Deep groove ball bearing with a rotor
10197101 ยท 2019-02-05
Assignee
Inventors
Cpc classification
F16J15/3444
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2240/76
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C19/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/7846
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/583
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/80
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C19/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2380/26
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C9/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/782
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/78
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C25/086
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C35/042
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16C9/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C35/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/58
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/78
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C19/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C25/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C25/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A deep groove ball bearing with a rotor is disclosed by the present invention. The deep groove ball bearing with a rotor comprises a mandrel, at least one bearing assembly structure mounted on the periphery of the mandrel, and a magnet structure; wherein the bearing assembly structure, along with the mandrel to constitute the deep groove ball bearing structure, includes an outer ring sleeved on the periphery of the mandrel, steel balls, and an inner sealing cover; wherein the periphery of the mandrel is provided with at least one lap of channel that matches with a groove provided on the inner surface of the outer ring, and the steel balls are installed between the channel and the groove; wherein an inner sealing cover is axially embedded in a sealing groove of the out ring for sealing an inner side of the outer ring; wherein the magnet structure includes a permanent magnet glued on the periphery of the mandrel, a reinforcing sleeve sleeved outside the permanent magnet, and a balance ring provided at one end of the permanent magnet.
Claims
1. A deep groove ball bearing with a rotor, comprising a mandrel, at least one bearing assembly structure mounted on a periphery of the mandrel, and a magnet structure; wherein, the bearing assembly structure, along with the mandrel to constitute the deep groove ball bearing structure, includes an outer ring sleeved on the periphery of the mandrel, steel balls, and an inner sealing cover; wherein the periphery of the mandrel is provided with at least one lap of channel that matches with a groove provided on an inner surface of the outer ring, and the steel balls are installed between the channel and the groove; wherein an inner sealing cover is axially embedded in a sealing groove of the out ring for sealing an inner side of the outer ring; wherein the magnet structure includes a permanent magnet glued on the periphery of the mandrel, a reinforcing sleeve sleeved outside the permanent magnet, and a balance ring provided at one end of the permanent magnet.
2. The deep groove ball bearing with a rotor of claim 1, wherein the steel balls are mounted between the outer ring and the mandrel by a nylon retainer, and a radial clearance Gr is disposed between the steel balls and the groove of the outer ring to facilitate turning of the steel balls within the groove.
3. The deep groove ball bearing with a rotor of claim 2, wherein a periphery of the outer ring is also provided with a plurality of circumferential grooves for mounting O-rings.
4. The deep groove ball bearing with a rotor of claim 3, wherein the periphery of the outer ring is also provided with a slot for glue storage.
5. The deep groove ball bearing with a rotor of claim 4, wherein numbers of the channel and of the groove are two, and the balance ring is provided on a side of the permanent magnet away from the outer ring, and the mandrel is in the form of a multi-stage stepped shaft.
6. The deep groove ball bearing with a rotor of claim 5, wherein the inner surface of the periphery of the outer ring is provided with a mounting groove in which an outer edge of the inner sealing cover is embedded, wherein the bearing assembly structure further comprises an outer shield, an outer edge of which is embedded in the mounting groove.
7. The deep groove ball bearing with a rotor of claim 6, wherein the bearing assembly structure further comprises a spring coil, and the outer shield is positioned outside the inner sealing cover, wherein the spring coil is embedded in the mounting groove and fixes outer edges of the inner sealing cover and the outer shield, wherein the inner sealing cover, the outer shield and the spring coil conjointly form a labyrinth sealing structure at the periphery of the outer ring.
8. The deep groove ball bearing with a rotor of claim 7, wherein the channel of the mandrel has a groove curvature of Ri0.95.sub.0.sup.+0.02 and a curvature coefficient of 0.528; the groove of the outer ring has a groove curvature of Re0.96.sub.0.sup.+0.02 and a groove curvature coefficient of 0.533.
9. The deep groove ball bearing with a rotor of claim 4, wherein the balance ring is provided on the side of the permanent magnet adjacent to the outer ring, and the mandrel is in a straight-through configuration.
