BS 4370-3-1988 Methods of test for rigid cellular materials - Methods 12 and 13《硬质微孔材料试验方法 第3部分 方法12和13》.pdf
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1、BRITISH STANDARD BS4370-3: 1988 Methods of test for Rigid cellular materials Part3: Methods12 and13 UDC678405.8:678.077:678.01BS4370-3:1988 This British Standard, having been prepared under the directionof the Plastics and Rubber Standards Committees, was published under the authority of the Board o
2、f BSI and comes intoeffect on 29 February 1988 BSI 04-1999 First published March1974 First revision February1988 The following BSI references relate to the work on this standard: Committee reference PLM/RUM/10 Draft for comment86/36513DC ISBN 0 580 16038 6 Committees responsible for this British Sta
3、ndard The preparation of this British Standard was entrusted by the Plastics and Rubber Standards Committees (PLM/RUM/-) to Technical Committee PLM/RUM/10, upon which the following bodies were represented: British Plastics Federation British Railways Board British Rigid Urethane Foam Manufacturers A
4、ssociation British Rubber Manufacturers Association Department of the Environment (Building Research Establishment) Furniture Industry Research Association Furniture, Timber and Allied Trades Union Ministry of Defence National Bedding Federation Phenolic Foam Manufacturers Association RAPRA Technolo
5、gy Ltd. Society of British Aerospace Companies Limited Society of Motor Manufacturers and Traders Limited Amendments issued since publication Amd. No. Date of issue CommentsBS4370-3:1988 BSI 04-1999 i Contents Page Committees responsible Inside front cover Foreword ii 1 Scope 1 2 Method12. Determina
6、tion of friability 1 3 Method13. Determination of the coefficient of linear thermal expansion at low temperatures 2 Appendix A Suitable apparatus for method13 7 Figure 1 Friability test apparatus 2 Figure 2 Possible practical arrangement for friability test 3 Figure 3 Suitable apparatus for determin
7、ation of coefficient of linear thermal expansion at low temperatures 4 Figure 4 Layout of suitable cooling system for method13 5 Figure 5 Fiducial lines for method13 5 Publications referred to Inside back coverBS4370-3:1988 ii BSI 04-1999 Foreword This Part of BS4370 has been prepared under the dire
8、ction of the Plastics and Rubber Standards Committees and is a revision of BS4370-3:1974, which is withdrawn. The methods of test described here are intended to apply to rigid cellular products of polymeric origin, but they are not necessarily suitable for testing cellular materials of inorganic ori
9、gin. In this revision the method for the measurement of heat distortion temperature (formerly method11) has been withdrawn. Method12 has been amended to use less cumbersome and less noisy equipment. Method13 has now been aligned with method A of the corresponding international standard ISO4897. Many
10、 rigid cellular products and test specimens are not isotropic. This is usually ascribed to the fact that the cells in the material are elongated in a particular direction. This direction is referred to in this standard as the direction of anisotropy. Tests carried out in this direction usually give
11、results differing in magnitude from those carried out in other directions. The direction of anisotropy may vary from place to place in a product, hence the number of test specimens required in product specifications may be greater than those given herein. A British Standard does not purport to inclu
12、de all the necessary provisions of a contract. Users of British Standards are responsible for their correct application. Compliance with a British Standard does not of itself confer immunity from legal obligations. Summary of pages This document comprises a front cover, an inside front cover, pages
13、i and ii, pages1 to8, an inside back cover and a back cover. This standard has been updated (see copyright date) and may have had amendments incorporated. This will be indicated in the amendment table on theinside front cover.BS4370-3:1988 BSI 04-1999 1 1 Scope This Part of BS4370 describes two meth
14、ods of test applicable to rigid cellular products of polymeric origin. NOTE 1The methods may not be suitable for testing products of inorganic origin. NOTE 2The titles of the publications referred to in this standard are listed on the inside back cover. 2 Method12. Determination of friability 2.1 Ge
15、neral This method measures friability as the degree of disintegration of rigid cellular plastics calculated as the percentage mass loss, when subjected to a grinding process under specified conditions. 2.2 Apparatus 2.2.1 Ball mill, comprising a cylindrical polyethylene container of internal dimensi
16、ons90 1mm long and260 3mm in diameter (see Figure 1), into which are inserted3.8 0.1kg (i.e.approximately400) smooth porcelain balls each19.0 1.0mm in diameter, and a means of rotating the container with its longitudinal axis horizontal at a rate of622r/min. NOTE 1A suitable container may be constru
17、cted from polyethylene pipe of outside diameter280mm. Figure 2 shows an example of a suitable practical arrangement. NOTE 2Because of the high level of noise inherent with this apparatus, a sound enclosure is recommended. 2.2.2 Balance, reading to an accuracy of1mg. 2.2.3 Stop watch or stop clock, r
18、eading to an accuracy of1s. 2.3 Test specimen The test specimen shall be a cube of side20 1mm. The test specimen shall be free from surface skins. All debris remaining on the test specimen shall be removed using a vacuum cleaner. If required, the removal of debris from the specimen shall be assisted
19、 by an air jet which does not damage the specimen. Methods of specimen preparation employing heat (e.g.hot-wire cutting) shall not be used. 2.4 Number of test specimens Four test specimens are required for each test. Three tests shall be carried out. 2.5 Conditioning and temperature of test The test
20、 specimens shall be conditioned at23 2 C and50 5% r.h. for not less than16h. The tests shall be carried out immediately after conditioning. 2.6 Procedure Determine the mass of the set of four test specimens to the nearest1mg. Load the set of four specimens into the ball mill and secure the lid. Run
21、the apparatus for60 revolutions of the polyethylene container. Carefully remove the test specimens from the polyethylene container. Remove any debris from the specimens using a vacuum cleaner, assisting the process, if necessary, by using an air jet which does not damage the specimens. Redetermine t
22、he mass of the set of test specimens to the nearest1mg. If by visual inspection any of the four test specimens appear to have been non-uniformly abraded, or if a specimen breaks, abandon the test and prepare new test specimens. Clean the equipment after carrying out six tests, or earlier if the cont
23、ainer and balls become visibly contaminated. Do this by covering the balls with water, adding approximately20g of mild abrasive powder and grinding for at least1h. Rinse the container and balls thoroughly and dry them before re-use. 2.7 Calculation of results Calculate the friability F (in%) of the
24、set of test specimens using the following equation: where Calculate the mean friability (in%) of the material from the values obtained for the three tests. 2.8 Test report The test report shall include the following information: a) the description and identity of the material; b) the friability of e
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