Movable speed reducer direct-connection deviation rectifying mechanism and steel belt press

By designing a movable reducer direct-drive correction mechanism, the problem of wheel hub shaft deformation and twisting caused by the traditional fixed reducer was solved, realizing synchronous movement of the reducer and wheel hub, simplifying the structure and saving space.

CN223549761UActive Publication Date: 2025-11-14SHANGHAI NAUT BELTS CO LTD
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Patent Information

Application Number
CN202423320897.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-11-14
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Traditional speed reducers are fixed on the bearing housing rather than on the hub shaft, which makes the hub shaft prone to deformation and twisting during tensioning and adjustment, affecting the performance of the press.

Method used

Design a movable reducer direct-drive correction mechanism. Through the combination of reducer connecting plate and connecting plate support beam, the reducer is allowed to move with the wheel hub, avoiding wheel hub shaft deformation and twisting.

Benefits of technology

It achieves synchronous movement between the reducer and the wheel hub, avoiding deformation and twisting of the wheel hub shaft. It has a simple structure, is easy to operate, and saves space.

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Abstract

The utility model provides a movable speed reducer direct connection deviation rectifying mechanism and a steel belt press, the movable speed reducer direct connection deviation rectifying mechanism comprises a speed reducer, a speed reducer connecting plate, a supporting plate and a connecting plate supporting beam, and the speed reducer is fixedly installed on one side of the speed reducer connecting plate; an input shaft of the speed reducer is in transmission connection with the motor, and an output shaft of the speed reducer penetrates through the speed reducer connecting plate and is connected with a hub located on the other side of the speed reducer connecting plate. The supporting plate is fixedly installed on a wall plate on one side of a hub, the connecting plate supporting beam is fixedly installed on the supporting plate, and the speed reducer connecting plate is movably installed on the connecting plate supporting beam and can move in the length direction of the connecting plate supporting beam. The hub tensioning and adjusting device is simple in structure and convenient to operate, the speed reducer and the hub shaft are fixedly arranged, the speed reducer is installed on the connecting plate supporting beam in a sliding mode through the connecting plate, the speed reducer can slide back and forth on the connecting plate supporting beam along with movement of the hub when the hub is tensioned and adjusted, and deformation and distortion of the hub shaft cannot be caused.
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Description

Technical Field

[0001] This utility model relates to the field of speed reducer technology, specifically to a movable speed reducer direct-drive correction mechanism. Background Technology

[0002] With the development of society, the application fields of presses are becoming more and more extensive. The operation of presses is inseparable from the sliding of the reducer module at the drive end to achieve the tensioning and adjustment of the steel belt. If the sliding method and structure of the reducer module are not appropriate, it will affect the effect of the press and thus have a certain impact on the final product.

[0003] Traditional structures use additional brackets to fix the reducer, which is fixed to the bearing housing rather than the wheel hub shaft. Therefore, the reducer does not move when the wheel hub is tensioned or adjusted, which can cause the wheel hub shaft to deform or twist. Utility Model Content

[0004] In view of the deficiencies in the prior art, the purpose of this utility model is to provide a mobile speed reducer direct-drive correction mechanism and a steel belt press.

[0005] The movable reducer direct-drive correction mechanism provided by this utility model includes a reducer, a reducer connecting plate, a support plate, and a connecting plate support beam. The reducer is fixedly installed on one side of the reducer connecting plate.

[0006] The input shaft of the reducer is connected to the motor drive, and the output shaft of the reducer passes through the reducer connecting plate and is connected to the hub located on the other side of the reducer connecting plate;

[0007] The support plate is fixedly installed on the wall panel on one side of the hub, the connecting plate support beam is fixedly installed on the support plate, and the reducer connecting plate is movably installed on the connecting plate support beam and can move along the length of the connecting plate support beam.

[0008] Preferably, the reducer connecting plate includes a reducer connecting part and a rolling part, the reducer connecting part is provided with a through hole, the reducer is mounted on the reducer connecting part, and the output shaft of the reducer passes through the through hole;

[0009] The rolling part is rolled on the connecting plate support beam by a rolling element.

