DIN 3965-1-1986 Tolerancing of bevel gears basic concepts《伞齿轮啮合公差 第1部分 基本概念》.pdf
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1、UDC 621.833.2 : 621.753.1 DEUTSCHE NORM August 1986 I l DIN 3965 Tolerancing of bevel gears Basic concepts Part 1 Toleranzen fr Kegelradverzahnungen; Grundlagen Supersedes September 1981 edition. In keeping with current practice in standards published by the International Organization for Standardiz
2、ation (KO), a comma has been used throughout as the decimal marker. Contents Page 1 Field of application . 1 2 Scope . 1 3 Symbols and quantities . 1 Tolerances on gear blank dimensions 2 4 5 Structure of the gear tolerance system . 2 5.1 Relationship between tolerances 2 5.2 Errors and deviations o
3、f parameters 2 1 Field of application This standard specifies tolerances for straight, skew and spiral bevel gears with and without axial offset, of modules 1 mm to 50 mm and with reference diameters up to 2500 mm. 2 Scope To ensure compliance with all the functional requirements to be met by bevel
4、gears, relating to smooth running, load bearing capacity, uniform angular transmission and operating life, it is essential that the errors of certain parameters of the tooth system be kept within given limits. The sizes of the tolerances have been developed on principles similar to those applying to
5、 the tolerancing of circular fits. Thus, as for circular fits, tolerance classes have also been specified to a fineness which cannot be technically realized at present, but which is likely to represent the fineness possible in the future. 3 Symbols and quantities a dimension of tooth contact pattern
6、, axial offset c dimension of tooth contact pattern d reference diameter; dimension of tooth contact pattern dm mean reference diameter dB test flange diameter dR reference surface diameter e f fa axes intersection point error fi tangential tooth-to-tooth composite error dimension of tooth contact p
7、attern individual error; dimension for tooth contact pattern Page 5.3 Tolerance classes for bevel gears .2 5.4 Calculation of tolerances .3 6 Tolerancing .3 7 Additional gauging methods . 3 7.1 Radial run-out . 3 7.2 Pitcherror . .3 7.3 Tangential composite error .3 8 Tooth contact pattern . .4 shor
8、t-wave component of tangential composite error longwave component of tangential composite error adjacent pitch error difference between adjacent pitches shaft angle error module normal module at mean cone distance apex to back distance tip distance auxiliary plane distance gear ratio bore diameter c
9、omposite and cumulative errors working deviation tangential composite error cumulative pitch error radial run-out radial run-out of test flange of diameter dg, relative to gear axis axial run-out of reference face FI, relative to gear axis reference faces K1 to Kg auxiliary quantities Rm mean cone d
10、istance 6 reference cone angle da tip angle for tolerance classes 7 to 9: IT 6; for tolerance classes 10 and upwards: IT 7. 0; 5 Structure of the gear tolerance system 5.1 Relationship between tolerances The tolerance system for bevel gears is similar to that developed for cylindrical gears (see DIN
11、 3961). An attempt has been made to ensure that a particular gear quality roughly covers the average values of all errors and deviations from the target manufacturing quality. However, it frequently happens that differences in requirements and manufacturing processes cause changes in the relationshi
12、p between individual errors (see clause 6). The tolerances given in DIN 3965 Parts 2 to 4 have been specified as far as possible on the basis of existing manufacturing experience. For the single flank working test, tolerances have been given for fi and fk, as alternatives to those given for Fi and f
13、i (see DIN 3965 Part 3). To avoid inconsistency, the tolerances for FI and fi on the one hand, and for fi and fi on the other hand, shall not be applied simul- taneously . 5.2 Errors and deviations of parameters For the purposes of this standard, individual errors, f, are deviations of individual pa
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