DIN EN 1999-1-5-2017 Eurocode 9 - Design of aluminium structures - Part 1-5 Shell structures German version EN 1999-1-5 2007 + AC 2009《欧洲法规9 铝结构件的设计 第1-5部分 壳层结构 德文版本EN 1999-1-5-200.pdf
《DIN EN 1999-1-5-2017 Eurocode 9 - Design of aluminium structures - Part 1-5 Shell structures German version EN 1999-1-5 2007 + AC 2009《欧洲法规9 铝结构件的设计 第1-5部分 壳层结构 德文版本EN 1999-1-5-200.pdf》由会员分享,可在线阅读,更多相关《DIN EN 1999-1-5-2017 Eurocode 9 - Design of aluminium structures - Part 1-5 Shell structures German version EN 1999-1-5 2007 + AC 2009《欧洲法规9 铝结构件的设计 第1-5部分 壳层结构 德文版本EN 1999-1-5-200.pdf(67页珍藏版)》请在麦多课文档分享上搜索。
1、March 2017 English price group 26No 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 91.010.30; 91.080.17!%bVj“2635171w
2、ww.din.deDIN EN 1999-1-5Eurocode 9 Design of aluminium structures Part 15: Shell structures;English version EN 199915:2007 + AC:2009,English translation of DIN EN 1999-1-5:2017-03Eurocode 9 Bemessung und Konstruktion von Aluminiumtragwerken Teil 15: Schalentragwerke;Englische Fassung EN 199915:2007
3、+ AC:2009,Englische bersetzung von DIN EN 1999-1-5:2017-03Eurocode 9 Calcul des structures en aluminium Partie 15: Coques;Version anglaise EN 199915:2007 + AC:2009,Traduction anglaise de DIN EN 1999-1-5:2017-03SupersedesDIN EN 199915:201005www.beuth.deDTranslation by DIN-Sprachendienst.In case of do
4、ubt, the German-language original shall be considered authoritative.Document comprises 67 pages 02.17 DIN EN 1999-1-5:2017-03 2A comma is used as the decimal marker. National foreword This document (EN 1999-1-5:2007 + AC:2009) has been prepared by Technical Committee CEN/TC 250 “Structural Eurocodes
5、” (Secretariat: BSI, United Kingdom). The responsible German body involved in its preparation was DIN-Normenausschuss Bauwesen (DIN Standards Committee Building and Civil Engineering), Working Committee NA 005-08-07 AA Aluminium-konstruktionen (SpA zu CEN/TC 250/SC 9 und CEN/TC 135). For this editio
6、n, only the German version has been amended. The start and finish of text introduced or altered by amendment is indicated in the text by tags 89 to distinguish this from European amendments. Amendments This standard differs from DIN EN 1999-1-5:2010-05 as follows: a) the German translation has been
7、amended linguistically. The English text is unaffected. Previous editions DIN EN 1999-1-5: 2010-05 EUROPEAN STANDARD NORME EUROPENNE EUROPISCHE NORM EN 1999-1-5 February 2007 +AC November 2009 ICS 13.220.50; 91.010.30; 91.080.10 English version Eurocode 9: Design of aluminium structures Part 1-5: Sh
8、ell structures Eurocode 9: Calcul des structures en aluminium Partie 1-5: Coques Eurocode 9: Bemessung und Konstruktion von Aluminium-tragwerken Teil 1-5: Schalentragwerke EN 1999-1-5:2007 was approved by CEN on 2006-10-11 and Corrigendum AC:2009 on 2009-11-04. CEN members are bound to comply with t
9、he CEN/CENELEC Internal Regulations which stipulate the conditions for giving this European Standard the status of a national standard without any alteration. Up-to-date lists and bibliographical references concerning such national standards may be obtained on application to the Management Centre or
10、 to any CEN member. The European Standards exist in three official versions (English, French, German). A version in any other language made by translation under the responsibility of a CEN member into its own language and notified to the Management Centre has the same status as the official versions
11、. CEN members are the national standards bodies of Austria, Belgium, Bulgaria, Cyprus, Czech Republic, Denmark, Estonia, Finland, France, Germany, Greece, Hungary, Iceland, Ireland, Italy, Latvia, Lithuania, Luxembourg, Malta, Netherlands, Norway, Poland, Portugal, Romania, Slovakia, Slovenia, Spain
