Types of Bearings in VS .NET

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Types of Bearings
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There are many types of motor bearings, with ball bearings being the most common There are several different types of ball bearings used in motors:
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Open Single shielded Double shielded Sealed Double row and other special types
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Open bearings, as the name implies, are open construction and must be installed in a sealed housing These bearings are less apt to cause 159
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churning of grease, and for this reason are used mostly on large motors Single-shielded bearings have a shield on one side to exclude grease from the motor windings Double-shielded bearings have a shield on both sides of the bearing This type of bearing is less susceptible to contamination, requires no maintenance, and does not require regreasing It is normally used on small- or medium-size motors Each bearing type has characteristics which make it the best choice for a certain application Replacement should be made with the same type bearings The following list of functions provide a basic understanding of bearing application, a guide to analysis of bearing troubles due to misapplication, and emphasize the importance of proper replacement Figure 7-1 shows several types of bearings used in electric motors The following is a brief description of each: Self-aligning ball bearings: Self-aligning ball bearings are used for radial loads and moderate thrust loads in either direction This ball bearing, has two rows of balls rolling on the spherical surface of the outer ring, compensates for angular misalignment resulting from errors in mounting, shaft deflection, and distortion of the foundation It is impossible for this bearing to exert any bending influence on the shaft an important consideration in high-speed applications requiring extreme accuracy 160
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7-1 Various bearing types Single-row, deep-groove ball bearings: The single-row, deep-groove ball bearing will sustain, in addition to radial load, a substantial thrust load in either direction, even at very high speeds This advantage results from the intimate contact existing between the balls and the deep, continuous groove in each ring When using this type of bearing, careful alignment between 161
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the shaft and housing is essential This bearing is also available with seals and shields, which exclude dirt and retain lubricant Angular-contact ball bearings: The angular-contact ball bearing supports a heavy thrust load in one direction, sometimes combined with a moderate radial load A steep contact angle, assuring the highest thrust capacity and axial rigidity, is obtained by a high thrust-supporting shoulder on the inner ring and a similar high shoulder on the opposite side of the outer ring Double-row, deep-groove ball bearings: The double-row, deep-groove ball bearing has a lower axial displacement than the single-row design, substantial thrust capacity in either direction, and high radial capacity due to the two rows of balls Spherical-roller bearings: The spherical-roller bearing has maximum capacity, due to the number, size, and shape of the rollers, and the accuracy with which they are guided Since the bearing is inherently self-aligning, angular misalignment between the shaft and housing has no detrimental effect, and the full capacity is always available for useful work Cylindrical-roller bearings: This type of bearing has high radial capacity and provides accurate guiding of the rollers, resulting in low friction that permits operation at high speed The double-row type is particularly suitable for machine-tool spindles Ball-thrust bearings: The ball-thrust bearing is designed for thrust load in one direction only The load line through the balls is parallel to the axis of the shaft, 162
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resulting in high-thrust capacity and minimum-axial deflection Spherical-roller thrust bearings: The spherical-roller thrust bearing is designed to carry heavy thrust loads, or combined loads, which are predominantly thrust This bearing has a single row of rollers that roll on a spherical outer race with full self-alignment The cage, centered by an inner ring sleeve, is constructed so that lubricant is pumped directly against the inner ring s unusually high guide flange Tapered-roller bearings: Since the axes of its rollers and raceways form an angle with the shaft axis, the tapered-roller bearing is especially suitable for carrying radial and axial loads acting simultaneously A bearing of this type usually must be adjusted toward another bearing capable of carrying thrust loads in the opposite direction Tapered-roller bearings are separable; their cones (inner rings) with rollers and their cups (outer rings) are mounted separately The do s and don ts for ball-bearing assembly, maintenance, inspection, and lubrication are shown in Figure 7-2
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