DIN 628-6-1999 Rolling bearings - Angular contact radial ball bearing - Part 6 Single row contact angle 15 and 25《滚动轴承 角接触径向球型轴承 第6部分 单列 接触角15度和25度》.pdf
《DIN 628-6-1999 Rolling bearings - Angular contact radial ball bearing - Part 6 Single row contact angle 15 and 25《滚动轴承 角接触径向球型轴承 第6部分 单列 接触角15度和25度》.pdf》由会员分享,可在线阅读,更多相关《DIN 628-6-1999 Rolling bearings - Angular contact radial ball bearing - Part 6 Single row contact angle 15 and 25《滚动轴承 角接触径向球型轴承 第6部分 单列 接触角15度和25度》.pdf(18页珍藏版)》请在麦多课文档分享上搜索。
1、ICS 21.100.20Wlzlager Radial-Schrgkugellager Teil 6: Einreihig, Berhrungswinkel 15 und 25Ref. No. DIN 628-6 : 1999-07English price group 13 Sales No. 011312.00DEUTSCHE NORM July 1999628-6Continued on pages 2 to 18. No part of this translation may be reproduced without the prior permission ofDIN Deut
2、sches Institut fr Normung e. V., Berlin. Beuth Verlag GmbH, 10772 Berlin, Germany,has the exclusive right of sale for German Standards (DIN-Normen).Translation by DIN-Sprachendienst.In case of doubt, the German-language original should be consulted as the authoritative text.Single-row, angular conta
3、ct radial ball bearingswith contact angles of 15 and 25In keeping with current practice in standards published by the International Organization for Standardization(ISO), a comma has been used throughout as the decimal marker.ForewordThis standard has been prepared by the Arbeitsausschuss Wlzlager (
4、Rolling Bearings Standards Commit-tee) and conforms in substance to ISO 12044 : 1995.All dimensions are in millimetres.1 ScopeThis standard defines concepts and specifies dimensions, tolerances, preloading forces, the rigidity anddesignation of single-row angular contact radial ball bearings with co
5、ntact angles of 15 and 25, as well asfor sets of such bearings. Angular contact ball bearings are predominantly used in machine tool spindles.This standard gives users a selection of designs based on the general plan for rolling bearings specified inDIN 616.2 Normative referencesThis standard incorp
6、orates, by dated or undated reference, provisions from other publications. Thesenormative references are cited at the appropriate places in the text, and the titles of the publications arelisted below. For dated references, subsequent amendments to or revisions of any of these publicationsapply to t
7、his standard only when incorporated in it by amendment or revision. For undated references, thelatest edition of the publication referred to applies.DIN 616 Rolling bearings General planDIN 620-2 Tolerances for radial ball bearingsDIN 620-6 Chamfer dimension limits for rolling bearingsDIN 623-1 Desi
8、gnation system for rolling bearingsDIN 17230 Steel for rolling bearings Technical delivery conditionsISO 76 : 1987 Rolling bearings Static load ratingsISO 281 : 1990 Rolling bearings Dynamic load ratings and rating lifeISO 12044 : 1995 Rolling bearings Single-row angular contact ball bearings Chamfe
9、r dimensions forouter ring non-thrust sidePage 2DIN 628-6 : 1999-073 Concepts3.1 Contact angleThe contact angle, a, is the angle between a plane perpendicular to a bearing axis and the nominal line of actionof the resultant of the forces transmitted by a bearing ring to a rolling element.3.2 Axial r
10、igidityThe axial rigidity, ca, is the ratio of the external axial load acting on a preloaded bearing set to the axial springdeflection resulting from the elastic deformation at the ball/raceway contacts.NOTE: For practical purposes, it is assumed that the rings are rigid and there is no radial widen
11、ing. Only elasticdeformation at the ball/raceway contacts due to Hertzian pressure is taken into consideration.3.3 Axial preloadThe axial preload, Fva, is the force applied to the rings of a bearing or bearing set to align them axially in orderto improve rigidity and running accuracy.NOTE 1: For pra
