Feeding device

By designing the clamping and driving components of the feeding device, automated feeding of aluminum bars was achieved, which solved the safety hazards in the roll calibration process of the MCCR production line, improved the detection efficiency and reduced the cost.

CN223950238UActive Publication Date: 2026-02-27SHOUGANG JINGTANG IRON & STEEL CO LTD
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Patent Information

Application Number
CN202520017812.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-06
Publication Date
2026-02-27
Estimated Expiration
2035-01-06

AI Technical Summary

Technical Problem

During the roll calibration process on the MCCR production line, manually feeding aluminum rods poses safety hazards such as high-temperature heating, grease slippage, and injury from high-temperature and high-pressure water. Therefore, a safe automated feeding device is needed.

Method used

A feeding device was designed, including a clamping assembly and a driving assembly. The aluminum rod is fixed by the clamping assembly, and the aluminum rod is fed into the rolling mill roll group by the translation, lifting and telescopic devices of the driving assembly, replacing manual operation.

Benefits of technology

It reduces the safety hazards of manually feeding aluminum rods, improves detection efficiency, reduces personnel input and costs, and extends the service life of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a feeding device. The technical problem that in the prior art, high potential safety hazards exist in the manual aluminum bar pressing process is solved. The feeding device comprises a clamping assembly and a driving assembly. The clamping assembly is arranged at the action end of the driving assembly, and the driving assembly can drive the clamping assembly to act so as to adjust the position of an aluminum bar clamped on the clamping assembly in the space and feed the aluminum bar into the rolling mill roller set. The clamping assembly in the feeding device can grasp and fix the aluminum bar, the clamping assembly is driven by the driving assembly to act, the aluminum bar is fed into the rolling mill roller set for aluminum bar pressing operation, the mode that the aluminum bar is manually fed into the rolling mill roller set to complete aluminum bar pressing is replaced, and therefore potential safety hazards of aluminum bar pressing are reduced.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of MCCR production line roller detection equipment, and particularly relates to a feeding device. BACKGROUND

[0002] After the calibration of the roller of the MCCR production line is completed, an aluminum bar needs to be manually fed into the roller set of the rolling mill for checking the actual roll gap of the roller set of the rolling mill. The process is called pressing an aluminum bar, and the specific operation mode is as follows: an aluminum bar is manually grabbed and an operator stands on the guide of the inlet side of the rolling mill, and then the aluminum bar is placed between the upper and lower rollers. After the aluminum bar is rolled by the upper and lower rollers, the aluminum bar is taken out and the thickness of the rolled position on the aluminum bar is checked to measure the roll gap of the roller set of the rolling mill.

[0003] Due to the high temperature of the equipment (MCCR production line) after production, especially the high temperature state of the guide plate and the guide, the operator standing on the guide of the inlet side of the rolling mill to press the aluminum bar is easily affected by high temperature and even suffers from burns. In addition, the operator is easily affected by the oil exuded on site and slips and falls. Furthermore, the high-temperature and high-pressure water sprayed between the racks also poses a risk of injury. The above-mentioned various factors make the process of pressing the aluminum bar have high safety hazards. Therefore, it is a technical problem to be solved by those skilled in the art to invent a device that can replace manual feeding of the aluminum bar into the roller set of the rolling mill. SUMMARY

[0004] To solve the above technical problems, the application provides a feeding device to solve the technical problem of high safety hazards in the process of manually pressing an aluminum bar in the prior art.

[0005] The technical scheme adopted to achieve the purpose of the application is as follows:

[0006] A feeding device for feeding an aluminum bar into the roller set of the rolling mill of the MCCR production line, comprising:

[0007] A clamping assembly for fixing the aluminum bar;

[0008] A driving assembly, the clamping assembly is arranged at the action end of the driving assembly, and the driving assembly can drive the clamping assembly to act to adjust the position of the aluminum bar clamped on the clamping assembly in space and feed the aluminum bar into the roller set.

