Lifting device and automatic batching system

By designing a lifting device and utilizing a combination of driving components and load-bearing components, the turnover buckets can be lifted efficiently, solving the problem of turnover buckets queuing and waiting, and improving the efficiency of additive preparation.

CN224160329UActive Publication Date: 2026-04-24CHENGDU B & M SCIENCE & TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHENGDU B & M SCIENCE & TECHNOLOGY CO LTD
Filing Date
2025-04-23
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

In automated batching systems, due to the different material compositions of various additives, the turnover drums need to be transported to different material stations, resulting in turnover drums queuing and waiting, and low batching efficiency.

Method used

A lifting device is designed, including a base, a driving component, and a load-bearing component. The driving component drives the load-bearing component to move in a vertical direction. The load-bearing component extends out of the base in a second direction, which forms an angle with the first direction, thereby lifting the turnover bucket and reducing queuing.

Benefits of technology

By designing a lifting device, other turnover buckets can continue to be transported below the lifted turnover bucket, reducing queuing and improving the efficiency of additive preparation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a lifting device and an automatic batching system.The lifting device comprises a base, a driving part and a bearing assembly; the driving part is arranged on the top face of the base, the axis of the driving part is consistent with the first direction, the first direction is the vertical direction, the bearing assembly is used for bearing a turnover barrel, and the bearing assembly is in transmission connection with the driving part so that the driving part can drive the bearing assembly to move in the first direction, and the bearing assembly extends out of the base in the second direction. The bearing assembly can extend to a conveying line of the turnover barrels to lift the turnover barrels, and an included angle is formed between the second direction and the first direction, so that in the process that the turnover barrels need to be conveyed to different material stations for feeding, the bearing assembly can be driven by the driving part to move so as to drive the turnover barrels to be lifted; other turnover barrels can continue to be conveyed to a designated material station below the lifted turnover barrel, the phenomenon that the turnover barrels wait in line is reduced, and the additive preparation efficiency is improved.
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Description

Technical Field

[0001] This application relates to the field of batching equipment technology, and more specifically, to a lifting device and an automatic batching system. Background Technology

[0002] Additives are composed of various materials. In the process of preparing additives in an automatic batching system, the transfer buckets are usually transported by conveyor line to the corresponding material station for addition according to the different material composition of each additive. However, in the process of preparing additives composed of different materials, the transfer buckets need to be transported to different material stations because the material composition of different additives is different. This results in the phenomenon of transfer buckets queuing up at the material station, which leads to low efficiency in the additive preparation process.

[0003] In conclusion, how to improve the formulation efficiency of additives is a problem that urgently needs to be solved by those skilled in the art. Utility Model Content

[0004] In view of this, the purpose of this application is to provide a lifting device and an automatic dispensing system to improve the efficiency of additive preparation.

[0005] To achieve the above objectives, this application provides the following technical solution:

[0006] A lifting device includes: a base, a driving component, and a load-bearing component; wherein the driving component is disposed on the top surface of the base, and the axis of the driving component is aligned with a first direction, which is a vertical direction; the load-bearing component is drively connected to the driving component, the load-bearing component is used to support a turnover bucket, and the driving component can drive the load-bearing component to move along the first direction; the load-bearing component extends out of the base along a second direction, and the second direction forms an angle with the first direction.

[0007] In some embodiments, the lifting device further includes: a frame disposed on the top surface of the base; and a guide assembly disposed between the base and the frame, the guide assembly being tractionally connected to the drive member and the load-bearing component.

[0008] In some embodiments, the frame includes: columns, at least two columns, at least two columns being fixedly connected to the top surface of the base, the length direction of the columns extending along the first direction, and at least two columns being distributed sequentially along a third direction; a top plate, the top plate being fixedly connected to the top surface of all the columns; and an angle being formed between the first direction, the second direction, and the third direction.

[0009] In some embodiments, the guiding assembly includes: a guide shaft fixedly connected to the base and the top plate, the axial direction of the guide shaft extending along the first direction, at least two guide shafts being distributed sequentially along the third direction, and in the third direction, there is an accommodating space between the at least two guide shafts for accommodating the load-bearing assembly; and a guide bracket slidably engaged with the guide shaft and connected to the load-bearing assembly.

