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本文(EN 1993-1-10-2005 en Eurocode 3 Design of steel structures - Part 1-10 Material toughness and through-thickness properties (Incorporating Corrigenda December 2005 and March 2009)《欧.pdf)为本站会员(bonesoil321)主动上传,麦多课文库仅提供信息存储空间,仅对用户上传内容的表现方式做保护处理,对上载内容本身不做任何修改或编辑。 若此文所含内容侵犯了您的版权或隐私,请立即通知麦多课文库(发送邮件至master@mydoc123.com或直接QQ联系客服),我们立即给予删除!

EN 1993-1-10-2005 en Eurocode 3 Design of steel structures - Part 1-10 Material toughness and through-thickness properties (Incorporating Corrigenda December 2005 and March 2009)《欧.pdf

1、BRITISH STANDARD BS EN 1993-1-10:2005Eurocode 3: Design of steel structures Part 1-10: Material toughness and through-thickness propertiesICS 91.010.30; 91.080.10Incorporating Corrigenda December 2005, September 2006 and March 2009BS EN 1993-1-10:2005ISBN 978 0 580 66401 4Amendments/corrigenda issue

2、d since publicationAmd. No. Date Comments 16293 Corrigendum No. 1June 2006 Implementation of CEN corrigendum December 200516569 Corrigendum No. 2September 2006 Revision of national foreword and supersession details28 February 2010 Implementation of CEN corrigendum March 2009National forewordThis Bri

3、tish Standard is the UK implementation of EN 1993-1-10:2005, incorporating corrigenda December 2005 and March 2009. It supersedes DD ENV 1993-1-1:1992, which is withdrawn.The start and finish of text introduced or altered by corrigendum is indicated in the text by tags. Tags indicating changes to CE

4、N text carry the number of the CEN corrigendum. For example, text altered by December 2005 corrigendum is indicated by .The structural Eurocodes are divided into packages by grouping Eurocodes for each of the main materials: concrete, steel, composite concrete and steel, timber, masonry and aluminiu

5、m; this is to enable a common date of withdrawal (DOW) for all the relevant parts that are needed for a particular design. The conflicting national standards will be withdrawn at the end of the co-existence period, after all the EN Eurocodes of a package are available.Following publication of the EN

6、, there is a period allowed for national calibration during which the National Annex is issued, followed by a co-existence period of a maximum three years. During the co-existence period Member States are encouraged to adapt their national provisions. At the end of this co-existence period, the conf

7、licting parts of national standard(s) will be withdrawn.In the UK, the primary corresponding national standards are:BS 449-2:1969, Specification for the use of structural steel in building. Metric units BS 5400-3:2000, Steel, concrete and composite bridges. Code of practice for design of steel bridg

8、esBS 5950-1:2000, Structural use of steelwork in building. Code of practice for design. Rolled and welded sections BS EN 1993-1-10 will partially supersede BS 449-2, BS 5400-3 and BS 5950-1, which will be withdrawn by March 2010.The UK participation in its preparation was entrusted by Technical Comm

9、ittee B/525, Building and civil engineering structures, to Subcommittee B/525/31, Structural use of steel.A list of organizations represented on this subcommittee can be obtained on request to its secretary.This British Standard, was published under the authority of the Standards Policy and Strategy

10、 Committee on18 May 2005 BSI 2010BS EN 1993-1-10:2005Where a normative part of this EN allows for a choice to be made at the national level, the range and possible choice will be given in the normative text as Recommended Values, and a note will qualify it as a Nationally Determined Parameter (NDP).

11、 NDPs can be a specific value for a factor, a specific level or class, a particular method or a particular application rule if several are proposed in the EN.To enable EN 1993-2 to be used in the UK, the NDPs have been published in a National Annex, which has been issued separately by BSI.This publi

12、cation does not purport to include all the necessary provisions of a contract. Users are responsible for its correct application. Compliance with a British Standard cannot confer immunity from legal obligations.iblankE U R O P E A N S T A N D A R DN O R M E E U R O P E N N EE U R O P I S C H E N O R

13、 MEN 1993-1-10May 2005ICS 91.010.30 Supersedes ENV 1993-1-1:1992Incorporating Corrigenda December 2005English versionEurocode 3: Design of steel structures - Part 1-10: Material toughness and through-thickness propertiesEurocode 3 - Calcul des structures en acier vis-vis de latnacit et des proprits

14、dans le sens de lpaisseur -Partie 1-10 : Choix des qualits dacierEurocode 3: Bemessung und Konstruktion von Stahlbauten - Teil 1-10 :Stahlsortenauswahl im Hinblick auf Bruchzhigkeit und Eigenschaften in DickenrichtungThis European Standard was approved by CEN on 20 June 2003.CEN members are bound to

15、 comply with the CEN/CENELEC Internal Regulations which stipulate the conditions for giving this EuropeanS t a n d a r d t h e s t a t u s o f a n a t i o n a l s t a n d a r d w i t h o u t a n y a l t e r a t i o n . U p - t o - d a t e l i s t s a n d b i b l i o g r a p h i c a l r e f e r e n c