[0009] In order to better achieve the application, the driving assembly further comprises a translation device, a lifting device and a telescopic device in the above structure;

[0010] The action end of the translation device acts in a first direction, the action end of the lifting device acts in a second direction, and the action end of the telescopic device acts in a third direction, and the first direction, the second direction and the third direction are all different;

[0011] The lifting device is arranged at the action end of the translation device;

[0012] The telescopic device is arranged at the action end of the lifting device;

[0013] The clamping assembly is arranged at the action end of the telescopic device.

[0014] In order to better realize the present application, the translation device comprises a bottom plate, a sliding plate and a transverse driving device in the above structure;

[0015] The bottom plate is provided with a rack and a sliding rail, and the rack and the sliding rail are parallel to the first direction;

[0016] The sliding plate is arranged on the sliding rail to slide in the first direction, and the action end of the transverse driving device is provided with a gear matched with the rack, and the gear is engaged with the rack;

[0017] The lifting device is arranged on the sliding plate.

[0018] In order to better realize the present application, the sliding plate is provided with a sliding block in the above structure, and the sliding plate is arranged on the bottom plate to slide through the cooperation of the sliding block and the sliding rail.

[0019] In order to better realize the present application, the lifting device comprises a lifting block and a vertical driving device in the above structure;

[0020] The vertical driving device is arranged on the sliding plate, and the action direction of the vertical driving device is parallel to the second direction;

[0021] The lifting block is arranged at the action end of the vertical driving device, and the telescopic device is arranged on the lifting block.

[0022] In order to better realize the present application, the lifting device further comprises a vertical plate in the above structure;

[0023] The number of the vertical plates is two, and the two vertical plates are arranged at the action end of the translation device in a spaced manner, and the opposite surfaces of the two vertical plates are both provided with sliding grooves, and the length direction of the sliding grooves is parallel to the action direction of the vertical driving device;

[0024] The lifting block is arranged between the two vertical plates, and the opposite sides of the lifting block are respectively clamped into the sliding grooves on the two vertical plates.

[0025] In order to better realize the present application, further optimization is made in the above structure, the lifting device further comprises a limiting top plate, the limiting top plate is located at one end of the vertical plate away from the translation device, and both of the vertical plates are connected with the limiting top plate.

[0026] In order to better realize the present application, further optimization is made in the above structure, the feeding device further comprises a rotating assembly.

[0027] The clamping assembly is connected with the action end of the driving assembly through the rotating assembly, and the rotating axis of the rotating assembly is parallel to the second direction.

[0028] In order to better realize the present application, further optimization is made in the above structure, the rotating assembly comprises a first synchronous wheel, a second synchronous wheel and a rotating driving device.

[0029] The first synchronous wheel and the second synchronous wheel are both arranged at the action end of the driving assembly, the rotating axes of the first synchronous wheel and the second synchronous wheel are parallel, and the first synchronous wheel and the second synchronous wheel are connected through a synchronous belt transmission.

[0030] The clamping assembly is arranged on the rotating shaft of the second synchronous wheel, and the rotating driving device is in transmission connection with the first synchronous wheel.

[0031] In order to better realize the present application, further optimization is made in the above structure, the action end of the driving assembly is provided with a cavity, the rotating assembly is arranged in the cavity, and the action end of the rotating assembly is connected with the clamping assembly by being led out of the action end of the driving assembly.

[0032] It can be known from the above technical solution that the clamping assembly in the feeding device of the present application can grip and fix the aluminum bar, the driving assembly drives the clamping assembly to act, the aluminum bar is sent into the rolling mill roller set to perform the aluminum bar pressing operation, and the aluminum bar is sent into the rolling mill roller set to complete the aluminum bar pressing by replacing manual operation, so that the safety hazard of the aluminum bar pressing is reduced. BRIEF DESCRIPTION OF DRAWINGS

[0033] Figure 1 It is a structural schematic view of the feeding device of the present application.

[0034] Figure 2 It is a structural schematic view of the translation device in the feeding device of the present application.

