Tank separating device and filling production line with same

By designing a can splitting device containing full-material detection parts and control parts, the problem of easy jamming of the can splitting device in the prior art is solved, and uniform distribution of packaging cans and improvement of production efficiency is achieved.

CN222988470UActive Publication Date: 2025-06-17HEILONGJIANG FEIHE DAIRY CO LTD +4
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Patent Information

Application Number
CN202422337439.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-24
Publication Date
2025-06-17
Estimated Expiration
2034-09-24

AI Technical Summary

Technical Problem

The existing canning division device is prone to jam when multiple packaging cans are allocated into two rows, resulting in inefficient production efficiency.

Method used

A can partition device is designed, including a rack, can access channel, can exit channel, can partition, full-material detection part and control part. The full material condition of the tank channel is detected by the full material detection part, and the control part controls the switching between the intermediate working state, the first working state and the second working state to ensure that the packaging cans are evenly distributed to the two rows of channels.

Benefits of technology

It effectively avoids the accumulation of packaging cans on the can outlet channel, prevents the occurrence of cans, and improves the efficiency and stability of the production line.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN222988470U_ABST
    Figure CN222988470U_ABST
Patent Text Reader

Abstract

The utility model provides a can separating device and a filling production line with the same. The can separating device is characterized in that an inlet of a first can outlet channel and an inlet of a second can outlet channel can be communicated with an outlet of a can inlet channel; the can separating piece is arranged on the frame body and has a middle working state, a first working state and a second working state; the full material detection piece is arranged corresponding to the first can outlet channel and the second can outlet channel; and the control piece is connected with the full material detection piece and the tank separation piece so as to control the tank separation piece to be switched among the middle working state, the first working state and the second working state according to the detection result of the full material detection piece. Through the technical scheme provided by the invention, the problem that cans are easy to block when a plurality of packaging cans are distributed into two rows by a can distributing device in the related technology can be solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of filling production lines, and more specifically, to a can dividing device and a filling production line having the same. Background Art

[0002] In the production and processing process, it is often necessary to evenly divide the packaging cans conveyed in a straight line on the conveyor belt into two columns to facilitate subsequent packing or picking operations.

[0003] In the related art, a can dividing device is used to divide a plurality of packaging cans conveyed in one column into two columns of packaging cans. The can dividing device includes a conveying member and a can dividing block arranged above the conveying member. The can dividing block includes a triangular plate body. When the plurality of packaging cans pass through the can dividing block, they are distributed in two directions, so that the plurality of packaging cans are distributed into two columns.

[0004] However, the can dividing device in the related art is prone to can jamming when distributing a plurality of packaging cans into two columns. Summary of the Utility Model

[0005] The utility model provides a can dividing device and a filling production line having the same to solve the problem that the can dividing device in the related art is prone to can jamming when distributing a plurality of packaging cans into two columns.

[0006] According to an aspect of the utility model, a can dividing device is provided. The can dividing device includes: a frame body; an inlet can channel arranged on the frame body; a first outlet can channel and a second outlet can channel arranged downstream of the inlet can channel. The inlets of the first outlet can channel and the second outlet can channel can both be connected to the outlet of the inlet can channel; a can dividing member arranged on the frame body. The can dividing member has an intermediate working state, a first working state, and a second working state. When the can dividing member is in the intermediate working state, the inlets of the first outlet can channel and the second outlet can channel are both connected to the outlet of the inlet can channel. When the can dividing member is in the first working state, the inlet of the first outlet can channel is connected to the outlet of the inlet can channel. When the can dividing member is in the second working state, the inlet of the second outlet can channel is connected to the outlet of the inlet can channel; a full material detection member arranged corresponding to the first outlet can channel and the second outlet can channel; a control member respectively connected to the full material detection member and the can dividing member to control the can dividing member to switch between the intermediate working state, the first working state, and the second working state according to the detection result of the full material detection member.

