Vibrating Mechanism Bearings

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Vibrating Mechanism Bearings

Vibrating equipment represents some of the most demanding applications for anti-friction roller bearings. This type of equipment includes screens, vibrating finishing mills, and vibrating compactors. Operating modes result in high radial and impact loads not regularly encountered with other machinery. The environment is often punishing, with high rotational speeds leading to high temperatures. This, together with misalignment, contributes to severe conditions for roller bearings. VIBRATING MECHANISM TYPES SPHERICAL ROLLER BEARINGS The self-aligning roller bearing is able to compensate for the misalignment present in vibrating mechanisms. Timken manufactures its bearings from the finest quality steels to the highest manufacturing standards. New surface finishing techniques, along with an open-ended, fully machined bronze cage, ensures a smooth running bearing. Through developments of surface contour measurements and the matching of components, we can offer greater reliability and cooler operation. The Torrington spherical roller bearing is ideally suited for vibrating mechanisms. Single Shaft Two Bearing Circulating Oil Lubrication Single shaft units are designed with an eccentric portion to provide the throw with one bearing at each end of the shaft. The bearing at the drive end of the shaft is allowed to float and the other is fixed. This unit is shown with a circulating oil system. It is used where speeds are excessive. The oil not only provides lubrication for the bearings but also acts as a coolant. 1

Double Shaft Four Bearing Splash Oil Lubrication This design features two counter-rotating eccentric shafts geared synchronously. Bearings at the geared end of the shafts (not shown) are fixed to provide location. Those at the drive end are allowed to float to compensate for shaft expansion and contraction. The vibrating movement agitates the oil to supply the bearings. The oil level can be easily checked with a sight gage. Single Shaft Four Bearing Grease Lubrication This design uses four bearings on a single shaft. The two inboard bearings are eccentric to the outer bearings. Outer bearings are mounted to the frame and the inboard bearings are mounted to the screen bed providing a positive throw to the screen. Counterweights are normally used to counteract the forces of the screen bed, thereby reducing the load on the outer bearings. Grease is normally acceptable when the speeds are moderate. 2

Lubrication There are two basic types of lubricants-greases and oils that are used in anti-friction bearings. The successful selection and application of these lubricating fluids in bearings, depends on the physical and chemical properties of the lubricant as they pertain to the bearing, its application operating parameters, installation and environmental conditions. Manufacturers of vibrating equipment have utilized four main types of lubrication systems. They are grease - manual or automatic feed, oil splash and circulating oil. Oil mist and drip feed systems have also been used, but to a lesser extent. Each system has its own advantages. For both grease and oil, the viscosity of the base oil should be the main consideration in selecting the proper lubricant. As a general rule, it is recommended that a lubricant which can maintain a minimum viscosity of 105SUS (21,8 cst) at the bearing operating temperature be utilized, to insure adequate lubrication of the bearing. With the improved analytical tools that exist today, we are now able to more accurately predict the required viscosity for each application, based on the actual bearing, load & speed conditions. This type of analysis allows us to optimize the lubricant, to insure proper lubrication of the bearing while minimizing the system generated heat. For a more comprehensive lubrication analysis, contact your local Timken sales engineer. GREASE SYSTEMS Grease consists of a base oil plus a thickener and assorted additives. The base oil in the grease should be a good grade oxidation resistent mineral oil. Synthetic base oils are also available, but quite expensive, and in most cases are not necessary. The use of a synthetic grease might be considered when high loads and speed result in operating temperatures of 200-250 F. Some thickeners used in grease are soaps of calcium, sodium, or lithium. Calcium soaps should not be used unless they contain anticorrosive additives. Sodium or lithium based greases are good where moisture condensation can be a problem. To raise the operating temperature of the grease, complexing agents are normally added to the thickeners. For vibrating mechanisms, extreme pressure and anticorrosive additives are recommended. In certain cases, molybdenum disulfide (MoS 2 ) has been added as an extreme pressure additive. Depending on the grade of MoS 2 used, abnormal wear of races and rollers can occur. Therefore, we do not recommend the use of greases that contain MoS 2. Manufacturers will design grease lubrication systems because it simplifies sealing, making it the most economical choice. In addition, the grease acts as an additional barrier against contamination. However, grease is not suitable for all applications due to its inability to operate at higher speeds. Under normal operating conditions, in ambient summer temperatures NLGI Grade 2 greases are specified. At lower operating temperatures a Grade 1 or even a Grade 0 may be specified. At higher ambient temperatures a Grade 3 grease is required. Greases are also sometimes used to fill the gap in the labyrinth seals of oil lubricated mechanisms. NLGI Grade 3 grease with calcium soaps and anticorrosive additives are best suited here. Care should be taken to not over grease the bearing, which will result in excessive operating temperatures, due to churning. For vibrating mechanisms the initial fill quantities should be 50% in the bearing, while the free space in the housing should be 30-50% full. The mixing of grease should be avoided as much as possible. The different types of thickeners are not always compatible. There are also cases when even two compatible grease when mixed together result in a grease having less than desirable properties. When mixing greases consult with your lubricant supplier. OIL LUBRICATION Oil Lubrication allows the bearing to operate at higher speeds, dissipates heat quicker, improved control of lubricant quantity, use of a filtration system to remove contaminate and moisture. Similar to grease, there are numerous additives available to enhance the properties of oils. There are extreme pressure agents, pour point depressants, wear preventatives, anti-foaming and antioxidants. All of these additives are recommended for vibrating mechanisms. Oil lubrication can be applied by several methods, splash and circulating oil being the most common. Splash systems are most popular and normally provide adequate lubrication in most cases. In high speed & load applications where the heat generated cannot be dissipated by a splash system, circulating systems are used. Circulating oil not only carries away heat, but also any contaminate that may have entered the bearing. Oil coolers may also be added for additional heat extraction. Selection of an oil is based upon the viscosity required to generate the proper film thickness at the bearing operating temperature. For vibrating mechanisms an ISO 220 grade is normally used during the spring, summer and fall (Ambient > 50 F), and ISO 150 grade during winter operation (Ambient < 50 F), Lower grades maybe required in extreme cold conditions. For exact viscosity requirements for a specific application, a detailed EHL analysis is required. For greater detail on grease, oil or lubrication systems, please refer to Timken Lubrication Guide Order No. 5733. 3

