Multi-station synchronous machining equipment for bearing

By designing multi-station synchronous processing equipment for bearings and adopting lifting columns and motor drive to achieve multi-station synchronous drilling, the problem of low single-station processing efficiency is solved, and the bearing processing efficiency and equipment practicality are improved.

CN223368265UActive Publication Date: 2025-09-23JIASHAN XIANGYU BEARING CO LTD
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Patent Information

Application Number
CN202422813949.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-19
Publication Date
2025-09-23
Estimated Expiration
2034-11-19

AI Technical Summary

Technical Problem

Existing bearing hole drilling equipment adopts a single-station processing method, resulting in low processing efficiency and difficulty in meeting large-scale production needs.

Method used

A multi-station synchronous processing equipment for bearings is designed. It adopts a lifting column and motor drive to realize multi-station synchronous drilling. The motor drives the connecting column to rotate to adjust the drill direction, supporting the rapid replacement and fixation of drill bits of different specifications.

Benefits of technology

It improves the bearing processing efficiency, reduces the drill bit replacement time, ensures the stability of the drill bit, realizes the rapid cutting of bearings, and improves the practicality and production efficiency of the equipment.

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Abstract

The utility model discloses multi-station synchronous machining equipment for a bearing. The multi-station synchronous machining equipment comprises a machining equipment pedestal, and the lifting column is movably installed at the top of the machining equipment pedestal, and limiting plates are oppositely arranged on the two sides of the surface of the lifting column. According to the scheme, the first motor drives the screw rod to rotate, the lifting column installed on the surface of the screw rod can vertically move downwards under limiting of the limiting plate, and therefore a drill bit makes contact with the bearings so that the two bearings can be synchronously tapped, in addition, the second motor drives the connecting column to rotate, and the two bearings can be tapped synchronously. The orientation of the perforating mechanism on the surface of the mounting base can be adjusted, so that the perforating mechanism with drill bits of different specifications can face a bearing, direct replacement of the drill bits is achieved, and the time required for frequent disassembly and assembly of the drill bits is saved, and a first electric push rod shrinks to drive a clamping plate to be clamped with a through groove in the corresponding position of the surface of a connecting column; and the rotated second motor can be fixed, it is ensured that the drill bit is stable, and therefore the effect of improving the practicability of the device is achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of bearing processing equipment, and more specifically, to a multi-station synchronous processing equipment for bearings. Background Art

[0002] In the process of bearing processing, corresponding hole-opening equipment is often used to open mounting holes or lubrication holes on the bearing surface. However, it still has some disadvantages in actual use. For example, most of the bearing hole-opening equipment currently used adopts a single-station processing method, that is, processing operations are performed on only one station at a time. Although this processing method is simple, the processing efficiency of the bearing is relatively low, which is difficult to meet the needs of large-scale production, and to a certain extent reduces the practicality of the processing equipment. Utility Model Content

[0003] In order to overcome the above-mentioned defects of the prior art, an embodiment of the present invention provides a multi-station synchronous processing equipment for bearings to solve the problem that the prior art bearing hole opening equipment adopts a single-station processing method and cannot meet the needs of large-scale production.

[0004] In order to solve the above technical problems, the present invention provides the following technical solutions: a multi-station synchronous processing equipment for bearings, comprising

[0005] Processing equipment base;

[0006] A lifting column, wherein the lifting column is movably mounted on the top of the processing equipment base, and limit plates are provided on both sides of the surface of the lifting column, and the surfaces of the limit plates are slidably connected to the top of the processing equipment base;

[0007] Motor 1, the motor 1 being disposed inside a base of the processing equipment, the drive shaft of the motor 1 being fixedly connected to a screw, the surface of the screw being threadedly connected to the interior of the lifting column;

[0008] Motor 2 is relatively arranged on both sides of the top of the lifting column. The driving shaft of motor 2 is fixedly connected to the connecting column. One end of the connecting column is fixedly installed with a mounting seat, and the surface of the mounting seat is provided with an opening mechanism.

[0009] Among them, it also includes a support frame, a sleeve ring, an electric push rod, a connecting end, a fixed rod, and a clamping plate. The bottom end of the support frame is fixedly connected to the surface of the lifting column, the sleeve ring is movably sleeved on the surface of the connecting column, the bottom surface of the sleeve ring is fixedly connected to the top of the support frame, the electric push rod is arranged at the top of the lifting column, the fixed rod is fixedly connected to the top of the electric push rod through the connecting end, the clamping plate is arranged at the bottom of the fixed rod, and the surface of the clamping plate is clamped with the through groove opened on the surface of the connecting column.

[0010] It also includes auxiliary components, which are arranged on both sides of the surface of the processing equipment base.

[0011] Among them, the auxiliary components include a mounting plate, a mounting end, a connecting rod, a carrier plate, a second electric push rod, a clamping plate, a third electric push rod, and an abutment seat. The mounting plate is fixedly mounted on the surface of the processing equipment base, the mounting end is arranged inside the mounting plate, the connecting rod is rotatably mounted inside the mounting end, the carrier plate is fixedly mounted on the surface of the connecting rod, the second electric push rod is relatively arranged on both sides of the top surface of the mounting plate, the clamping plate is fixedly mounted at one end of the second electric push rod, the third electric push rod is arranged inside the side of the processing equipment base close to the mounting plate, the abutment seat is fixedly mounted on one end of the third electric push rod relative to the processing equipment base, and the top surface of the abutment seat is in contact with the bottom surface of the carrier plate.

