DLA A-A-59581 C-2008 BEARING BALL ANNULAR SINGLE ROW RADIAL NON-FILLING SLOT BORE DIAMETERS UNDER 10 MM《孔径小于10mm的环形径向单排无装填槽滚珠轴承》.pdf
《DLA A-A-59581 C-2008 BEARING BALL ANNULAR SINGLE ROW RADIAL NON-FILLING SLOT BORE DIAMETERS UNDER 10 MM《孔径小于10mm的环形径向单排无装填槽滚珠轴承》.pdf》由会员分享,可在线阅读,更多相关《DLA A-A-59581 C-2008 BEARING BALL ANNULAR SINGLE ROW RADIAL NON-FILLING SLOT BORE DIAMETERS UNDER 10 MM《孔径小于10mm的环形径向单排无装填槽滚珠轴承》.pdf(10页珍藏版)》请在麦多课文档分享上搜索。
1、 METRIC A-A-59581C 05 August 2008 SUPERSEDING A-A-59581B 23 September 2003 Beneficial comments, recommendations, additions, deletions, clarifications, etc. and any data COMMERCIAL ITEM DESCRIPTION BEARING, BALL, ANNULAR, SINGLE ROW, RADIAL, NON-FILLING SLOT, BORE DIAMETERS UNDER 10 MM The General Se
2、rvices Administration has authorized the use of this commercial item description for all federal agencies. 1. SCOPE. This commercial item description (CID) covers metric, small bore (under 10 mm), non-filling slot, radial, single row, annular ball bearings for general-purpose use. These bearings are
3、 not intended for use in critical aeronautical or critical special precision applications. 2. CLASSIFICATION. The ball bearings shall be classified by the class, sizes, cage materials, shield and seal configurations, precision tolerances, and lubricant and preservative requirements listed below: Cla
4、ss 1 - dimension series 02 2 - dimension series 03 4 - dimension series 10 Size - bearing dimensions (see table I) Cage materials (see table II) Shield and seal configurations (see table III) Precision tolerances (see table IV) Lubricant and preservative requirements (see table V) 3. SALIENT CHARACT
5、ERISTICS 3.1 Dimensions. Bearing boundary dimensions shall conform to the requirements specified in table I for each of the coded bearing sizes. The listed dimensions conform to the requirements specified for the listed bearing sizes from dimension series 02, 03, and 10 in American Bearing that may
6、improve this document should be sent to: STDZNMGTdla.mil or Defense Supply Center Richmond (DSCR), ATTN: DSCR-VEB, 8000 Jefferson Davis Highway, Richmond, VA 23297-5616. AMSC N/A FSC 3110 Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-A-A-59581C 2 M
7、anufacturers Association (ABMA) Standard 20, “Radial Bearings of Ball, Cylindrical Roller, and Spherical Roller Types, Metric Design“. The bearing size shall be as specified in the acquisition order (see 7.3(b). For unlisted bearing sizes, the associated dimensional and dynamic load rating requireme
8、nts should also be specified in the acquisition order. TABLE I. Dimensional requirements (ABMA series 02/03/10). Bearing size code Bore diameter (mm) Outside diameter (mm) Width (mm) Chamfer r/min. (mm) Minimum shaft shoulder diameter1(mm) Dynamic load rating, minimum (lbs.) Class 1 (dimension serie
9、s 02) 24 4 13 5 0.2 5.6 219 25 5 16 5 0.3 7 250 26 6 19 6 0.3 8 387 27 7 22 7 0.3 9 731 28 8 24 8 0.3 10 753 29 9 26 8 0.3 13 1020 Class 2 (dimension series 03) 34 4 16 5 0.3 6 250 35 5 19 6 0.3 7 387 Class 4 (dimension series 10) 07 7 19 6 0.3 9 387 08 8 22 7 0.3 10 731 09 9 24 7 0.3 11 753 1Listed
10、 for reference purposes only. Shoulder height shall be determined to provide sufficient clearance for the direct application of bearing removal force against the bearing inner ring. If the required minimum clearance is not available, an alternative non-destructive bearing removal capability shall be
11、 provided. 3.2 Materials. 3.2.1 Rings. The bearing ring material shall be chromium-alloy steel 52100 (UNS G52986) as specified in ASTM International (ASTM) A 295/A 295M, “Standard Specification for High-Carbon Anti-Friction Bearing Steel“. The finished rings shall not exceed the associated billet ma