10. The deep groove ball bearing with a rotor of claim 4, wherein there are two bearing assembly structures respectively provided on the mandrel on either side of the magnet structure, and the inner side of the outer ring of each bearing assembly structure is respectively provided with one said groove.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
DETAILED DESCRIPTION OF THE EMBODIMENTS
(5) To make the technical means, creative features, purpose and effect achieved by the present invention easy to understand, the following embodiments illustrate specifically the deep groove ball bearing with a rotor presented by the present invention in conjunction with the accompanied
(6) Embodiments 1
(7)
(8) Specifically, in the embodiment, both numbers of channels 13 and of grooves are two. The steel balls 4 are limited between the outer ring 1 and the mandrel 2 by a nylon retainer 3. Further, the periphery of the outer ring 1 is also provided with a plurality of circumferential grooves for mounting O-rings. Furthermore, the periphery of the outer ring 1 is also provided with a slot 12 for glue storage.
(9) In a preferred embodiment, the inner surface of the periphery of the outer ring 1 is provided with a mounting groove in which an outer edge of the inner sealing cover 9 is embedded; wherein the bearing assembly structure further comprises an outer shield 10, an outer edge of which is embedded in the mounting groove. Further, the bearing assembly structure further comprises a spring coil 11, and the outer shield 10 is positioned outside the inner sealing cover 9; wherein the spring coil 11 is embedded in the mounting groove and fixes outer edges of the inner sealing cover 9 and the outer shield 10; wherein the inner sealing cover 9, the outer shield 10 and the spring coil 11 conjointly form a labyrinth sealing structure at the periphery of the outer ring 1, which can effectively achieve the effect of dust proof and sealing so that dust is difficult to enter the interior of the outer ring 1.
(10) As a further preferred embodiment, in the present embodiment, the balance ring 8 is provided on a side of the permanent magnet 6 away from the outer ring 1. Also, the mandrel 2 is in the form of a multi-stage stepped shaft.
(11) During production of the embodiment, the mandrel 2 has a diameter of 3.sup.8 mm, the outer ring 1 has an outer diameter between 10.sup.20 mm. The mandrel 2 and an inner ring of the bearing are integrally formed in the embodiment, having a permanent magnet 6. As a result, a processing thereof requires special processing equipment with the linear speed of the grinding wheel should be greater than 60 m/s. The channel 13 of the mandrel 2 has a groove curvature of Ri0.95.sub.0.sup.+0.02 and a curvature coefficient of 0.528; and the groove of the outer ring 1 has a groove curvature of Re0.96.sub.0.sup.+0.02 and a groove curvature coefficient of 0.533. The approximate curvature coefficient design of the channel 13 of the mandrel 2 and the groove of the outer ring 1 improves the axial stability of the bearing. The groove curvature can be adjusted properly according to the needs of the process. The gap A between the inner ends of the inner sealing cover 9 and of the outer shield 10 and the mandrel 2 is set to 0.015 mm, as indicated by the letter A in
(12) Where the material of mandrel 2 is ZGCr15 high carbon chromium armor bearing steel, and the processing method of the mandrel 2 is: blank of the mandrel 2temperingsoft grindingquenchingfreezing treatmenttemperinganti-fatigue strengthening treatmentrough grinding of outside surfaceinfeed grindingfine grinding of outside surfacebarrelling of outside surfacefine grinding of racewaybarrelling of outside surfacelapping of inner groovebarrelling of outside surfacestocking. The processing method of the outer ring 1 is: an turning part of outer ringquenching and freezing treatmentcleaningtemperingrough grinding of outside surfacegrinding of end faces of both endsfine grinding of outside surfacebarrelling of outside surfacefine grinding of outer groovebarrelling of outside surfacelapping of outer groovecoping of outside surface and barrelling of outside surfacestocking. This steel has an excellent comprehensive performance, high and uniform hardness after quenching, good wearability and high contact fatigue strength, less impurities than common bearing steel, better performance, which can be used in high-speed precise and long-life bearing.