[0035] Figure 3 It is a structural schematic view of the lifting device in the feeding device of the present application.

[0036] Figure 4 It is a structural schematic view of the telescopic device in the feeding device of the present application.

[0037] Figure 5 This is a schematic diagram of the rotating component in a feeding device according to this application;

[0038] Figure 6 This is a schematic diagram of the structure of a feeding device in operation according to this application.

[0039] Explanation of reference numerals in the attached figures:

[0040] 1-Drive assembly, 11-Translation device, 111-Base plate, 112-Slide plate, 113-Horizontal drive device, 114-Slide rail, 115-Rack, 116-Slider, 12-Lifting device, 121-Lifting block, 122-Vertical drive device, 123-Upright plate, 124-Limiting top plate, 13-Telescopic device, 131-Cavity;

[0041] 2-Rotating assembly, 21-First synchronous pulley, 22-Second synchronous pulley, 23-Synchronous belt, 24-Rotating drive device;

[0042] 3-Clamping assembly;

[0043] 4-Aluminum rod;

[0044] 5-Rolling mill roll set. Detailed Implementation

[0045] To enable those skilled in the art to better understand this application, the technical solution of this application will be described in detail below with reference to the accompanying drawings and specific embodiments.

[0046] In the embodiments of this application, such as Figures 1 to 6 As shown, the feeding device includes a clamping assembly 3 and a driving assembly 1; wherein,

[0047] The clamping component 3 is located at the actuating end of the driving component 1. The driving component 1 can drive the clamping component 3 to move, so that the clamping component 3 can stay at any position in the space.

[0048] When the clamping assembly 3 holds the aluminum rod 4, the operator can adjust the position of the aluminum rod 4 in space by driving the assembly 1 and send the aluminum rod 4 into the rolling roll group for pressing the aluminum rod, so as to complete the detection of the roll gap of the rolling mill roll group 5.

[0049] Throughout the entire aluminum bar pressing process, no staff need to approach the MCCR production line, thus reducing safety hazards associated with aluminum bar pressing.

[0050] Furthermore, compared to the existing technology of manually pressing aluminum rods, this feeding device can reduce personnel input and lower labor costs.

[0051] In some embodiments, the drive assembly 1 described above includes a translation device 11, a lifting device 12, and a telescopic device 13. See alsoFigure 1 ; wherein,

[0052] The action end of the translation device 11 acts in a first direction, the action end of the lifting device 12 acts in a second direction, and the action end of the telescopic device 13 acts in a third direction, and the first direction, the second direction and the third direction are all different; in this embodiment, the first direction, the second direction and the third direction are perpendicular to each other, and the first direction is the conveying direction of the MCCR production line, the second direction is the direction perpendicular to the horizontal plane, and the third direction is the axis direction of the rolling mill roll group 5;

[0053] The lifting device 12 is arranged at the action end of the translation device 11, the telescopic device 13 is arranged at the action end of the lifting device 12, and the clamping assembly 3 is arranged at the action end of the telescopic device 13;

[0054] The feeding device is installed on one side of the MCCR production line;

[0055] When the work of pressing the aluminum bar needs to be carried out, the staff can install the aluminum bar 4 on the clamping assembly 3; and by controlling the actions of the translation device 11, the lifting device 12 and the telescopic device 13, the aluminum bar 4 is sent to the two rollers of the rolling mill roll group 5, and then the rolling mill roll group 5 is started to roll the aluminum bar 4 by using the rolling mill roll group 5;

[0056] After the rolling is completed, the aluminum bar 4 is taken out to check whether the thickness of the rolled position of the aluminum bar 4 is in the required roll gap range.

[0057] Preferably, the driving assembly 1 further comprises a control system, and the translation device 11, the lifting device 12 and the telescopic device 13 are all signal connected with the control system, and the actions and stops of the translation device 11, the lifting device 12 and the telescopic device 13 can be controlled by the control system, so that the operation of the feeding device is more convenient.

