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本文(BS EN 754-2-2016 Aluminium and aluminium alloys Cold drawn rod bar and tube Mechanical properties《铝和铝合金 冷拉杆材 棒材和管材 机械性能》.pdf)为本站会员(wealthynice100)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!

BS EN 754-2-2016 Aluminium and aluminium alloys Cold drawn rod bar and tube Mechanical properties《铝和铝合金 冷拉杆材 棒材和管材 机械性能》.pdf

1、BS EN 754-2:2016Aluminium and aluminiumalloys Cold drawn rod/barand tubePart 2: Mechanical propertiesBSI Standards PublicationWB11885_BSI_StandardCovs_2013_AW.indd 1 15/05/2013 15:06BS EN 754-2:2016 BRITISH STANDARDNational forewordThis British Standard is the UK implementation of EN 754-2:2016. It

2、supersedes BS EN 754-2:2013 which is withdrawn.The UK participation in its preparation was entrusted to Technical Committee NFE/35, Light metals and their alloys.A list of organizations represented on this committee can be obtained on request to its secretary.This publication does not purport to inc

3、lude all the necessary provisions of a contract. Users are responsible for its correct application. The British Standards Institution 2016.Published by BSI Standards Limited 2016ISBN 978 0 580 93158 1 ICS 77.150.10 Compliance with a British Standard cannot confer immunity from legal obligations.This

4、 British Standard was published under the authority of the Standards Policy and Strategy Committee on 30 November 2016.Amendments/corrigenda issued since publicationDate T e x t a f f e c t e dBS EN 754-2:2016EUROPEAN STANDARD NORME EUROPENNE EUROPISCHE NORM EN 754-2 November 2016 ICS 77.150.10 Supe

5、rsedes EN 754-2:2013English Version Aluminium and aluminium alloys - Cold drawn rod/bar and tube - Part 2: Mechanical properties Aluminium et alliages daluminium - Barres et tubes tirs - Partie 2: Caractristiques mcaniques Aluminium und Aluminiumlegierungen - Gezogene Stangen und Rohre - Teil 2: Mec

6、hanische EigenschaftenThis European Standard was approved by CEN on 15 August 2016. CEN members are bound to comply with the 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 an

7、d bibliographical references concerning such national standards may be obtained on application to the CEN-CENELEC 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

8、responsibility of a CEN member into its own language and notified to the CEN-CENELEC Management Centre has the same status as the official versions. CEN members are the national standards bodies of Austria, Belgium, Bulgaria, Croatia, Cyprus, Czech Republic, Denmark, Estonia, Finland, Former Yugosla

9、v Republic of Macedonia, France, Germany, Greece, Hungary, Iceland, Ireland, Italy, Latvia, Lithuania, Luxembourg, Malta, Netherlands, Norway, Poland, Portugal, Romania, Slovakia, Slovenia, Spain, Sweden, Switzerland, Turkey andUnited Kingdom. EUROPEAN COMMITTEE FOR STANDARDIZATION COMIT EUROPEN DE

10、NORMALISATION EUROPISCHES KOMITEE FR NORMUNG CEN-CENELEC Management Centre: Avenue Marnix 17, B-1000 Brussels 2016 CEN All rights of exploitation in any form and by any means reserved worldwide for CEN national Members. Ref. No. EN 754-2:2016 EBS EN 754-2:2016EN 754-2:2016 (E) 2 Contents Page Europe

11、an foreword . 3 1 Scope 4 2 Normative references 4 3 Mechanical property limits . 4 3.1 General 4 3.2 Elongation 4 3.3 Reference list of the tables of mechanical properties of the relevant aluminium and aluminium alloys . 5 3.4 Detailed tables of mechanical properties. 6 Annex A (informative) List o

12、f tempers used in Tables 1 to 37 37 Bibliography . 39 BS EN 754-2:2016EN 754-2:2016 (E) 3 European foreword This document (EN 754-2:2016) has been prepared by Technical Committee CEN/TC 132 “Aluminium and aluminium alloys”, the secretariat of which is held by AFNOR. This European Standard shall be g

13、iven the status of a national standard, either by publication of an identical text or by endorsement, at the latest by May 2017, and conflicting national standards shall be withdrawn at the latest by May 2017. Attention is drawn to the possibility that some of the elements of this document may be th

14、e subject of patent rights. CEN and/or CENELEC shall not be held responsible for identifying any or all such patent rights. This document supersedes EN 754-2:2013. CEN/TC 132 affirms its policy that if a patentee refuses to grant licenses on standardized products under reasonable and not discriminat