12、, Sweden, Switzerland, and United Kingdom. EUROPEAN COMMITTEE FOR STANDARDIZATION COMIT EUROPEN DE NORMALISATIONEUROPISCHES KOMITEE FR NORMUNG Management Centre: rue de Stassart, 36 B-1050 Brussels 2009 CEN All rights of exploitation in any form and by any means reserved worldwide for CEN national M
13、embers. Ref. No. EN 1999-1-5:2007+AC:2009 E2 Content Page Foreword 5 National Annex for EN 1999-1-5 7 1 General . 8 1.1 Scope . 8 1.1.1 Scope of EN 1999 8 1.1.2 Scope of EN 1999-1-5 . 8 1.2 Normative references. 9 1.3 Terms and definitions 10 1.3.1 Structural forms and geometry 10 1.3.2 Special defi
14、nitions for buckling calculations. 11 1.4 Symbols . 12 1.5 Sign conventions . 15 1.6 Coordinate systems 15 2 Basis of design 17 2.1 General 17 2.2 Consequence class and execution class .17 3 Materials and geometry 17 3.1 Material properties. 17 3.2 Design values of geometrical data. 17 3.3 Geometric
15、al tolerances and geometrical imperfections. 18 4 Durability . 18 5 Structural analysis. 18 5.1 Geometry . 18 5.2 Boundary conditions 19 5.3 Actions and environmental influences 19 5.4 Stress resultants and stresses . 20 5.5 Types of analysis . 20 6 Ultimate limit state 21 6.1 Resistance of cross se
16、ction 21 6.1.1 Design values of stresses . 21 6.1.2 Design values of resistance 22 6.1.3 Stress limitation . 22 6.1.4 Design by numerical analysis 22 6.2 Buckling resistance 23 6.2.1 General 23 6.2.2 Buckling-relevant geometrical tolerances . 24 6.2.3 Shell in compression and shear . 25 6.2.4 Effect
17、 of welding . 27 6.2.5 Design by numerical analysis 30 7 Serviceability limit states 31 7.1 General 31 7.2 Deflections. 31 Annex A normative - Expressions for shell buckling analysis 32 A.1 Unstiffened cylindrical shells of constant wall thickness . 32 A.1.1 Notations and boundary conditions . 32 A.
18、1.2 Meridional (axial) compression. 32 A.1.2.1 Critical meridional buckling stresses. 32 EN 1999-1-5:2007 + AC:2009 (E) DIN EN 1999-1-5:2017-03 A.1.2.2 Meridional buckling parameter 33 A.1.3 Circumferential (hoop) compression . 34 A.1.3.1 Critical circumferential buckling stresses 34 A.1.3.2 Circumf
19、erential buckling parameter 35 A.1.4 Shear 37 A.1.4.1 Critical shear buckling stresses 37 A.1.4.2 Shear buckling parameters. 38 A.1.5 Meridional (axial) compression with coexistent internal pressure 38 A.1.5.1 Pressurised critical meridional buckling stress 38 A.1.5.2 Pressurised meridional buckling
20、 parameters . 38 A.1.6 Combinations of meridional (axial) compression, circumferential (hoop) compression and shear39 A.2 Unstiffened cylindrical shells of stepwise wall thickness 40 A.2.1 General 40 A.2.1.1 Notations and boundary conditions . 40 A.2.1.2 Geometry and joint offsets 41 A.2.2 Meridiona
21、l (axial) compression. 41 A.2.3 Circumferential (hoop) compression . 41 A.2.3.1 Critical circumferential buckling stresses 41 A.2.3.2 Buckling strength verification for circumferential compression . 44 A.2.4 Shear 44 A.2.4.1 Critical shear buckling stress. 44 A.2.4.2 Buckling strength verification f
22、or shear 45 A.3 Unstiffened lap jointed cylindrical shells. 45 A.3.1 General 45 A.3.1.1 Definitions . 45 A.3.1.2 Geometry and stress resultants 45 A.3.2 Meridional (axial) compression. 45 A.3.3 Circumferential (hoop) compression . 45 A.3.4 Shear 46 A.4 Unstiffened conical shells 46 A.4.1 General 46
23、A.4.1.1 Notation . 46 A.4.1.2 Boundary conditions 46 A.4.1.3 Geometry . 47 A.4.2 Design buckling stresses 47 A.4.2.1 Equivalent cylinder 47 A.4.3 Buckling strength verification . 47 A.4.3.1 Meridional compression 47 A.4.3.2 Circumferential (hoop) compression . 48 A.4.3.3 Shear and uniform torsion .
24、48 A.5 Stiffened cylindrical shells of constant wall thickness 48 A.5.1 General 48 A.5.2 Isotropic walls with meridional stiffeners . 48 A.5.2.1 General 48 A.5.2.2 Meridional (axial) compression. 49 A.5.2.3 Circumferential (hoop) compression . 49 A.5.2.4 Shear 49 A.5.3 Isotropic walls with circumfer
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