GMKOREA EDS-A-1102-2008 SYSTEM OF LIMITS AND FITS (VERSION 3 Note This standard may be applied only for current project drawings generated by CATIA It is Superceded for all future r.pdf
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1、GM DAEWOO Auto & Technology EDS Engineering, GM DAEWOO Auto & Technology Standards SYSTEM OF LIMITS AND FITS Do Not Use on New Programs. Being Replaced by Global Design Standards EDS-A-1102 ISSUED DATE: 1996. 03. 19 REVISED DATE: 2008. 05. 31 VERSION: 3 (Superceded) EDS-A-1102SYSTEM OF LIMITS AND FI
2、TS PAGE: 1/22 ISSUED DATE: 1996. 03. 19 REVISED DATE: 2008. 05. 31 VERSION: 3 GM DAEWOO Auto & Technology Note: This standard may be applied only for current project drawings generated by CATIA. It is Superceded for all future projects and replaced by Global Design Standards. 1. SCOPE This standard
3、specifies the system of limits and fits of shapes of 500mm max. in basic size. 1. Tolerancing in this standard, which mainly applies to cylindrical shapes, applies also to other shapes. 2. Examples of fits in this standard apply to simple geometrical shapes, such as cylindrical shapes and parallel d
4、ual face shapes. 3. Dimensions in this standard means those of completed products. 2. TOLERANCING TERMS 2.1. Shape : A mechanical part which is the object of the system of limits and fits 2.2. Inner shape : Shape that forms the inner part of the object 2.3. Outer shape : Shape that forms the outer p
5、art of the object 2.4. Hole : It mainly means the cylindrical inner shape, but includes other inner shapes other than the cylindrical shape. 2.5. Shaft : It mainly means the cylindrical outer shape, but includes other outer shapes other than the cylindrical shape. 2.6. Dimensions : Magnitude to indi
6、cate the size of a shape, for instance diameter of holes and shafts, which is generally expressed in mm. 2.7. True dimensions : Actual dimensions of a shape 2.8. Limits of size : The maximum and minimum sizes permissible for a specific dimension. The true dimension lies between them. (Fig. 1) 2.9. M
7、aximum limit of size : The maximum size permissible for a specific shape (Fig. 1) 2.10. Minimum limit of size : The minimum size permissible for a specific shape (Fig. 1) 2.11. Basic size : Theoretical size from which the limits for that dimension are derived (Fig. 1 and Fig. 2) The basic size is ei
8、ther an integer or a decimal. Ex: 32, 15, 8.75, 0.5 EDS-A-1102SYSTEM OF LIMITS AND FITS PAGE: 2/22 ISSUED DATE: 1996. 03. 19 REVISED DATE: 2008. 05. 31 VERSION: 3 GM DAEWOO Auto & Technology 2.12. Deviation: The algebraic difference between the size (actual size, limits of size, etc.) and the corres
9、ponding basic size or, (Size) - (Basic size) 2.13. Tolerancing method: Method of expressing standardized dimensional tolerances and deviations 2.14. Upper deviation: The algebraic difference between the maximum limit of size and the corresponding basic size or, (Maximum limit of size) - (Basic size)
10、 (Fig. 1 and Fig. 2) 2.15. Lower deviation: The algebraic difference between the minimum limit of size and the corresponding basic size or, (Minimum limit of size) - (Basic size) (Fig. 1 and Fig. 2) 2.16. Tolerance: Difference between the limits of size (Fig. 1 and Fig. 2) 2.17. Fundamental deviatio
11、n: Deviation that forms the basis of determining the relation between limits and basic dimensions. It becomes the upper deviation or lower deviation depending on the type of holes and shafts. In general, the closer to the datum line of the upper deviation or lower deviation becomes the fundamental d
12、eviation, which is common throughout grades for each hole and shaft type. 2.18. Tolerance zone: The zone between two lines representing the maximum and minimum limits of size that is determined according to the position relative to the datum line and tolerance size when tolerance is indicated (Fig.
13、2) 2.19. Tolerance zone class: Combination of tolerance zone position and tolerance grade 2.20. Maximum material condition: The limit of size where the actual shape becomes the maximum. Or, the minimum limit of size for an inner shape, and the maximum limit of size for an outer shape, 2.21. Least ma
14、terial condition: The limit of size where the actual shape becomes the minimum. Or, the maximum limit of size for an inner shape, and the minimum limit of size for an outer shape, 2.22. Standard tolerance: A tolerancing method. Entire dimensional tolerance that belongs to the fit system 2.23. Tolera
15、nce grade: A tolerancing method. A group of dimensional tolerance that belongs to the same level of the entire basic size. The tolerance grade is expressed by affixing a figure that represents the grade to IT, for instance IT7. 2.24. Datum line: A straight line that serves as the basis of deviation.
16、 It represents the basic size when showing limits of size or fits. EDS-A-1102SYSTEM OF LIMITS AND FITS PAGE: 3/22 ISSUED DATE: 1996. 03. 19 REVISED DATE: 2008. 05. 31 VERSION: 3 GM DAEWOO Auto & Technology Fig 1 Fig 2 This figure is simplified to show the relation between the tolerance zone, deviati
17、on and datum line. In simplified drawings like this, the datum line is drawn horizontally and the positive (+) and negative (-) deviations are indicated above and below the line respectively. 3. FITS TERMS 3.1. Fits: Relation between two mating parts before assembling holes and shafts 3.2. Clearance
18、: Dimensional difference between the hole and shaft when the hole size is larger than the shaft size EDS-A-1102SYSTEM OF LIMITS AND FITS PAGE: 4/22 ISSUED DATE: 1996. 03. 19 REVISED DATE: 2008. 05. 31 VERSION: 3 GM DAEWOO Auto & Technology (Fig. 3) 3.3. Minimum clearance: Dimensional difference betw
19、een the minimum limit of hole size and maximum limit of shaft size in clearance fit 3.4. Maximum clearance: Dimensional difference between the maximum limit of hole size and minimum limit of shaft size in clearance fits and transition fits Fig 3 Fig 4 3.5. Interference: Dimensional difference betwee
20、n the hole and shaft before assembly when the hole size is smaller than the shaft size (Fig. 6) 3.6. Minimum interference: Dimensional difference between the maximum limit of hole size and minimum limit of shaft before assembly in interference fits (Fig. 7) 3.7. Maximum interference: Dimensional dif
21、ference between the minimum limit of hole size and maximum limit of shaft before assembly in interference fits and transition fits (Fig. 5 and 7) 3.8. Clearance fits: A fit between mating parts having limits of size so prescribed that a clearance results in assembly. When illustrated, the whole tole
22、rance zone of the hole is above the tolerance zone of the shaft. (Fig. 8) 3.9. Transition fits: A fit between mating parts having limits of size so prescribed as to partially or wholly overlap, so that either a clearance or interference may result in assembly. When illustrated, the tolerance zones o
23、f the hole and shaft are overlapped wholly or partially. Interference fits: A fit between mating parts having limits of size so prescribed that an interference results in assembly. When illustrated, the whole tolerance zone of the hole is below the tolerance zone of the shaft. (Fig. 9)EDS-A-1102SYST
24、EM OF LIMITS AND FITS PAGE: 5/22 ISSUED DATE: 1996. 03. 19 REVISED DATE: 2008. 05. 31 VERSION: 3 GM DAEWOO Auto & Technology Fig 5 Fig 6 Fig 7Fig 8 Fig 9 3.10. Variation of fits: Algebraic sum of tolerance of the hole and shaft to be assembled 3.11. Fit method: Method of fit depending on holes and s
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