[0007] Further, the can separating component includes: a can separating paddle, which is movably arranged between the inlet of the first can outlet channel and the inlet of the second can outlet channel, when the can separating component is in an intermediate working state, the can separating paddle opens the inlet of the first can outlet channel and the inlet of the second can outlet channel, when the can separating component is in the first working state, the can separating paddle opens the inlet of the first can outlet channel, and the can separating paddle closes the inlet of the second can outlet channel, when the can separating component is in the second working state, the can separating paddle opens the inlet of the second can outlet channel, and the can separating paddle closes the inlet of the first can outlet channel; a driving component, which is arranged on the frame, the driving component is connected to the can separating paddle, and the control component is respectively connected to the full material detection component and the driving component, so as to control the driving component according to the detection result of the full material detection component, so as to drive the can separating paddle to move.

[0008] Furthermore, the driving member includes a telescopic member, which extends in a transverse direction and is arranged on the frame, the telescopic member is drivingly connected to the tank dividing paddle, and the control member is respectively connected to the full material detection member and the telescopic member.

[0009] Furthermore, the telescopic member includes: a first cylinder, including a first cylinder body and a first piston rod, and the end of the first piston rod facing away from the first cylinder body is connected to the frame body; a second cylinder, including a second cylinder body and a second piston rod, the second cylinder body is arranged at the end of the first cylinder body facing away from the first piston rod, and the end of the second piston rod facing away from the second cylinder body is drivingly connected to the tank dividing paddle; wherein, the full material detection member includes a first detection member and a second detection member, the first detection member is arranged on the first tank outlet channel, and the second detection member is arranged on the second tank outlet channel, the control member is respectively connected to the first detection member and the first cylinder signal to control the first cylinder according to the detection result of the first detection member, and the control member is respectively connected to the second detection member and the second cylinder to control the second cylinder according to the detection result of the second detection member.

[0010] Furthermore, the tank separation device also includes a connecting pin and a fisheye joint, the end of the first piston rod facing away from the first cylinder body is connected to the frame through the fisheye joint, and the end of the second piston rod facing away from the second cylinder body is fixedly connected to the tank separation paddle through the connecting pin.

[0011] Furthermore, the first detection component includes a transmitter and a receiver, the transmitter and the receiver are respectively arranged on both sides of the first tank outlet channel, and the control component is connected to the receiver signal.

[0012] Furthermore, the tank separating paddle comprises: a tank separating block movably arranged between the inlet of the first tank outlet channel and the inlet of the second tank outlet channel; a connecting frame, the driving member is drivingly connected to the connecting frame, and the lower end of the connecting frame is connected to the tank separating block.

[0013] Further, the can-dividing member further includes a flexible retaining strip, which is disposed around the side of the can-dividing block facing away from the first can outlet channel and the second can outlet channel. The first end of the flexible retaining strip is connected to the side of the first can outlet channel facing the second can outlet channel, and the second end of the flexible retaining strip is connected to the side of the second can outlet channel facing the first can outlet channel.

[0014] Further, the connecting frame includes: a slider. The can-dividing member further includes a slide rail member, which extends in the transverse direction and is disposed on the frame body and above the can inlet channel, the first can outlet channel, and the second can outlet channel. The slider is movably disposed on the slide rail member along the extending direction of the slide rail member; a vertical plate, the upper end of the vertical plate is connected to the slider, the driving member is drivingly connected to the vertical plate, and the can-dividing block is disposed at the lower end of the vertical plate.

[0015] According to another aspect of the present invention, a filling production line is provided, which includes the can-dividing device provided above.

