Discharging mechanism of bearing ring machining deoiling device

By designing a combined structure of support sleeve and fixing components, the problem of the bearing ring feeding device being unable to be fixed and adaptively clamped was solved, achieving stable clamping and diversified adaptive clamping of bearing rings, and improving the adaptability of feeding.

CN223962822UActive Publication Date: 2026-03-03ANHUI BEIMI BEARING MANUFACTURING CO LTD
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Patent Information

Application Number
CN202520789173.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-24
Publication Date
2026-03-03
Estimated Expiration
2035-04-24

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Abstract

The discharging mechanism of the bearing ring machining deoiling device comprises a supporting sleeve and a fixing assembly, and a sliding clamping rail is arranged on the surface of the supporting sleeve; the fixing assembly comprises a sliding clamping ring. The surface of the sliding clamping ring is fixedly connected with a supporting clamping rod. The surface of the supporting clamping rod is slidably connected with the inner wall of the sliding clamping rail. A supporting clamping groove is formed in the surface of the supporting clamping rod; rotating clamping grooves are formed in the supporting clamping rod and located in the two sides of the supporting clamping groove. The inner wall of the rotating clamping groove is fixedly connected with a fixed clamping rod; the surface of the fixing clamping rod is rotationally connected with a supporting clamping ball. The surface of the supporting clamping ball is fixedly connected with a semicircular stop lever; by arranging the fixing assembly, a bearing ring is clamped, so that the effect of fixing a bearing is achieved, in addition, the effect of adjusting the clamping width can be achieved, different numbers of bearings can be clamped, and the adaptability of discharging is improved.
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Description

Technical Field

[0001] This utility model relates to the field of bearing processing technology, and in particular to a feeding mechanism of a bearing ring processing oil removal device. Background Technology

[0002] Bearing machining is a complex and delicate process involving multiple key steps and techniques. The machining of a bearing requires multiple steps, after which the various parts are assembled. These parts include the bearing races. To ensure the smooth rotation of the bearing, oil is usually applied to the surface of the bearing races.

[0003] Chinese patent CN215325470U discloses a bearing ring feeding device, including a material trough, a feeding port, a connecting plate, a baffle, and a vertical plate. The material trough is located on the vertical plate and a guiding mechanism is provided within it. The connecting plate is fixedly connected to the vertical plate, and the feeding port is located on the connecting plate. A pressing mechanism is located above the feeding port, and the baffle is fixedly connected to the vertical plate. The pressing mechanism includes a actuating disc, a rotating rod, a material receiving trough, and a rotating shaft. The rotating shaft is rotatably connected to the vertical plate via a bearing. The actuating disc is fixedly connected to the rotating shaft, and the material receiving trough is located at the edge of the actuating disc. The rotating rod is fixedly connected to the actuating disc and has a rotating mechanism. This invention avoids material jamming.

[0004] As mentioned above, the patent provides a bearing ring unloading device that can avoid material jamming. However, it cannot fix the bearing during unloading and cannot properly adjust the clamping of different numbers of bearing rings, resulting in the overall unloading adaptability needing improvement. Utility Model Content

[0005] This utility model provides a feeding mechanism for a bearing ring processing oil removal device to solve the problems mentioned in the background art.

[0006] To address the aforementioned problems, this utility model provides a feeding mechanism for a bearing ring processing oil removal device, comprising a support sleeve and a fixing assembly. The support sleeve has a sliding rail on its surface; the fixing assembly includes a sliding retaining ring; a support rod is fixedly connected to the surface of the sliding retaining ring; the surface of the support rod is slidably connected to the inner wall of the sliding rail; a support groove is formed on the surface of the support rod; a rotating groove is formed inside the support rod and on both sides of the support groove; a fixing rod is fixedly connected to the inner wall of the rotating groove; a support ball is rotatably connected to the surface of the fixing rod; a semi-circular stop is fixedly connected to the surface of the support ball; a return torsion spring is sleeved on the surface of the fixing rod and on both sides of the support ball; the two ends of the return torsion spring are fixedly connected to the surface of the support ball and the inner wall of the rotating groove, respectively; a bidirectional lead screw is threaded to the inner side of the sliding retaining ring.

