DIN 3971-1980 Definitions and Parameters for Bevel Gears and Bevel Gear Pairs《伞齿轮和伞齿轮副的定义和参数》.pdf
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1、DIN 3971 x, = Tooth thickness alteration factor Other quantities as in Fig. 7 Figure 8. Standard basic rack tooth profile with positive tooth thickness alteration DIN3971 Page9 Y 9 II Datum. line ha=ho DIN 867 Datum line Figure 11. Standard basic rack tooth profile with negative addendum modificatio
2、n Page 10 DIN 3971 N o te : The addendum modification is stated for the tip distance R of the standard basic rack tooth profile. Depending on the manufacturing method it either in- creases steadily towards the centre of the crown gear or is constant at all tip distances. In the second case it is the
3、refore simpler to speak of the addendum modification of the complete basic crown gear versus the reference cone of the bevel gear. Because the reference cones of the gears have to coincide with the pitch cones of the gear pair (see Section 3.4) a bevel gear with positive addendum modification is alw
4、ays mated with a bevel gear having equally large negative addendum modification (gear train at reference centre distance): xhl + rh2 = 0 (19) 3.5 Parameters in the crown gear reference plane 3.5.1 Crown gear reference circle, crown gear radius RP The crown gear reference circle is determined by the
5、number of crown gear teeth zp and the module mpt exist- ing on its circumference. Its radius (crown gear radius) RP is given by Straight teeth 3.5.2 Crown gear angular pitch r p The crown gear angular pitch T is the centre angle at the crown gear centre which is enclosed by two crown gear radii runn
6、ing to adjacent right-hand or left-hand flanks, see Fig. 12. It is given by 3.5.3 Tooth thickness half angle #p (on a straight bevel gear) The tooth thickness half angle pp of a straight bevel gear is the centre angle at the crown gear centre which is en- closed by the tooth centre lineand an adjace
7、nt right-hand or left-hand flank of the standard basic rack tooth profile, see Fig. 12. It is given by SP *p=2.Rp Spiral teeth (left-hand) (22) Helical teeth (left-hand) Spiral teeth (right-hand) Figure 12. Straight, helical and spiral teeth on the crown gear DIN 3971 Page 11 3.5.4 Tooth space half
8、angle lp (on a straight bevel gear) The tooth space half angle Qp of a straight bevel gear is the centre angle at the crown gear centre which is en- closed by the tooth space centre line and an adjacent right-hand or left-hand flank of the standard basic rack tooth profile, see Fig. 12. It is given
9、by 23) 3.5.5 Datum tooth traces, reference tooth trace5 The datum tooth traces (reference tooth traces) are the linesof intersection of the crown gear tooth flanks (bevel gear tooth flanks) with the crown gear reference plane (with the reference cone). Depending on the form and disposition of these
10、lines, see Fig. 12, the following are distinguished: 3.5.5.1 Straight teeth, With straight teeth the datum tooth traces are straight lines passing through the crown gear centre. With straight bevel gears the prolongations of the (straight) reference tooth traces pass through the reference cone apex.
11、 3.5.5.2 Helical teeth, With helical teeth the datum tooth traces are straight lines touching a circle concentric with the crown gear axis and lying within the tooth system. With helical bevel gears the reference tooth traces are helices on the reference cone envelope surfaces. 3.5.5.3 S p i r a I t
12、e e t h, spiral bevel gears With spiral teeth the datum tooth traces are curves having various forms in the crown gear reference plane, depending on the manufacturing method used.Typical forms include the circle, involute, cycloids and sinoids. With spiral bevel gears the disposition of the referenc
13、e tooth traces is derivable from the datum tooth traces. The parameters for the datum tooth traces and reference tooth traces result from the manufacturing method. straight bevel gears helical bevel gears 3.5.6 Helix angle (spiral angle)/?, The helix angle/? is the acute angle formed at a tip dist-
14、ance R between a tangent to the datum tooth trace and the line through the tangent contact point to the crown gear centre, see Fig. 12. In the case of spiral bevel gears the helix angle is also termed the spiral angle. On a bevel gear the helix angle/? is the acute angle between a tangent to the ref
15、erence tooth trace and the reference cone envelope line through the tangent contact point. On straight bevel gears the helix angle /?equal to zero. The helix angles of a bevel gear may alter with the tip distance R. In thiscase the characteristic helix angles and the disposition of the tooth traces
16、shall be stated, for example the helix anglePP on the crown gear reference circle, or the helix angle/?, at the mean cone distance, or the helix angle/?, at the outer cone distance. right-hand and left-hand teeth A tooth system is right-hand (left-hand) if, on viewing the upright tooth from the apex
17、 of the cone, the tangent to the tooth trace is disposed to the right (left) at the refer- ence point observed. 35.7 Facewidth b The facewidth b is the portion of a reference cone envelope line lying between the outer and inner end faces of the teeth, see Figs 1 to 3 and Fig. 12. 3.6 Tip surface and
18、 root surface, tip cone and root cone The tip surface and root surface are generally surfaces which are conical with regard to the crown gear axis or cone axis; they are designated as the tip cone and root cone. The envelope surfaces on the basic crown gear determine the variation of the tooth depth
19、 along the facewidth. Since the tooth depths of the basic crown gear transfer directly to the bevel gear, their parameters coincide with those of the bevel gear in Section 4.3.1. 3.6.1 Tip angle , addendum angle 8, The angle enclosed by the gear axis and a tip cone envelope line is the tip angle 6,
20、see Fig. 1. The addendum angle 8, is the angle in an axial section between the tip cone envelope line and the reference cone envelope line (the crown gear reference plane in the case of a crown gear), see Figs 1 and 2. 3.6.2 Root angle 6f. dedendum angle Of The angle enclosed by the gear axis and a
21、root cone enve- lope line is the root angle df, see Fig. 1. The dedendum angle of is the angle in an axial section between the root cone envelope and the reference cone envelope line (the crown gear reference plane in the case of a crown gear), see Figs 1 and 2. 3.6.3 Bevel gears with tapering tooth
22、 depth Simple geometrical relationships result when the tip cone apex and the root cone apex coincide with the reference cone apex in the crown gear reference plane. In this case 8,=6+0, 6,= 6- Of, and the tooth depths are proportional to the tip distance R, see Fig. 1. In this case the bottom clear
23、ance is not constant. To obtain a constant bottom clearance over the facewidth it is necessary for the tipcone apex to lie within the refer- ence cone when the root cone apex and reference cone apex coincide. This usually leads to the following being adopted ha, = 6, +Of2 (.e. Sal = Sf2) (26) Sa, =6
24、, + Sfl (.e. Oa =Ofl), i 27) see Fig. 2. N o te : This design allows the use of larger tool radi- using without the risk of meshing interference at the inner end of the tooth. The versions according to equations (24) to (27) are to be regarded as limiting cases of the geometrical design between whic
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