[0016] Applying the technical solution of the present invention, the can-dividing device includes a frame body, a can inlet channel, a first can outlet channel, a second can outlet channel, a can-dividing member, a full material detection member, and a control member. By disposing the full material detection member corresponding to the first can outlet channel and the second can outlet channel to respectively detect the full material conditions of the first can outlet channel and the second can outlet channel. When both the first can outlet channel and the second can outlet channel are not full of materials, the control member controls the can-dividing member to switch to the intermediate working state, so that the packaging cans on the feeding channel can be divided by the can-dividing member into the first can outlet channel and the second can outlet channel. When the first can outlet channel is full of materials, the control member controls the can-dividing member to switch to the second working state, so that the packaging cans on the feeding channel can be divided by the can-dividing member into the second can outlet channel. When the second can outlet channel is full of materials, the control member controls the can-dividing member to switch to the first working state, so that the packaging cans on the feeding channel can be divided by the can-dividing member into the first can outlet channel, thereby avoiding the accumulation of packaging cans on the first can outlet channel or the second can outlet channel, avoiding can jams, and improving production efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] The specification drawings forming a part of this application are used to provide a further understanding of the present invention. The schematic embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation to the present invention. In the drawings:

[0018] Figure 1 Shows a schematic structural diagram of the can-dividing device with the can-dividing member in the intermediate working state provided by the embodiment of the present invention;

[0019] Figure 2 Shows a schematic structural diagram of the can-dividing device with the can-dividing member in the second working state provided by the embodiment of the present invention;

[0020] Figure 3The structural schematic diagram of the tank-dividing device with the tank-dividing part provided by the embodiment of the present utility model in the first working state is shown;

[0021] Figure 4 The structural schematic diagram of the frame body and the tank-dividing part of the tank-dividing device provided by the embodiment of the present utility model is shown.

[0022] Among them, the above-mentioned drawings include the following reference numerals:

[0023] 10. Frame body;

[0024] 20. Inlet tank channel;

[0025] 31. First outlet tank channel; 32. Second outlet tank channel;

[0026] 40. Tank-dividing part; 41. Tank-dividing paddle; 411. Tank-dividing block; 412. Connecting frame; 4121. Slide block; 4122. Vertical plate; 42. Driving part; 421. Telescopic part; 4211. First cylinder; 42111. First cylinder body; 42112. First piston rod; 4212. Second cylinder; 42121. Second cylinder body; 42122. Second piston rod; 43. Slide rail part; 44. Flexible stop strip;

[0027] 50. Connecting pin; 60. Ball eye joint. Detailed implementation manners

[0028] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. The following description of at least one exemplary embodiment is actually only illustrative and in no way restrictive of the present utility model and its application or use. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0029] Such as Figures 1 to 4As shown in the figure, an embodiment of the present utility model provides a can-sorting device. The can-sorting device includes a frame 10, an inlet can passage 20, a first outlet can passage 31, a second outlet can passage 32, a can-sorting member 40, a full-material detection member, and a control member. The inlet can passage 20 is provided on the frame 10. The first outlet can passage 31 and the second outlet can passage 32 are provided downstream of the inlet can passage 20. The inlet of the first outlet can passage 31 and the inlet of the second outlet can passage 32 can both be connected to the outlet of the inlet can passage 20. The can-sorting member 40 is provided on the frame 10. The can-sorting member 40 has an intermediate working state, a first working state, and a second working state. When the can-sorting member 40 is in the intermediate working state, the inlet of the first outlet can passage 31 and the inlet of the second outlet can passage 32 are both connected to the outlet of the inlet can passage 20. When the can-sorting member 40 is in the first working state, the inlet of the first outlet can passage 31 is connected to the outlet of the inlet can passage 20. When the can-sorting member 40 is in the second working state, the inlet of the second outlet can passage 32 is connected to the outlet of the inlet can passage 20. The full-material detection member is provided corresponding to the first outlet can passage 31 and the second outlet can passage 32. The control member is respectively connected to the full-material detection member and the can-sorting member 40 to control the can-sorting member 40 to switch between the intermediate working state, the first working state, and the second working state according to the detection result of the full-material detection member.