[0058] In some embodiments, the translation device 11 comprises a bottom plate 111, a sliding plate 112 and a transverse driving device 113, as shown in Figure 2 ; wherein,

[0059] The bottom plate 111 is provided with a rack 115 and a sliding rail 114, and the rack 115 and the sliding rail 114 are both parallel to the first direction;

[0060] The sliding plate 112 is slidingly arranged on the sliding rail 114 in the first direction, the action end of the transverse driving device 113 is provided with a gear matched with the rack 115, and the gear is engaged with the rack 115, and the lifting device 12 is arranged on the sliding plate 112, and the sliding direction of the sliding plate 112 can be controlled by controlling the rotation direction of the transverse driving device 113, so as to adjust the position of the lifting device 12 in the conveying direction of the MCCR production line. The transverse driving device 113 is signal connected with the above-mentioned control system.

[0061] Preferably, the sliding plate 112 is provided with a sliding block 116, the sliding block 116 is provided with a sliding groove matched with the sliding rail 114, the sliding groove is provided with a ball on the side wall, and the sliding plate 112 is arranged on the bottom plate 111 by the cooperation of the sliding block 116 and the sliding rail 114, so as to reduce the friction between the sliding block 116 and the sliding rail 114, thereby making the sliding of the sliding plate 112 more stable and smooth.

[0062] More preferably, the number of the sliding rail 114 is two groups, and the two groups of sliding rails 114 are arranged at intervals; the sliding plate 112 is a rectangular plate structure, the sliding plate 112 is provided with four sliding blocks 116, and each two sliding blocks 116 correspond to a group of sliding rails 114, so that the arrangement of the sliding plate 112 is more stable.

[0063] In some embodiments, the lifting device 12 comprises a lifting block 121 and a vertical driving device 122, as shown in Figure 3 ; wherein,

[0064] The vertical driving device 122 is arranged on the sliding plate 112, and the action direction of the vertical driving device 122 is parallel to the second direction;

[0065] The lifting block 121 is arranged at the action end of the vertical driving device 122, and the telescopic device 13 is arranged on the lifting block 121, so that the position of the lifting block 121 in the direction perpendicular to the horizontal plane can be adjusted by controlling the action of the vertical driving device 122, so as to change the height of the clamping assembly 3.

[0066] Preferably, the lifting device 12 further comprises a vertical plate 123;

[0067] The number of the vertical plate 123 is two, and the two vertical plates 123 are arranged at intervals at the action end of the translation device 11, and the opposite surfaces of the two vertical plates 123 are both provided with a sliding groove, and the length direction of the sliding groove is parallel to the action direction of the vertical driving device 122;

[0068] The lifting block 121 is arranged between the two vertical plates 123, and the opposite sides of the lifting block 121 are respectively clamped into the sliding grooves on the two vertical plates 123, so that the lifting block 121 can stably ascend and descend along the vertical direction, and the lifting block 121 will not deviate when moving due to the constraint of the sliding groove.

[0069] In some embodiments, the lifting device 12 further comprises a limiting top plate 124, the limiting top plate 124 is located at the end of the vertical plate 123 away from the translation device 11, and the two vertical plates 123 are both connected with the limiting top plate 124; the arrangement of the limiting top plate 124 can avoid the lifting block 121 from being pulled out of the top end of the vertical plate 123, so as to ensure the stability of the working state of the lifting device 12.

