BS 7159-1989 Code of practice for design and construction of glass-reinforced plastics (GRP) piping systems for individual plants or sites《特殊工厂或工地用玻璃纤维增强塑料管道系统的设计和建造实用规程》.pdf
《BS 7159-1989 Code of practice for design and construction of glass-reinforced plastics (GRP) piping systems for individual plants or sites《特殊工厂或工地用玻璃纤维增强塑料管道系统的设计和建造实用规程》.pdf》由会员分享,可在线阅读,更多相关《BS 7159-1989 Code of practice for design and construction of glass-reinforced plastics (GRP) piping systems for individual plants or sites《特殊工厂或工地用玻璃纤维增强塑料管道系统的设计和建造实用规程》.pdf(90页珍藏版)》请在麦多课文档分享上搜索。
1、BRITISH STANDARD BS7159:1989 Code of practice for Design and construction of glass reinforced plastics (GRP) piping systems for individual plants or sites UDC 66.026:621.644.07:621.643.2-036.5:678.067.5-462BS7159:1989 This British Standard, having been prepared under the directionof the Plastics Sta
2、ndardsPolicy Committee, waspublished under the authorityof the Board of BSIandcomes into effect on 31 October 1989 BSI 02-2000 The following BSI references relate to the work on this standard: Committee reference PLM/9 Draft for comment 88/35803 DC ISBN 0 580 17499 9 Committees responsible for this
3、British Standard The preparation of this British Standard was entrusted by the Plastics Standards Policy Committee (PLM/-) to Technical Committee PLM/9, upon which the following bodies were represented: British Board of Agrment British Gas plc British Plastics Federation British Plumbing Fittings Ma
4、nufacturers Association British Valve and Actuator Manufacturers Association Department of the Environment (Building Research Establishment) Department of the Environment (Construction Industries Directorate) Department of the Environment (Property Services Agency) Department of Transport Electricit
5、y Supply Industry in England and Wales Engineering Equipment and Materials Users Association Health and Safety Executive Institution of Civil Engineers Institution of Gas Engineers Institution of Production Engineers Institution of Water and Environmental Management (IWEM) National Association of Pl
6、umbing, Heating and Mechanical Services Contractors Plastics and Rubber Institute Plastics Land Drainage Manufacturers Association Royal Institute of Public Health and Hygiene Society of British Gas Industries Water Authorities Association Water Companies Association Water Research Centre The follow
7、ing bodies were also represented in the drafting of the standard, through subcommittees and panels: Association of Consulting Engineers Department of Trade and Industry (National Engineering Laboratory) Federation of Civil Engineering Contractors Institution of Mechanical Engineers Pipeline Industri
8、es Guild RAPRA Technology Ltd. Amendments issued since publication Amd. No. Date of issue CommentsBS7159:1989 BSI 02-2000 i Contents Page Committees responsible Inside front cover Foreword v Section 1. General 1.1 Scope 1 1.2 Definitions 1 1.3 Abbreviations 1 1.4 Symbols 2 1.5 Information and requir
9、ements to be agreed and documented 4 Section 2. Design objectives and general recommendations 2.1 Basis of design 6 2.2 Sizes, dimensions and tolerances 6 Section 3. Materials 3.1 Thermosetting resin systems 8 3.2 Fibrous reinforcement 8 3.3 Surface tissues 8 3.4 Aggregates and fillers 8 3.5 Thermop
10、lastics liners 8 3.6 Cement for bonding spigot and socket joints 9 3.7 Non-metallic materials for potable water applications 9 Section 4. Mechanical properties and design stress or design strain 4.1 General 10 4.2 Mechanical properties 10 4.3 Design stress and design strain 11 4.4 Temperature of def
11、lection 14 Section 5. Design for pressure containment 5.1 General 16 5.2 Pressure ratings 16 5.3 Reference laminates 16 5.4 Determining reference laminates 17 5.5 Thickness of reference laminates 17 5.6 Identification of laminate construction 17 Section 6. Allowable vacuum rating for pipes made usin
