Bearing assembly, bearing assembly mounting structure and air blowing apparatus
11215223 ยท 2022-01-04
Assignee
- GREE ELECTRIC APPLIANCES (WUHAN) CO., LTD (Wuhan, CN)
- Gree Electric Appliances, Inc. Of Zhuhai (Guangdong, CN)
Inventors
Cpc classification
F04D29/263
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2226/80
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D17/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/043
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C17/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D25/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/046
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C35/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/283
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C23/043
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/057
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2360/46
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/0563
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16C17/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/046
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/26
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C23/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C35/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
Provided are a bearing assembly, a bearing assembly mounting structure and an air blowing apparatus. The bearing assembly includes: a bearing sleeve including an inner assembling face, and a bearing mounted into the bearing sleeve from an axial side of the bearing sleeve and including an outer assembling face corresponding to the inner assembling face. The inner assembling face and/or the outer assembling face is provided with a supporting structure protruding toward an opposing assembling face and cooperating with the opposing assembling face in a contacting manner, and the supporting structure is symmetrically disposed in a peripheral direction of the assembling face where the supporting structure is located.
Claims
1. A bearing assembly, comprising: a bearing sleeve, comprising an inner assembling face; and a bearing, mounted into the bearing sleeve from an axial side of the bearing sleeve and comprising an outer assembling face corresponding to the inner assembling face, wherein, each of the inner assembling face and the outer assembling face is provided with a supporting structure protruding toward an opposing assembling face and cooperating with the opposing assembling face in a contacting manner, and the supporting structure is symmetrically disposed in a peripheral direction of the assembling face where the supporting structure is located; or, the inner assembling face is provided with a supporting structure protruding toward the outer assembling face and cooperating with the outer assembling face in a contacting manner, and the supporting structure is symmetrically disposed in a peripheral direction of the outer assembling face where the supporting structure is located; or, the outer assembling face is provided with a supporting structure protruding toward the inner assembling face and cooperating with the inner assembling face in a contacting manner, and the supporting structure is symmetrically disposed in a peripheral direction of the inner assembling face where the supporting structure is located; wherein the bearing assembly further comprises an axial limiting structure disposed between the bearing sleeve and the bearing and configured to limit relative movement of the bearing sleeve and the bearing after assembling in an axial direction; the axial limiting structure comprises a convex section moulded on the inner assembling face and a groove section moulded on the outer assembling face, and the convex section cooperates with the groove section in a clamping manner after the bearing is mounted into the bearing sleeve.
2. The bearing assembly as claimed in claim 1, wherein, the supporting structure comprises a plurality of ribs which are disposed along an axial direction of the assembling face where the supporting structure is located.
3. The bearing assembly as claimed in claim 2, wherein, the plurality of ribs are uniformly disposed in the peripheral direction of the assembling face where the plurality of ribs are located.
4. The bearing assembly as claimed in claim 2, wherein, the plurality of ribs are provided on the outer assembling face of the bearing, and each of the plurality of ribs is provided with a chamfer angle on a front end along a direction of mounting the bearing in.
5. The bearing assembly as claimed in claim 1, wherein, the supporting structure comprises a plurality of round bulges.
6. The bearing assembly as claimed in claim 1, wherein, the axial limiting structure is positioned on a front side of the supporting structure in the direction of mounting the bearing.
7. The bearing assembly as claimed in claim 1, wherein, the convex section is provided with a supporting boss protruding toward the groove section and cooperating with a surface of the groove section on an opposite side in a contacting manner, so that a gap is formed between surfaces of the convex section and the groove section.
8. The bearing assembly as claimed in claim 1, wherein, the bearing assembly comprises a chamfer angle provided on a front end of the bearing.
9. The bearing assembly as claimed in claim 1, wherein, the inner assembling face and the outer assembling face are cylindrical surfaces.
10. A bearing assembly mounting structure, comprising: a housing, the housing being provided with a bearing seat and a first buckle, and the baring seat, the first buckle and the housing being integrally moulded; and the bearing assembly as claimed in claim 1, the bearing assembly being provided with a second buckle, and the second buckle cooperating with the first buckle when the bearing assembly is assembled to the bearing seat to form a buckle structure of locking the bearing assembly.
