ISO 9553-1997 Solar energy - Methods of testing preformed rubber seals and sealing compounds used in collectors《太阳能 用于集热器橡胶密封件和塑料密封材料的试验方法》.pdf
《ISO 9553-1997 Solar energy - Methods of testing preformed rubber seals and sealing compounds used in collectors《太阳能 用于集热器橡胶密封件和塑料密封材料的试验方法》.pdf》由会员分享,可在线阅读,更多相关《ISO 9553-1997 Solar energy - Methods of testing preformed rubber seals and sealing compounds used in collectors《太阳能 用于集热器橡胶密封件和塑料密封材料的试验方法》.pdf(13页珍藏版)》请在麦多课文档分享上搜索。
1、INTERNATIONAL STANDARD IS0 9553 First edition 1997-l I-01 Solar energy - Methods of testing preformed rubber seals and sealing compounds used in collectors l$ergie solaire - MBthodes dessai des joints pr6form a3400net; p=iso; o=isocs; s=central Printed in Switzerland ii 0 IS0 IS0 9553: 1997(E) Forew
2、ord IS0 (the International Organization for Standardization) is a worldwide federation of national standards bodies (IS0 member bodies). The work of preparing International Standards is normally carried out through IS0 technical committees. Each member body interested in a subject for which a techni
3、cal committee has been established has the right to be represented on that committee. International organizations, governmental and non-governmental, in liaison with ISO, also take part in the work. IS0 collaborates closely with the International Electrotechnical Commission (IEC) on all matters of e
4、lectrotechnical standardization. Draft International Standards adopted by the technical committees are circulated to the member bodies for voting. Publication as an International Standard requires approval by at least 75 % of the member bodies casting a vote. International Standard IS0 9953 was prep
5、ared by Technical Committe ISO/TC 180, Solar energy. Annex A forms an integral part of this International Standard. INTERNATIONAL STANDARD o IS0 IS0 9553: 1997(E) Solar energy - Methods of testing preformed rubber seals and sealing compounds used in collectors 1 Scope 1.1 This International Standard
6、 gives requirements for the classification and testing of rubbers used to seal solar energy collectors in order to aid selection for specific applications. NOTE Particular rubber applications, when specified, may necessitate other requirements that take precedence over these requirements. 1.2 The de
7、sign requirements in this International Standard pertain only to permissible deflection of the rubber during thermal expansion or retraction of the seal in use and to the tolerances on dimensions of moulded and extruded seals. 1.3 This International Standard does not include requirements pertaining
8、to geometrical design, fabrication or installation of the seals. 1.4 This International Standard is applicable in conjunction with long-term ageing and weathering tests. However, if long-term tests are performed, it is recommended that IS0 4892-2 be complied with for ageing tests and IS0 877 for acc
9、elerated weathering tests and material exposure tests, respectively. NOTE The environmental conditions, test specimen configuration and any test deviations should be agreed upon between the parties involved. Also, if long-term tests are performed. the specific tests described in this International S
10、tandard should be performed before and after long-term testing is carried out. 2 Normative references The following standards contain provisions which, through reference in this text, constitute provisions of this International Standard. At the time of publication, the editions indicated were valid.
11、 All standards are subject to revision, and parties to agreements based on this International Standard are encouraged to investigate the possibility of applying the most recent editions of the standards indicated below. Members of IEC and IS0 maintain registers of currently valid International Stand
12、ards. IS0 37:1994, Rubber, vulcanized or thermoplastic - Determination of tensile stress-strain properties. IS0 48:1994, Rubber, vulcanized or thermoplastic - Determination of hardness (hardness between 10 IRHD and 100 IRHD). IS0 188: -1) , Rubber, vulcanized - Accelerated ageing and heat-resistance
13、 tests. IS0 471 :I 995, Rubber - Temperatures, humidities, and times for conditioning and testing. IS0 812:1991, Rubber, vulcanized - Determination of low-temperature brittleness. ) To be published. (Revision of IS0 188: 1982) IS0 9553: 1997(E) Q IS0 IS0 815:1991, Rubber, vulcanized or thermoplastic
14、 - Determination of compression set at ambient, elevated or low temperatures. IS0 877:1994, Plastics-Methods of exposure to direct weathering, to weathering using glass-filtered daylight, and to intensified weathering by daylight using fresnel 1 mirrors. IS0 1431-l : 1989, Rubber, vulcanized or ther
15、moplastic - Resistance to ozone cracking - Part 7: Static strain test. IS0 3302-l : 1996, Rubber - Tolerances for products - Part 1: Dimensional tolerances. IS0 4632-l : 1982, Rubber, vulcanized - Classification system - Part 1: Description of the classification system. IS0 4661-l :1993, Rubber, vul
16、canized or thermoplastic - Preparation of samples and test pieces - Part 1: Physical tests. IS0 4661-2:1987, Rubber, vulcanized - Preparation of samples and test pieces - Part 2: Chemical tests. IS0 4892-2:1994, Plastics - Method of exposure to laboratory tight sources - Part 2: Xenon-arc sources. I
17、S0 7619:1997, Rubber - Determination of indentation hardness by means of pocket hardness meters. 3 Classification 3.1 Sealing Sealing can be accomplished by one of the following methods: a) a preformed rubber seal (PS); b) a sealing compound (SC). NOTE Sealing compounds should not be used in collect
18、ors in which the seal is under mechanical stress. 3.2 Seal type The following type classification is in accordance with IS0 4632-l. The type selected should be based on the maximum service temperature which normally occurs when the collector is under stagnation conditions and is receiving the maximu
19、m radiation flux to which it will be exposed. Table 1 gives the maximum service temperatures and the test temperatures required in tables 3 and 4. 2 0 IS0 IS0 9553:1997(E) Table 1 - Seal types, test temperatures and maximum service temperatures (IS0 4632-l) Type Test temperature Max. service “C temp
20、erature “C B 100 70 C 125 100 D 150 125 E 1) 175 150 F) 200 175 G 1) 225 200 H 1) 250 225 1) Types E, F, G and H are not required for most solar collectors. 3.3 Seal grade Table 2 shows differing degrees of rubber hardness in accordance with lS0 48 and IS0 7619. The grade to be used in a particular
21、application depends on the design of the seal and shall be specified by the designer. Table 2 - Grade designation for different degrees of hardness Grade Hardness 3 30*5 4 40*5 5 5oi5 6 60* 5 7 70*5 8 80*5 3.4 Seal class 3.4.1 The classes shown in table 3 are established based on resistance to low t
22、emperatures. The class selected should be based on the lowest temperature of the collector expected in service. 3 IS0 9553:1997(E) 0 IS0 Table 3 - Seal classes, test temperatures and lowest service temperatures CJass Climate W M C P Warm Moderate Cold Polar Test temperature “C 0 - 2.5 - 40 - 60 Lowe
23、st service temperature “C - 10 - 35 - 50 - 70 4 Materials 4.1 Seals shall be made from rubber compounds that are resistant to the effect of ultraviolet light and, when vulcanized as in 7.1, shall comply with the requirements in clause 5. 4.2 Seals shall be free from defects that adversely affect the
24、 serviceability of products. Surface texture of preformed seals should be appropriate to the method of manufacture decided by the parties concerned. 5 Dimensions and tolerances 5.1 Attention should be paid to the effects of seal thermal expansion. For this reason, dimensions will vary greatly in a s
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