Oil Viscosity Selection Chart Internal Clearance Radial internal clearance before installation Bearings with cylindrical bore OPERATING TEMPERATURE ( F ) 200 180 160 140 120 100 80 60 40 20 800 600 400 300 200 DN VALUE ( IN THOUSANDS ) 100 80 60 40 30 20 15 60 100 80 200 150 200 180 160 140 120 100 80 60 40 20 1700 1500 1000 600 400 VISCOSITY SUS ( 100 F. ) BORE DIA. RADIAL INTERNAL CLEARANCE (inches) (millimeters) C4 Over Incl. Min. Max. 30 40.0024.0032 40 50.0030.0039 50 65.0035.0047 65 80.0043.0057 80 100.0053.0071 100 120.0063.0083 120 140.0075.0094 140 160.0087.0110 160 180.0094.0122 180 200.0102.0134 Note: C4 Clearance is most common in bearings used in vibrating equipment Typical Torrington Vibrating Equipment Bearing Modifications 1. W20 = Outer ring with standard lube holes 2. W22 = Outer ring with reduced O.D. tolerance 3. W33 = Outer ring with standard lubrication holes and machined lubrication groove in center of O.D. This feature is standard unless otherwise specified. 4. W40I = Inner ring made of carburizing grade steel 5. W47 = Inner ring with oversize bore 6. W49 = Outer ring with oversized O.D. 7. W50 = Tapped holes in face of inner ring. 8. W64I = Inner ring only made of premium quality carburizing grade steel 9. W88 = Inner ring with reduced bore tolerance 10. W98 = Inner ring with undersize bore 11. W800 = Combines W88 & W22 features & the upper 2 Ú3 of the specified clearance. 12. W810 = Combines W33, W50, W98 and W22. Standard screen bearings are: 223XX YM W33 W800 C4 233XX YM W33 W800 C4 YM = One piece roller riding machined bronze cage. YMB = One piece land riding machined bronze cage. 4

Bearing Damage Diagnosis Knowing and understanding typical bearing failures can lead to longer bearing life. Pictured below are some typical examples. CORROSION Everybody is familiar with red rust when steel is exposed to moisture. However, there is another form of corrosion which occurs when moisture reacts with decomposed lubricant to form an acid. The black pitting appearance shown is the result. ABRASIVE WEAR Abrasive wear is one of the most common types of failures associated with vibrating applications because of the environment in which they operate. Typical abrasive wear is frosty gray in appearance. More frequent lubrication cycles will help purge the contaminants out. Persistent contamination problems could be caused by a faulty seal or improper venting. FRETTING, FRETTING CORROSION, FRICTION OXIDATION This is normally observed on the O.D. or bore of the bearing. This results from an improper fit between the bearing and the shaft or housing. The red and black rust which is associated with this type of damage must be totally removed from the bearing area since it is quite abrasive and will damage the bearings and seals. The shaft and housing diameters should be checked and compared to those listed for the bearing to minimize the amount of fretting. LUBE FAILURE Lubrication breakdown, improper viscosity or low lubricant level often results in fine grain spalling as shown. 5