[0007] Preferably, the number of sliding retaining rings is set to two, and the two sliding retaining rings are symmetrically arranged at both ends of the bidirectional lead screw; the number of supporting retaining rods is set to multiple, and the multiple supporting retaining rods are evenly arranged on the circumference of the surfaces of the two sliding retaining rings.

[0008] Preferably, a front rotating column and a rear rotating column are fixedly connected to both ends of the bidirectional lead screw; positioning rings are fixedly connected to the surfaces of both the front rotating column and the rear rotating column.

[0009] Preferably, the surfaces of the front rotating column and the rear rotating column are rotatably connected to the inner walls of both ends of the support sleeve; the inner walls of both ends of the support sleeve are provided with annular grooves adapted to the positioning rings; the surface of the positioning rings is rotatably connected to the inner wall of the annular grooves.

[0010] Preferably: an adjusting rotating column is fixedly connected to the surface of one end of the rear rotating column; an adjusting rotating plate is fixedly connected to the surface of the adjusting rotating column; and an adjusting pull rod is fixedly connected to the surface of the adjusting rotating plate.

[0011] The beneficial effects of adopting the above technical solutions are:

[0012] By setting a fixed component, during operation, the bidirectional screw rotates to drive the sliding retaining ring to slide. A support rod is fixed on the surface of the sliding retaining ring. The semi-circular stop rotates inside the support groove of the support rod through the support ball. The fixed retaining rod provides limiting support for the support ball, and return torsion springs are fixed on both sides of the support ball. The return torsion springs are sleeved on the fixed retaining rod, so that the support ball always drives the hemispherical stop to be placed vertically inside the support groove, thereby clamping the bearing ring and fixing the bearing. In addition, the sliding retaining ring can slide on the surface of the bidirectional screw to adjust the clamping width, which can clamp different numbers of bearings, improving the adaptability of material feeding. Attached Figure Description

[0013] Figure 1 This is a three-dimensional structural diagram of the present invention.

[0014] Figure 2 This is a schematic diagram of the bidirectional lead screw connection structure of this utility model.

[0015] Figure 3 This is a schematic diagram of the cross-sectional structure of the support sleeve in this utility model.

[0016] Figure 4 This is an exploded view of the sliding snap ring connection structure in this utility model.

[0017] Figure 5 This utility model Figure 4 Enlarged view of the structure at point A in the middle.

[0018] The components include: 1. Support sleeve; 2. Sliding rail; 3. Sliding ring; 4. Support rod; 5. Support groove; 6. Rotating groove; 7. Fixed rod; 8. Support ball; 9. Semi-circular stop bar; 10. Return torsion spring; 11. Two-way screw; 12. Front rotating column; 13. Rear rotating column; 14. Positioning ring; 15. Annular groove; 16. Adjusting rotating column; 17. Adjusting plate; 18. Adjusting pull rod. Detailed Implementation

[0019] The embodiments of this utility model are described in detail below with reference to the accompanying drawings.

[0020] In the description of this utility model, unless otherwise stated, "a plurality of" means two or more; the terms "upper," "lower," "left," "right," "inner," "outer," "front end," "rear end," "head," "tail," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. In addition, the terms "first," "second," "third," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0021] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "connected" and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, a movable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0022] like Figure 1 - Figure 5 As shown in this embodiment, a feeding mechanism of a bearing ring processing degreasing device includes a support sleeve 1 and a fixing assembly. The surface of the support sleeve 1 is provided with a sliding rail 2; the fixing assembly includes a sliding retaining ring 3; a support retaining rod 4 is fixedly connected to the surface of the sliding retaining ring 3; the surface of the support retaining rod 4 is slidably connected to the inner wall of the sliding rail 2; a support retaining groove 5 is provided on the surface of the support retaining rod 4; a rotating retaining groove 6 is provided inside the support retaining rod 4 and on both sides of the support retaining groove 5; a fixing retaining rod 7 is fixedly connected to the inner wall of the rotating retaining groove 6; a support retaining ball 8 is rotatably connected to the surface of the fixing retaining rod 7; a semi-circular stop bar 9 is fixedly connected to the surface of the fixing retaining rod 7 and on both sides of the support retaining ball 8; a return torsion spring 10 is sleeved on the surface of the fixing retaining rod 7 and on both sides of the support retaining ball 8; the two ends of the return torsion spring 10 are fixedly connected to the surface of the support retaining ball 8 and the inner wall of the rotating retaining groove 6, respectively; a bidirectional lead screw 11 is threadedly connected to the inner side of the sliding retaining ring 3.

