DIN 332-7-1982 Machine tools 60 centre holes dimensioning《机床 60中心孔 尺寸选定方法》.pdf
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1、UDC 62-229.31 : 621.9 DEUTSCHE NORM September 1982 Mach i ne tools 60“ centre holes Dimension i ng DIN 332 Part 7 Werkzeugmaschinen; Zentrierbohrungen 60“; Bestimmungsverfahren In keeping with current practice in standards published b y the International Organization for Standardization /SO), a comm
2、a has been used throughout as the decimal marker. Supersedes November 1977 edition 1 Scope and field of application This standard applies to the determination of the required size (dl ) of a 60 centre hole as specified in DIN 332 Part 1 for types A, i3 and C up to a maximum mass of workpiece of 28 O
3、00 kg. In the case of type R, it is recommended that, compared with d, as determined in accordance with this standard, the next larger size be chosen. Adequate lubrication of steel parts is assumed for fixed centres. For live centres, their speed-dependent loadbearing capacity shall be taken into ac
4、count, namely with regard to the axial force FA = 0,58 . Fto and to the radial force FR = Ftod, where Ftoa = FG + Fs (see equation (I). The method of dimensioning only applies on the assumption that 0 is not less than 3 or 0 is not less than 6,3. The size of the centre hole shall be chosen in accord
5、ance with this relation- ship. In critical cases, the existing manufacturing data are to be checked. Oversizing and undersizing can be avoided in this way. d2 dl 2 Determination of d Machining of the parts to be turned can take place with or without supports (steadies). - between centres - between c
6、huck and centre, 2.1 Equation for determining dl Contour of unmachined workpiece where d, FGi is the first nominal dimension (size) of the centre hole, in mm; is the weight force component, in N, which exists at the centre hole (for example in the case of symmetrical turned parts, FG1 = FG = -, wher
7、e FG is the weight force of the workpiece, in N; see note on subclause 2.2); Fs is the cutting force, in N, where Fs = 2,5. q . R,; q2) is the cross section of chip, in mm2, where q = depth of cut multiplied by the feed; R, is the tensile strength of the machined material, in N/mm2; R,02 is the 0,2
8、% proof stress of the machined material, in N/mm2 (RPo2 S is a safety factor (on the average, S = 1,75). FG 2 0,6 . Rm); I ) In the interest of greater safety, the cutting force Fs and the weight force component FG have been added in equation (1). Definition given in DIN 6580. Continued on pages 2 t
9、o 8 Beuth Verlag GmbH. Berlin 30. has exclusive sale rights for German Standards (DIN-Normen) DIN 332 ?art 7 Engl. Price group 7 03.85 Sales No.0107 Page 2 DIN 332 Part 7 2.2 Determination of dl as a function of R,os, q, FG or m For Rp02 over 180 up to 280 N/mm2, to be determined in accordance with
10、table 1; for K,02 over 280 up to 450 N/mm2, to be determined in accordance with table 2; for Rpo2 over 450 up to 710 N/mm*, to be determined in accordance with table 3; for Rp02 over 710 up to 1120 N/mm2, to be determined in accordance with table 4. Note.The dl value shall also apply for asymmetrica
11、l turned parts up to a ratio of cutting force Fs weight force FG k, = 2 4. For smaller hF values, the d, value to be chosen for the heavier end of the turned part shall be the next higher increment. This value then allows for imbalances of where Fe1 + FG2 = FG. FG1 8 FG2 -=- Example of the use of th
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