AGMA 91FTM2-1991 CNC Technology and New Calculation Methods Permit Efficient System Independent Manufacturing of Spiral Bevel Gears《螺旋锥齿轮的计算机数控(CNC)技术和新计算方法有效率系统独立制造》.pdf
《AGMA 91FTM2-1991 CNC Technology and New Calculation Methods Permit Efficient System Independent Manufacturing of Spiral Bevel Gears《螺旋锥齿轮的计算机数控(CNC)技术和新计算方法有效率系统独立制造》.pdf》由会员分享,可在线阅读,更多相关《AGMA 91FTM2-1991 CNC Technology and New Calculation Methods Permit Efficient System Independent Manufacturing of Spiral Bevel Gears《螺旋锥齿轮的计算机数控(CNC)技术和新计算方法有效率系统独立制造》.pdf(10页珍藏版)》请在麦多课文档分享上搜索。
1、91 FTM 2A- CNC Technology and New Calculation MethodsPermit Efficient System IndependentManufacturing of Spiral Bevel Gearsby: Dieter Weiner, Klingelnberg SOhne,r1American Gear Manufacturers AssociationiI1TECHNICAL PAPERCNC Technology and New Calculation Methods Permit Efficient SystemIndependent Ma
2、nufacturing of Spiral Bevel GearsDieter WienerKlingelnberg St_hneTheStatementsandopinionscontainedherein are thoseof theauthorandshouldnotbe construedas anofficial action oropinion of the American Gear ManufacturersAssociation.ABSTRACT:A strictly applied CNC technology on machines for cutting or gri
3、nding spiral bevel gears allows the machining ofdifferent gearing systems on one and the same machine. Based on this, the selection of the most favorable gearingsystem is possible, based on economicalissues, load bearing capacity and noise characteristics.Copyright 1991American Gear ManufacturersAss
4、ociation1500 King Street, Suite 201Alexandria, Virginia, 22314October, 1991ISBN: 1-55589-602-2CNC Technology andNew Calculation MethodsPen_t Efficient SystemInd_l_ndontManufacturingof Spiral Bevel GearsDr.-Ing. Dieter WienerExecutive Vice PresidentKlingelnberg SShneRemscheidGearing DivisionI. Introd
5、uction 2. CNC machine systemsCNC technology offers new opportunities for the 2.1 Soviet Union - zegiatEation (figuzt I)manufacture of bevel gears. Whilst traditionally, thepurchase of a specific machine at the same time The first machine known to us with a cross slidedetermined the system, CNC techn
6、ology permits the working at the work piece side is the machine, shownprocessing of bevel gears using a wide variety of in figure 1, according to the russian application formethods. The ideological dispute between “tapered patent SU 724487 A, dated March 30, 1980. On the lefttooth or parallel depth
7、tooth“ and “single indexing or figures side, the cross slide with its ways “3“ andcontinuous indexing“ no longer leads to an irreversible “12“ describes the circular motion of the tool. Thefundamental declsion. The systems have instead become actuation of the cross slide is a mechanical - hydraulicp
8、enetrable, and with existing CNC machinery it is system.possible to select this or that system according tofactual considerations at a later date.This essay, by giving a brief overview of themachines and systems available on the market or _ ,3 ,4,scurrently at the development stage, plans to discuss
9、 _ _the possibility of processing different types of gear ,i _ /6_09cutting on one and the same machine. Thereafter, the _ _ _characteristics of gear cutting systems will becontrasted with one another, and finally, thepossibilities of gear cutting optimization offered by _ .current calculation and m
10、anufacturing technology inconnection with CNC measurement technology will bediscussed.4Figure 1: Russian machine with X-Y cradle2.2 JHIcs:_l - zegistxati_ (fi_ 2) 2.4 Grinding m_ (f_ 4)A CNC-controlled_vel gear cutting_chine with Fibre 4 is showing a full CNC controlled _vel _cross slide is_ntioned
11、in an application for patent gear grinding_chine_C 80, made by Klingenberg. Theno. 255 296 A 1 of the co,any Modul in the former _rman generating motion of the tool, in this case the grindingDemocratic Republic. The principle of this machine is wheels, is performed by the y-axis (cra_e motion). Thel
