurement of compression stress-strain behaviour is also used for the quality co
13、ntrol of small O-rings and other small products (i.e. those under 2 mm thick) where hardness cannot easily be measured. Compression tests are also used to detect the presence of porosity in products such as pipe sealing rings. Compression can be uniaxial or biaxial depending on test piece shape and
14、experimental conditions. If there is no friction at the interface between the test piece and the compression device, compression is uniaxial. If friction is significant, the test piece shape affects the nature of the compression. When the thickness of the test piece is small, Saint Venants principle
15、 is not applicable: the boundary condition at the interface influences the stress and strain fields and compression becomes biaxial (the thinner the test piece, the higher the biaxiality). The test piece behaves as if an additional radial compression were applied (friction hampers the radial expansi
16、on due to axial compression) and this phenomenon has to be taken into account when material properties such as moduli are to be derived from compression results. DIN ISO 7743:2016-085 Rubber, vulcanized or thermoplastic Determination of compression stress-strain properties WARNING Persons using this
17、 International Standard should be familiar with normal laboratory practice. This International Standard does not purport to address all of the safety problems, if any, associated with its use. It is the responsibility of the user to establish appropriate safety and health practices and to ensure com
18、pliance with any national regulatory conditions. 1 Scope This International Standard specifies methods for the determination of the compression stress-strain properties of vulcanized or thermoplastic rubber using a standard test piece, a product or a part of a product. Four procedures are given: usi
19、ng standard test piece A with the metal plates lubricated (method A); using standard test piece A with the metal plates bonded to the test piece (method B); using standard test piece B (method C); using a product or a part of a product with the metal plates lubricated (method D). The four procedures
20、 do not give the same results. Method A (test piece A, lubricated) gives results which are dependent only on the modulus of the rubber and are independent of the test piece shape, provided that complete slip conditions are achieved. Effective lubrication is sometimes difficult to achieve, however, a
21、nd it is prudent to inspect the variance in the test results from replicate test pieces for indications of erratic slip conditions. Method B (test piece A, bonded) gives results which are dependent on both the modulus of the rubber and the test piece shape. The dependence on test piece shape is stro
22、ng and, consequently, the results are markedly different from those obtained with lubricated test pieces. Method C (test piece B) gives results which are independent of both the test piece shape and the lubrication conditions. This test piece is more appropriate and more convenient when intrinsic ma
23、terial properties are to be determined (see Annex A for details). For products (method D), the result is dependent on the shape, but as tests on products are mainly comparative, this is acceptable. NOTE For well-specified product shapes, such as O-rings, the result can be correlated to the hardness
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