DIN EN ISO 6892-1-2017 Metallic materials - Tensile testing - Part 1 Method of test at room temperature (ISO 6892-1 2016) German version EN ISO 6892-1 2016《金属材料 张力测试 第1部分 室温测试法(ISO.pdf
《DIN EN ISO 6892-1-2017 Metallic materials - Tensile testing - Part 1 Method of test at room temperature (ISO 6892-1 2016) German version EN ISO 6892-1 2016《金属材料 张力测试 第1部分 室温测试法(ISO.pdf》由会员分享,可在线阅读,更多相关《DIN EN ISO 6892-1-2017 Metallic materials - Tensile testing - Part 1 Method of test at room temperature (ISO 6892-1 2016) German version EN ISO 6892-1 2016《金属材料 张力测试 第1部分 室温测试法(ISO.pdf(90页珍藏版)》请在麦多课文档分享上搜索。
1、February 2017 English price group 30No 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 77.040.10!%anf“2627567www.din.d
2、eDIN EN ISO 6892-1Metallic materials Tensile testing Part 1: Method of test at room temperature (ISO 68921:2016);English version EN ISO 68921:2016,English translation of DIN EN ISO 6892-1:2017-02Metallische Werkstoffe Zugversuch Teil 1: Prfverfahren bei Raumtemperatur (ISO 68921:2016);Englische Fass
3、ung EN ISO 68921:2016,Englische bersetzung von DIN EN ISO 6892-1:2017-02Matriaux mtalliques Essai de traction Partie 1: Mthode dessai temprature ambiante (ISO 68921:2016);Version anglaise EN ISO 68921:2016,Traduction anglaise de DIN EN ISO 6892-1:2017-02SupersedesDIN EN ISO 68921:200912www.beuth.deD
4、ocument comprises 90 pagesDTranslation by DIN-Sprachendienst.In case of doubt, the German-language original shall be considered authoritative.02.17 DIN EN ISO 6892-1:2017-02 2 A comma is used as the decimal marker. National foreword This International Standard ISO 6892-1:2016 has been prepared by Te
5、chnical Committee ISO/TC 164 “Mechanical testing of metals”, Subcommittee SC 1 “Uniaxial testing” in collaboration with Technical Committee ECISS/TC 101 “Test methods for steel (other than chemical analysis)” (Secretariat: AFNOR, France), and within the framework of the parallel voting procedure at
6、ISO and CEN, the proposal was adopted as EN ISO 6892-1:2016. The responsible German body involved in its preparation was DIN-Normenausschuss Materialprfung (DIN Standards Committee Materials Testing), Working Committee NA 062-01-42 AA Zug- und Duktilittsprfung fr Metalle. Users of this standard shou
7、ld take note of the following: In the previous version DIN EN ISO 6892-1:2009-12, the strain rate (including the crosshead separation rate) had been introduced as a testing rate (method A). In this edition, the recommendation of using method A from the National Foreword has been transferred to the i
8、ntroduction of the main part of the standard. Further explanations on the methods A and B are given in the newly introduced subclause 10.3. In method B, the adjustment and use of the testing rate for determining proof strength is described more precisely and so as to correspond to usual practice. Fu
9、rther information has been added in Annex F. In addition, in this annex, a method for determining the stiffness of the machine is introduced. The new(ly introduced) Annex G describes the determination of a modulus of elasticity in uniaxial tension. In the previous version, it had only been noted tha
10、t the slope of the elastic line of the stress-percentage extension curve mE determined in the standard tensile testing is a proxy for the determination of properties, e. g. proof strength, and only closely agrees with the material characteristic modulus of elasticity under certain conditions (e. g.