[0010] In some embodiments, the guide assembly further includes: a load-bearing plate, which is slidably engaged with the guide shaft, and the top surface of the load-bearing plate is connected to the load-bearing assembly; a transmission plate, which is drively connected to the drive end of the drive member, which is slidably engaged with the guide shaft, and the transmission plate and the load-bearing plate are distributed sequentially along the first direction; and a connecting plate, which is fixedly connected between the transmission plate and the load-bearing plate, wherein there are at least two connecting plates, and in the third direction, there is an accommodating space between the at least two connecting plates to accommodate the load-bearing assembly.

[0011] In some embodiments, a first guide sleeve is provided between the transmission plate and the guide shaft;

[0012] And / or, a second guide sleeve is provided between the load-bearing plate and the guide shaft.

[0013] In some embodiments, the transmission plate has a T-shaped structure, and the vertical segment of the T-shaped transmission plate extends from the guide axis to the driving member along the second direction;

[0014] And / or, having a T-shaped structure, wherein the vertical segment of the load-bearing plate of the T-shaped structure extends from the guide axis of the load-bearing component along the second direction.

[0015] In some embodiments, a buffer is further included, the buffer being disposed on the top surface of the base, the buffer having an axial direction aligned with the first direction, the buffer being used to cushion the guide assembly.

[0016] In some embodiments, the bottom surface of the base is further provided with a fixing seat.

[0017] An automatic batching system includes at least two feeder roller conveyors, at least two feeding devices, and at least two lifting devices as described above; the feeder roller conveyors, the feeding devices, and the lifting devices correspond one-to-one.

[0018] The lifting device provided in this application includes a base, a driving component, and a load-bearing component. The driving component is disposed on the top surface of the base, and its axis is aligned with a first direction, which is vertical. The load-bearing component is used to support the turnover buckets and is connected to the driving component in a transmission manner, so that the driving component can drive the load-bearing component to move along the first direction. The load-bearing component extends out of the base along a second direction, so that it can reach the conveyor line of the turnover buckets to lift them. The second direction and the first direction form an angle. Thus, when the turnover buckets need to be conveyed to different material stations for feeding, the driving component can drive the load-bearing component to move, thereby lifting the turnover buckets. This allows other turnover buckets to continue to be conveyed to the designated material station below the lifted turnover buckets, reducing the phenomenon of turnover buckets queuing and improving the efficiency of additive preparation. Attached Figure Description

[0019] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only embodiments of this application. For those skilled in the art, other drawings can be obtained based on the provided drawings without creative effort.

[0020] Figure 1 This is a schematic diagram of the lifting device provided in the embodiments of this application;

[0021] Figure 2 This is a structural schematic diagram of the lifting device provided in an embodiment of this application from another perspective;

[0022] Figure 3 This is a schematic diagram of an automatic batching system provided in an embodiment of this application.

[0023] Explanation of reference numerals in the attached figures:

[0024] 1-Base, 2-Frame, 21-Column, 22-Top plate, 3-Drive component, 4-Guide shaft, 51-First guide sleeve, 52-Second guide sleeve, 6-Guide bracket, 61-Transmission plate, 62-Connecting plate, 63-Bearing plate, 7-Bearing component, 8-Buffer, 9-Fixed seat, 10-Turnover drum;

[0025] 100 - Lifting device, 200 - Feeding device, 300 - Dust collector. Detailed Implementation

[0026] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0027] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. The terminology used in the following embodiments is for the purpose of describing specific embodiments only and is not intended to be a limitation of this application. As used in the specification and appended claims of this application, the singular expressions "a," "an," "the," "the," "the," and "this" are intended to also include expressions such as "one or more," unless the context clearly indicates otherwise. It should also be understood that in the embodiments of this application, "one or more" refers to one, two, or more; "and / or" describes the relationship between related objects, indicating that three relationships may exist; for example, A and / or B can represent: A alone, A and B simultaneously, or B alone, where A and B can be singular or plural. The character " / " generally indicates that the preceding and following related objects are in an "or" relationship.

[0028] References to "one embodiment" or "some embodiments" as described in this specification mean that one or more embodiments of this application include a specific feature, structure, or characteristic described in connection with that embodiment. Therefore, the phrases "in one embodiment," "in some embodiments," "in other embodiments," "in still other embodiments," etc., appearing in different parts of this specification do not necessarily refer to the same embodiment, but rather mean "one or more, but not all, embodiments," unless otherwise specifically emphasized. The terms "comprising," "including," "having," and variations thereof mean "including but not limited to," unless otherwise specifically emphasized.

