BS 2782-3 Method 323D-1996 Methods of testing plastics - Mechanical properties - Torsional vibration - Non-resonance method《塑料试验方法 机械特性 扭转振动 非共振法》.pdf
《BS 2782-3 Method 323D-1996 Methods of testing plastics - Mechanical properties - Torsional vibration - Non-resonance method《塑料试验方法 机械特性 扭转振动 非共振法》.pdf》由会员分享,可在线阅读,更多相关《BS 2782-3 Method 323D-1996 Methods of testing plastics - Mechanical properties - Torsional vibration - Non-resonance method《塑料试验方法 机械特性 扭转振动 非共振法》.pdf(12页珍藏版)》请在麦多课文档分享上搜索。
1、BRITISH STANDARDBS 2782-3: Method 323D: 1996ISO 6721-7: 1996Incorporating amendment no. 1Methods of testingPlastics Part 3: Mechanical properties g49g50g3g38g50g51g60g44g49g42g3g58g44g55g43g50g56g55g3g37g54g44g3g51g40g53g48g44g54g54g44g50g49g3g40g59g38g40g51g55g3g36g54g3g51g40g53g48g44g55g55g40g39g3
2、g37g60g3g38g50g51g60g53g44g42g43g55g3g47g36g58Method 323D: Torsional vibration Non-resonance methodICS 83.080BS 2782-3: Method 323D:1996of the Environment (Building Research Establishment)rtment of Trade and Industry (National Physical Laboratory)Committees responsible for this British StandardThCom
3、mittee reBrBrDepartment DepaThis British Standard, having been prepared under the direction of the Sector Board for Materials and Chemicals, was published under the authority ofthe Standards Board and comes into effect on 15 September 1996 BSI 2007The following BSI references relate to the work on t
4、his standard: Committee reference PRI/21 Draft for comment 95/122078 DCISBN 0 580 26067 4Electrical and Electronic Insulation Association (BEAMA Ltd.)GAMBICA (BEAMA Ltd.)Institute of MaterialsMinistry of DefencePackaging and Industrial Films AssociationPIRA InternationalRAPRA Technology Ltd.Royal So
5、ciety of ChemistryAmendments issued since publicationAmd. No. Date Comments16993 30 March 2007 See national foreworde preparation of this British Standard was entrusted to Technical PRI/21, Testing of plastics, upon which the following bodies were presented:itish Apparel and Textile Confederationiti
6、sh Plastics FederationBS 2782-3: Method 323D:1996 BSI 2007National forewordThis British Standard was published by BSI. It is the UK implementation of ISO 6721-7:1996, incorporating amendment 1:2007.ISO 6721-7 is one of a 10 part series of ISO 6721 methods of determination of the dynamic mechanical p
7、roperties of rigid plastics. ISO 6721-1, implemented as BS EN ISO 6721-1 (dual numbered BS 2782-3: Method 342A), is an introductory section which includes the definitions and all aspects that are common to the individual test methods described in the subsequent versions.The start and finish of text
8、introduced or altered by amendment is indicated in the text by tags !“. Tags indicating changes to ISO text carry the number of the ISO amendment. For example, text altered by ISO amendment 1 is indicated in the text by !“.The UK participation in its preparation was entrusted to Technical Committee
9、PRI/21, Testing of plastics.A list of organizations represented on PRI/21 can be obtained on request to its secretary.This publication does not purport to include all the necessary provisions of a contract. Users are responsible for its correct application.Compliance with a British Standard cannot c
10、onfer immunity from legal obligations.iblankBS 2782-3:Method 323D:19961 ScopeThis part of ISO 6721 describes a torsional, non-resonance method for determining the components of the shear complex modulus G*of solid polymers in the form of bars or rods at frequencies typically in the range 0,001 Hz to
11、 100 Hz. !Higher-frequency measurements can be made, but significant errors may be obtained in the dynamic properties measured (see 10.2.1 and 10.2.2).“ The method is suitable for measuring dynamic storage moduli ranging from about 10 MPa, which is typical of values obtained for stiff rubbers, to va
12、lues of about 10 GPa which are representative of fibre-reinforced plastics. Although materials with moduli less than 10 MPa may be studied, more accurate measurements of their dynamic properties can be made using simple shear (see ISO 6721-6) or torsional deformations of thin layers between parallel
13、 plates.This method is particularly suited to the measurement of loss factors greater than 0,1 and may therefore be conveniently used to study the variation of dynamic properties with temperature and frequency through most of the glass-rubber relaxation region (see ISO 6721-1:1994, subclause 9.4). T
14、he availability of data determined over wide ranges of both frequency and temperature enable master plots to be derived, using frequency-temperature shift procedures, which display dynamic properties over an extended frequency range at different temperatures.Although loss factors below 0,1 may be mo
15、re accurately determined using the torsion pendulum (see ISO 6721-2), the method described in this part of ISO 6721 enables a much wider and continuous frequency range to be covered.2 Normative referencesThe following standards contain provisions which, through reference in this text, constitute pro
16、visions of this part of ISO 6721. At the time of publication, the editions indicated were valid. All standards are subject to revision, and parties to agreements based on this part of ISO 6721 are encouraged to investigate the possibility of applying the most recent editions of the standards indicat
17、ed below. Members of IEC and ISO maintain registers of currently valid International Standards.ISO 6721-1:1994, Plastics Determination of dynamic mechanical properties Part 1: General principles.ISO 6721-6:1996, Plastics Determination of dynamic mechanical properties Part 6: Shear vibration Non-reso
18、nance method.3 DefinitionsSee ISO 6721-1:1994, clause 4.4 PrincipleThe specimen is subjected to a sinusoidal torque or angular displacement at a frequency significantly below the fundamental torsion resonance frequency (see 10.2.1). The amplitudes of the torque and displacement cycles applied to the
19、 specimen and the phase angle between these cycles are measured. The storage and loss components of the shear complex modulus and the loss factor are calculated using equations given in clause 10 of this part of ISO 6721.5 Test device5.1 Loading assemblyThe requirements on the apparatus are that it
20、shall permit measurements of the amplitudes of, and phase angle between, the torque and angular displacement cycles for a specimen subjected to a sinusoidal torque or displacement. Various designs of apparatus are possible, as illustrated schematically in Figure 1a) and Figure 1b). In Figure 1a), a
21、sinusoidal angular displacement is generated by the drive unit D and applied to one end of the specimen S through the moving clamp C1. The amplitude and frequency of the angular displacement are variable and monitored by the rotary displacement transducer R. The specimen is held at the opposite end
22、by a fixed clamp C2 and thus undergoes sinusoidal torsional deformations. The sinusoidal torque applied in deforming the specimen is monitored by a torque transducer T connected to C2. The members between the clamp C1 and D and between C2and T should be much stiffer than the specimen and should have
23、 a low thermal conductance if the specimen is to be enclosed in a temperature-controlled cabinet (see note 1). Where tests are carried out at elevated temperatures, a facility shall be included in the loading assembly to avoid buckling of the specimen resulting from thermal expansion.NOTE 1 Whilst e
24、ach member of the loading assembly may have a much higher stiffness than the specimen, the presence of clamped or bolted connections can significantly increase the apparatus compliance. It may then be necessary to apply a compliance correction as described in 10.2.3. BSI 2007 1ISO 6721-2:1994, Plast
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