Recommended Fitting Practice Vibrating Mechanism Type 1. Single shaft-two bearing: Shaft s4** (loose fit) / Housing P6* (tight fit) 2. Double shaft - four bearing: Shaft s4 (loose fit) / Housing P6 (tight fit) 3. Single shaft - four bearing: Main bearing - Shaft m6 (tight fit) / Housing H7 (loose fit) Eccentric Bearings - Shaft s4 (loose fit) / Housing P6 (tight fit) * P6 is an ABMA designation **s4 is a Timken designation Bearing Number Nominal Dimensions Fitting Practice Shaft O.D. Housing Bore Shaft O.D. Housing Bore s4 Fit P6 Fit m6 Fit H7 Fit in. in. in. in. Series Bore O.D. Width Max. Min. Max. Min. 223 233 mm. in. mm. in. mm. in. Min. Max. Min. Max. 22308 40 1.5748 90 3.5433 33 1.2992 1.5739 3.5411 1.5758 3.5433 1.5735 3.5420 1.5752 3.5447 22309 45 1.7717 100 3.9370 36 1.4173 1.7708 3.9348 1.7727 3.9370 1.7704 3.9357 1.7721 3.9384 22310 50 1.9685 110 4.3307 40 1.5748 1.9676 4.3285 1.9695 4.3307 1.9672 4.3294 1.9689 4.3321 22311 55 2.1654 120 4.7244 43 1.6929 2.1644 4.7222 2.1666 4.7244 2.1640 4.7231 2.1659 4.7258 22312 60 2.3622 130 5.1181 46 1.8110 2.3612 5.1156 2.3634 5.1181 2.3608 5.1166 2.3627 5.1197 22313 65 2.5591 140 5.5118 48 1.8898 2.5581 5.5093 2.5603 5.5118 2.5577 5.5103 2.5596 5.5134 22314 70 2.7559 150 5.9055 51 2.0079 2.7549 5.9030 2.7571 5.9055 2.7545 5.9040 2.7564 5.9071 22315 75 2.9528 160 6.2992 55 2.1654 2.9518 6.2967 2.9540 6.2992 2.9514 6.2977 2.9533 6.3008 22316 80 3.1496 170 6.6929 58 2.2835 3.1486 6.6904 3.1508 6.6929 3.1482 6.6914 3.1501 6.6945 22317 85 3.3465 180 7.0866 60 2.3622 3.3452 7.0841 3.3479 7.0866 3.3448 7.0851 3.3470 7.0882 22318 90 3.5433 190 7.4803 64 2.5197 3.5420 7.4775 3.5447 7.4803 23318 90 3.5433 190 7.4803 73 2.8740 3.5416 7.4787 3.5438 7.4821 22319 95 3.7402 200 7.8740 67 2.6378 3.7389 7.8712 3.7416 7.8740 3.7385 7.8724 3.7407 7.8758 22320 100 3.9370 215 8.4646 73 2.8740 3.9357 8.4618 3.9384 8.4646 3.9353 8.4630 3.9375 8.4664 22322 110 4.3307 240 9.4488 80 3.1496 4.3294 9.4460 4.3321 9.4488 23322 110 4.3307 240 9.4488 92.1 3.6260 4.3290 9.4472 4.3312 9.4506 22324 120 4.7244 260 10.2362 86 3.3858 4.7231 10.2331 4.7258 10.2362 23324 120 4.7244 260 10.2362 106 4.1732 4.7227 10.2343 4.7249 10.2382 22326 130 5.1181 280 11.0236 93 3.6614 5.1165 11.0205 5.1197 11.0236 23326 130 5.1181 280 11.0236 112 4.4094 5.1160 11.0217 5.1187 11.0256 22328 140 5.5118 300 11.8110 102 4.0157 5.5102 11.8079 5.5134 11.8110 23328 140 5.5118 300 11.8110 118 4.6457 5.5097 11.8091 5.5124 11.8130 22330 150 5.9055 320 12.5984 108 4.2520 5.9039 12.5949 5.9071 12.5984 23330 150 5.9055 320 12.5984 128 5.0394 5.9034 12.5963 5.9061 12.6006 22332 160 6.2992 340 13.3858 114 4.4882 6.2976 13.3823 6.3008 13.3858 23332 160 6.2992 340 13.3858 136 5.3543 6.2971 13.3837 6.2998 13.3880 22334 170 6.6929 360 14.1732 120 4.7244 6.6913 14.1697 6.6945 14.1732 6.6908 14.1711 6.6935 14.1754 22336 180 7.0866 380 14.9606 126 4.9606 7.0850 14.9571 7.0882 14.9606 7.0845 14.9585 7.0872 14.9628 22338 190 7.4803 400 15.7480 132 5.1969 7.4784 15.7445 7.4821 15.7480 23338 190 7.4803 400 15.7480 155 6.1024 7.4778 15.7459 7.4809 15.7502 22340 200 7.8740 420 16.5354 138 5.4331 7.8721 16.5316 7.8758 16.5354 23340 200 7.8740 420 16.5354 165 6.4961 7.8715 16.5332 7.8746 16.5379 NOTE: The 233 series bearings are about 15 to 20% wider than the 223 series and have about 15 to 22% more capacity. Many screens using the 223 series can also use the 233 series. 6

For your nearest Timken sales representative, call (800) 223-1954. Outside the U.S. and Canada, call (330) 438-3000. Timken US Corporation is a Timken Company subsidiary Timken and Torrington are registered trademarks of The Timken Company. www.timken.com 2003 The Timken Company Printed In the U.S.A. 5M-07-03-05 Order No. 5727 (Formerly Torrington No. 635) WORLDWIDE LEADER IN BEARINGS AND STEEL