BS 476-13-1987 Fire tests on building materials and structures - Method of measuring the ignitability of products subjected to thermal irradiance《建筑材料和结构的燃烧试验 第13部分 受热辐照制品着火性的测定方法》.pdf
《BS 476-13-1987 Fire tests on building materials and structures - Method of measuring the ignitability of products subjected to thermal irradiance《建筑材料和结构的燃烧试验 第13部分 受热辐照制品着火性的测定方法》.pdf》由会员分享,可在线阅读,更多相关《BS 476-13-1987 Fire tests on building materials and structures - Method of measuring the ignitability of products subjected to thermal irradiance《建筑材料和结构的燃烧试验 第13部分 受热辐照制品着火性的测定方法》.pdf(40页珍藏版)》请在麦多课文档分享上搜索。
1、BRITISH STANDARD BS 476-13: 1987 ISO 5657:1986 Incorporating Amendment No. 1 Fire tests on building materials and structures Part 13: Method of measuring the ignitability of products subjected to thermal irradiance ISO title: Fire tests Reaction to fire Ignitability of building products UDC 614.841.
2、332:620.1:69.01:536.468BS 476-13:1987 This British Standard, having been prepared under the directionof the Fire Standards Committee, was published underthe authority of the BoardofBSI and comes intoeffecton 30June1987 BSI 02-1999 The following BSI references relate to the work on this standard: Com
3、mittee reference FSM/1 Draft for comment 85/40847 DC ISBN 0 580 15953 1 Committees responsible for this British Standard The preparation of this British Standard was entrusted by the Fire Standards Committee (FSM/-) to Technical Committee FSM/1 upon which the following bodies were represented: Assoc
4、iation of British Roofing Felt Electricity Supply Industry in England and Manufacturers Wales Association of Building Component Engineering Equipment and Materials Users Manufacturers Ltd. Association Association of Structural Fire Protection Eurisol (UK) Association of Manufacturers of Contractors
5、and Manufacturers Mineral Insulation Fibres British Coal Fibre Building Board Organisation British Fire Services Association (FIDOR) British Floor Covering Manufacturers Fibre Cement Manufacturers Association Ltd. Association Fire Insurers Research and Testing British Plastics Federation Organisatio
6、n (FIRTO) British Railways Board Fire Offices Committee British Rigid Urethane Foam Fire Protection Association Manufacturers Association Flat Glass Manufacturers Association British Wood Preserving Association Flat Roofing Contractors Advisory Board Cement and Concrete Association Gypsum Products D
7、evelopment Association Chemical Industries Association Home Office Chief and Assistant Chief Fire Officers Institution of Fire Engineers Association Mastic Asphalt Council and Employers Concrete Society Federation Department of Education and Science National Council of Building Materials Department
8、of the Environment (Building Producers Research Establishment, National GRP Construction Federation Fire Research Station) RAPRA Technology Ltd. Department of the Environment for Royal Institute of British Architects Northern Ireland Steel Construction Institute Department of the Environment (Housin
9、g Timber Research and Development Association and Construction Industries) United Kingdom Atomic Energy Authority Department of the Environment (Property Warrington Fire Research Centre Services Agency) Wood Wool Slab Manufacturers Department of Transport (Marine Association Directorate) Yarsley Tec
10、hnical Centre Ltd. The following bodies were also represented in the drafting of the standard, through subcommittees and panels: Autoclaved Aerated Concrete Products Phenolic Foam Manufacturers Association Association Thermal Insulation Manufacturers and London Scientific Services Suppliers Associat
11、ion (TIMSA) Amendments issued since publication Amd. No. Date of issue Comments 5774 January 1988 Indicated by a sideline in the marginBS 476-13:1987 BSI 02-1999 i Contents Page Committees responsible Inside front cover National foreword ii 0 Introduction 1 1 Scope and field of application 1 2 Refer
12、ences 1 3 Definitions 1 4 Principles of the test 2 5 Suitability of a product for testing 2 6 Specimen construction and preparation 2 7 Test apparatus 3 8 Test environment 6 9 Additional equipment 6 10 Setting-up procedure and requirements 7 11 Calibration 8 12 Test procedure 8 13 Expression of resu
13、lts 10 14 Test report 10 Annex A Commentary on the text and guidance note for operators 11 Annex B Summary test report 14 Annex C Application and limitations of test 15 Annex D Variability in time to sustained surface ignition 16 Figure 1 Wrapping of the specimen 18 Figure 2 Ignitability test appara
14、tus General view 19 Figure 3a Specimen support framework Part sectional elevation along B-B 20 Figure 3b Specimen support framework Part sectional plan along A-A 21 Figure 4a Specimen support framework and radiator cone 22 Figure 4b Radiator cone 23 Figure 4c Methods for attachment of thermocouples
15、to heater coil 24 Figure 4d Grids of readings for irradiance distribution 25 Figure 5 Pilot flame nozzle 26 Figure 6a Pilot flame application mechanism Pilot flame arm 27 Figure 6b Pilot flame application mechanism Base plate (plan view) 28 Figure 6c Pilot flame application mechanism Cam geometry 29
16、 Figure 7 Specimen insertion and location tray 30 Figure 8 Specimen screening plate 31 Figure 9 Extraction hood and draught screen for ignitability apparatus 32 Figure 10 Diagrammatic arrangement of apparatus and additionalequipment 33 Figure 11 Dummy specimen board 34 Table Coefficients of variatio
17、n, repeatabilities and reproducibilities of timetosustained surface ignition 17 Publications referred to Inside back coverBS 476-13:1987 ii BSI 02-1999 National foreword This Part of BS476 has been prepared under the direction of the Fire Standards Committee. It is identical with ISO5657-1986 “Fire
18、tests Reaction to fire Ignitability of building products”, published by the International Organization for Standardization (ISO). Terminology and conventions. The text of the international standard has been approved as suitable for publication as a British Standard without deviation. Some terminolog
19、y and certain conventions are not identical with those used in British Standards; attention is drawn especially to the following. The comma has been used as a decimal marker. In British Standards it is current practice to use a full point on the baseline as the decimal marker. Wherever the words “In
20、ternational Standard” appear, referring to this standard, they should be read as “Part of BS476”. Wherever values for irradiance are given (e.g. in 9.1 and 9.2) they are given in units of W/cm 2 . In British Standards it is current practice to use kW/m 2 , conversion to which requires that the value
21、 is multiplied by 10 (in the example given in 9.1 5W/cm 2would be 50 kW/m 2and in the example given in9.2, 10W/cm 2would be 100 kW/m 2 ). Cross-references. The Technical Committee has reviewed the provisions of the following international standards, to which reference is made in the text, and has de
22、cided that they are acceptable for use in conjunction with this Part of BS476. Related British Standards are given in parentheses. ISO 291-1967, (BS2782 Methods of testing plastics Method1004:1977 Standard atmospheres for conditioning and testing). ISO3261-1975, (BS4422 Glossary of terms associated
23、with fire). ISO/TR 3814-1975, (No British Standard). ISO5725-1981, (BS5497 Precision of test methods 1:1979, Guide for the determination of repeatability and reproducibility for a standard test method). ISO/TR6585-1979, (No British Standard). A British Standard does not purport to include all the ne
24、cessary 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 i and ii, pag
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