12、terial inclusion rating which is also specified in ASTM A 295/A 295M. Ring hardness shall be at least 58 HRC as defined in ASTM E 18, “Standard Test Methods for Rockwell Hardness of Metallic Materials“. The grain size of the ring material shall be determined in accordance with ASTM E 112, “Standard
13、Methods for Determining Average Grain Size“. 3.2.2 Balls. The bearing ball material shall be chromium-alloy steel 52100 (UNS G52986) as specified in ASTM A 295/A 295M. The finished balls shall not exceed the associated billet Provided by IHSNot for ResaleNo reproduction or networking permitted witho
14、ut license from IHS-,-,-A-A-59581C 3 material inclusion rating, which is also specified in ASTM A 295/A 295M. Balls shall be through-hardened no less than 60 HRC and no more than 67 HRC as defined in ASTM E 18. The grain size of the ball material shall be determined in accordance with ASTM E 112. 3.
15、2.3 Cage. The bearing cage material shall be impervious to deterioration from any lubricant, preservative, solvent, or other chemical substance expected to contact the bearing during normal use or storage. Similarly, the material shall not cause any chemical deterioration of any other bearing compon
16、ent. Metallic cage materials shall operate from -40 F to 250 F (-40 C to 121 C). Non-metallic cage materials shall operate from -20 F to 250 F (-30 C to 121 C). Unless otherwise specified in the acquisition order, the cage material shall be one of the optional coded types listed in table II (see 7.3
17、(c). TABLE II. Cage materials. Code1Material type J Pressed steel M Machined bronze or brass P Molded plastic (nylon 6/6 or equal) T Machined non-metallic (phenolic) Y Pressed brass X Other 1No significant changes from FF-B-171/1. 3.2.4 Shields and seals. When used, the shield or seal material shall
18、 be as recommended by the manufacturer, unless otherwise specified in the acquisition order (see 7.3(d). The material shall be impervious to deterioration from any lubricant, preservative, solvent, or other chemical substance expected to contact the bearing during normal use or storage. Similarly, t
19、he material shall not cause any chemical deterioration of any other bearing component. The shield or seal shall remain functionally effective at a minimum temperature range of -20 F to 250 F (-30 C to 121 C) for non-metallic and -40 F to 250 F (-40 C to 121 C) for metallic materials. Unless otherwis
20、e specified in the acquisition order, the shield and seal configuration for the bearing shall be one of the coded options listed in table III (see 7.3(e). TABLE III. Shield and seal configurations. Code1Configuration option A Open B Single shield C Double shield D Single seal E Double seal F Single
21、shield and seal X Other (specify in acquisition order) 1No significant changes from FF-B-171/1. Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-A-A-59581C 4 3.3 Precision tolerance. The bearing precision tolerance level shall conform to Annular Beari
22、ng Engineers Committee (ABEC) class ABEC-1, ABEC-3, ABEC-5, or ABEC-7 as defined in ABMA Standard 20. The tolerance class and associated radial internal clearance shall be one of the coded options listed in table IV (see 7.3(f). 3.3.1 Bearing precision tolerance levels and internal clearances may be
23、 affected by the addition of shields and/or seals. Manufacturers/suppliers should be consulted for availability of desired precision tolerances when shields and/or seals are required. TABLE IV. Precision tolerance requirements. Code Tolerance class Radial internal clearance A Group 2 (less than norm
24、al) B Group N (normal) C Group 3 (greater than normal) D Group 4 (greater than group 3) T ABEC-1 Group 5 (greater than group 4) E Group 2 (less than normal) F Group N (normal) G Group 3 (greater than normal) H Group 4 (greater than group 3) U ABEC-3 Group 5 (greater than group 4) J Group 2 (less tha
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