[0029] The "multiple" mentioned in the embodiments of this application refers to two or more. It should be noted that in the description of the embodiments of this application, terms such as "first" and "second" are used only for the purpose of distinguishing descriptions and should not be construed as indicating or implying relative importance, nor should they be construed as indicating or implying order.

[0030] The terms "parallel" and "perpendicular" used in this application refer to "basically parallel" and "basically perpendicular" in practical operation. "Basically parallel" can be understood as parallelism with a certain degree of error, and similarly, "basically perpendicular" can be understood as perpendicularity with a certain degree of error.

[0031] like Figure 1As shown in the embodiment of this application, the lifting device includes: a base 1, a driving component 3, and a load-bearing component 7. The driving component 3 is disposed on the top surface of the base 1, and its axis is aligned with a first direction, which is vertical. The load-bearing component 7 is connected to the driving component 3 and is used to support the turnover bucket 10. The driving component 3 can drive the load-bearing component 7 to move along the first direction, thereby lifting the turnover bucket 10. The load-bearing component 7 extends out of the base 1 along a second direction, allowing it to reach the conveyor line of the turnover bucket 10 to lift it. The second direction forms an angle with the first direction. Thus, when the turnover bucket 10 needs to be conveyed to different material stations for feeding, the driving component 3 can drive the load-bearing component 7 to move, thereby lifting the turnover bucket 10. This allows other turnover buckets 10 to continue being conveyed to designated material stations below the lifted turnover bucket 10, reducing queuing and improving the efficiency of additive preparation.

[0032] It should be noted that the angle between the first direction and the second direction can be acute, right, obtuse, etc. In this embodiment of the application, in order to facilitate the lifting of the turnover bucket 10 by the load-bearing component 7, the first direction and the second direction are set perpendicularly.

[0033] like Figure 1 and Figure 2 As shown, the lifting device provided in this application embodiment also includes a frame 2 and a guide assembly; wherein, the frame 2 is disposed on the top surface of the base 1, and the guide assembly is disposed between the base 1 and the frame 2 to support the guide assembly through the base 1 and the frame 2, and the guide assembly is connected to the drive component 3 and the load-bearing component 7 to improve the stability of the drive component 3 driving the load-bearing component 7 to move, and to improve the smoothness of the lifting process of the turnover bucket 10.

[0034] like Figure 2 As shown, the frame 2 includes columns 21 and a top plate 22. There are at least two columns 21, which are fixedly connected to the top surface of the base 1. The length direction of each column 21 extends along a first direction, and the at least two columns 21 are distributed sequentially along a third direction. The top plate 22 is fixedly connected to the top surface of all columns 21 to form a frame 2 that can accommodate the guide components and support the guide components.

[0035] It should be noted that there are included angles between the first direction, the second direction, and the third direction, which can be acute, right, or obtuse. In order to ensure the stability of the lifting device, the first direction, the second direction, and the third direction are set perpendicular to each other in this embodiment.

[0036] In some embodiments, such as Figure 2As shown, there are four columns 21, which are respectively connected to the four corners of the top plate 22, thereby improving the overall strength of the frame 2 and the stability of the support for the guide components.

[0037] like Figures 1-2 As shown, the guiding assembly includes a guide shaft 4 and a guide bracket 6; wherein, the guide shaft 4 is fixedly connected between the base 1 and the top plate 22, the guide shaft 4 extends along a first direction, and there are at least two guide shafts, the at least two guide shafts 4 are distributed sequentially along a third direction, and in the third direction, there is a accommodating space between the at least two guide shafts 4 to accommodate the load-bearing assembly 7, so that the load-bearing assembly 7 can lift the turnover bucket 10 under the guidance of the guiding assembly.

[0038] The guide bracket 6 and the guide shaft 4 are slidably fitted together, and the guide bracket 6 is used to connect the load-bearing component so that the load-bearing component 7 can be moved when the guide bracket 6 moves along the guide shaft 4, so as to realize the lifting operation of the turnover bucket 10.

