DIN 4102-9-1990 Fire behaviour of building materials and elements seals for cable penetrations concepts requirements and testing《建筑材料和构件易燃性 电缆抗穿透密封 术语 、要求和试验》.pdf
《DIN 4102-9-1990 Fire behaviour of building materials and elements seals for cable penetrations concepts requirements and testing《建筑材料和构件易燃性 电缆抗穿透密封 术语 、要求和试验》.pdf》由会员分享,可在线阅读,更多相关《DIN 4102-9-1990 Fire behaviour of building materials and elements seals for cable penetrations concepts requirements and testing《建筑材料和构件易燃性 电缆抗穿透密封 术语 、要求和试验》.pdf(11页珍藏版)》请在麦多课文档分享上搜索。
1、UDC 699.81 :621.315.626 : 614.841.332:001.4 :620.1 DEUTSCHE NORM May 1990 C m - m w W 2 O 2. L :I -_ +- 3. L. + II C. II m .c o. II. 2 m ._ -. n- 2: O O c O II. II. L ._ ._ E a- . f L. .- m. - 3 f - O o .o ( i: $ n. E. 2i- V m 5 II II- ._ - + m O O Z B Fire behaviour of building materials and elemen
2、ts Seals for cable penetrations Concepts, requirements and testing DIN 4102 Part 9 Brandverhalten von Baustoffen und Bauteilen; Kabelabschottungen; Begriffe, Anforderungen und Prfungen In keeping with current practice in standards published by the International Organization for Standardization (ISO)
3、, a comma has been used throughout as the decimal marker. Dimensions in mm For tolerances, table 1, line 3 of DIN 18 202 shall apply. Contents Page 1 Scope and field of application . 1 1 2.1 Seals for cable penetrations 2 2.2 Fire resistance time . 2 3 Classifying seals . 2 4 Requirements 2 4.1 Sepa
4、rating effect of seals 2 4.2 Changes to cable arrangements . . 5 Testing . 5.1 Sampling . 2 5.2 Test furnace 2 5.3 Design of test construction 2 1 Scope and field of application This standard specifies requirements and methods of test for seals for cable penetrations designed to prevent the spread o
5、f fire at points where electric cables pass through horizontal or vertical separating building elements (walls or floors) subject to fire resistance requirements, and estab- lishes relevant conceptsi). The testing of seals for penetrations and service shafts and ducts is covered in DIN 4102 Part 11.
6、 Note. Testing of seals as specified in this standard does not include an assessment of the performance of elec- tric cables (e.g. emergency power supply cables) in the event of a fire2). 2 Concepts 2.1 Seals for cable penetrations Seals for cable penetrations (seals, for short) are seals which clos
7、e openings in separating building elements sub- Page 5.3.1 Building elements 2 5.3.2 Specimen size and 2 5.3.3 Purpose-made seals . 3 5.4 Procedure 3 5.4.1 Fire test based on standard timeltemperature curve 3 5.4.2 Fire test with exposure to smouldering fire . 3 5.4.3 Loading . 5.4.4 Subsequent ch 6
8、 Test certificate . 3 Standards referred to 10 Explanatory notes . 10 ject to fire resistance requirements, through which electric cables pass, in particular cables with metallic conductors, bus bars and cables with non-metallic conductors (e.g. opti- cal fibre cables)3). 1) The performance of fire-
9、resistant seals cannot be as- sessed solely on the basis of this standard. Other proof of suitability must be provided (e.g. in the form of a gen- eral building inspectorate approval (agrment). For building materials which do not become effective until exposed to a fire and which cannot be adequatel
10、y assessed on the basis of this standard, proof of suitability shall be provided (e.9. in the form of an agrment). 2) Cf. DIN 4102 Part 12. 3) The provision of service shafts and ducts (cf. DIN 4102 Part 11) shall also be regarded as serving to prevent the spread of fire along electric cables passin
11、g through walls and floors. Continued on pages 2 to 11 Beuth Verlag GmbH Berlin. has the exclusive right of sale for German Standards (DIN-Normen). o5 93 DIN 4702 Part 9 Engl. Price group 8 Sales No.0108 Page 2 DIN 4102 Part 9 2.2 Fire resistance time For the purposes of this standard, the fire resi
12、stance time is the minimum length of time, in minutes, during which seals prevent the spread of fire and smoke through cable pene- trations in fire tests carried out as specified in subclause 5.4.1, using the standard timeitemperature curve. In table 1, fire resistance classes (class S) are specifie
13、d as a function of the fire resistance time. Table 1. Fire resistance time Fire resistance Minimum fire resistance time, class in min s 90 I 90 I I 120 I s 120 I I S 180 I 180 I 3 Classifying seals Seals shall be classified into fire resistance classes on the basis of testing in accordance with this
14、 standard, the cri- terion of classification being the most unfavourable result of the tests carried out as specified in subclause 5.4.1 on two specimens or morei). Note. Seals tested in accordance with this standard will meet the relevant fire resistance requirements pro- vided that the cables and
15、their supporting construc- tions are installed in compliance with the relevant electrical engineering standards, in particular with DIN VDE O100 Part 520 A 1. 4 Requirements 4.1 Separating effect of seals 4.1.1 Installed seals shall not have an opening, cavities, etc. which permit the passage of air
16、 from one side to the other (cf. Explanatory notes). 4.1.2 Seals, when tested in accordance with subclauses 5.4.1 and 5.4.2, shall, during the specified fire resistance time, meet the following requirements. The spread of fire and smoke through the seal shall be prevented. This requirement is deemed
17、 to have been ful- filled if a cotton pad as specified in subclause 6.2.6 of DIN 4102 Part 2, September 1977 edition, held against the unexposed side of the seal during the test does not ignite, if there is no flame on the unexposed side and if the passage of smoke is not considered critical. On the
18、 unexposed side, the surface temperature of electric cables, supporting constructions and seals shall not rise by more than 180 K above the initial ambient temperature. 4.2 Changes to cable arrangements It shall be possible to make subsequent changes to the arrangement and number of cables passing t
19、hrough the seals (e.g. replacement or laying of additional cables) by simple means and without causing any damage to the elec- tric cables present. The work involved shall be conceived and carried out so as to ensure that the fire resistance class of the seal is maintained. 5 Testing 5.1 Sampling 5.
20、1.1 If different types of seal are to be assessed, the test- ing laboratory shall select the seal assumed to yield the most unfavourable result as the specimen. 5.1.2 Two specimens each per type of separating element (floor or wall) shall be subjected to testing. 5.1.3 Asymmetrical seals or those wh
21、ich are installed asymmetrically in walls shall be exposed to fire at least once from each side. 5.1.4 For seals for use in floors, heating of the floor under- side is normally to be considered the most unfavourable case. In cases of doubt, the behaviour of the seal on expo- sure to heat from above
22、shall also be tested. If two specimens, when installed in a wall, pass the test, only one specimen is required for testing seals installed in a floor. 5.1.5 The cable arrangement used for testing shall be that shown in figure 6, this being representative of arrangements used in practice. This does n
23、ot apply for purpose-made seals (cf. subclause 5.3.3) and those through which bus bars pass. 5.1.6 Where supporting constructions are used, these shall be made of sheet steel sections (cf. figure 6) and installed so as to pass through the seal. 5.2 Test furnace The test furnace shall comply with DIN
24、 4102 Part 2. Note. A small-scale test furnace (e.g. one complying with DIN 4102 Part 8) may also be used for supple- mentary tests. 5.3 Design of test construction 5.3.1 Building elements 5.3.1.1 For seals for use in concrete or masonry walls, the specimens shall be mounted in aerated concrete wall
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