12、ayed out in figure 2. The generating motion of the tool advantage of this syst_is the fact, that only threeis achieved by overlaying slide “F“ and “E“. This axes are in motion during the generating process: themachine is also e_ip_d with (co_uter controlled) z-axis (workpiece rotation), the y-axis (
13、workhead) andtilt axis and swivel axis. These are the axes “D“ and the x-axis (helical motion) . By intelligent“C“. superimposition of these three axes the tilt settingIf the work piece is cut with “tilt“, the C-axis is unnecessary. The do_le spindle wheelhead allows thehas to succeed continous path
14、 controlled, whilst the grinding of pinions, which were cut by the traditionaltilt-axis D is only a fixed setting axis. five cut _thod at the concave and the convex flanksseparately, in one setting.i iii i. I 19Fibre 2: Modul_chine with CNC-controlled X-Y cradle Fibre 4: CNC bevel gear grinding mach
15、ineKlingelr_berg _C 802.3 Japan - regiatzati_ (fi_ 3)In the Japanese application for patent no. 3643967 2.5 Phoenix (figuze 5)(figure 3) a machine is introduced, in which all themotions are appointed by the CNC control as well. The At the Phoenix machine (fibre 5), made bygenerating motion is, as we
16、ll as with the previous Gleason, the generating motion of the tool is done,mentioned machines, achieved by a cross slide. The x- like at the first three machines, by the crossaxis and the y-axis are used to achieve the generating slide, visible in the left side of the picture. Themotion of the tool.
17、 At this machine, like the russian ways 16 and 20 are the machine ways for the cross_chine, no tilt and no swivel is provided, slide. Therefore, the cross slide motion is _r-formed by the tool, in the opposite to the previousdescried machines, this machine has the charac-teristics of continously mov
18、ing the_chine rootangle during the generating process. This _tioneliminates the tilt setting and the swivel setting.28 I_31 _9 3_38 R| 353=21 23FigUre 3: Japanese CNC machine23. _mazO_tt_mgSystm_The two decisive differentiating features of gearcutting systems are :continuous - single indexing proces
19、sparallel tooth depth - tapered toothIn principle, all varieties can be combined withone another. In practice, however, the followingprinciple combinations have become established:continuous with parallel tooth depth and epicycloidandsingle indexing process with tapered tooth and arcIn the case of p
20、arallel tooth depth, manufactureFigure 5: CNC bevel gear processing mechine Gleason is conducted on precise pitch cones (figure 7). UnlessPhoenix corrections are made, no crowning will occur. The geargenerating process is precise and does not result inprofile bearing, and as a result of the identica
21、l tool2.6 ENC (figure 6) radii of concave and convex flanks in a continuousprocess (figure 8), without a desired correction, noFigure 6 conclusively shows a full CNC bevel longitudinal convexity is produced. The advantage isgear cutting machine, the KNC 40 / 60 series of that it is simple to conduct
22、 all calculations on theKlingelnberg. At this machine, like the three crown gear in question; the complicatedthree-dimensionalmachines previously described, all the axes are CNC bevel gear problem becomes a simple two-dimensionalcontrolled. The E-axis is only used for single crown gear problem. Prof
23、ile bearing is producedpiece production and small lot size production.This precisely and specifically via the tool, and theaxis is setting the crowning eccentricity auto- longitudinal crown via the difference in radius of thematically when cutting bevel gears with the divided tool flanks for convex
24、and concave flank. Thecutter head. This axis is not used for high volume difference in radius is achieved via a separated bladeproduction, regardless whether the face milling or head (figure 9) in individual and small seriesface hobbing process is applied. The advantage of production, and in large s
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