DIN 51309-2005 Materials testing machines - Calibration of static torque measuring devices《材料试验机 静扭矩测量装置的校准》.pdf
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1、December 2005Translation by DIN-Sprachendienst.English price group 13No 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).IC
2、S 19.060!%10“2149413www.din.deDDIN 51309Materials testing machines Calibration of static torque measuring devices,English translation of DIN 51309:2005-12Werkstoffprfmaschinen Kalibrierung von Drehmomentmessgerten fr statische Drehmomente,Englische bersetzung von DIN 51309:2005-12Machines dessai des
3、 matriaux talonnage des instruments de mesure (en fonction) du couple statique, Traduction anglaise de DIN 51309:2005-12SupersedesDIN 51309:1998-02www.beuth.deIn case of doubt, the German-language original shall be considered authoritative.Document comprises 27 pages06.14 DIN 51309:2005-12 2 A comma
4、 is used as the decimal marker. Contents Page Foreword 4 1 Scope 5 2 Normative references 5 3 Symbols 5 4 Characteristics of the torque measuring instrument .7 4.1 Description and marking of the torque measuring instrument 7 4.2 Inducing the torque .7 4.3 Measurement of the torque by deformation .7
5、5 Calibration of the torque measuring instrument 7 5.1 General 7 5.1.1 Requirements .7 5.1.2 Overload check 8 5.2 Resolution of the display unit 8 5.2.1 Scale indication 8 5.2.2 Numeric display .8 5.2.3 Indication fluctuation 8 5.2.4 Units 8 5.2.5 Measurement range initial value 8 5.3 Preparation of
6、 the calibration .8 5.3.1 Display unit .8 5.3.2 Temperature equalization .9 5.3.3 Transducer zero value Is.9 5.3.4 Installation direction, transducer connection .9 5.4 Carrying out the calibration 9 5.4.1 Scope of the calibration and procedure 9 5.4.2 Preloading . 10 5.4.3 Installation position 10 5
7、.4.4 Carrying out the calibration . 10 5.4.5 Loading conditions . 11 5.4.6 Displayed value corrected for the zero value Xj(MK) . 11 5.4.7 Evaluation of the torque measuring instruments 11 5.4.8 Short-time creeping 14 6 Classification of the torque measuring instrument 14 6.1 Classification principle
8、 14 6.2 Measurement range initial value and classification criteria . 14 6.2.1 Measurement range initial value . 14 6.2.2 Classification criteria . 14 6.3 Calibration certificate and recalibration . 15 6.3.1 Calibration certificate . 15 6.3.2 Recalibration . 16 7 Standard designation . 16 Annex A (n
9、ormative) Application of calibrated torque measuring instruments 17 Annex B (informative) Recommended dimensions for torque transducers, including couplings for their adaptation in torque calibrators . 18 Annex C (informative) Determination of the relative expanded measurement uncertainty W for the
10、calibration of torque measuring instruments 19 C.1 Determination of the measurement uncertainty of the interpolated calibration result for the calibration of torque measuring instruments 19 DIN 51309:2005-12 3 C.1.1 Model 19 C.1.2 Measurement uncertainty budget 20 Annex D (informative) Calibration p
11、rocedure 24 Annex E (informative) Features for measurement of vibratory torque . 25 Bibliography 27 List of figures Figure B.1 . 18 Figure D.1 Example of the preloadings and measurement series for the classes 0,05 and 0,1 . 24 Figure D.2 Example of the preloadings and measurement series of square dr
12、ive transducers for the classes 0,2 and 0,5 24 Figure D.3 Example of the preloadings and measurement series of square drive transducers for the classes 1 to 5 . 24 Figure E.1 Interpolation deviations for clockwise and anti-clockwise torque, related to the corresponding zero points (here and in the f
13、ollowing, filled symbols signify: increasing value of the torque; blank symbols: decreasing value) . 25 Figure E.2 Interpolation deviations for alternating torque with integrated contours for clockwise and anti-clockwise torque, related to the mean value of the associated zero points 26 Figure E.3 R
14、ange of the interpolation deviation (thick line) for an alternating torque transducer with unknown history . 26 List of tables Table 1 Symbols, units and designation 5 Table 2 Number of series of measurements required . 10 Table 3 Classification characteristics of the torque measuring instruments 15
15、 Table B.1 18 Table C.1 Distribution functions for the calculation of the relative standard deviations for the parameters calculated from the ranges determined from experiment . 20 Table C.2 Example for the tabular calculation of the relative standard measurement uncertainty w for torque measuring i
16、nstruments for static torques . 23 DIN 51309:2005-12 4 Foreword This document has been prepared by Working Group Drehmomentmessgerte (Torque Measuring Instru-ments) of the Working Committee NMP 811 Werkstoffprfmaschinen (Materials Testing Machines) in colla-boration with the Technical Committee Dreh
17、moment (Torque) of the Deutscher Kalibrierdienst (German Calibration Service), in accordance with DIN EN ISO 376. The definitions used conform to the International Vocabulary of Basic and General Terms in Metrology 1. Amendments The standard differs from DIN 51309:1998-02 as follows: a) Figure B.2 h
18、as been deleted without replacement; b) Annex C has been revised in accordance with 3; c) a new Annex E has been included. Previous editions DIN 51309: 1998-02 DIN 51309:2005-12 5 1 Scope This standard is generally applicable to torque measuring devices by which the torque is defined by meas-uring t
19、he elastic deformation of a loaded member or a proportional measurement of it. The torque measuring device is defined as the complete device, from the torque transducer up to and including the display unit. This standard is applicable to the calibration of torque measuring devices for static calibra
20、tion of testing machines. Furthermore, it should be used for torque measuring devices for general applications (e.g. as torque sensors in power assembly tools, performance test benches etc.) as well as for transfer standards. The procedure for the classification of these devices is described, as wel
21、l as a suggestion for determining the measurement uncertainty (see Annex C). When using the torque measuring device for measuring alternating torques, additional consideration is required in accordance with Annex E. This standard is not applicable to torque wrenches. 2 Normative references The follo
22、wing documents, in whole or in part, are normatively referenced in this document and are indispens-able for its application. For dated references, only the edition cited is applicable. For undated references, the latest edition of the referenced document (including any amendments) applies. DIN EN IS
23、O 376, Metallic materials Calibration of force-proving instruments used for the verification of uniaxial testing machines (ISO 376:2004) 3 Symbols For the purposes of this standard, the symbols in Table 1 apply. Table 1 Symbols, units and designation Symbol Designation Unit M Torque Nm MnomNominal t
24、orque Nm MALower limit of measurement range Nm MEUpper limit of measurement range Nm MKCalibration torque Nm AE = Displayed unit of the output signal (e.g. Nm, mV/V, V, Hz) AE I Uncorrected value displayed on the display unit AE IsDisplayed value before mounting in the calibration machine and obtain
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