GMKOREA EDS-T-7411-2008 FORCE-DEFLECTION CHARACTERISTICS OF ELASTOMERIC COMPONENTS UNDER UNI-AXIAL STRESS.pdf
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1、GM DAEWOO Auto & Technology EDS Engineering, GM DAEWOO Auto & Technology Standards FORCE-DEFLECTION CHARACTERISTICS OF ELASTOMERIC COMPONENTS UNDER UNI-AXIAL STRESS Do Not Use on New Programs. Being Replaced by GMW14682 EDS-T-7411 ISSUED DATE: 1991. 12. 16 REVISED DATE: 2008. 10. 15 VERSION: 5 (Supe
2、rceded) EDS-T-7411FORCE-DEFLECTION CHARACTERISTICS OF ELASTOMERIC COMPONENTS UNDER UNI-AXIAL STRESS PAGE: 1/7 ISSUED DATE: 1992. 12. 16 REVISED DATE: 2008. 10. 15 VERSION: 5 GM DAEWOO Auto & Technology Note: This standard may be applied only for current project (incl. CKD Program). It is Superceded
3、for all future projects and replaced by GMW14682. 1. PURPOSE This standard is test method that determines the deformation characteristics of elastomeric components used in vehicles in the temperature range -30 to +150 under a constant velocity. 2. SCOPE 2.1. The determination of the force-deflection
4、 curve of elastomeric components. This test will also give some indication of the permanent creep properties of the elastomer. 2.2. The determination of the force required to act on the elastomeric component in order to strain it to the vehicle installation conditions. 3. DEFINITION 3.1. Uni-axial s
5、tress Single axial load refers to loading in one direction to a rubber part. 3.2. Force F The force F shall be the force applied to the elastomeric component. Its magnitude and direction shall correspond with the installation conditions of the component. 3.3. Initial force FvThe initial force Fvshal
6、l be the force initially applied to the reference point of elastomeric components in order to establish test results. Its magnitude is normally 1 to 2% of force max F, and it shall act in the same direction as force max F. 3.4. Force max F The force max F is the maximum force F with which the elasto
7、meric component is stressed in addition to the initial force Fv. 3.5. Height hoThe height hoshall be the height of the component measured in the direction of the force F, determined on the unstressed elastomeric component prior to the application of any force. 3.6. Initial Height hvThe initial heigh
8、t hvshall be the height of the component determined under the initial force Fvacting on the component. EDS-T-7411FORCE-DEFLECTION CHARACTERISTICS OF ELASTOMERIC COMPONENTS UNDER UNI-AXIAL STRESS PAGE: 2/7 ISSUED DATE: 1992. 12. 16 REVISED DATE: 2008. 10. 15 VERSION: 5 GM DAEWOO Auto & Technology 3.7
9、. Force-application point The force-application point is the position on the moving head of the universal testing machine to which the elastomeric component or test fixture is attached. The force-application point is located along the direction of application of the force max F. 3.8. Velocity v The
10、velocity v is the constant velocity with which the force-application point moves in the direction of application of the force F. 3.9. Deflection s The deflection s is the distance through which the force-application point moves under the force F during deformation of the elastomeric component. It is
11、 measured in the direction of application of the force F. 3.10. Initial deflection svThe initial deflection svis the distance through which the force-application point moves under the initial force Fvduring deformation of the elastomeric component. It is measured in the direction of application of t
12、he initial force Fv. 3.11. Force-deflection curve F=f(s) The force-deflection curve F=f(s) is the mapping of the relationship between the force F and the deflection s, where the applied force is gradually increased from F = Fvto F = Fv+ max F. 3.12. Spring rate c The spring rate c is the slope of th
13、e tangent at a point P(e.g. specified on drawings) on the force-deflection curve. The spring rate c is determined by the relationship sFC=, and the point P is indicated as either force or deflection on the force-deflection curve. 3.13. Stress cycle A stress cycle shall consists of a constant increas
14、e of the load acting on the rubber part from F = FV to F = FV+ max F and subsequent constant decrease to F = FV. 3.14. Initial curve The initial curve is the curve obtained during the first stress cycle. 3.15. Displacement sfThe displacement sfis the distance through which the force-application poin
15、t moves, and measured from the commencement of the first stress cycle to the end of the third stress cycle. The stress cycles shall be consecutive. The displacement sfmay be influenced by the creep properties of the elastomer. 3.16. Suffixes To identify the forces or dimension being applied or deter
16、mined, and their directions, alphabetical and numerical EDS-T-7411FORCE-DEFLECTION CHARACTERISTICS OF ELASTOMERIC COMPONENTS UNDER UNI-AXIAL STRESS PAGE: 3/7 ISSUED DATE: 1992. 12. 16 REVISED DATE: 2008. 10. 15 VERSION: 5 GM DAEWOO Auto & Technology suffixes shall be used. 3.16.1. Alphabetical subsc
17、ripts shall be used to identify the type of force or dimension, e.g. ho- a dimension of the unstressed elastomeric component. Fv- the force initially applied. 3.16.2. Alphabetical suffixes shall be used to indicate the test conditions specified in clause 6.5, and generally designated by j. j may tak
18、e the form A, B, C -Q. e.g. FG - denotes a force F given under the conditions denoted by test type G. 3.16.3. Numerical subscripts shall be used to identify the direction in which a force is applied, and generally designated by i. i may take the form 1, 2, 3 -n. The numerical subscripts shall follow
19、 the alphabetical subscript. e.g. ho1, FCv3, FA1. If there is only one direction of force application, the numerical subscript 1 can be excluded. e.g. FA, Fv4. TEST SAMPLES 4.1. Test sample form The test sample shall be the piece of elastomeric components attached into the vehicle. 4.2. Test sample
20、quantity At least three test samples shall be tested. 4.3. Test sample conditioning For initial sample approval and arbitration purposes, the minimum time period between vulcanization and testing shall be 7 days. For routine quality control purposes, the period shall be 3 days. The test sample shall
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