DIN 2096-1-1981 Helical compression springs made of round wire and rod Quality requirements for hot formed compression springs《圆线材及棒材制圆柱形螺旋压缩弹簧 热绕压缩弹簧的质量要求》.pdf
《DIN 2096-1-1981 Helical compression springs made of round wire and rod Quality requirements for hot formed compression springs《圆线材及棒材制圆柱形螺旋压缩弹簧 热绕压缩弹簧的质量要求》.pdf》由会员分享,可在线阅读,更多相关《DIN 2096-1-1981 Helical compression springs made of round wire and rod Quality requirements for hot formed compression springs《圆线材及棒材制圆柱形螺旋压缩弹簧 热绕压缩弹簧的质量要求》.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、UDC 62-272.272 . 001.4 . 003.62 . 620 1DEUTSCHE NORMNovember 1981Continued on pages 2 to 7Supersedes DIN 2096/ January 1974Dimensions in mmFigure 1. Helical compression spring with theoretical force-deflection graph3Illustration of the helical compression springel1NIII. )IF1-VIIe: l:lt-Oe“V) C0.-OJF
2、e theo.cL:-r-:.u .“I“.1 t,As it is current practice in standards published by the International Organization for Standardization (ISO), thecomma has been used throughout as a decimal marker.2 PurposeThis standard describes the technical manufacturing tolerances usually adopted for hot formed helical
3、 compressionsprings, when said springs are manufactured either in small quantities or in medium size series. This enables thepermissible deviations of functionally important characteristics to be laid down in a suitable manner for manufac turing purposes at the design stage already.More stringent re
4、quirements, particularly in respect of individual characteristics which are important for the properfunctioning of the spring, must be agreed separately at the time of ordering.Zylindrische Schraubendruckfedern aus runden Driihten und Stiiben;Gliteanforderungen bei warmgeformten Druckfedern1 ScopeTh
5、e permissible deviations specified in this standard apply to helical compression springs which satisfy the followingconditions:_ lot size up to 5000 pieces- rod or wire diameter d 8 to 60 mm- external coil diameter De ;:;i 460 mm- length of unloaded spring Lo;:;i 800 mm- number of active turns n ;:;
6、 3- coiling ratio w 3 to 12In the case of lot sizes of 5000 pieces or more, DIN 2096 Part 2 applies, subject to certain conditions.Gim;oj“c:Eoz.,.s.,.oza0co(i;.!Ec-:2Q.)(;i coc-.!:cco:;:o:2c a:;0!Gii:50J:l.!cJE:= G)=-gILc.!.2 .E ci;0.!e;IL:I:t-1!Helical compression springs 0 INomade of round wire an
7、d rodI!Quality requirements for hot formed compression springs 2096=:gl, . .L ,;“p.:a_rt;.;.1 -I0 ou:llUS“,“c .“ -,I:C = “,.- Eo!:; co,8.=.:.a_c .!tJ:-c=.!=(/)0:“c0-Z-Sole sale rights of German Standards (DIN-Normen) are with Beuth Verlag GmbH, Berlin 3001.83DIN 2096 Part 1 Engl. Price group 8Sales
8、No. 0108Page 2 DIN 2096 Part 14 Formula symbols, terms, units-Formula symbol Term UnitADpermissible deviation of the mean coil diameter D of the unloaded mmspringAdpermissible deviation of the nominal diameter dImmADepermissible deviation of the external coil diameter De of the unloadedImmspringAmpe
9、rmissible deviation of the internal coil diameter Diof the unloadedImmspringAFpermissible deviation of the spring force F at a specified spring length LINIALapermissible deviation of the length La of the unloaded spring mmAntpermissible deviation of the total number ntof turns -ARpermissible deviati
10、on of spring rate R N/mmDe +Dimean coil diameterD=- mm2Deexternal coil diameter mmDiinternal coil diameter mmd wire or rod diameter prior to the coiling of the spring mmdmaxupper deviation of nominal diameter d mme1permissible deviation of the generatrix from the vertical, measured on mmthe unloaded
11、 spring (see figure 1)e2permissible deviation from absolute parallelism of the two ground mmspring ends of the unloaded spring, measured at the external diameterDeF1to Fnspring forces, correlated to the spring lengths L 1 to LnNFpspring force, correlated to the test length LpNFctheotheoretical sprin