11. The bearing assembly mounting structure as claimed in claim 10, wherein, the bearing assembly is mounted into the bearing seat along a preset inserting direction, the first buckle is disposed on an inner side of the bearing seat along the preset inserting direction; the bearing assembly is provided with an extension arm extending toward the bearing seat, and the second buckle is moulded on the extension arm; when the bearing assembly is mounted into the bearing seat, the extension arm extends into the inner side of the bearing seat, so that the buckle structure is formed by the second buckle and the first buckle.
12. The bearing assembly mounting structure as claimed in claim 11, wherein, a first supporting wall and a second supporting wall, which are provided in parallel and disposed at intervals, are moulded on the housing; and the bearing seat is formed on a corresponding end of the first supporting wall and a corresponding end of the second supporting wall.
13. The bearing assembly mounting structure as claimed in claim 12, wherein, the second buckle is moulded on inner walls corresponding to the first supporting wall and the second supporting wall, respectively; the extension arm comprises a first extension arm and a second extension arm which are disposed on two axial ends of the bearing assembly; and the first extension arm and the second extension arm are formed with the second buckle.
14. The bearing assembly mounting structure as claimed in claim 13, wherein, the first extension arm and the second extension arm are positioned on inner sides or outer sides of the first supporting wall and the second supporting wall, and cooperate with corresponding inner walls or outer walls of the first supporting wall and the second supporting wall.
15. The bearing assembly mounting structure as claimed in claim 10, wherein, at least one of the first buckle and the second buckle is provided with a guiding slope configured to guide the first buckle and the second buckle to form the buckle structure.
16. The bearing assembly mounting structure as claimed in claim 10, wherein, the first buckle is a first clamping bulge or a first clamping groove, and the second buckle is a second clamping groove cooperating with the first clamping bulge or a second clamping bulge cooperating with the first clamping groove.
17. The bearing assembly mounting structure as claimed in claim 10, wherein, the at least one of the first buckle and the second buckle is an elastic buckle.
18. The bearing assembly mounting structure as claimed in claim 10, wherein, the bearing assembly is the one cooperating with a blade shaft of a cross-flow blade.
19. The bearing assembly mounting structure as claimed in claim 10, wherein, the bearing assembly comprises the bearing sleeve and the bearing, and the bearing is detachably mounted inside the bearing sleeve.
20. An air blowing apparatus, comprising: a blade, having a blade shaft, the blade being mounted inside a housing; and the bearing assembly mounting structure as claimed in claim 10, the bearing assembly supporting the blade shaft and cooperating with the blade shaft in a rotating manner.
21. The air blowing apparatus as claimed in claim 20, wherein, the air blowing apparatus is a tower fan.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Features and advantages of the present disclosure may be more clearly understood with reference to drawings, and the drawings are exemplary and should not be understood as any restriction on the present disclosure. In the drawings:
(2)
(3)
(4)
(5)
(6)
(7)
(8) Reference numbers: 1, Housing; 11, Bearing seat; 12, First buckle; 13, First supporting wall; 14, Second supporting wall; 2, Bearing assembly; 21, Second buckle; 22, First extension arm; 23, Second extension arm; 24, Guiding slope; 25, Bearing sleeve; 251, Inner assembling face; 2511, Convex section; 2511a, Supporting boss; 26, Bearing; 261, Outer assembling face; 2611, Groove section; 262, Second chamfer angle; 31, Blade; 32, Blade shaft; 33, Rib; 331, First chamfer angle; 35, Gap.
DETAILED DESCRIPTION OF THE EMBODIMENTS
(9) Embodiments of the present disclosure will be described below in detail in combination with drawings.
Embodiment 1
(10)
(11) In some embodiments, the outer assembling face 261 and the inner assembling face 251 are cylindrical surfaces.