16、 e s c o n c e r n i n g s u c h n a t i o n a l standards may be obtained on application to the Management Centre or to any CEN member.This European Standard exists in three official versions (English, French, German). A version in any other language made by translation under the responsibility of

17、a CEN member into its own language and notified to the Management Centre has the same status as the official versions.CEN members are the national standards bodies of Austria, Belgium, Cyprus, Czech Republic, Denmark, Estonia, Finland, France, Germany, Greece, Hungary, Iceland, Ireland, Italy, Latvi

18、a, Lithuania, Luxembourg, Malta, Netherlands, Norway, Poland, Portugal, Slovakia,Slovenia, Spain, Sweden, Switzerland and United Kingdom.Management Centre: rue de stassart, 36 B-1050 Brussels 2005 CEN All rights of exploitation in any form and by any means reserved worldwide for CEN national Members

19、.EUROPEAN COMMITTEE FOR STANDARDIZATIONCOMIT EUROPENDE NORMALISATIONEUROPISCHES KOMITEE FR NORMUNGRef. No. EN 1993-1-10:2005: Eand March 20092Contents Page1Gral61.1 Scope.61.2 Normative references.61.3 Terms and definitions61.4 Symbols.8aur toghnes2.1 General82.2 Procedure.82.3 Maximum permittedthic

20、kness values102.4 Evaluation using fracture mechanics12So-proties 33.1 General.133.2 Procedure14BS EN 1993-1-10:2005EN 1993-1-10:2005/AC3Foreword This European Standard EN 1993, Eurocode 3: Design of steel structures, has been prepared by TechnicalCommittee CEN/TC250 Structural Eurocodes , the Secre

21、tariat of which is held by BSI. CEN/TC250 isresponsible for all Structural Eurocodes.This EuropeanStandard shall be giventhe status of a NationalStandard, either bypublication of anidenticaltext or by endorsement, at the latest byNovember 2005, and conflicting National Standards shall be withdrawnat

22、 latest byMarch 2010. This Eurocode supersedes ENV 1993-1-1.According to the CEN-CENELEC Internal Regulations, the National Standard Organizations of the following countries are bound to implement these European Standard: Austria, Belgium, Cyprus, CzechRepublic, Denmark, Estonia, Finland, France, Ge

23、rmany, Greece, Hungary, Iceland, Ireland, Italy, Latvia,Lithuania, Luxembourg, Malta, Netherlands, Norway, Poland, Portugal, Slovakia, Slovenia, Spain, Sweden,Switzerland and United Kingdom. Background to the Eurocodeprogramme In 1975, the Commissionof the EuropeanCommunity decidedon an action progr

24、amme in the fieldofconstruction, based on article 95 of the Treaty. The objective of the programme was the elimination of technical obstacles to trade and the harmonization oftechnicalspecifications.Within this actionprogramme, the Commission took the initiative to establish a set of harmonized tech

25、nicalrules for the design of construction works which, ina first stage, would serve as an alternative to the nationalrules inforce in the Member States and, ultimately, would replace them. For fifteen years, the Commission, with the help of a Steering Committee with Representatives of Member States,

26、 conducted the development of the Eurocodes programme, which led to the first generation of European codes in the 1980s.In 1989, the Commissionand the Member States of the EU and EFTA decided, on the basis of anagreement1between the Commission and CEN, to transfer the preparation and the publication

27、 of the Eurocodes to CEN through a series of Mandates, in order to provide them with a future status of EuropeanStandard (EN). Thislinks de facto the Eurocdes with the provisons of al the Councils Directives and/or ComisionsDecisions dealing with European standards (e.g. the Council Directive 89/106

28、/EEC on constructionproducts - CPD - and Council Directives 93/37/EEC, 92/50/EEC and 89/440/EEC on public works and services andequivalent EFTA Directives initiated in pursuit of settingup the internal market). The Structural Eurocode programme comprises the following standards generally consisting

29、of a number of Parts: EN 1990 Eurocode 0: Basis of Structural DesignEN 1991 Eurocode 1: Actions on structures EN 1992 Eurocode 2: Design of concretestructures EN 1993 Eurocode 3: Design of steel structures EN 1994 Eurocode 4: Design of composite steel and concrete structuresEN 1995 Eurocode 5: Desig

30、n of timber structuresEN 1996 Eurocode 6: Design of masonrystructures EN 1997 Eurocode 7: Geotechnical designEN 1998 Eurocode 8: Designof structures for earthquake resistance EN 1999 Eurocode 9: Design of aluminiumstructures1Agreement between the Commission of the European Communities and the Europe

31、an Committee for Standardisation (CEN) concerning the work on EUROCODESfor the design of building and civilengineering works (BC/CEN/03/89).BS EN 1993-1-10:2005EN 1993-1-10:2005/AC4Eurocode standards recognize the responsibility of regulatory authorities in each Member State and have safeguarded the