[0012] The beneficial effects of the above technical solution of the utility model are as follows:

[0013] The cam is driven by a motor to move the screw rod and the driving plate to move the driving plate, so that the driving plate is moved downwards and the driving plate is moved downwards, thereby making the drill bit contact with the bearing and performing synchronous drilling of the two bearings. In addition, the motor drives the connecting column to rotate, so that the direction of the opening mechanism on the surface of the mounting seat can be adjusted, so that the opening mechanism with drill bits of different specifications can be oriented toward the bearing, so that the drill bit can be directly replaced, saving the time required for frequent disassembly and assembly of the drill bit. The electric push rod is retracted to drive the clamping plate to engage with the through groove at the corresponding position on the surface of the connecting column, so that the rotated motor can be fixed to ensure the stability of the drill bit, thereby achieving the effect of improving the practicality of the device.

[0014] When the bearing processing is completed, the electric push rod 3 drives the abutment seat to move horizontally, so that the abutment seat is separated from the bottom surface of the carrier plate. At this time, the electric push rod 2 contracts and drives the clamping plate to move synchronously to loosen the bearing. The carrier plate can be flipped downward under the action of the torsion spring inside the mounting end, so that the bearing slides out of the surface of the carrier plate, that is, the bearing is cut, which further improves the practicality of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0016] Figure 2 This is a three-dimensional assembly diagram of the overall device of the utility model;

[0017] Figure 3 This is a schematic diagram of the auxiliary component structure of the present utility model.

[0018] [Reference Signs]

[0019] 1. Processing equipment base; 2. Lifting column; 3. Limiting plate; 4. Motor 1; 5. Screw; 6. Motor 2; 7. Connecting column; 8. Mounting seat; 9. Opening mechanism; 10. Support frame; 11. Sleeve ring; 12. Electric push rod 1; 13. Connecting end; 14. Fixing rod; 15. Clamping plate; 16. Auxiliary component; 161. Mounting plate; 162. Mounting end; 163. Connecting rod; 164. Loading plate; 165. Electric push rod 2; 166. Clamping plate; 167. Electric push rod 3; 168. Abutment seat. DETAILED DESCRIPTION

[0020] In order to make the technical problems, technical solutions and advantages to be solved by the present invention clearer, a detailed description will be given below with reference to the accompanying drawings and specific embodiments.

[0021] As attached Figure 1 To the attached Figure 3 The embodiment of the utility model provides a bearing multi-station synchronous processing equipment, comprising

[0022] Processing equipment stand 1;

[0023] A lifting column 2 is movably mounted on the top of the processing equipment base 1. Limit plates 3 are provided on both sides of the surface of the lifting column 2. The surfaces of the limit plates 3 are slidably connected to the top of the processing equipment base 1.

[0024] Motor 1 4, which is disposed inside the processing equipment base 1, has a drive shaft fixedly connected to a screw 5, and a surface of the screw 5 is threadedly connected to the inner surface of the lifting column 2;

[0025] Motor 2 6, Motor 2 6 is relatively arranged on both sides of the top of the lifting column 2, and the driving shaft of Motor 2 6 is fixedly connected to the connecting column 7, and one end of the connecting column 7 is fixedly installed with a mounting seat 8. The surface of the mounting seat 8 is provided with a hole opening mechanism 9, which is mainly composed of a motor and a drill bit installed on the motor driving shaft.

[0026] Among them, it also includes a support frame 10, a sleeve ring 11, an electric push rod 12, a connecting end 13, a fixing rod 14, and a clamping plate 15. The bottom end of the support frame 10 is fixedly connected to the surface of the lifting column 2, the sleeve ring 11 is movably sleeved on the surface of the connecting column 7, the bottom surface of the sleeve ring 11 is fixedly connected to the top of the support frame 10, the electric push rod 12 is arranged at the top of the lifting column 2, the fixing rod 14 is fixedly connected to the top of the electric push rod 12 through the connecting end 13, the clamping plate 15 is arranged at the bottom of the fixing rod 14, the surface of the clamping plate 15 is clamped with the through groove opened on the surface of the connecting column 7, and the sleeve ring 11 is provided, in cooperation with the support frame 10 at its bottom, the connecting column 7 can be supported to reduce the radial force brought by the mounting seat 8 to the drive shaft of the motor 2 6, so as to avoid excessive radial force affecting the normal rotation of the motor 2 6.

[0027] It also includes auxiliary components 16, which are arranged on both sides of the surface of the processing equipment base 1.