15、ory conditions, this product will be removed from the corresponding document. EN 754 comprises the following parts under the general title “Aluminium and aluminium alloys Cold drawn rod/bar and tube“: Part 1: Technical conditions for inspection and delivery Part 2: Mechanical properties Part 3: Roun

16、d bars, tolerances on dimensions and form Part 4: Square bars, tolerances on dimensions and form Part 5: Rectangular bars, tolerances on dimensions and form Part 6: Hexagonal bars, tolerances on dimensions and form Part 7: Seamless tubes, tolerances on dimensions and form Part 8: Porthole tubes, tol

17、erances on dimensions and form According to the CEN/CENELEC Internal Regulations, the national standards organizations of the following countries are bound to implement this European Standard: Austria, Belgium, Bulgaria, Croatia, Cyprus, Czech Republic, Denmark, Estonia, Finland, Former Yugoslav Rep

18、ublic of Macedonia, France, Germany, Greece, Hungary, Iceland, Ireland, Italy, Latvia, Lithuania, Luxembourg, Malta, Netherlands, Norway, Poland, Portugal, Romania, Slovakia, Slovenia, Spain, Sweden, Switzerland, Turkey and the United Kingdom. BS EN 754-2:2016EN 754-2:2016 (E) 4 1 Scope This Europea

19、n Standard specifies the mechanical property limits resulting from tensile testing applicable to aluminium and aluminium alloy cold drawn rod/bar and tube. Technical conditions for inspection and delivery, including product and testing requirements, are specified in EN 754-1. Temper designations are

20、 defined in EN 515. The chemical composition limits for these materials are given in EN 573-3. 2 Normative references The following documents, in whole or in part, are normatively referenced in this document and are indispensable for its application. For dated references, only the edition cited appl

21、ies. For undated references, the latest edition of the referenced document (including any amendments) applies. EN 754-1:2016, Aluminium and aluminium alloys Cold drawn rod/bar and tube Part 1: Technical conditions for inspection and delivery EN ISO 6892-1, Metallic materials Tensile testing Part 1:

22、Method of test at room temperature (ISO 6892-1) 3 Mechanical property limits 3.1 General The mechanical properties shall be in conformity with those specified in Table 1 to Table 37 or those agreed upon between supplier and purchaser and stated in the order document. For all alloys the condition F (

23、as fabricated) can be used, but without guaranteed mechanical properties. Table 1 to Table 37 contain limits of mechanical property values obtained by tensile testing according to EN ISO 6892-1 after sampling and test piece preparation according to EN 754-1. NOTE The mechanical properties refer to t

24、est pieces taken in the longitudinal direction. Mechanical properties of test pieces taken in other directions can differ from those for the longitudinal direction quoted in this standard. Brinell hardness values given in Table 1 to Table 37 expressed as HBW values are for information only. 3.2 Elon

25、gation If not otherwise agreed, the A value shall be used. The A value for elongation is the % elongation measured over a gauge length of 05,65 S (where S0is the initial cross-sectional area of the test-piece), and expressed in percent. For certain products the supplier may choose (if not otherwise

26、specified in the order documents) to use the elongation based on A50mm.Consequently, values for the A50mmare included in the following tables. The A50mmvalue is the elongation measured over a gauge length of 50 mm and expressed in percent. Test pieces and their location in the specimen are given in

27、EN 754-1. BS EN 754-2:2016EN 754-2:2016 (E) 5 3.3 Reference list of the tables of mechanical properties of the relevant aluminium and aluminium alloys Page Table 1 : Aluminium EN AW-1050A Al 99,5 6 Table 2 : Aluminium EN AW-1200 AI 99,0 7 Table 3 : Alloy EN AW-2007 Al Cu4PbMgMn 8 Table 4 : Alloy EN

28、AW-2011 AI Cu6BiPb 9 Table 5 : Alloy EN AW-2011A AI Cu6BiPb(A) 10 Table 6 : Alloy EN AW-2014 AI Cu4SiMg 11 Table 7 : Alloy EN AW-2014A AI Cu4SiMg(A) 12 Table 8 : Alloy EN AW-2017A AI Cu4MgSi(A) 13 Table 9 : Alloy EN AW-2024 AI Cu4Mg1 14 Table 10 : Alloy EN AW-2030 AI Cu4PbMg 15 Table 11 : Alloy EN A

29、W-3003 AI Mn1Cu 16 Table 12 : Alloy EN AW-3103 AI Mn1 17 Table 13 : Alloy EN AW-5005 AI Mg1(B) 18 Table 14 : Alloy EN AW-5005A AI Mg1(C) 18 Table 15 : Alloy EN AW-5019 AI Mg5 19 Table 16 : Alloy EN AW-5049 Al Mg2Mn0,8 20 Table 17 : Alloy EN AW-5251 AI Mg2Mn0,3 21 Table 18 : Alloy EN AW-5052 AI Mg2,5