[0039] like Figure 2 As shown, the guide support 6 includes a load-bearing plate 63, a transmission plate 61, and a connecting plate 62. The load-bearing plate 63 is slidably engaged with the guide shaft 4, and a load-bearing component 7 is connected to the top surface of the load-bearing plate 63. The transmission plate 61 is driven by the drive end of the drive member 3, and the transmission plate 61 is slidably engaged with the guide shaft 4. The transmission plate 61 and the load-bearing plate 63 are distributed sequentially along the first direction. The connecting plate 62 is fixedly connected between the transmission plate 61 and the load-bearing plate 63, and there are at least two connecting plates 62. In the third direction, there is a space between at least two connecting plates 62 to accommodate the load-bearing component 7. Thus, the drive member 3 drives the transmission plate 61 to move, and the transmission plate 61 drives the load-bearing plate 63 to move through the connecting plate 62, so as to realize the lifting operation of the turnover bucket 10. The guiding effect of the transmission plate 61, the connecting plate 62, and the load-bearing plate 63 improves the stability of lifting the turnover bucket 10.

[0040] In some embodiments, such as Figure 2 As shown, there are two guide shafts 4, which are distributed sequentially along a third direction. There are also two connecting plates 62, which are distributed sequentially along a third direction. The two connecting plates 62 have a space between them to accommodate the load-bearing component 7, so as to improve the stability of the load-bearing component 7 during its movement.

[0041] like Figures 1-2 As shown, a first guide sleeve 51 is provided between the transmission plate 61 and the guide shaft 4, and a second guide sleeve 52 is provided between the load-bearing plate 63 and the guide shaft 4, so as to improve the stability of the transmission plate 61 and the load-bearing plate 63 during the sliding process along the guide shaft 4, and further improve the stable lifting of the turnover drum 10.

[0042] In some embodiments, such as Figure 1 As shown, the transmission plate 61 has a T-shaped structure. The vertical section of the T-shaped transmission plate 61 extends from the guide shaft 4 to the drive member 3 along the second direction, so as to facilitate the transmission connection between the transmission plate 61 and the drive end of the drive member 3.

[0043] In some embodiments, such as Figure 2 As shown, the load-bearing plate 63 has a T-shaped structure. The vertical section of the load-bearing plate 63 extends from the guide shaft 4 to the load-bearing component 7 along the second direction to increase the contact area between the load-bearing plate 63 and the load-bearing component 7, improve the support strength of the load-bearing plate 63 to the load-bearing component 7, and further improve the stability of the load-bearing component 7 in the process of lifting the turnover bucket 10.

[0044] like Figure 2 As shown, the lifting device provided in this application embodiment also includes a buffer 8. The buffer 8 is disposed on the top surface of the base 1, and the axial direction of the buffer 8 is consistent with the first direction. The buffer 8 can abut against the load-bearing plate 63 to buffer the movement of the guide support 6, so as to avoid the guide support 6 from colliding with the base 1 during the descent process and improve the service life of the lifting device.

[0045] In some embodiments, the buffer 8 can be a hydraulic buffer, a pneumatic buffer, a rubber buffer, or other device capable of buffering, and this application does not limit this.

[0046] like Figure 1 As shown, the bottom surface of the base 1 is also provided with four fixing seats 9, which are respectively set at the four corners of the base 1 to improve the overall stability of the lifting device.

[0047] During the operation of the lifting device provided in this application embodiment, when it is necessary to add material to the turnover bucket 10 conveyed to the lifting device, the drive component 3 is activated. The drive component 3 drives the guide bracket 6 to move along the guide shaft 4, thereby driving the load-bearing component 7 to move, so as to lift the turnover bucket 10. In this way, the turnover bucket 10 that needs to be added is lifted for the addition operation, so that other turnover buckets 10 can still continue to be conveyed below the lifted turnover bucket 10, reducing the phenomenon of turnover buckets 10 queuing and waiting, and improving the efficiency of additive preparation.

[0048] like Figure 3 As shown in the figure, this application embodiment also provides an automatic batching system, which includes: at least two feeding roller lines, at least two feeding devices 200, and at least two lifting devices 100 as described in the above embodiment; wherein, the feeding roller lines, feeding devices 200 and lifting devices 100 correspond one-to-one.

[0049] Since the lifting device 100 has the aforementioned technical effects, and the automatic batching system includes the lifting device 100, the automatic batching system also has corresponding technical effects, which will not be elaborated here.

