DIN 969-1997 Threaded fasteners - Axial load fatigue testing - Test methods and evaluation of results《螺纹紧固件 轴向负荷疲劳试验 试验方法和试验结果评定》.pdf
《DIN 969-1997 Threaded fasteners - Axial load fatigue testing - Test methods and evaluation of results《螺纹紧固件 轴向负荷疲劳试验 试验方法和试验结果评定》.pdf》由会员分享,可在线阅读,更多相关《DIN 969-1997 Threaded fasteners - Axial load fatigue testing - Test methods and evaluation of results《螺纹紧固件 轴向负荷疲劳试验 试验方法和试验结果评定》.pdf(11页珍藏版)》请在麦多课文档分享上搜索。
1、DEUTSCHE NORM December 1997 Axial load fatigue testing of threaded fasteners DIN 969 - ICs 21.060.1 O Supersedes DIN IS0 3800-1, March 1978 edition. Verbindungselemente mit Gewinde - Schwingfestigkeitsversuch bei Axialbelastung - Prfverfahren und Auswertung der Ergebnisse In keeping with current pra
2、ctice in standards published by the International Organization for Standardi- zation (ISO), a comma has been used throughout as the decimal marker. Foreword This standard has been prepared by Technical Committee Festigkeitsklassen Stahl of the Normenaus- schuss Mechanische Verbindungselemente (Faste
3、ners Standards Committee). It conforms in substance to IS0 3800 : 1993, except that the combined test method has not been included and details of the load verification stud for aligning the test Set-up have been changed (cf. sublause 5.5). Amendments This standard differs from DIN IS0 3800-1, March
4、1978 edition, in that details regarding the test Set-up have been amended and recommendations for the evaluation of results have been included (cf. clause 7). Previous edition DIN IS0 3800-1 : 1978-03. 1 Scope This standard specifies the conditions for carrying out axial load fatigue tests on thread
5、ed fasteners and gives recommendations for the evaluation of test results. Since any changes in the test conditions can significantly affect the results, the standard also specifies minimum requirements and calibration and centring control methods for the test equipment. 2 Normative references This
6、standard incorporates, by dated or undated reference, provisions from other publications. These normative references are cited at the appropriate places in the text, and the titles of the publications are listed below. For dated references, subsequent amendments to or revisions of any of these publi
7、cations apply to this standard only when incorporated in it by amendment or revision. For undated references, the latest edition of the publication referred to applies. DIN EN 20273 Fasteners - Clearance holes for bolts and screws (IS0 273 : 1979) DIN EN 2401 4 Hexagon head bolts - Product grades A
8、and B (IS0 401 4 : 1988) DIN EN 24032 Hexagon nuts, style 1 - Product grades A and B (IS0 4032 : 1986) DIN EN 24033 Hexagon nuts, style 2 - Product grades A and B (IS0 4033 : 1979) DIN EN 28673 Hexagon nuts, style 1, with metric fine pitch thread- Product grades A and (IS0 8673 : 1988) DIN EN 28674
9、Hexagon nuts, style 2, with metric fine pitch thread- Product grades A and (IS0 8674 : 1988) Continued on pages 2 to Translation by DIN-Sprachendienst. In case of doubt, the German-language original should be consulted as the authoritative text. B B 1 No pari of this translation may be reproduced wi
10、thout the prior permission of V DeutschesInstitut fr Normunge. V., Berlin. Beuth Verlag GmbH, 10772 Berlin, Germany, s the exclusive right of sale for German Standards (DIN-Normen). Ref. No. DIN 969 : 1997-1 Englishpricegroup 08 Sales No. 0108 08.00 COPYRIGHT DIN DEUTSCHES Institut Fur Normung E.V.-
11、 EnglishLicensed by Information Handling ServicesPage 2 DIN 969: 1997-12 3 Quantities and symbols Table 1 Quantity Cross-sectional area at nominal minor diameter Ad3 = nd3A Stress area A, = 4 nd2 ad3P Nominal size of thread of load verification stud Basic minor diameter of thread H Basic pitch diame
12、ter of thread Nominal minor diameter of thread d3 = di - - 6 Diameter at the point of tangency of fillet Nominal thread diameter of the threaded test adaptor Clearance hole diameter Tensile load Tensile load at 0,2 % proof stress, R, Load amplitude (load level) Difference of load amplitudes in the t
13、ransition range Load level at endurance fatigue limit Mean load Height of fundamental triangle of thread Number of stress cycles Number of stress cycles in the transition range Failure probability Failure probability in the finite life range Failure probability in the transition range Thread pitch T
14、ensile strength Constant stress ratio (omin/omax) Width across flats of hexagons Standard deviation of fatigue load Standard deviation of fatigue strength Standard deviation of logarithm of fatigue life Coefficients of regression line for inclined part of S/N curve Stress amplitude Stress amplitude
15、at endurance fatigue limit Axial tensile stress Bending stress Mean stress Minimum stress Maximum stress Minimum stress at endurance fatigue limit Maximum stress at endurance fatigue limit Fatigue strength at N cycles Interval of stress amplitude in the finite life range (inclined part of S/N curve)
16、 Difference in levels of stress amplitude in the transition range l) For calculating mean stress and stress amplitude, the nominal values of either As or, if so agreed between customer and supplier, Ad, shall be used. COPYRIGHT DIN DEUTSCHES Institut Fur Normung E.V.- EnglishLicensed by Information
17、Handling ServicesPage 3 DIN 969 : 1997-1 2 4 Principle Fatigue tests serve to determine the fatigue strength properties of threaded fasteners (e.g. on the basis of a Whler curve (S/N curve). The fasteners to be tested are mounted in a fatigue testing machine and subjected to axial loading for a give
18、n number of stress cycles or until the test piece fails. The stress induced may be either a constant mean stress, o, or equal to a constant stress ratio, R,. The number of stress cycles is a function of the fastener material or the endurance fatigue strength of the fastener under test. Unless otherw
19、ise specified, failure of the test piece is defined as the complete sepa- ration of the fastener into two parts. The test conditions and evaluation procedures shall be selected with regard to the objective of the test and stated in the test report (cf. clause 8). 5 Apparatus 5.1 Testing machine The
20、testing machine shall be capable of maintaining the load to within I2 YO of the required values throughout the test and be equipped with a device for counting and recording the total number of cycles per test. It shall be calibrated at specified intervals to ensure this accuracy. The test frequency
21、shall not exceed 250 Hz. Loading of the specimen shall be sinusoidal. The machine shall be equipped with a device which prevents its automatic restarting after stopping due to electrical power failure. 5.2 Test fixtures The test fixtures shall be capable of transmitting an axial load to the specimen
22、. Design details of such fixtures are shown in figures 1 and 2. Where self-aligning devices are used, alignment shall be checked carefully. However, use of such devices is not recommended. +O,O7 A I r I Symmetrical 1 08 d- HRC 36 $0 40 -pi O In the above figure, d, is the clearance hole diameter, fi
23、ne series, as in DIN EN 20273; da is the diameter at the point of tangency of the fillet as in DIN EN 24014. Tolerances on perpendicularity and concentricity are in millimetres. Figure 1: Fixture without insert Symmetrical windows (optional) Counterbore (optional) 1, lllo,o251b 1 ,y HRC 36 to 40 a I
24、n the above figure, d, is the clearance hole diameter, fine series, as in DIN EN 20273; da is the diameter at the point of tangency of the fillet as in DIN EN 24014. Tolerances on perpendicularity and concentricity are in millimetres. Figure 2: Fixture with inset+) l) The surface may be case-hardene
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