32、ir right to determine values related to regulatory safety matters at national level where these continue to vary from State to State. Status and field of application of Eurocodes The Member States of the EU and EFTA recognize that Eurocodes serve as reference documents for thefollowing purposes: as

33、a means to prove compliance of building and civil engineering works with the essential requirementsof Council Directive 89/106/EEC, particularly Essential Requirement N1 Mechanical resistance and stability and Essential Requirement N2 Safety in case of fire; as a basis for specifying contracts for c

34、onstructionworks and related engineering services; mwkdrawuphmzed hlpcifosfcotuopdut(ENs andETAs)The Eurocodes, as far as they concern the construction works themselves, have adirect relationship with the Interpretative Documents2referred to in Article 12 of the CPD, although they are of a different

35、 nature fromharmonized product standards3. Therefore, technical aspects arising from the Eurocodes work need to beadequately considered by CEN Technical Committees and/or EOTA Working Groups working on productstandards with a view to achieving full compatibility of these technical specifications wit

36、h the Eurocodes. The Eurocode standards provide common structural design rules for everyday use for the design of whole structures and component products of both a traditional and an innovative nature. Unusual forms of construction or design conditions are not specifically covered and additional exp

37、ert consideration will be required bythe designer in suchcases.National Standards implementing Eurocodes The National Standards implementing Eurocodes will comprise the full text of the Eurocode (including anyannexes), as published by CEN, which may be preceded by a National title page and National

38、foreword, and may be followed by a National annex. The National annex may only contain information on those parameters which are left open in the Eurocodefor national choice, known as Nationally Determined Parameters, to be used for the design of buildings andcivil engineering works to be constructe

39、d in the country concerned,i.e. : usd/lahvsgvihEuatobuaymlytcnrypecif dt(georphica, matic, e.)e.g. snowmap,thedobuswternvprodusare givn theEurocde.It maycontain dcsoheaplicton fiomaie nx,refo-rdycpltryifomatin oasit heusr toaply theEurocde. 2According to Art. 3.3 of the CPD, the essential requiremen

40、ts (ERs) shall be given concrete form in interpretative documents for the creation of the necessarylinks between the essential requirements and the mandatesfor harmonized ENs andETAGs/ETAs.3 According to Art. 12 of theCPD the interpretative documents shall : a) give concrete form to the essential re

41、quirements by harmonizing the terminology and the technical bases and indicating classes or levels for eachrequirement where necessary ; b) indicatemethods ofcorrelating theseclasses or levels of requirement with thetechnical specifications, e.g. methods of calculation and of proof,technical rules f

42、or project design,etc. ; c) serve as a reference for theestablishment of harmonized standards and guidelines for European technical approvals.The Eurocodes, de facto, playa similar role in the field of the ER 1 and a part of ER 2.BS EN 1993-1-10:2005EN 1993-1-10:2005/AC5Links between Eurocodes and h

43、armonized technical specifications (ENs and ETAs) forproducts There is a need for consistency between the harmonized technical specifications for construction productsand the technical rules for works4. Furthermore, all the information accompanying the CE Marking of theconstruction products, which r

44、efer to Eurocodes, should clearly mention which Nationally DeterminedParameters have been taken intoaccount. National annex for EN 1993-1-10 This standard gives alternative procedures, values and recommendations withnotes indicating where nationalchoices may have to be made. The National Standard im

45、plementing EN 1993-1-10 should have a NationalAnnex containing all Nationally Determined Parameters forthe designof steel structures to be constructed inthe relevantcountry. National choice is allowed in EN 1993-1-10 through clauses: 2.2(5) 3.1(1) 4see Art.3.3 andArt.12ofthe CPD, aswell as clauses4.

46、2, 4.3.1, 4.3.2 and 5.2 of ID 1. BS EN 1993-1-10:2005EN 1993-1-10:2005/AC61 G e n e r a l 1.1 Scope (1) EN 1993-1-10 contains design guidance for the selection of steel for fracture toughness and for through thickness properties of welded elements where there is a significant risk of lamellar tearin

47、g duringfabrication.(2) Section 2 applies to steel grades S 235 to S 690. However section 3 applies to steel grades S 235 toS 460 only. NOTE EN 1993-1-1 is restricted to steels S235 to S460.(3) The rules and guidance given in section 2 and 3 assume that the construction will be executed inaccordance

48、 with EN 1090. 1.2 Normative references(1) This European Standard incorporates by dated and undated reference provisions from otherpublications. These normative references are cited at the appropriate places in the text and the publicationsare listed hereafter. For dated references, subsequent amend

49、mentsto orrevisions of any of these publications apply to this European Standard only when incorporated in it by amendment or revision. For undatedreferences the latest edition of the publication referred to applies(including amendments). NOTE The Eurocodes werepublished as EuropeanPrestandards. The following European Standardswhich are published or in preparation are cited in normative clauses: EN 1011-2 Welding. Recommendations for welding of metallic materials: Part 2: Arc welding of ferritic steels EN 1090 Execution ofsteel structuresEN

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