DIN 743-2-2012 Calculation of load capacity of shafts and axles - Part 2 Theoretical stress concentration factors and fatigue notch factors《轴和柄负载能力的计算 第2部分 理论应力集中因子和疲劳缺口因子》.pdf
《DIN 743-2-2012 Calculation of load capacity of shafts and axles - Part 2 Theoretical stress concentration factors and fatigue notch factors《轴和柄负载能力的计算 第2部分 理论应力集中因子和疲劳缺口因子》.pdf》由会员分享,可在线阅读,更多相关《DIN 743-2-2012 Calculation of load capacity of shafts and axles - Part 2 Theoretical stress concentration factors and fatigue notch factors《轴和柄负载能力的计算 第2部分 理论应力集中因子和疲劳缺口因子》.pdf(34页珍藏版)》请在麦多课文档分享上搜索。
1、December 2012 Translation by DIN-Sprachendienst.English price group 15No 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).I
2、CS 21.120.10!%,d-“2096510www.din.deDDIN 743-2Calculation of load capacity of shafts and axles Part 2: Theoretical stress concentration factors and fatigue notchfactors,English translation of DIN 743-2:2012-12Tragfhigkeitsberechnung von Wellen und Achsen Teil 2: Formzahlen und Kerbwirkungszahlen,Engl
3、ische bersetzung von DIN 743-2:2012-12Calcul de la capacit des arbres et axes Partie 2: Coefficients thoriques de la concentration des contraintes, coefficients effectifsde la concentration des contraintes,Traduction anglaise de DIN 743-2:2012-12SupersedesDIN 743-2:2000-10www.beuth.deDocument compri
4、ses 34 pagesIn case of doubt, the German-language original shall be considered authoritative.08.15 DIN 743-2:2012-12 2 A comma is used as the decimal marker. Contents Page 1 Scope 5 2 Normative references 5 3 Symbols, designations and units .5 4 Fatigue notch factor 6 4.1 Definition of fatigue notch
5、 factor .6 4.2 Experimentally determined fatigue notch factors 6 4.2.1 Parallel keyway and interference fit .6 4.2.2 Fatigue notch factors for splined shafts, serrated shafts and involute spline shafts 8 4.2.3 Fatigue notch factors for round bars with V-notch . 10 4.2.4 Fatigue notch factors for cir
6、cumferential rectangular notch . 11 4.3 Fatigue notch factors for notches with known stress concentration factor 12 4.3.1 Shoulder, U-notch, shoulder with undercut, transverse hole 12 4.3.2 Notch cases not yet dealt with 14 5 Stress concentration factors . 14 5.1 Definition of stress concentration f
7、actor . 14 5.2 Stress concentration factors for different notch shapes . 15 5.2.1 Shoulder and U-notch 15 5.2.2 Shoulder with undercut 22 5.2.3 Transverse hole 23 6 Size influence factors . 24 6.1 General information 24 6.2 Technological size influence factor K1(deff) . 24 6.3 Geometrical size influ
8、ence factor K2(d) 26 6.4 Geometrical size influence factor K3(d) 27 7 Influence factor for surface roughness KF,. 28 8 Influence factor for surface conditioning KV. 30 Bibliography . 34 Figures Figure 1 Fatigue notch factors for splined shafts, serrated shafts and involute spline shafts . 8 Figure 2
9、 Fatigue notch factors for round bars with circumferential V-notch 2 10 Figure 3 Circumferential rectangular notch for circlips according to DIN 471 and structural radius * according to Neuber 9 . 11 Figure 4 Sensitivity factor n . 13 Figure 5 Stress concentration factors for notched round bars in t
10、ension . 16 Figure 6 Stress concentration factors for notched round bars in bending 17 Figure 7 Stress concentration factors for notched round bars in torsion 18 Figure 8 Stress concentration factors for shouldered round bars in tension 19 Figure 9 Stress concentration factors for shouldered round b
11、ars in bending . 20 Figure 10 Stress concentration factors for shouldered round bars in torsion 21 DIN 743-2:2012-12 3 Figure 11 Shoulder with undercut 22 Figure 12 Stress concentration factors for round bars with transverse hole in tension/ compression, bending or torsion (tension/compression 2, be
12、nding and torsion 1) 23 Figure 13 Technological size influence factor K1(deff) . 25 Figure 14 Geometrical size influence factor K2(d) 26 Figure 15 Geometrical size influence factor K3(d) 27 Figure 16 Influence factor for surface roughness KF. 29 Figure 17 Influence factor for surface conditioning, K
13、V, in chemico-thermal processes 31 Figure 18 Influence factor for surface conditioning, KV, in mechanical processes . 32 Figure 19 Influence factor for surface conditioning, KV, in thermal processes 32 Tables Table 1 Fatigue notch factors ,(dBK) for shaft-hub connections . 7 Table 2 Relative stress
14、gradient G . 14 Table 3 Stress concentration factor constants A, B, C and exponent z 15 Table 4 Influence factor for surface conditioning, KV, as a function of the technological process; guidance values 33 DIN 743-2:2012-12 4 Foreword This standard has been prepared by Working Committee NA 060-34-32
15、 AA Wellen- und Welle-Nabe-Verbindungen of Section Antriebstechnik of the Normenausschuss Maschinenbau (Mechanical Engineering Standards Commitee) in DIN. DIN 743, Calculation of load capacity of shafts and axles comprises Part 1: General Part 2: Theoretical stress concentration factors and fatigue
16、notch factors Part 3: Strength of materials Part 4: Fatigue limit, endurance limit Equivalently damaging continuous stress Supplement 1: Examples to part 1 to 3 Supplement 2: Examples to part 4 Amendments This standard differs from DIN 743-1:2000-10 as follows: a) Subclause 5.2 The paragraph titled
17、“Shoulder with undercut” has been revised. The superposition of two notch shapes (shoulder, U-notch) has been dropped. b) Clause 6 The decrease in the technological size influence factor for case hardened steels (except for Cr-Ni-Mo case hardened steels) with increasing diameter deffhas been limited
18、 to deff= 150 mm. The information about the decrease in the technological size influence factor for the yield strength of tempering steels has been added; c) Editorial changes have been made. Previous editions DIN 743-2: 2000-10 DIN 743-2:2012-12 5 1 Scope This standard determines the size influence
19、 factors, surface factors, stress concentration factors, or fatigue notch factors necessary for the calculation of the component fatigue strength according to DIN 743-1 (for more information see 11). If users have their own results or findings, they can use those quantities or factors for the calcul
20、ation in place of the factors stated in this standard. The given stress concentration factors and fatigue notch factors apply to solid shafts or hollow shafts with wall thicknesses where the bore does not yet have an influence on the notch. For circumferential notches the condition (D-di)/(2t) 3 ser
21、ves as orientation (see Annex A to DIN 743-1*). 2 Normative references The following referenced documents are indispensable for the application of this document. For dated references, only the edition cited applies. For undated references, the latest edition of the referenced document (including any
22、 amendments) applies. DIN 471, Retaining rings for shafts Normal type and heavy type DIN 743-1, Calculation of load capacity of shafts and axles Part 1: Introduction, basic principles DIN 743-3, Calculation of load capacity of shafts and axles Part 3: Mechanical strength properties of materials DIN
23、6892, Drive type fastenings without taper action Parallel keys Calculation and design DIN 7190, Interference fits Calculation and design rules 3 Symbols, designations and units Symbol Designation Unit d Component diameter at notch cross section mm D Component diameter at shaft shoulder mm dBReferenc
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