(12) In some embodiments, as shown in
(13) In some embodiments, in order to improve assembling efficiency of the bearing 26 and the bearing sleeve 25, the plurality of ribs 33 are provided with a first chamfer angle 331 on a front end along a direction of mounting the bearing 26 in. The first chamfer angle 331 plays a role of guiding. It is to be noted that the bearing is mounted into the bearing sleeve from an opening on the axial side of the bearing sleeve, and the direction of mounting in is the one allowing the bearing to be mounted into the bearing sleeve from the outside. The front end of each of the multiple ribs 33 is one end allowing the rib to enter into the bearing sleeve first along the bearing.
(14) In order to prevent the bearing 26 and the bearing sleeve 25 from relative movement in the axial direction when the bearing 26 is mounted into the bearing sleeve 25, in some embodiments, as shown in
(15) In some embodiments, the axial limiting structure includes a convex section 2511 moulded on the inner assembling face 251 and a groove section 2611 moulded on the outer assembling face 261. The convex section 2511 cooperates with the groove section 2611 in a clamping manner after the bearing is mounted into the bearing sleeve. Through the fitting of the convex section 2511 and the groove section 2611 in the clamping manner, relative movement of the bearing 26 and the bearing sleeve 25 in the axial direction is prevented.
(16) From
(17) In order to reduce a contact area between surfaces of the convex section 2511 and the groove section 2611, as shown in
(18) In some embodiments, in order to facilitate assembling of the bearing 26, a front end of the bearing 26 is provided with a second chamfer angle 262.
(19) In some embodiments of the present disclosure, the groove section 2611 of the bearing 26 is adjacent to a rear side of the first chamfer angle 331. During assembling the bearing, the front end of the bearing extends outward from an opening of a front end of the bearing sleeve 25 through the first chamfer angle 331, and a side wall of the groove section 2611 on the rear side of the first chamfer angle 331 is upended on a front end surface of the bearing sleeve 25.
(20) In some embodiments, the abovementioned supporting structure further is disposed on the inner assembling face 251 of the bearing sleeve.
(21) In some embodiments, the abovementioned supporting structure further is disposed on the inner assembling face 251 of the bearing sleeve 25 and the outer assembling face 261 of the bearing 26. For example, the plurality of ribs 33 are taken as the supporting structure, herein part of the ribs 33 are moulded on the inner assembling face 251 of the bearing sleeve 25, and part of the ribs 33 are moulded on the outer assembling face 261 of the bearing 26, the ribs 33 on the bearing sleeve 25 are staggered with the ribs 33 on the bearing 26, as to cooperate with the assembling faces on the opposite side in a contacting manner, respectively.
(22) In some embodiments, the abovementioned supporting structure further includes a plurality of round bulges moulded on an assembling face where the round bulges are located.
(23) It is to be finally noted that the bearing assembly of the embodiments is not limited to be applied to the cross-flow blade of the tower fan.
Embodiment 2
(24)
(25) In some embodiments, the bearing assembly 2 is mounted into the bearing seat 11 along a preset inserting direction, and the preset inserting direction is adjusted according to an actual assembling status of the bearing assembly mounting structure. In the embodiments, as shown in
(26) In some embodiments, as shown in
(27) In some embodiments, as shown in
(28) In addition, in some embodiments, in order to facilitate assembling of the bearing assembly 2 and the bearing seat 11, the first buckle 12 and the second buckle 21 are provided with a guiding slope 24 configured to guide the two to form the buckle structure. Through the guiding slope 24, the first buckle 12 and the second buckle 21 are easily form buckled fitting when the bearing assembly 2 is mounted into the bearing seat 11, and accordingly assembling efficiency is improved.
(29) In some embodiments, as shown in
Embodiment 3
(30) The embodiment provides an air blowing apparatus having the bearing assembly mounting structure of the embodiment 2. In some embodiments, the air blowing apparatus is a tower fan. The tower fan includes a blade having a blade shaft, and the blade is mounted in a housing 1. A bearing assembling 2 supports the blade shaft 32 and fits the blade shaft 32 in a rotating manner.
(31) Although the embodiments of the present disclosure are described in combination with the drawings, those skilled in the art may make various modifications and changes without departing from the spirit and scope of the present disclosure, and these modifications and changes shall fall within the scope defined by the appended claims.