(13) The accuracy of the processed mandrel 2 meets the following requirements: the outer diameter of the processed mandrel 2 is 7.sub.0.005.sup.+0.002 mm; the outer diameter of the step of the multi-stage structure of the mandrel 2 is 5.sub.0.009.sup.0.004 mm; roughness is Ra0.16 um; roundness of the outer diameter is up to 0.0008 mm; cylindricity is 0.002 mm; radial runout is 0.002 mm. The outer ring 1 is made of quality bearing steel GCr15 and the processed outer ring 1 meets the following requirements: outer diameter is 13.sup.0.sub.0005 mm; roughness of the outer surface is Ra0.16 um; roundness of the outer diameter is 0.0008 mm; radial runout is 0.004 mm; parallelism of the groove to end face is 0.005 mm. The channel 13 is roughly finished with 5,000-mesh oilstone and superfinished with 20,000-mesh oilstone, so that the roughness of the channel 13 of the inner and outer ring 1 is below 0.016 um after superfinishing, reducing the friction between the steel balls 4 and the channel 13 and improving the speed and efficiency of the bearing. The mandrel 2 and outer ring 1 can be assembled after qualified finishing. One end of the mandrel 2 and the outer ring 1 is mated according to the diameter of the channel, put onto ball die where the steel balls 4 are mounted; the steel balls 4 of the other end are mounted in the same way, clearance is measured, nylon retainers 3 are respectively mounted on both ends if the clearance is qualified, cleaning, high speed grease is injected, fix the inner sealing ring and the outer shield 10 are fixed respectively in the sealing groove of the outer ring 1 by the spring coil 11 using special tools, the deep groove ball bearing is formed, the grease is uniformed, the permanent magnet 66 is stuck thereto after vibration measurement is qualified, the balance ring 8 is then stuck and the reinforcing sleeve 7 is installed. In addition, the dynamic balance is adjusted by the balance ring 8 to ensure stability under high revolution speed of the rotor.
(14) As shown in
(15) Two O-rings 5 are installed respectively on both ends of the outer edge of the outer ring 1 to facilitate the damping and assemble and disassemble. The outer edge of the outer ring 1 is provided with the slot for glue storage to facilitate glue injection as needed after the installation of the bearing, so as to facilitate axial positioning of the bearing. Thus, the requirements for ultrahigh speed, high efficiency, sealing and energy-saving of the bearing by host manufacturers are met. The outer ring 1 is made of quality bearing steel GCr15 and the processed outer ring 1 meets the following requirements: outer diameter is 13.sup.0.sub.0.005 mm; roughness of the outer surface is Ra0.16 um; roundness of the outer diameter is 0.0008 um; cylindricity is 0.002 mm; parallelism of the channel 13 to end face is 0.005 mm. The channel 13 is roughly finished with 5,000-mesh oilstone and superfinished with 20,000-mesh oilstone, so that the roughness of the channel 13 of the inner and outer ring 1 is below 0.016 um after superfinishing, reducing the friction between the steel balls 4 and the channel 13 and improving the speed and efficiency or the bearing.
(16) In the above technical solution, the mandrel 2 provided with the channel 13 cooperates with the outer ring 1 to form the deep groove ball bearing structure, and the permanent magnet 6, with the balance ring at one end thereof, is integrated on the mandrel 2, and the O-rings 5 are provided at the periphery of the outer ring 1, so that the bearing runs smoothly under high revolution speed conditions, and has a small size, good sealing performance and long service life; O-rings 5 are installed on the outer ring 1 to facilitate the damping and assemble and disassemble; the outer edge of the outer ring 1 of the bearing is provided with the slot 12 for glue storage to facilitate glue injection as needed after the installation of the bearing, so as to facilitate axial positioning of the bearing.
(17) Embodiments 2
(18) Referring to
(19) Embodiments 3
(20) Referring to
(21) The above are only preferred embodiments of the present invention, and is only illustrative rather than restrictive for the present invention. It will be understood by those skilled in the art that many variations, modifications, and even equivalents may be made thereto without departing from the spirit and scope of the invention as defined by the appended claims, which will all fall within the scope of the protection of the present invention.