[0070] In some embodiments, the feeding device further comprises a rotating assembly 2; wherein,

[0071] The clamping assembly 3 is connected with the action end of the driving assembly 1 through the rotating assembly 2, the rotating axis of the rotating assembly 2 is parallel to the second direction, the rotating assembly 2 can rotate the clamping assembly 3, so that the axis of the aluminum bar 4 clamped on the clamping assembly 3 can be adjusted, so as to better feed the aluminum bar 4 into the rolling mill roller group and detect the roll gap of the two groups of rolling mill roller groups at the same time. The specific operation mode is as follows:

[0072] The position of the clamping assembly 3 is adjusted by the driving assembly 1, and the clamping assembly 3 clamping the aluminum bar 4 is moved to between the adjacent two groups of rolling mill roller groups 5, at this time, the axis of the aluminum bar 4 is parallel to the third direction, so as to better feed the aluminum bar 4 between the two groups of rolling mill roller groups 5;

[0073] Subsequently, the worker can control the lifting device 12 and the telescopic device 13 in the driving assembly 1 to act again, so that the clamping assembly 3 is located at the position to be detected, and then control the rotating assembly 2 to act, adjust the position of the axis of the aluminum bar 4, so that the axis of the aluminum bar 4 is parallel to the first direction, and the two ends of the aluminum bar 4 can simultaneously extend into between the two rollers of the two groups of rolling mill roller groups 5;

[0074] Start the rolling mill roller group 5, and the two rollers in the two groups of rolling mill roller groups 5 can roll the two ends of the aluminum bar 4 respectively, so as to complete the detection of the roll gap of the two groups of rolling mill roller groups 5, thereby improving the detection efficiency.

[0075] In some embodiments, the rotating assembly 2 described above comprises a first synchronous wheel 21, a second synchronous wheel 22 and a rotating driving device 24, as shown in Figure 5 ; wherein,

[0076] The first synchronous wheel 21 and the second synchronous wheel 22 are both arranged on the action end of the driving assembly 1, and the first synchronous wheel 21 is located on the side of the second synchronous wheel 22 away from the clamping assembly 3, the rotating axes of the first synchronous wheel 21 and the second synchronous wheel 22 are parallel, and the first synchronous wheel 21 and the second synchronous wheel 22 are transmissionally connected through a synchronous belt 23;

[0077] The clamping assembly 3 is arranged on the rotating shaft of the second synchronous wheel 22, and the rotating driving device 24 is transmissionally connected with the first synchronous wheel 21, so that the distance between the rotating driving device 24 and the rolling mill roller group is increased, thereby avoiding the situation that the service life and working state of the rotating driving device 24 are affected by high temperature.

[0078] In some embodiments, the action end of the driving assembly 1 is provided with a cavity 131, and the rotating assembly 2 is arranged in the cavity 131, so as to better protect the rotating assembly 2, and the action end of the rotating assembly 2 is arranged out of the action end of the driving assembly 1 and connected with the clamping assembly 3.

[0079] Through the above-mentioned embodiments, the application has the following beneficial effects or advantages:

[0080] 1) The clamping assembly 3 in the feeding device can grip and fix the aluminum bar 4, and the driving assembly 1 drives the clamping assembly 3 to act, so as to send the aluminum bar 4 into the rolling mill roller set 5 to perform the pressing operation, instead of manually sending the aluminum bar 4 into the rolling mill roller set 5 to complete the pressing operation, thereby reducing the safety hazard of the pressing operation.

[0081] 2) The feeding device can send the aluminum bar 4 into the two sets of rolling mill roller sets 5, and detect the roll gap of the two sets of rolling mill roller sets 5 at the same time, so as to improve the detection efficiency.

[0082] 3) The driving assembly 1 of the feeding device is provided with a cavity 131, and the rotating assembly 2 is arranged in the cavity 131, so as to better protect the rotating assembly 2, thereby improving the service life of the feeding device.

[0083] Although the preferred embodiments of the application have been described, those skilled in the art can make further changes and modifications to the embodiments once they know the basic inventive concept. Therefore, the appended claims are intended to be interpreted as including all the preferred embodiments and all the changes and modifications falling within the scope of the application.

[0084] Obviously, those skilled in the art can make various modifications and variations to the application without departing from the spirit and scope of the application. Thus, if these modifications and variations of the application fall within the scope of the claims of the application and their equivalent technologies, the application also intends to include these modifications and variations.

