DIN 15055-1982 Steelworks rolling mills and cranes interference fits using oil under pressure application dimensions design《炼钢厂、轧钢机和起重机 用油压的过盈配合 用途、尺寸、结构》.pdf
《DIN 15055-1982 Steelworks rolling mills and cranes interference fits using oil under pressure application dimensions design《炼钢厂、轧钢机和起重机 用油压的过盈配合 用途、尺寸、结构》.pdf》由会员分享,可在线阅读,更多相关《DIN 15055-1982 Steelworks rolling mills and cranes interference fits using oil under pressure application dimensions design《炼钢厂、轧钢机和起重机 用油压的过盈配合 用途、尺寸、结构》.pdf(8页珍藏版)》请在麦多课文档分享上搜索。
1、UDC621.824:621.753.2:621.771.06:621.873 DEUTSCHE NORM Julv 1982 Steelworks, rolling mills and cranes Interference fits using oil under pressure Application, dimensions, design DIN 15 055 Htten- und Walzwerksanlagen und Krane; Druckl- und Pressverbnde; Anwendung, Masse, Gestaltung Supersedes March 19
2、76 edition In keeping with current practice in standards published by the International Organization for Standardization (ISO), a comma has been used throughout as the decimal marker. Dimensions in mm Contents Page Page 1 Field of application and scope. . 1 3.4 Tapered interference fits not associat
3、ed 2 Types of oil feed. with rolling bearings (figures 16 to 19) . 2 2.1 Dimensions of annular grooves 2 3.5 interfence fits associated with rolling bearings (figures 20 and 21) 2.2 Oil feed holes 2 2.3 Number and arrangement. . 2 36 Stepped cylindrical hterference fits for hubhhaft assemblies (figu
4、res 22 and 23) . 6 3 Examples of design . 3 3.1 Cylindrical interference fits not associated 4 Assembly process (example) . 7 with rolling bearings (figures 6 to 9). 3 5 Instructions for assembly 7 3.2 Cylindrical interference fits for which it is 6 Instructions for disassembly . 7 necessary to take
5、 into account the design of the assembled components (figures 10 to 12). 4 6.2 Safety of workers during disassembly. . 8 with rolling bearings (figures 13 to 15) . 4 7 Reuse of disassembled components. 8 5 5 . Disassembly. 3.3 Cylindrical interference fits associated 1 The oil pressure method permit
6、s the assembly and disassembly of components of interference fits without significant deformation of the fitting surfaces and without any change in their surface roughness. In the oil pressure method, oil or some other suitable medium is forced under pressure through one or more holes and annular gr
7、ooves into the fitting joint. Relative movement of the components is made possible by elastic deformation of the assembled components or the Components to be assembled and the oil film between the fitting surfaces. The oil pressure method can be applied to interference fits in which assembly and dis
8、assembly of the interference fit is possible and desirable for production or servicing purposes or can be justified for reasons of trouble-free functioning. The stepped interference fit is particularly suitable for large machine components such as couplings, hubs, flywheels and rotors of electrical
9、machines and the like. It is possible both to assemble and disassemble the components. A condition of application of this method is adequate elasticity of the components to be assembled. For this reason, the method is usually applied to components in steel or cast steel. Apart from this, because of
10、the additional stresses applied through the oil film, it is important to ensure that the stresses remain within the permitted range in the interference fit. Field of application and scope Continued on pages 2 to 8 Beuih Verlag GmbH. Berlin 30, has exclusive sale rights for German Standards (DIN-Norm
11、en) DIN 15 055 Engl. Price group Sales No. 0106 04.85 Page 2 DIN 15055 Nominal diameter of interference fit dl C Where interference fits, for example shrink fits, are used, all the data necessary for the design calculation as specified in DIN 7190 arexo be agreed. Definitions relating to limits, fit
12、s and interference fits are given in DIN 7182 Part 1 and Part 3. Note. The oil pressure developing in the joint whilst the method is being applied results in additional stresses, as a result of which the hub part is particularly subject to additional deformation (widening) and mechanical load. If th
13、e stresses during the application of this method exceed the yield strength of the hub part or the shaft part, the result may be to adversely affect the holding power of the interference fit or the reusability of the components. This standard gives basic principles describing the conditions that will
14、 permit proper use of interference fits using oil pressure. These principles are intended to ensure safety of workers and trouble-free functioning and avoid accidents. This standard can, if necessary, serve as a basic standard for further standards recommending applications of interference fits usin
15、g oil pressure. For the design of interference fits using oil pressure for use with rolling bearings, it is recommended that the design be agreed with the manufacturers of the rolling bearings. This standard can also be used, where appropri- ate, for other types of machine than those specified. d2 r
16、1 r2 t max. f0.5 f0.2 fO.l 2 Types of oil feed 2.1 Dimensions of annular grooves Arrangement of annular groove (with groove in the shaft) Type w Type N (with groove in the hub) Detail )( Detail Y Figure 1. Figure 2. For interference fits to the inner rings of rolling bearings, only the annular groov
17、e of the type W arrangement is permitted. Nominal diameter of interference fit di d2 ri r2 t = may. f0.5 f0.2 fO.l upto 120 5 I overl20upto 2001 6 I 6 j 4 I 1 I 1,4 I 5 4 0,6 1 over200upto 320 over320upto 1250 2.2 Oil feed holes Type A 90 8 8 6 1,6 1,5 10 10 8 2,5 1,8 d Figure 3. over630upto 1000 8
18、8 10 2,5 0,8 upto 160 I 3 I 3 I 23 I 0,4 I 03 I loverl60upto 250 I 4 1 4 I 4 I 0,6 I 03 lover400upto 630 I 6 I 6 I 8 I 1,6 I 0,6 4 Figure 4. omax. ax. Figure 5. 2.3 Number and arrangement The number and arrangement of the oil feed lines is dependent on the shapes of the hub and shaft (cylindrical or
19、 tapered), the length of the joints and the design of the components to be assembled. The annular groove(s) shall be designed so as to ensure that the oil film is maintained throughout assembly or disassembly. For this reason, the groove is to be arranged close to that end of the joint at which the
20、components are last in contact when they are being disassembled. DIN 15055 Page3 Cylindrical interference fits shall be provided with one or more annular grooves according to the length of the joints and each annular groove shall have one oil feed. Examples are shown in figures 6 to 15. Tapered inte
21、rference fits shall, as a rule, be provided with one annular groove only. Examples are shown in figures 16 to 21. Stepped cylindrical interference fits require only one oil feed hole leading to the distribution channel. Additional oil feed holes and annular grooves can be arranged in order to improv
22、e and accelerate the spread of the oil in the joint. Figures 22 and 23 give examples. As in figures 6 and 7 8 and 9 3 Examples of design 3.1 Cylindrical interference fits not associated with rolling bearings (figures 6 to 9) el e2 Number of grooves II UP to 1 O0 (0,3 to 0,4) . II - c % 1 over 100 up
23、 to 300 v4.11 2 /5.1, (0,5 to 0,6) . I, 3 1 /s-l, 4 1) over 300 up to 600 over 600 up to 1000 P-J . I -8 Figure 6. Cylindrical interference fit with one annular groove in the shaft Figure 8. LI II 1 II I - e2 Cylindrical interference fit with two annular grooves in the shaft Seal-welded pipe plug Fi
24、gure 7. Cylindrical interference fit with one annular groove in the hub Seal-welded pipe plug k-4 II e2 I, - Figure 9. Cylindrical interference fit with two annular grooves in the hub Page 4 DIN 15 055 As in figure 13 14 15 3.2 Cylindrical interference fits for which it is necessary to take into acc
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