11、high resolution, double-sided averaging extensometers, perfect alignment of test piece etc.). However, in Annex G, the necessary test apparatus, the procedure and the evaluation of the test as well as the estimation of uncertainty are specified and described. The DIN Standards corresponding to the I
12、nternational Standards referred to in this document are as follows: ISO 377 DIN EN ISO 377 ISO 3183 DIN EN ISO 3183 ISO 7500-1 DIN EN ISO 7500-1 ISO 9513 DIN EN ISO 9513 ISO 11960 DIN EN ISO 11960 ISO 2566-1 DIN EN ISO 2566-1 ISO 2566-2 DIN EN ISO 2566-2 ISO 80000-1 DIN EN ISO 80000-1 DIN EN ISO 689
13、2-1:2017-02 3 Amendments This standard differs from DIN EN ISO 6892-1:2009-12 as follows: a) the urgent recommendation of using method A from the National Foreword of DIN EN ISO 6892-1:2009-12 has been included in the main part of the standard and updated; b) in the German version, the term “paralle
14、le Lnge” (“parallel length”) is used instead of “Versuchslnge” (“test length”), corresponding to the English reference version; c) a detailed description for the adjustment of the testing rate for the determination of the proof strength in method B has been added; d) Figure 8 a) and Figure 9 have be
15、en revised for a better understanding; e) Annex F has been revised and extended; f) normative Annex G for the determination of the modulus of elasticity of metallic materials using a uniaxial tensile test has been added and the main part of the standard has been revised aspects for determining the m
16、odulus of elasticity have been added and minor technical adaptations have been made; g) the standard has been restructured and renumbered introducing subclause 10.3 and Annex G; h) the Bibliography has been updated, in particular by current publications; i) the standard has been editorially revised.
17、 Previous editions DIN 1602: 1924-06, 1927-04, 1929-08, 1936-03, 14944x-02 DIN DVM A 114: 1935-12 DIN 50112: 1935xx-12 DIN 1605-2: 1936-02 DIN DVM 125 = DIN 50125 1940-08 DIN 50114: 1944xx-01, 1960-07, 1965-12, 1980-12, 1981-08 DIN 50143: 1944-10 DIN 50144: 1944-10 DIN 50125: 1951-04, 1986-03, 1991-
18、04 DIN 50146: 1951-05 DIN 50145: 1952-06, 1975-05 DIN 51210: 1961-08 DIN 50140: 1965-11, 1980-09 DIN 51210-1: 1976-04 DIN 51210-2: 1976-04 DIN EN 10002-1: 1991-04, 2001-12 DIN EN ISO 6892-1: 2009-12 DIN EN ISO 6892-1:2017-02 4 National Annex NA (informative) Indices for the percentage elongation aft
19、er fracture As a rule, a differentiation is made between proportional and non-proportional test pieces as regards gauge length and percentage elongation. In the case of proportional pieces, the gauge length Lois proportional to the square root of the original cross-section So(of any geometrical shap
20、e, e.g. round, oval, square, rectangular, etc.). = nullTo ensure comparability with previous data, the coefficient of proportionality has been internationally specified as k = 5,65. When the percentage elongation has been calculated on the basis of this coefficient of proportionality, no index is ad
21、ded. If another coefficient of proportionality has been used, this is to be indicated in the index to A for the elongation after fracture, e. g. k = 11,3: elongation after fracture A11,3. (The coefficients 5,65 and 11,3 are derived from the conversion of gauge length Lofor circular cross-sections to
22、 other cross-sections.) In the case of non-proportional test pieces, a differentiation is made between three different test piece geometries, according to Annex B: Original gauge length Lo= 50 mm for a test piece width bo= 12,5 mm gauge length Lo= 80 mm for a test piece width bo=20 mm gauge length L
23、o= 50 mm for a test piece width bo= 25 mm (JIS Z 2205-Probe) The original gauge length, along with the unit mm, is to be added as an index to the symbol A: e.g. A50mm, A80mm. Because the unit “mm” is included in the index, it is clear that the number does not refer to the coefficient of proportional
24、ity k. Table NA.1 Equivalent indices for percentage elongation as specified in previous standards Percentage elongation as in DIN EN ISO 6892 Gauge length LoSimple equation for Lofor a circular cross-section Equivalent symbol for percentage elongation as in withdrawn standards A Lo= 5,65 null oLo= 5
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