[0010] Preferably, the speed reducer is mounted on the speed reducer connection part by a plurality of bolts, and the plurality of bolts are evenly arranged around the outside of the through hole in a circumferential direction.

[0011] Preferably, the rolling element includes a pair of roller bearings, the roller bearings are fixedly installed on the side of the rolling part, and the connecting plate support beam is installed between the pair of roller bearings.

[0012] Preferably, the support plate is fixedly mounted on the wall panel by screws.

[0013] Preferably, the connecting plate support beam is welded and mounted on the support plate.

[0014] Preferably, the motor is fixedly mounted on the reducer.

[0015] The steel belt press provided by this utility model includes the aforementioned movable reducer direct-drive correction mechanism.

[0016] Compared with the prior art, the present invention has the following beneficial effects:

[0017] This utility model has a simple structure and is easy to operate. By fixing the reducer to the wheel hub shaft and sliding the reducer on the connecting plate support beam through the connecting plate, the reducer can slide back and forth on the connecting plate support beam with the movement of the wheel hub when the wheel hub is tensioned and adjusted, without causing deformation or twisting of the wheel hub shaft. Attached Figure Description

[0018] Other features, objects, and advantages of this invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings:

[0019] Figure 1 This is a schematic diagram of the overall structure of this utility model.

[0020] The diagram shows:

[0021] 1 bolt, 6 wheel hubs

[0022] Reducer 2, connecting plate support beam 7

[0023] Gearbox connecting plate 3 screws 8

[0024] Roller bearing 4, wall panel 9

[0025] Support plate 5 Detailed Implementation

[0026] The present invention will now be described in detail with reference to specific embodiments. These embodiments will help those skilled in the art to further understand the present invention, but do not limit the present invention in any way. It should be noted that those skilled in the art can make several changes and improvements without departing from the concept of the present invention. These all fall within the protection scope of the present invention.

[0027] This utility model discloses a movable reducer direct-drive correction mechanism and a steel belt press. By fixing the reducer to the wheel hub, the reducer can slide back and forth on the connecting plate support beam as the wheel hub moves during wheel hub tensioning and adjustment, without causing deformation or twisting of the wheel hub shaft.

[0028] According to the movable reducer direct-drive correction mechanism provided by this utility model, such as Figure 1 As shown, the system includes a speed reducer 2, a speed reducer connecting plate 3, a support plate 5, and a connecting plate support beam 7. The speed reducer 2 is fixedly installed on one side of the speed reducer connecting plate 3. The input shaft of the speed reducer 2 is connected to the motor drive, and the output shaft of the speed reducer 2 passes through the speed reducer connecting plate 3 and is connected to a hub 6 located on the other side of the speed reducer connecting plate 3. In this solution, the motor, speed reducer 2, and hub 6 are fixedly connected, and all three can move relative to the wall panel 9, the support plate 5, and the connecting plate support beam 7.

[0029] The support plate 5 is fixedly installed on the wall panel 9 on one side of the hub 6. The connecting plate support beam 7 is fixedly installed on the support plate 5. The reducer connecting plate 3 is movably installed on the connecting plate support beam 7 and can move along the length of the connecting plate support beam 7. In this design, the connecting plate support beam 7 serves as a fixed guide. By movably installing the reducer connecting plate 3 on the connecting plate support beam 7, the reducer 2 can move back and forth on the connecting plate support beam 7 along with the hub 6 during the tension adjustment.

[0030] In a preferred embodiment, the two ends of the reducer connecting plate 3 are a reducer connecting part and a rolling part, respectively. The reducer connecting part is provided with a through hole, and the reducer 2 is mounted on the reducer connecting part, with the output shaft of the reducer 2 passing through the through hole. The rolling part is rotatably mounted on the connecting plate support beam 7 by rolling elements. The reducer 2 is mounted on the reducer connecting part by a plurality of bolts 1, which are evenly arranged circumferentially outside the through hole. The rolling elements include pairs of roller bearings 4, which are fixedly mounted on the side of the rolling part, and the connecting plate support beam 7 is mounted between the pairs of roller bearings 4.

