DIN EN ISO 14419-2010 Textiles - Oil repellency - Hydrocarbon resistance test (ISO 14419 2010) German version EN ISO 14419 2010《纺织品 耐油性 耐碳氢化合物试验(ISO 14419-2010) 德文版本EN ISO 14419-20.pdf
《DIN EN ISO 14419-2010 Textiles - Oil repellency - Hydrocarbon resistance test (ISO 14419 2010) German version EN ISO 14419 2010《纺织品 耐油性 耐碳氢化合物试验(ISO 14419-2010) 德文版本EN ISO 14419-20.pdf》由会员分享,可在线阅读,更多相关《DIN EN ISO 14419-2010 Textiles - Oil repellency - Hydrocarbon resistance test (ISO 14419 2010) German version EN ISO 14419 2010《纺织品 耐油性 耐碳氢化合物试验(ISO 14419-2010) 德文版本EN ISO 14419-20.pdf(14页珍藏版)》请在麦多课文档分享上搜索。
1、August 2010 Translation by DIN-Sprachendienst.English price group 9No 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
2、59.080.01!$jP otherwise, the test liquid can wet the underlying surface, not the actual test substrate, and thereby cause confusion in the reading of the results. 9.1.2 Equipment, benches and gloves should be free of silicone. Use of silicone-containing products could adversely affect oil repellency
3、 grades. 9.2 Wearing clean laboratory gloves (7.3), brush the pile of napped or pile substrates using the hand, in the direction giving the greatest lay of the surface prior to placing the drops of the test liquid. (The direction giving the lowest pile.) 9.3 Beginning with the lowest-numbered test l
4、iquid (oil test liquid No. 1), carefully place small drops (approximately 5 mm in diameter or 0,05 ml volume) on the test specimen in a minimum of five locations representing all physical and colour characteristics of the fabric. The drops should be approximately 4,0 cm apart. The dropper tip should
5、 be held at a height of approximately 0,6 cm from the substrate surface while placing drops. Do not touch the substrate with the dropper tip. Observe the drops for (30 2) s from approximately a 45 angle. Assess each drop in accordance with Figure 1. Immediately examine the reverse of the fabric for
6、any wetting. 1) White Textile Blotting Paper is the trade name of a product supplied by the American Association of Textile Chemists and Colorists (AATCC), P.O. Box 12215, Research Triangle Park, NC 27709-2215. This information is given for the convenience of users of this International Standard and
7、 does not constitute an endorsement by ISO of the product named. Equivalent products may be used if they can be shown to lead to the same results. EN ISO 14419:2010 (E) DIN EN ISO 14419:2010-08 6 9.4 If no penetration or wetting of the substrate at the liquidsubstrate interface and also no wicking a
8、round the drops occur, place drops of the next high-numbered test liquid at an adjacent site on the substrate so as not to interfere with the previous test and again observe for (30 2) s. Assess each drop in accordance with Figure 1. Immediately examine the reverse of the fabric for any wetting. 9.5
9、 Continue this procedure until one of the test liquids shows obvious wetting or wicking of the substrate under or around the drop within (30 2) s. A maximum of six tests (oil test liquids) may be performed on one test specimen. 9.6 Repeat the procedure with the second sample. A third sample may be r
10、equired (see Clause 11). 10 Evaluation 10.1 The oil repellency grade of a substrate is the numerical value of the highest-numbered test liquid which will not wet the substrate within a period of (30 2) s. A grade of zero (0) is assigned when the substrate fails the white mineral oil liquid test. Wet
11、ting of the substrate is normally evidenced by a darkening (greying/shadowing) of the substrate at the liquidsubstrate interface or wicking and/or loss of contact angle of the drop. On black or dark substrates, wetting can be detected by loss of “sparkle” within the drop. 10.2 Different types of wet
12、ting may be encountered depending on the finish, fibre, construction, etc.; and the determination of the end point can be difficult on certain substrates. Many substrates show complete resistance to wetting by a given test liquid as indicated by a clear drop with a high contact angle (see Figure 1,
13、Example A), followed by immediate penetration by the next higher-numbered test liquid. In these instances, the end point and oil repellency grade are obvious. However, some substrates show progressive wetting under several test liquids as evidenced by a partial darkening of the substrate at the liqu
14、idsubstrate interface (see Figure 1, Examples B, C and D). For such substrates, the point of failure is considered to be that test liquid which exhibits complete darkening of the interface or any wicking within (30 2) s. 10.3 A failure occurs when three (or more) of the five drops applied from a giv
15、en test liquid show complete wetting (see Figure 1, Example D) or wicking with loss of contact angle (see Figure 1, Example C). A pass occurs if three (or more) of the five drops applied show a clear, well-rounded appearance with high contact angle (see Figure 1, Example A). The grade is expressed a
16、s the value of the pass oil test liquid immediately prior to the fail oil test liquid. A borderline pass occurs if three (or more) of the five drops applied show the rounded drop with partial darkening of the test specimen (see Figure 1, Example B). The grade is expressed to the nearest 0,5 value de
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