DIN ISO 3408-4-2011 Ball screws - Part 4 Static axial rigidity (ISO 3408-4 2006)《滚珠丝杠副 第4部分 轴向静刚度(ISO 3408-4-2006)》.pdf
《DIN ISO 3408-4-2011 Ball screws - Part 4 Static axial rigidity (ISO 3408-4 2006)《滚珠丝杠副 第4部分 轴向静刚度(ISO 3408-4-2006)》.pdf》由会员分享,可在线阅读,更多相关《DIN ISO 3408-4-2011 Ball screws - Part 4 Static axial rigidity (ISO 3408-4 2006)《滚珠丝杠副 第4部分 轴向静刚度(ISO 3408-4-2006)》.pdf(21页珍藏版)》请在麦多课文档分享上搜索。
1、April 2011 Translation by DIN-Sprachendienst.English price group 11No 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
2、25.060.99!$nOS“1754448www.din.deDDIN ISO 3408-4Ball screws Part 4: Static axial rigidity (ISO 3408-4:2006)English translation of DIN ISO 3408-4:2011-04Kugelgewindetriebe Teil 4: Statische axiale Steifigkeit (ISO 3408-4:2006)Englische bersetzung von DIN ISO 3408-4:2011-04Vis billes Partie 4: Rigidit
3、axiale statique (ISO 3408-4:2006)Traduction anglaise de DIN ISO 3408-4:2011-04www.beuth.deDocument comprises pagesIn case of doubt, the German-language original shall be considered authoritative.2103.11 A comma is used as the decimal marker. Contents Page National foreword .3 National Annex NA (info
4、rmative) Bibliography.3 1 Scope 4 2 Normative references 4 3 Terms and definitions4 4 Symbols and subscripts .4 4.1 Symbols 4 4.2 Subscripts 5 5 Determination of static axial rigidity, R6 5.1 General6 5.2 Static axial rigidity, R .8 5.3 Static axial rigidity of ball screw, Rbs.8 5.4 Static axial rig
5、idity of ball screw shaft, Rs.8 5.4.1 General8 5.4.2 Rigid mounting of ball screw shaft at one end.8 5.4.3 Rigid mounting of ball screw shaft at both ends .9 5.5 Static axial rigidity of ball nut unit, Rnu9 5.5.1 Static axial rigidity of ball nut unit with backlash, Rnu19 5.5.2 Static axial rigidity
6、 of symmetrically preloaded ball nut unit, Rnu2,4.13 5.5.3 Correction for accuracy, far.15 Annex A (informative) Example calculation of static axial rigidity in preloaded symmetrical double nut system .17 Annex B (informative) Correction for load application, fal.20 2 DIN ISO 3408-4:2011-04 National
7、 foreword This standard has been prepared by Technical Committee ISO/TC 39 “Machine Tools”, Working Group WG 7 “Ball screws”. The responsible German body involved in its preparation was the Normenausschuss Werkzeugmaschinen (Machine Tools Standards Committee). ISO 3408 consists of the following part
8、s, under the general title Ball screws: Part 1: Vocabulary and designation Part 2: Nominal diameters and nominal leads Metric series Part 3: Acceptance conditions and acceptance tests Part 4: Static axial rigidity Part 5: Static and dynamic axial load ratings and operational life Annexes A and B are
9、 for information only. The DIN Standard corresponding to the International Standard referred to in this document is as follows: ISO 3408-1 DIN ISO 3408-1 National Annex NA (informative) Bibliography DIN ISO 3408-1, Ball screws Part 1: Vocabulary and designation 3 DIN ISO 3408-4:2011-04 1 Scope This
10、part of ISO 3408 sets forth terms and mathematical relations relevant to the determination of the static axial rigidity of the ball screw. 2 Normative references The following referenced documents are indispensable for the application of this document. For dated references, only the edition cited ap
11、plies. For undated references, the latest edition of the referenced document (including any amendments) applies. ISO 3408-1:2006, Ball screws Part 1: Vocabulary and designation 3 Terms and definitions For the purposes of this document, the terms and definitions given in ISO 3408-1 apply. 4 Symbols a
12、nd subscripts 4.1 Symbols Symbol Description Unit Contact angle degrees, Reciprocal curvature radius mm1 Ratio of the semi-major to the semi-minor axes of the contact ellipse Lead angle degrees, l Elastic deflection m cEMaterial constant ckGeometry factor N2/3m dboDiameter of the deep hole bore mm d
13、cDiameter of load application on the ball screw shaft mm DcDiameter of load application on the ball nut mm DpwBall pitch circle diameter mm DwBall diameter mm D1Outer diameter of ball nut mm Ball screws Part 4: Static axial rigidity 4 DIN ISO 3408-4:2011-04 Symbol Description Unit E Modulus of elast
14、icity N/mm2farCorrection factor for accuracy classes (rigidity) falCorrection factor for load application frs, frnConformity (ratio of ball/balltrack radius to ball diameter) of ball screw shaft and ball nut F Axial force, load N i Number of loaded turns k Rigidity characteristic N/m3/2l Length mmls
15、Unsupported length of ball screw shaft mm m Poissons constant (e.g. for steel m = 10/3) n Rotational speed min1PhLead mm q Time percentage % R Rigidity N/msaBacklash (axial play) m Y Auxiliary value according to Hertz for the description of the elliptic integrals of the first and second kinds N2/3m4
16、/3z1Number of effectively loaded balls per turn z2Number of unloaded balls in the recirculation system, only for systems where balls will be recirculated after one turn 4.2 Subscripts Symbol Description ar refers to accuracy b refers to ball bs refers to ball screw c refers to nut body/ball screw sh
17、aft e refers to external load or the resulting deformation respectively lim refers to limit load (at this value the contact between balls and balltracks of ball screw shaft andball nut is eliminated) m refers to equivalent N refers to normal load which acts upon balls and balltracks of the ball scre
18、w shaft and ball nut inthe direction of the contact angle n refers to ball nut pr refers to preload s refers to ball screw shaft b/t refers to ball/balltrack area nu refers to ball screw within the loaded ball nut area 1 refers to ball nut 1 2 refers to ball nut 2 5 DIN ISO 3408-4:2011-04 5 Determin
19、ation of static axial rigidity, R 5.1 General The static axial rigidity of a ball screw exerts a major influence on its positioning accuracy. It is a function of the design of the ball screw, its support and bearing arrangement. For the purpose of the calculation given below support and bearing arra
20、ngement have been disregarded. The static axial rigidity of ball screws is not linear. For the purpose of the study of rigidity, a ball screw can be conceived as a combination of several linear and non-linear spring elements. For this reason the rigidity value indicated is correct only for one load
21、application. The deflection to be determined is caused by axial deflections of the screw shaft and the ball nut body, radial deflections of the screw shaft and the ball nut body, deflections of the balls and the thread land. The calculation of the deflections attributable to the ball contact is base
22、d on the theory related to Hertz stress. The following preconditions should be met as closely as possible: the material of the contacting partners shall be homogenous and isotropic, in addition, Hookes law applies, i.e., no plastic deformation, and in the contact area only normal stress shall be act
23、ing, i.e., a level pressure surface is generated. Moreover, the applied simplified theory of Hertz specifies identical elasticity modulus and transversal contraction parameter for the material of ball screw shaft, ball nuts and balls. When calculating axial rigidity it is important to differentiate
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