30、 22 Table 19 : Alloy EN AW-5154A AI Mg3,5(A) 23 Table 20 : Alloy EN AW-5754 AI Mg3 24 Table 21 : Alloy EN AW-5083 AI Mg4,5Mn0,7 25 Table 22 : Alloy EN AW-5086 AI Mg4 26 Table 23 : Alloy EN AW-6012 AI MgSiPb 27 Table 24 : Alloy EN AW-6026 AI MgSiBi 27 Table 25 : Alloy EN AW-6060 AI MgSi 28 Table 26 :

31、 Alloy EN AW-6061 AI Mg1SiCu 29 Table 27 : Alloy EN AW-6262 AI Mg1SiPb 30 Table 28 : Alloy EN AW-6262A AI Mg1SiSn 30 Table 29 : Alloy EN AW-6063 AI Mg0,7Si 31 Table 30 : Alloy EN AW-6063A AI Mg0,7Si(A) 32 Table 31 : Alloy EN AW-6064A AI Mg1SiBi 33 Table 32 : Alloy EN AW-6065 AI Mg1Bi1Si 33 Table 33

32、: Alloy EN AW-6082 AI Si1MgMn 34 BS EN 754-2:2016EN 754-2:2016 (E) 6 Table 34 : Alloy EN AW-7020 AI Zn4,5Mg1 34 Table 35 : Alloy EN AW-7022 AI Zn5Mg3Cu 35 Table 36 : Alloy EN AW-7049A AI Zn8MgCu 35 Table 37 : Alloy EN AW-7075 AI Zn5,5MgCu 36 3.4 Detailed tables of mechanical properties Table 1 Alumi

33、nium EN AW-1050A Al 99,5 Drawn rod/bar Temper Dimensions mm RmMPa Rp0,2MPa A % min. A50mm% min. HBW Typical value D aS bmin. max. min. max. O, H111 80 60 60 95 - - 25 22 20 H14 40 10 100 135 70 - 6 5 30 H16 15 5 120 160 105 - 4 3 35 H18 10 3 145 - 125 - 3 3 43 Drawn tube Temper Wall thickness t mm R

34、mMPa Rp0,2MPa A % min. A50mm% min. HBW Typical value min. max. min. max. O, H111 20 60 95 - - 25 22 20 H14 10 100 135 70 - 6 5 30 H16 5 120 160 105 - 4 3 35 H18 3 145 - 125 - 3 3 43 aD = Diameter for round bar. bS = Width across flats for square and hexagonal bar, thickness for rectangular bar. BS E

35、N 754-2:2016EN 754-2:2016 (E) 7 Table 2 Aluminium EN AW-1200 Al 99,0 Drawn rod/bar Temper Dimensions mm RmMPa Rp0,2MPa A % min. A50mm% min. HBW Typical value D aS bmin. max. min. max. O, H111 80 60 70 105 - - 20 16 23 H14 40 10 110 145 80 - 5 4 37 H16 15 5 135 170 115 - 3 3 45 H18 10 3 150 - 130 - 3

36、 3 50 Drawn tube Temper Wall thickness t mm RmMPa Rp0,2MPa A % min. A50mm% min. HBW Typical value min. max. min. max. O, H111 20 70 105 - - 20 16 23 H14 10 110 145 80 - 5 4 37 H16 5 135 170 115 - 3 3 45 H18 3 150 - 130 - 3 3 50 aD = Diameter for round bar. bS = Width across flats for square and hexa

37、gonal bar, thickness for rectangular bar. BS EN 754-2:2016EN 754-2:2016 (E) 8 Table 3 Alloy EN AW-2007 Al Cu4PbMgMn Drawn rod/bar Temper Dimensions mm RmMPa Rp0,2MPa A % min. A50mm% min. HBW Typical value D aS bmin. max. min. max. T3 c 30 30 D 80 30 30 S 80 370 340 - 240 220 - 7 6 5 - 95 95 T351 c 8

38、0 80 370 - 240 - 5 3 95 Drawn tube Temper Wall thickness t mm RmMPa Rp0,2MPa A % min. A50mm% min. HBW Typical value min. max. min. max. T3 c 20 370 - 250 - 7 5 95 T3510 T3511 c 20 370 - 240 - 5 3 95 aD = Diameter for round bar. bS = Width across flats for square and hexagonal bar, thickness for rect

39、angular bar. cProperties may be obtained by press quenching. BS EN 754-2:2016EN 754-2:2016 (E) 9 Table 4 Alloy EN AW-2011 Al Cu6BiPb Drawn rod/bar Temper Dimensions mm RmMPa Rp0,2MPa A % min. A50mm% min. HBW Typical value D aS bmin. max. min. max. T3 40 40 D 50 50 D 80 40 40 S 50 50 S 80 320 300 280