Claims

1. A feeding device for feeding aluminium bars (4) into a roll set (5) of a MCCR production line rolling mill, characterized in that, The utility model relates to a kind of aluminum rod positioning device, including: Clamping assembly (3) for fixing aluminum bar (4); Driving assembly (1), the clamping assembly (3) is arranged in the action end of the driving assembly (1), the driving assembly (1) can drive the clamping assembly (3) to act, to adjust the position of aluminum bar (4) clamped on the clamping assembly (3) in space, and send aluminum bar (4) into the rolling mill roller group (5); Wherein, the driving assembly (1) includes translation device (11), lifting device (12) and telescopic device (13); The action end of the translation device (11) acts along the first direction, the action end of the lifting device (12) acts along the second direction, the action end of the telescopic device (13) acts along the third direction, the first direction, the second direction and the third direction are all different; The lifting device (12) is arranged in the action end of the translation device (11); The telescopic device (13) is arranged in the action end of the lifting device (12); The clamping assembly (3) is arranged in the action end of the telescopic device (13).

2. The feeder of claim 1, wherein The translation device (11) includes bottom plate (111), slide plate (112) and transverse driving device (113); The bottom plate (111) is provided with rack (115) and slide rail (114), the rack (115) and the slide rail (114) are parallel to the first direction; The slide plate (112) is slidably arranged on the slide rail (114) along the first direction, the action end of the transverse driving device (113) is provided with a gear matched with the rack (115), and the gear is engaged with the rack (115); The lifting device (12) is arranged on the slide plate (112).

3. The feeder of claim 2, wherein The slide plate (112) is provided with a sliding block (116), and the slide plate (112) is slidably arranged on the bottom plate (111) by cooperation of the sliding block (116) and the slide rail (114).

4. The feeder of claim 2, wherein The lifting device (12) includes lifting block (121) and vertical driving device (122); The vertical driving device (122) is arranged on the slide plate (112), and the action direction of the vertical driving device (122) is parallel to the second direction; The lifting block (121) is arranged on the action end of the vertical driving device (122), and the telescopic device (13) is arranged on the lifting block (121).

5. The feeder of claim 4, wherein The lifting device (12) further includes a vertical plate (123); The vertical plate (123) is spaced apart on the action end of the translation device (11), and the opposite surfaces of the two vertical plates (123) are provided with sliding grooves, and the length direction of the sliding grooves is parallel to the action direction of the vertical driving device (122); The lifting block (121) is arranged between the two vertical plates (123), and the opposite sides of the lifting block (121) are respectively clamped into the sliding grooves on the two vertical plates (123).

6. The feeder of claim 5, wherein The lifting device (12) further comprises a limiting top plate (124) located at one end of the vertical plate (123) away from the translation device (11), and both of the vertical plates (123) are connected with the limiting top plate (124).

7. The feeder device according to any one of claims 1 to 6, characterized in that Further comprising a rotating assembly (2); The clamping assembly (3) is connected with the action end of the driving assembly (1) through the rotating assembly (2), and the rotating axis of the rotating assembly (2) is parallel to the second direction.

8. The feeder of claim 7, wherein The rotating assembly (2) comprises a first synchronous wheel (21), a second synchronous wheel (22) and a rotating driving device (24). The first synchronous wheel (21) and the second synchronous wheel (22) are both arranged at the action end of the driving assembly (1), the rotating axes of the first synchronous wheel (21) and the second synchronous wheel (22) are parallel, and the first synchronous wheel (21) and the second synchronous wheel (22) are drivingly connected through a synchronous belt (23). The clamping assembly (3) is arranged on the rotating shaft of the second synchronous wheel (22), and the rotating driving device (24) is drivingly connected with the first synchronous wheel (21).

9. The feeder of claim 8, wherein The action end of the driving assembly (1) is provided with a cavity (131), the rotating assembly (2) is arranged in the cavity (131), and the action end of the rotating assembly (2) is connected with the clamping assembly (3) by penetrating out of the action end of the driving assembly (1).