[0023] Through the above technical solution, the surface of the support sleeve 1 is used to accommodate the bearing rings. The sliding rail 2 is formed on the support sleeve 1, and the sliding ring 3 slides inside the support sleeve 1. The surface of the sliding ring 3 is fixed to the support rod 4, and a support groove 5 is formed on the surface of the support rod 4. A rotating groove 6 is also formed inside the support rod 4 for fixing and connecting the fixed rod 7. The fixed rod 7 is rotatably connected to the support ball 8 and supports the support ball 8. During operation, the double-acting screw 11 rotates to drive the sliding ring 3 to slide, and the support rod 4 is fixed on the surface of the sliding ring 3. The semi-circular stop bar 9 rotates within the support groove 5 inside the support bar 4 via the support ball 8. The fixed bar 7 provides limiting support for the support ball 8, and reset torsion springs 10 are fixed on both sides of the support ball 8. The reset torsion springs 10 are sleeved on the fixed bar 7, so that the support ball 8 always drives the semi-circular stop bar to be placed vertically inside the support groove 5, thereby clamping the bearing ring and fixing the bearing. In addition, the sliding ring 3 can slide on the surface of the bidirectional screw 11 to adjust the clamping width, which can clamp different numbers of bearings and improve the adaptability of material feeding.

[0024] like Figure 2 As shown, the number of sliding retaining rings 3 is set to two, and the two sliding retaining rings 3 are symmetrically arranged at both ends of the bidirectional lead screw 11; the number of supporting retaining rods 4 is set to multiple, and the multiple supporting retaining rods 4 are evenly arranged on the circumference of the surface of the two sliding retaining rings 3; the two ends of the bidirectional lead screw 11 are respectively fixedly connected to a front rotating column 12 and a rear rotating column 13; the surfaces of the front rotating column 12 and the rear rotating column 13 are both fixedly connected to positioning retaining rings 14.

[0025] Through the above technical solution, two sliding retaining rings 3 are set and symmetrically arranged at both ends of the bidirectional lead screw 11. The sliding retaining rings 3 at both ends, together with the support rod 4 and the semi-circular stop rod 9 inside the support rod 4, clamp the bearing ring. The front rotating column 12 and the rear rotating column 13 are fixed at both ends of the bidirectional lead screw 11, and the surfaces of the front rotating column 12 and the rear rotating column 13 are fixed with positioning retaining rings 14. The front rotating column 12 and the rear rotating column 13 support both ends of the bidirectional lead screw 11.

[0026] like Figure 1 - Figure 3 As shown, the surfaces of the front rotating column 12 and the rear rotating column 13 are rotatably connected to the inner walls of both ends of the support sleeve 1, respectively; the inner walls of both ends of the support sleeve 1 are provided with annular grooves 15 that are adapted to the positioning rings 14; the surface of the positioning rings 14 is rotatably connected to the inner walls of the annular grooves 15; an adjusting rotating column 16 is fixedly connected to one end of the rear rotating column 13; an adjusting rotating plate 17 is fixedly connected to the surface of the adjusting rotating column 16; and an adjusting pull rod 18 is fixedly connected to the surface of the adjusting rotating plate 17.