12、g force, correlated to the solid length LcNLalength of the unloaded spring mmL1to Lnlengths of the loaded spring, correlated to the spring forces F 1 to FnmmLcsolid length, shortest possible spring length (all the coils in contact with mmone another)Ln=Lc+Sa shortest permissible test length mmLpleng
13、th of loaded spring, correlated to the test force FpmmLslength of spring during presetting mmn number of active turns -nttotal number of turns -LlFR=- spring rate N/mmLl551 to 5nspring deflections, correlated to the spring forces F1to FnmmDIN 2096 Part 1 Page 3Formula symbolTerm UnitSc = Lo- Lcsolid
14、 spring deflection,correlated to the theoretical spring force Fctheommspspring deflection, correlated to the test force FpmmSa = Ln- Lcsafety gap, sum of the minimum clear distances between adjoining mmactive turns at the spring length LnDcoiling ratiow=-d5 Design5.1 MaterialThe steel grades accord
15、ing to DIN 17 221 and DIN 17 225 are applicable as the starting material for springs in accord ance with this standard.5.2 Winding directionHelical compression springs have a right-handed (clockwise) winding as a general rule, and when they are installed inspring banks, they are alternately right-ha
16、nded and left-handed, with the outside spring usually being right-handed(normal arrangement).If the springs are required to have a left-handed (anticlockwise) winding, this must be specified by the indication “Ieft handed winding“ on the drawings or on the enquiry or purchase order documents.5.3 Spr
17、ing endsThe usual types of spring end shapes are illustrated in figure 2. If only one shape is indicated on the drawings, said shapeshall apply to both ends of the spring; a combination of two shapes, e.g. shape 1 and shape 2, is possible.In order to achieve a uniform contact of all the turns when t
18、he spring is compressed to its solid length, the total numberof turns shall terminate at 1/2if possible, especially in the case of small numbers of turns.Shape 1.Ends closed andground flatFigure 2. Spring end shapesShape 2.Ends closed,unmachinedShape 3.Ends forged,closed andground flat6 Wire or rod
19、diameter before coiling6.1 Rods according to DIN 2077 with rolled surfaceTable 1. Nominal diameter and permissible deviationsNominal diameter Permissible deviationsdAd8d11,5 0,1512d21,5 0,222d29,5 0,2530:;d:;39 0,340:;d:;50 0,452d60 0,5Page 4 DIN 2096 Part 16.2 Rods with machined surface, i.e. with
20、turned, peeled or ground surfaceTable 2. Permissible deviations of the nominal diameterNominal diameter Permissible deviationsdAd8:;d:; 10 0,0510d:;20 0,0820 d :;30 0,1030d :;40 0,1240d 0,157 Spring body7.1 Permissible deviation of length of the unloaded springIn the case of springs in respect of wh
21、ich the spring forces and their associated spring lengths are specified, the lengthLoof the unloaded spring must in principle be regarded only as a guideline value.However, in cases where the length Lois toleranced, the following formulae apply to the permissible deviation:in the case of springs mad
22、e of rods with a rolled surface:in the case of springs made of rods with a machined surface:In the abvoe cases, only the spring rate R may be specified additionally.(1 )(2)7.2 Permissible deviation of the coil diameterOnly 0 n e coil diameter, viz. the external coil diameter De or the internal coil
23、diameter Dimust be specified in enquiryand purchase order documents, acceptance prescriptions and drawings. The numerical values of the permissible deviationsin table 3 below apply solely to the end turns.Table 3. Permissible deviations on the external or internal coil diameterDe or DiADeorAmSprings
24、 made of rods Springs made of rodswith a rolled surface, with a machined surfacefor a coiling ratio w for a coiling ratio wover upto up to 8 over 8 up to 8over 850 0,8 1,2 0,6. 0,850 65 1 1,5 0,7 165 80 1,2 1,8 0,8 1,280 100 1,5 2,3 1 1,5100 125 1,7 2,6 1,1 1,7125 160 2 3 1,3 2160 200 2,2 3,3 1,5 2,
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