40、 - - - 270 250 210 - - - 10 10 10 8 - - 90 90 90 T8 80 80 370 - 270 - 8 6 115 Drawn tube Temper Wall thickness t mm RmMPa Rp0,2MPa A % min. A50mm% min. HBW Typical value min. max. min. max. T3 c 5 5 t 20 310 290 - - 260 240 - - 10 8 8 6 90 90 T8 20 370 - 275 - 8 6 115 aD = Diameter for round bar. bS

41、 = Width across flats for square and hexagonal bar, thickness for rectangular bar. cProperties may be obtained by press quenching. BS EN 754-2:2016EN 754-2:2016 (E) 10 Table 5 Alloy EN AW-2011A Al Cu6BiPb(A) Drawn rod/bar Temper Dimensions mm RmMPa Rp0,2MPa A % min. A50mm% min. HBW Typical value D a

42、S bmin. max. min. max. T3 40 40 D 50 50 D 80 40 40 S 50 50 S 80 320 300 280 - - - 270 250 210 - - - 10 10 10 8 - - 90 90 90 T8 80 80 370 - 270 - 8 6 115 Drawn tube Temper Wall thickness t mm RmMPa Rp0,2MPa A % min. A50mm% min. HBW Typical value min. max. min. max. T3 c 5 5 t 20 310 290 - - 260 240 -

43、 - 10 8 8 6 90 90 T8 20 370 - 275 - 8 6 115 aD = Diameter for round bar. bS = Width across flats for square and hexagonal bar, thickness for rectangular bar. cProperties may be obtained by press quenching. BS EN 754-2:2016EN 754-2:2016 (E) 11 Table 6 Alloy EN AW-2014 Al Cu4SiMg Drawn rod/bar Temper

44、Dimensions mm RmMPa Rp0,2MPa A % min. A50mm% min. HBW Typical value D aS bmin. max. min. max. O, H111 80 80 - 240 - 125 12 10 45 T3 80 80 380 - 290 - 8 6 110 T351 80 80 380 - 290 - 6 4 110 T4 80 80 380 - 220 - 12 10 110 T451 80 80 380 - 220 - 10 8 110 T6 80 80 450 - 380 - 8 6 140 T651 80 80 450 - 38

45、0 - 6 4 140 Drawn tube Temper Wall thickness t mm RmMPa Rp0,2MPa A % min. A50mm% min. HBW Typical value min. max. min. max. O, H111 20 - 240 - 125 12 10 45 T3 20 380 - 290 - 8 6 110 T3510, T3511 20 380 - 290 - 6 4 110 T4 20 380 - 240 - 12 10 110 T4510, T4511 20 380 - 240 - 10 8 110 T6 20 450 - 380 -

46、 8 6 140 T6510, T6511 20 450 - 380 - 6 4 140 aD = Diameter for round bar. bS = Width across flats for square and hexagonal bar, thickness for rectangular bar. BS EN 754-2:2016EN 754-2:2016 (E) 12 Table 7 Alloy EN AW-2014A Al Cu4SiMg(A) Drawn rod/bar Temper Dimensions mm RmMPa Rp0,2MPa A % min. A50mm

47、% min. HBW Typical value D aS bmin. max. min. max. O, H111 80 80 - 240 - 125 12 10 45 T3 80 80 380 - 290 - 8 6 110 T351 80 80 380 - 290 - 6 4 110 T4 80 80 380 - 220 - 12 10 110 T451 80 80 380 - 220 - 10 8 110 T6 80 80 450 - 380 - 8 6 140 T651 80 80 450 - 380 - 6 4 140 Drawn tube Temper Wall thicknes

48、s t mm RmMPa Rp0,2MPa A % min. A50mm% min. HBW Typical value min. max. min. max. O, H111 20 - 240 - 125 12 10 45 T3 20 380 - 290 - 8 6 110 T3510, T3511 20 380 - 290 - 6 4 110 T4 20 380 - 240 - 12 10 110 T4510, T4511 20 380 - 240 - 10 8 110 T6 20 450 - 380 - 8 6 140 T6510, T6511 20 450 - 380 - 6 4 140 aD = Diameter for round bar. bS = Width across flats for square and hexagonal bar, thickness for rectangular bar. BS EN 754-2:2016EN 754-2:2016 (E) 13 Table 8 Alloy EN AW-2017A Al Cu4MgSi(A) Drawn rod/bar Temper Dimensions mm RmMPa Rp0,2MPa A % min. A50mm% min

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