[0027] Through the above technical solution, the front rotating column 12 and the rear rotating column 13 rotate on the inner walls at both ends of the support sleeve 1, and annular grooves 15 are opened on the inner walls at both ends of the support sleeve 1 to support the rotating positioning ring 14 and limit the positioning ring 14. In addition, an adjusting rotating column 16 is fixed at one end of the rear rotating column 13. When the bidirectional screw 11 is driven to rotate, the adjusting pull rod 18 drives the adjusting plate 17 to start rotating, which in turn drives the adjusting rotating column 16 to start rotating. The rotation of the adjusting rotating column 16 drives the rear rotating column 13 to rotate, which in turn drives the bidirectional screw 11 to start rotating, so as to realize the sliding function of the adjusting sliding ring 3.

[0028] Finally, it should be noted that the above embodiments are only used to illustrate this utility model, and not to limit the technical solutions described in this utility model. Therefore, although this specification has described this utility model in detail with reference to the above embodiments, those skilled in the art should understand that modifications or equivalent substitutions can still be made to this utility model, and all technical solutions and improvements that do not depart from the spirit and scope of this utility model should be covered within the scope of the claims of this utility model; technologies not described in detail in this utility model are implemented with existing technology.

Claims

1. A blanking mechanism of a bearing ring processing deoiling device, comprising a support sleeve (1) and a fixing assembly, characterized in that: The surface of the support sleeve (1) is provided with a sliding track (2); the fixing assembly comprises a sliding clasp (3); the surface of the sliding clasp (3) is fixedly connected with a support clamping rod (4); the surface of the support clamping rod (4) is in sliding connection with the inner wall of the sliding track (2); the surface of the support clamping rod (4) is provided with a support clamping groove (5); the inside of the support clamping rod (4) and on both sides of the support clamping groove (5) are provided with a rotating clamping groove (6); the inner wall of the rotating clamping groove (6) is fixedly connected with a fixed clamping rod (7); the surface of the fixed clamping rod (7) is rotatably connected with a support clamping ball (8); the surface of the support clamping ball (8) is fixedly connected with a semicircular blocking rod (9); the surface of the fixed clamping rod (7) and on both sides of the support clamping ball (8) are sleeved with a reset torsion spring (10); both ends of the reset torsion spring (10) are fixedly connected with the surface of the support clamping ball (8) and the inner wall of the rotating clamping groove (6) respectively; the inner side of the sliding clasp (3) is threadedly connected with a bidirectional screw rod (11).

2. The blanking mechanism of a bearing ring deoiling device according to claim 1, characterized in that: The number of the sliding clasp (3) is two, and the two sliding clasps (3) are symmetrically arranged at both ends of the bidirectional screw rod (11) respectively; the number of the support clamping rod (4) is multiple, and the multiple support clamping rods (4) are uniformly arranged on the surface circumference of the two sliding clasps (3) respectively.

3. The blanking mechanism of a bearing ring deoiling device according to claim 1, characterized in that: Both ends of the bidirectional screw rod (11) are fixedly connected with a front rotating column (12) and a rear rotating column (13) respectively; the surface of the front rotating column (12) and the rear rotating column (13) is fixedly connected with a positioning clasp (14).

4. The blanking mechanism of a bearing ring deoiling device according to claim 3, characterized in that: The surface of the front rotating column (12) and the rear rotating column (13) is rotatably connected with the inner wall of both ends of the support sleeve (1); the inner wall of both ends of the support sleeve (1) is provided with an annular clamping groove (15) matched with the positioning clasp (14); the surface of the positioning clasp (14) is rotatably connected with the inner wall of the annular clamping groove (15).

5. The blanking mechanism of a bearing ring deoiling device according to claim 3, characterized in that: The surface of one end of the rear rotating column (13) is fixedly connected with an adjusting rotating column (16); the surface of the adjusting rotating column (16) is fixedly connected with an adjusting rotating plate (17); the surface of the adjusting rotating plate (17) is fixedly connected with an adjusting pull rod (18).

Citation Information

Patent Citations

  • Bearing ring blanking device

    CN215325470U