12、ctical purposes, it is assumed that the rings are rigid and there is no radial widening. Onlyelastic deformation at the ball/raceway contacts due to Hertzian pressure is taken into consideration.NOTE 2: The size of the preload is defined for each bearing. In practice, the prescribed load is reached
13、whenthe faces of the inner and outer rings lie in the same axial plane (with no overhang).3.4 Preload classesBearings as in this standard are classified according to the size of the preload (and thus their rigidity) into thefollowing three classes: L for light preload, M for medium preload and H for
14、 heavy preload.3.5 Universal matching bearingA bearing which, when used together with one or more similar bearings, yields predetermined characteristicsin a paired or stack set.4 Dimensions and designation4.1 GeneralThe dimensions specified here comply with series 19 dimensions (bearing series 719 C
15、 and 719 D) ) and series10 dimensions (bearing series 70 C and 70 D) as specified in DIN 616.The design shown is for illustrative purposes only, but the dimensions shall be as specified.Figure 1: Single-row angular contact radial ball bearing (notation)4.2 DesignationBearing DIN 628 TermDIN numberBe
16、aring seriesBore diameterContact angleCage materialTolerance classDesignation of bearing arrangement (or G for universal bearings)Preload class/eDedr4r2r2r2r1r1r3r1BaPage 3DIN 628-6 : 1999-074.3 Examples of designationDesignation of angular contact ball bearings of bearing series 719 (719), with a b
17、ore diameter, d, of 30 mm (06),a contact angle, a, of 15 (C; 25 = D), and a plastic cage (T), of tolerance class P4S (P4S), and of preloadclass L (L):Designation of a universal matching bearing (G):Angular contact ball bearing DIN 628 71906 CT/P4SGLDesignation of a set of two universal matching bear
18、ings (G), with no specified arrangement (D):Angular contact ball bearing DIN 628 71906 CT/P4SDGLDesignation of a set of two bearings in back-to-back arrangement (DB):Angular contact ball bearing DIN 628 71906 CT/P4SDBL4.4 Dimensions and symbolsTable 1: Dimensions and symbols1)Symbolfor a contact ang
19、le of(continued)See subclauses 6.1 and 6.2 for tolerances.Values as in ISO 12044.Page 4DIN 628-6 : 1999-075 MaterialsRolling elements and rings shall be made of steel as specified in DIN 17230. Cages shall be made of fibrereinforced plastic (type T as in DIN 623-1).6 Design6.1 TolerancesTolerances a
20、re of classes P4 and P2 as in DIN 620-2 (for dimensions DBsand DCs, the modified tolerancesapply).Tables 2 and 3 of this standard specify the values for tolerance class P4S (i.e. dimensional tolerances shall beof class P4, while for running accuracy, class P2 shall apply, both as in DIN 620-2).6.2 C
21、hamfer dimensionsChamfer boundary dimensions shall be as specified in DIN 620-6.Table 1 (concluded)1)Symbolfor a contact angle ofSee page 3 for 1) and 2).Page 5DIN 628-6 : 1999-076.3 Axial preload and rigidity6.3.1 Matched pairsTables 5 to 8 specify minimum values for the axial preload and rigidity
22、of matched pairs of bearings of the samesize and design, in either the face-to-face or back-to-back arrangement (cf. subclause 7.1.2).The values for rigidity refer to an external preload up to 2,5 times the minimum value specified for the relevantpreload class.Nominal values for use in designing spi
23、ndles are given in Appendix A.6.3.2 Matched stacksFor matched stacks consisting of three or more bearings of the same size and design and mounted in face-to-face, back-to-back or tandem arrangement (see subclauses 7.1.3 to 7.1.5), the axial preload and rigidity shallbe calculated by multiplying the
24、values given in tables 5 to 8 by the factors given in table 4. The values obtainedrefer to an external axial load acting in the direction of the maximum axial loadbearing capacity of the stack.Table 4: Multiplication factors for calculating axialpreload and axial rigidity of matched stacksTable 2: I
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