[0031] In a preferred embodiment, the support plate 5 is fixedly mounted to the wall panel 9 by screws 8. The connecting plate support beam 7 is welded to the support plate 5. The motor is fixedly mounted to the reducer 2.

[0032] Example 1

[0033] like Figure 1As shown, the movable reducer direct-drive correction mechanism provided in this embodiment mainly consists of bolt 1, reducer 2, reducer connecting plate 3, roller bearing 4, support plate 5, hub 6, connecting plate support beam 7, screw 8, and wall plate 9.

[0034] The support plate 5 is welded to the connecting plate support beam 7, and the support plate 5 is fixed to the wall panel 9 with screws 8. The roller bearing 4 is fixed to the reducer connecting plate 3, and the reducer 2 is fixed to the reducer connecting plate 3 with bolts 7. In this way, when the hub is tensioned and moved, the motor and reducer 2 will slide back and forth on the connecting plate support beam 7 along with the roller bearing 4 on the reducer connecting plate 3, thereby achieving the tensioning and adjustment function of the hub. Because this mechanism moves with the hub, it will not cause twisting or deformation of the hub shaft. This movable reducer direct-drive correction mechanism has a simplified structure and can save space; the reducer will move with the hub, avoiding the risk of hub shaft deformation or twisting caused by the hub moving but the motor and reducer not moving with it, which is common in older structures.

[0035] In the description of this application, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application 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. Therefore, they should not be construed as limitations on this application.

[0036] The specific embodiments of this utility model have been described above. It should be understood that this utility model is not limited to the specific embodiments described above, and those skilled in the art can make various changes or modifications within the scope of the claims, which do not affect the substantive content of this utility model. Unless otherwise specified, the embodiments and features described in this application can be arbitrarily combined with each other.

Claims

1. A movable reducer direct-drive correction mechanism, characterized in that, It includes a speed reducer (2), a speed reducer connecting plate (3), a support plate (5), and a connecting plate support beam (7), wherein the speed reducer (2) is fixedly installed on one side of the speed reducer connecting plate (3); The input shaft of the reducer (2) is connected to the motor drive, and the output shaft of the reducer (2) passes through the reducer connecting plate (3) and is connected to the hub (6) located on the other side of the reducer connecting plate (3); The support plate (5) is fixedly installed on the wall panel (9) on one side of the hub (6), the connecting plate support beam (7) is fixedly installed on the support plate (5), and the reducer connecting plate (3) is movably installed on the connecting plate support beam (7) and can move along the length direction of the connecting plate support beam (7).

2. The movable reducer direct-drive correction mechanism according to claim 1, characterized in that, The reducer connecting plate (3) includes a reducer connecting part and a rolling part. The reducer connecting part is provided with a through hole. The reducer (2) is installed on the reducer connecting part, and the output shaft of the reducer (2) passes through the through hole. The rolling part is rolled on the connecting plate support beam (7) by a rolling element.

3. The movable reducer direct-drive correction mechanism according to claim 2, characterized in that, The speed reducer (2) is mounted on the speed reducer connection part by a plurality of bolts (1), and the plurality of bolts (1) are evenly arranged around the outside of the through hole.

4. The movable reducer direct-drive correction mechanism according to claim 2, characterized in that, The rolling element includes a pair of roller bearings (4), which are fixedly installed on the side of the rolling part, and the connecting plate support beam (7) is installed between the pair of roller bearings (4).

5. The movable reducer direct-drive correction mechanism according to claim 1, characterized in that, The support plate (5) is fixedly installed on the wall panel (9) by screws (8).

6. The movable reducer direct-drive correction mechanism according to claim 1, characterized in that, The connecting plate support beam (7) is welded and installed on the support plate (5).

7. The movable reducer direct-drive correction mechanism according to claim 1, characterized in that, The motor is fixedly mounted on the reducer (2).

8. A steel strip press, characterized in that, Includes the movable reducer direct-drive correction mechanism as described in any one of claims 1-7.