[0028] Among them, the auxiliary component 16 includes a mounting plate 161, a mounting end 162, a connecting rod 163, a loading plate 164, a second electric push rod 165, a clamping plate 166, a third electric push rod 167, and abutment 168. The mounting plate 161 is fixedly mounted on the surface of the processing equipment base 1, the mounting end 162 is arranged inside the mounting plate 161, the connecting rod 163 is rotatably mounted inside the mounting end 162, the loading plate 164 is fixedly mounted on the surface of the connecting rod 163, the second electric push rod 165 is relatively arranged on both sides of the top surface of the mounting plate 161, and the clamping plate 16 6 is fixedly mounted on one end of the second electric push rod 165, the third electric push rod 167 is arranged inside the processing equipment base 1 near the mounting plate 161, the abutment seat 168 is fixedly mounted on the end of the third electric push rod 167 opposite to the processing equipment base 1, the top surface of the abutment seat 168 contacts the bottom surface of the loading plate 164, and a torsion spring is installed inside it through the provided mounting end 162, and is connected to the connecting rod 163 through the torsion spring. Therefore, the elastic action of the torsion spring can drive the loading plate 164 to always flip downward, thereby facilitating the unloading of the processed bearings.

[0029] The working process of the present invention is as follows: the bearings to be processed are placed on the surfaces of the two loading plates 164 respectively, and the electric push rod 2 165 is used to drive the clamping plate 166 to move and fix the bearings, and then the hole opening mechanism 9 set on the surface of the mounting seat 8 is started, and the motor 1 4 drives the screw 5 to rotate, so that the lifting column 2 installed on the surface of the screw 5 can be vertically moved downward under the limit of the limit plate 3, so that the drill bit contacts the bearings to synchronize the hole opening of the two bearings.

[0030] Finally, a few points should be explained: First, in the description of this application, it should be noted that, unless otherwise specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense, and may refer to mechanical or electrical connections, internal communication between two components, or direct connection. "Up," "down," "left," and "right" are only used to indicate relative positional relationships. When the absolute positions of the objects being described change, the relative positional relationships may also change.

[0031] Secondly: The drawings of the embodiments disclosed in this utility model only involve structures related to the embodiments disclosed in this utility model. Other structures can refer to common designs. In the absence of conflicts, the same embodiment and different embodiments of the utility model can be combined with each other.

[0032] Finally: The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A multi-station synchronous processing equipment for bearings, characterized in that: include Processing equipment stand (1); A lifting column (2), wherein the lifting column (2) is movably mounted on the top of a processing equipment base (1), and limiting plates (3) are relatively provided on both sides of the surface of the lifting column (2), and the surface of the limiting plates (3) is slidably connected to the top of the processing equipment base (1); Motor 1 (4), wherein the motor 1 (4) is arranged inside the processing equipment base (1), the drive shaft of the motor 1 (4) is fixedly connected to a screw (5), and the surface of the screw (5) is connected to the internal thread of the lifting column (2); Motor 2 (6), said motor 2 (6) is relatively arranged on both sides of the top of the lifting column (2), the driving shaft of said motor 2 (6) is fixedly connected to the connecting column (7), one end of said connecting column (7) is fixedly mounted with a mounting seat (8), and the surface of said mounting seat (8) is provided with an opening mechanism (9).

2. The multi-station synchronous processing equipment for bearings according to claim 1, characterized in that: The utility model also includes a support frame (10), a sleeve ring (11), an electric push rod (12), a connecting end (13), a fixing rod (14), and a clamping plate (15), wherein the bottom end of the support frame (10) is fixedly connected to the surface of the lifting column (2), the sleeve ring (11) is movably sleeved on the surface of the connecting column (7), the bottom surface of the sleeve ring (11) is fixedly connected to the top end of the support frame (10), the electric push rod (12) is arranged at the top end of the lifting column (2), the fixing rod (14) is fixedly connected to the top end of the electric push rod (12) through the connecting end (13), the clamping plate (15) is arranged at the bottom of the fixing rod (14), and the surface of the clamping plate (15) is clamped to the through groove opened on the surface of the connecting column (7).

3. The multi-station synchronous processing equipment for bearings according to claim 1, characterized in that: It also includes auxiliary components (16), which are arranged on both sides of the surface of the processing equipment base (1).

4. The multi-station synchronous processing equipment for bearings according to claim 3 is characterized in that: The auxiliary component (16) includes a mounting plate (161), a mounting end (162), a connecting rod (163), a loading plate (164), a second electric push rod (165), a clamping plate (166), a third electric push rod (167), and an abutment seat (168). The mounting plate (161) is fixedly mounted on the surface of the processing equipment base (1), the mounting end (162) is arranged inside the mounting plate (161), the connecting rod (163) is rotatably mounted inside the mounting end (162), and the loading plate (164) is fixedly mounted. On the surface of the connecting rod (163), the second electric push rod (165) is relatively arranged on both sides of the top surface of the mounting plate (161), the clamping plate (166) is fixedly installed on one end of the second electric push rod (165), the third electric push rod (167) is arranged inside the side of the processing equipment base (1) close to the mounting plate (161), and the abutment seat (168) is fixedly installed on one end of the third electric push rod (167) relative to the processing equipment base (1), and the top surface of the abutment seat (168) is in contact with the bottom surface of the loading plate (164).