BS 3900-F5-1972 Methods of test for paints - Determination of light fastness of paints for interior use exposed to artificial light sources《涂料试验方法 第F5部分 室内用涂料人工光源耐光性测定》.pdf
《BS 3900-F5-1972 Methods of test for paints - Determination of light fastness of paints for interior use exposed to artificial light sources《涂料试验方法 第F5部分 室内用涂料人工光源耐光性测定》.pdf》由会员分享,可在线阅读,更多相关《BS 3900-F5-1972 Methods of test for paints - Determination of light fastness of paints for interior use exposed to artificial light sources《涂料试验方法 第F5部分 室内用涂料人工光源耐光性测定》.pdf(12页珍藏版)》请在麦多课文档分享上搜索。
1、BRITISH STANDARD CONFIRMED OCTOBER 1991 BS3900-F5: 1972 Light fastness Methods of test for paints Part F5: Determination of light fastness of paints for interior use exposed to artificial light sources It is recommended that this Part be read in conjunction with the general information in the Introd
2、uction to BS3900 issued separately (revised edition published March 1969). NOTEPart F5 describes a general method which takes into account consideration of DEF-1053, Method No. 33, “Fastness to light”. UDC 667.61+667.613:620.191.7BS3900-F5:1972 BSI 05-1999 ISBN 580 06736 X Foreword This Part of this
3、 British Standard describes a procedure for operating laboratory equipment for the determination of light fastness of interior paints. The apparatus is first calibrated by exposure of wool scale pattern No.4 complying with BS1006, “Determination of fastness to daylight of coloured textiles. Referenc
4、e standards”. The apparatus thus calibrated may then be used to determine the light fastness of the test specimen. This Part does not attempt to define either the minimum acceptable standard of light fastness or the precise techniques to be adopted for the test; these are to be the subject of agreem
5、ent between the purchaser and the vendor. The possible forms which the test requirement as stated in the product specification may take include the following: 1) The test material shall be at least as light fast as a specified wool scale pattern exposed simultaneously. 2) The test material shall be
6、at least as light fast as an agreed paint sample exposed simultaneously. 3) The test material shall show no greater change within a specified period than a previously exposed reference sample. 4) The test material shall not change colour beyond an agreed limit within a specified period. The limit mi
7、ght be defined in terms of a BS or Munsell reference or an agreed reference plate. 5) The test material shall be visually acceptable after a specified period of exposure. NOTEOf the criteria listed above, 1) and 2) offer the greatest precision, as they take into account any variation in the severity
8、 of the test, resulting from the permitted range of fading in the calibration procedure. A British Standard does not purport to include 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
9、 itself confer immunity from legal obligations. Summary of pages This document comprises a front cover, an inside front cover, pagesi and ii, pages1 to6 and a back cover. This standard has been updated (see copyright date) and may have had amendments incorporated. This will be indicated in the amend
10、ment table on the inside front cover. Amendments issued since publication Amd. No. Date CommentsBS3900-F5:1972 BSI 05-1999 i Contents Page Foreword Inside front cover 1 Scope 1 2 Supplementary information 1 3 Equipment 1 4 Sampling 2 5 Preparation and coating of test panel 2 6 Procedure 2 7 Report o
11、f test 3 Appendix A Procedure for calibration of test apparatus 4 Figure 1 Light fastness test apparatus using carbon arc 5 Figure 2 Light fastness test apparatus using xenon tube 6ii blankBS3900-F5:1972 BSI 05-1999 1 1 Scope This Part describes a procedure for assessing the light fastness of interi
12、or paints by exposure to light from artificial sources, under prescribed conditions which have been shown to correlate acceptably with exposure to daylight through glass. 2 Supplementary information The method of test described below should be completed, for any particular application, by the follow
13、ing supplementary information. This information should be derived from the British Standard or other document for the product under test or, where appropriate, should be the subject of agreement between the parties to the test. 1) Nature of substrate. 2) Method of application of test coating to subs
14、trate. 3) Thickness of coating and whether it is a single film or a coating system. 4) Duration and conditions of drying and conditioning of coated panel (or conditions of stoving and conditioning if applicable) before testing. 5) Full details of the duration of test for either or both of the specif
15、ied types of apparatus (seeNoteto3.1). 6) Any particular test requirements (seeexamples 1) to 5) in the Foreword) and the agreed limit of colour change for the assessment of light fastness. 3 Equipment 3.1 Alternative types of apparatus are permitted, based on either a carbon arc or a xenon arc. A s
16、uitable apparatus of each type is described in3.1.1 and3.1.2 respectively although other designs may be used provided that they satisfy the requirements of3.1.3. NOTEIt has been found that in general when the difference in severity is taken into account the types of apparatus described produce simil
17、ar effects. For critical application however, users should either satisfy themselves as to the extent of equivalence for the type of material under test or should limit the choice of equipment to a single type. 3.1.1 Carbon arc apparatus. This uses as its source of light a1600W d.c. carbon arc 1)(se
18、e Figure 1 for diagram), surrounded by a drum500mm in diameter with a suitable rack for holding the test panels. The carbon arc is enclosed in a clear borosilicate glass cylinder of thickness1.5mm to3mm,178mm long and of diameter127mm, and is mounted with its axis vertical and in the centre of the d
19、rum. The centre of the arc is level with the exposed portion of the test panels. The arc is formed between two uncored carbons, each15mm in diameter, the upper (positive) carbon being approximately300mm long when fitted. The power consumption across the arc is1600 50 W, the voltage being controlled
20、between130145 V. The burning rate for the positive carbon should not exceed4mm/h. A burning rate in excess of this figure can usually be traced to an air leak in the lamp. NOTEThe apparatus should be stopped during each24 hour period for1 hour; during this time the glass should be cleaned and the ca
21、rbons changed. A cooling fan is mounted beneath the arc. The air temperature in the apparatus shall be38 42C when measured by a thermometer adjacent to the test area and shielded from direct radiation. 3.1.2 Xenon discharge tube apparatus. This uses filtered radiation from a nominal1500W high pressu
22、re xenon discharge tube 2)(see Figure 2 for diagram). The xenon tube is positioned vertically, the sample holders being arranged vertically around it. The samples revolve around the lamp at6 1 rev/min in a circular path so that their axes describe a cylindrical surface and the centres of their faces
23、 are normal to incident radiation. At the completion of each revolution, each sample holder is rotated on its axis through180 so that samples alternately face towards and away from the light source on successive revolutions. The distance of the sample face from the axis of the lamp is between75mm an
24、d80mm. The radiation from the lamp is filtered by an inner set of heat-absorbing glasses, and an outer cylinder of borosilicate glass, as recommended by the manufacturer of the xenon tube, to produce radiation which approximates to sunlight behind glass. 1) A suitable apparatus is manufactured by J.
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