12、g reference laminates 6.1 Determination of allowable vacuum 22 6.2 Increasing allowable external pressure 22 6.3 Stiffening rings 22 Section 7. Flexibility and stress analyses and factors 7.1 General 23 7.2 Calculation of temperature change for flexibility analysis 23 7.3 Stress analysis of flexible
13、 piping systems 24 7.4 Accommodation of expansion as longitudinal compressive strain 45 Section 8. General layout considerations 8.1 Thermal effects 47 8.2 Site joints 47 8.3 Isolation 47 8.4 Heat tracing 47 8.5 Nearby pipes 47 8.6 Vulnerability 47BS7159:1989 ii BSI 02-2000 Page 8.7 Transient vacuum
14、 conditions 47 8.8 Vibration 47 8.9 Fabrications 48 8.10 Conduction of electricity 48 8.11 Conduction of heat 48 8.12 Relationship between circumferential and longitudinal properties of straight pipe lengths 48 Section 9. Pipe supports and anchorages 9.1 General 49 9.2 Allowable loadings 49 9.3 Allo
15、wable deflection 49 9.4 Loading conditions 49 9.5 Support span calculations 49 9.6 Wind loads 50 Section 10. Methods of jointing 10.1 General requirements for laminated joints 51 10.2 Butt joints in unlined pipes 53 10.3 Butt joints in lined pipes 53 10.4 Spigot and socket joints in unlined pipes 53
16、 10.5 Spigot and socket joints in lined pipes 54 10.6 Flanged joints 54 10.7 Environmental conditions 55 Section 11. Quality assurance 11.1 General 60 11.2 Materials 60 11.3 Conditions in works 60 11.4 Conditions on site 60 11.5 Workmanship 60 11.6 Thermoplastics linings 60 11.7 Spark testing of wel
17、ds 61 11.8 Lay-up 61 11.9 Cure 62 11.10 Marking 62 11.11 Inspection 62 11.12 Testing 63 Appendix A Requirements for non-metallic materials for use in contact with potable water 64 Appendix B Determination of design strain from mechanical test data 64 Appendix C Notes on flexibility and stress analys
18、is 66 Appendix D Dimensional design details of fittings 69 Appendix E Non-destructive testing (NDT) 73 Appendix F Procedure approval tests 75 Appendix G Repair procedures 77 Appendix H Inspection 79 Appendix J Bibliography 79BS7159:1989 BSI 02-2000 iii Page Figure 2.1 Flow chart of design procedure
19、7 Figure 4.1 Unit modulus/winding angle 13 Figure 4.2 Variation of the Poisson ratio with winding angle for filament-wound pipe 13 Figure 4.3 Reduction of strain class ratings as a function of fatigue conditions in service 15 Figure 7.1 Types of bends and associated factors 26 Figure 7.2 Flexibility
20、 factors for smooth bends 27 Figure 7.3 Flexibility factors for mitred bends 28 Figure 7.4 In-plane longitudinal SIFs for smooth bends 29 Figure 7.5 In-plane longitudinal SIFs for mitred bends 30 Figure 7.6 In-plane circumferential SIFs for smooth bends 31 Figure 7.7 In-plane circumferential SIFs fo
21、r mitred bends 32 Figure 7.8 Out-of-plane longitudinal SIFs for smooth bends 33 Figure 7.9 Out-of-plane longitudinal SIFs for mitred bends 34 Figure 7.10 Out-of-plane circumferential SIFs for smooth bends 35 Figure 7.11 Out-of-plane circumferential SIFs for mitred bends 36 Figure 7.12 Types of tees
22、and associated factors 38 Figure 7.13 Stress intensification factors for tees 39 Figure 7.14 Details of moulded tees 40 Figure 7.15 Details of set-on or set-in tees 41 Figure 7.16 Pressure stress multipliers for tees 42 Figure 10.1 Butt joints 52 Figure 10.2 Flange construction 55 Figure D.1 Dimensi
23、ons of GRP pipe fittings 70 Figure D.2 Dimensions of non-preferred GRP flanged fittings 72 Table 4.1 Mechanical properties of laminate layers 10 Table 4.2 Types of laminate construction 10 Table 4.3 Strain class ratings 12 Table 4.4 Application of strain classifications to environmental conditions 1
24、2 Table 5.1 Reference laminates and their properties 17 Table 5.2 Reference laminates for construction of class 1 systems 18 Table 5.3 Reference laminates for construction of class 2 systems 19 Table 5.4 Reference laminates for construction of class 3 systems 20 Table 5.5 Reference laminates for con
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