[0050] like Figure 3 As shown, in actual practice, the automatic batching device provided in this application embodiment also includes a dust collector 300. The dust collector 300 is connected to all the feeding devices 200 and can remove dust during the feeding process. The feeding device 200 includes a feeding station, etc., which can realize continuous feeding of the turnover bucket 10.

[0051] The automatic batching system provided in this application embodiment also includes a turnover drum return roller line, a bagging machine, a weighing device, a sealing machine, a marking machine, a sorting device, etc. The connection and cooperation of each component are conventional technical means, which can cooperate to realize the automatic batching process, and will not be described in detail here.

[0052] The above description of the disclosed embodiments enables those skilled in the art to make or use this application. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of this application. Therefore, this application is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A lifting device, characterized in that, include: Base (1), drive unit (3) and load-bearing component (7); The driving component (3) is disposed on the top surface of the base (1), and the axis of the driving component (3) is consistent with the first direction, which is the vertical direction; The load-bearing component (7) is connected to the driving component (3) in a transmission manner. The load-bearing component (7) is used to carry the turnover bucket (10). The driving component (3) can drive the load-bearing component (7) to move along the first direction. The load-bearing component (7) extends from the base (1) along a second direction, and the second direction has an angle with the first direction; It also includes a guide assembly, which includes a guide shaft (4) and a guide bracket (6). The axial direction of the guide shaft (4) extends along the first direction. The guide bracket (6) is slidably engaged with the guide shaft (4) and the guide bracket (6) is connected to the load-bearing assembly (7). The guide bracket (6) includes: The load-bearing plate (63) is slidably engaged with the guide shaft (4), and the top surface of the load-bearing plate (63) is connected to the load-bearing component (7). Transmission plate (61), the transmission plate (61) is connected to the driving end of the driving member (3), the transmission plate (61) is slidably engaged with the guide shaft (4), and the transmission plate (61) and the load-bearing plate (63) are distributed sequentially along the first direction; A connecting plate (62) is fixedly connected between the transmission plate (61) and the load-bearing plate (63). There are at least two connecting plates (62), and in the third direction, there is an accommodating space between at least two connecting plates (62) to accommodate the load-bearing component (7).

2. The lifting device according to claim 1, characterized in that, The lifting device also includes: A frame (2) is disposed on the top surface of the base (1); The guide assembly is disposed between the base (1) and the frame (2), and the guide assembly is drivingly connected to the drive component (3) and the load-bearing component (7).

3. The lifting device according to claim 2, characterized in that, The rack (2) includes: The column (21) is at least two, and at least two of the columns (21) are fixedly connected to the top surface of the base (1). The length direction of the column (21) extends along the first direction, and at least two of the columns (21) are distributed sequentially along the third direction. Top plate (22), which is fixedly connected to the top surface of all the columns (21); There are included angles between the first direction, the second direction, and the third direction.

4. The lifting device according to claim 3, characterized in that, The guide shaft (4) is fixedly connected to the base (1) and the top plate (22). There are at least two guide shafts (4), which are distributed sequentially along the third direction. In the third direction, there is a space between the at least two guide shafts (4) to accommodate the load-bearing component (7).

5. The lifting device according to claim 4, characterized in that, A first guide sleeve (51) is provided between the transmission plate (61) and the guide shaft (4). And / or, a second guide sleeve (52) is provided between the load-bearing plate (63) and the guide shaft (4).

6. The lifting device according to claim 5, characterized in that, The transmission plate (61) has a T-shaped structure, and the vertical section of the T-shaped transmission plate (61) extends from the guide shaft (4) to the drive member (3) along the second direction; And / or, the load-bearing plate (63) is T-shaped, and the vertical section of the T-shaped load-bearing plate (63) extends along the second direction from the guide shaft (4) to the load-bearing component (7).

7. The lifting device according to claim 2, characterized in that, It also includes a buffer (8) disposed on the top surface of the base (1), the axial direction of the buffer (8) being consistent with the first direction, and the buffer (8) being used to buffer the guide assembly.

8. The lifting device according to claim 1, characterized in that, The bottom surface of the base (1) is also provided with a fixing seat (9).

9. An automatic batching system, characterized in that, It includes at least two feeder roller conveyors, at least two feeding devices (200), and at least two lifting devices (100) as described in any one of claims 1-8. The feeder roller line, the feeder device (200), and the lifting device (100) correspond one-to-one.