DIN 732-2010 Rolling bearings - Thermally safe operating speed - Calculation and correction values《滚动轴承 热安全运行速度 计算和校正值》.pdf
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1、May 2010 Translation by DIN-Sprachendienst.English price group 8No 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 21.
2、100.20!$|Y“1895456www.din.deDDIN 732Rolling bearings Thermally safe operating speed Calculation and correction valuesEnglish translation of DIN 732:2010-05Wlzlager Thermisch zulssige Betriebsdrehzahl Berechnung und Beiwerte,Englische bersetzung von DIN 732:2010-05Roulements Admissible vitesse de rfr
3、ence thermique Calculs et facteurs de correction,Traduction anglaise de DIN 732:2010-05www.beuth.deDocument comprises 12 pagesIn case of doubt, the German-language original shall be considered authoritative.08.12,DIN 732:2010-05 2 A comma is used as the decimal marker. Contents Page Foreword 3 1 Sco
4、pe 4 2 Normative references 4 3 Terms and definitions .4 4 Symbols and units .5 5 Calculation 6 5.1 Calculating the thermally safe operating speed n6 5.2 Lubricant factor KL.8 5.3 Load factor KP8 5.4 Determining the total heat emitted .8 Annex A (informative) Coefficients f0and f110 Bibliography . 1
5、2 Figures Figure 1 Speed ratio fn.7 Figure 2 Thermal transmittance kqas a function of bearing seating area AS.9 Tables Table 1 Symbols and units 5 Table A.1 Guidance values of coefficients f0and f110 DIN 732:2010-05 3 Foreword This standard has been prepared by Working Committee NA 118-01-08 AA Trag
6、zahlen und Lebensdauer of the Normenausschuss Wlz- und Gleitlager (Rolling Bearings and Plain Bearings Standards Committee). DIN 732:2010-05 4 1 Scope This standard describes a method of calculating the thermally safe operating speed (i.e. the maximum permissible operating speed) of rolling bearings
7、 under given operating conditions. The method is only to be used if the thermally safe operating speed is a function of the heat emitted by the bearing. Otherwise, the method is unsuitable. The method shall not be used for thrust ball bearings, as for these bearings the thermally safe operating spee
8、d does not depend on the bearing temperature. The method is applicable to bearings without contacting seals. Where bearings are sealed, due consideration is to be given to the seal characteristics. 2 Normative references The following referenced documents are indispensable for the application of thi
9、s document. For dated references, only the edition cited applies. For undated references, the latest edition of the referenced document (including any amendments) applies. DIN ISO 76, Rolling bearings Static load ratings DIN ISO 281, Rolling bearings Dynamic load ratings and rating life DIN ISO 1132
10、-1, Rolling bearings Tolerances Part 1: Terms and definitions DIN ISO 5593, Rolling bearings Vocabulary DIN ISO 15312, Rolling bearings Thermal speed rating Calculation and coefficients ISO 3031, Rolling bearings Thrust needle roller and cage assemblies, thrust washers Boundary dimensions and tolera
11、nces ISO 15241, Rolling bearings Symbols for quantities 3 Terms and definitions For the purposes of this document, the terms, definitions and symbols in DIN ISO 1132-1, DIN ISO 5593 and the following apply. 3.1 thermally safe operating speed nspeed at which the mean bearing temperature reaches a spe
12、cified value under given operating conditions NOTE Mechanical and kinematic criteria that could lead to further speed limitations are not taken into account when determining the thermally safe operating speed. 3.2 heat emitting bearing seating area ASsum of contact areas between inner ring (shaft wa
13、sher) and shaft and between outer ring (housing washer) and housing through which the heat is emitted NOTE As a simplification, the heat emitting reference surface area as in DIN ISO 15312 may be used as the bearing seating area. DIN 732:2010-05 5 3.3 operating load P1bearing load, in the form of a
14、radial, axial or combined load, which, under operating conditions, produces the load-dependent frictional moment 3.4 density of heat flow rate q ratio of the heat flow through the bearing seating to the seating area 3.5 ambient temperature Amean environmental temperature for the bearing assembly und
15、er the operating conditions 3.6 operating temperature mean temperature of the stationary ring (normally, the outer ring) or the housing washer of the bearing under the operating conditions 4 Symbols and units For the purposes of this standard, the symbols given in ISO 15241 and the following apply.
16、Table 1 Symbols and units Symbol Quantity Unit ASHeat emitting bearing seating area mm2C0Load rating (C0rfor radial bearings and C0afor axial bearings) as in DIN ISO 76 N cLSpecific heat capacity of lubricant kJ/(kg K) D Bearing outside diameter mm d Bearing bore diameter mm dMMean diameter of beari
17、ng; dM= 0,5 (D + d) mm e Limiting value for Fa/Frratio, as in DIN ISO 281 FaAxial load (axial component of actual load) N FrRadial load (radial component of actual load) N fnSpeed ratio n/nr f0Coefficient for the load-independent frictional moment under the reference conditions f1Coefficient for the
18、 load-dependent frictional moment under the reference conditions KLLubricant factor KPLoad factor kqThermal transmittance W/(mm2 K) nThermally safe operating speed min1nrThermal speed rating min1P1Operating load N DIN 732:2010-05 6 Table 1 (continued) Symbol Quantity Unit P0Static equivalent load as
19、 in DIN ISO 76 N q Density of heat flow rate W/mm2VLLubricant volume flow rate l/min Y Dynamic axial load factor as in DIN ISO 281 Contact angle Operating temperature C AAmbient temperature C iTemperature of lubricant fed C oTemperature of lubricant discharged C V Kinematic viscosity of lubricant un
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