[0030] Applying the can-sorting device provided in this embodiment, the can-sorting device includes a frame 10, an inlet can passage 20, a first outlet can passage 31, a second outlet can passage 32, a can-sorting member 40, a full-material detection member, and a control member. By providing the full-material detection member corresponding to the first outlet can passage 31 and the second outlet can passage 32 to respectively detect the full-material conditions of the first outlet can passage 31 and the second outlet can passage 32. When both the first outlet can passage 31 and the second outlet can passage 32 are not full of materials, the control member controls the can-sorting member 40 to switch to the intermediate working state, so that the packaging cans on the inlet can passage 20 can be sorted by the can-sorting member 40 to the first outlet can passage 31 and the second outlet can passage 32. When the first outlet can passage 31 is full of materials, the control member controls the can-sorting member 40 to switch to the second working state, so that the packaging cans on the inlet can passage 20 can be sorted by the can-sorting member 40 to the second outlet can passage 32. When the second outlet can passage 32 is full of materials, the control member controls the can-sorting member 40 to switch to the first working state, so that the packaging cans on the inlet can passage 20 can be sorted by the can-sorting member 40 to the first outlet can passage 31, thereby avoiding the accumulation of packaging cans on the first outlet can passage 31 or the second outlet can passage 32, avoiding can jams, and improving production efficiency.

[0031] Among them, the tank separation device further includes a feeding member disposed on the tank inlet passage 20. The control member is respectively signal-connected to the full material detection member and the feeding member. When the full material detection member detects that both the first tank outlet passage 31 and the second tank outlet passage 32 are full of materials, the control member controls the feeding member to stop operating. Then, when the full material detection member detects again that the first tank outlet passage 31 and / or the second tank outlet passage 32 is not full of materials, the control member controls the feeding member to start operating again.

[0032] It should be noted that the first tank outlet passage 31 and the second tank outlet passage 32 being disposed downstream of the tank inlet passage 20 means that, in the transportation direction of the packaging cans, the first tank outlet passage 31 and the second tank outlet passage 32 are disposed downstream of the tank inlet passage 20, and the packaging cans on the tank inlet passage 20 will be transported to the first tank outlet passage 31 or the second tank outlet passage 32.

[0033] As Figures 1 to 4 shown, the tank separation member 40 includes a tank separation flap 41 and a driving member 42. The tank separation flap 41 is movably disposed between the inlet of the first tank outlet passage 31 and the inlet of the second tank outlet passage 32. When the tank separation member 40 is in the intermediate working state, the tank separation flap 41 opens the inlets of the first tank outlet passage 31 and the second tank outlet passage 32. When the tank separation member 40 is in the first working state, the tank separation flap 41 opens the inlet of the first tank outlet passage 31, and the tank separation flap 41 closes the inlet of the second tank outlet passage 32. When the tank separation member 40 is in the second working state, the tank separation flap 41 opens the inlet of the second tank outlet passage 32, and the tank separation flap 41 closes the inlet of the first tank outlet passage 31. The driving member 42 is disposed on the frame body 10, and the driving member 42 is drivingly connected to the tank separation flap 41. The control member is respectively connected to the full material detection member and the driving member 42 to control the driving member 42 according to the detection result of the full material detection member so as to drive the tank separation flap 41 to move.

[0034] Specifically, when the packaging cans on the can inlet channel 20 are transported past the can separating paddle 41, the packaging cans on the can inlet channel 20 can be guided by the can separating paddle 41 to both sides or one side of the can separating paddle 41. When the can separating member 40 is in the middle working state, the can separating paddle 41 opens the inlets of the first can outlet channel 31 and the second can outlet channel 32, and the packaging cans on the can inlet channel 20 can be guided by the can separating paddle 41 to both sides of the can separating paddle 41 to enter the inlets of the first can outlet channel 31 and the second can outlet channel 32. When the can separating member 40 is in the first working state, the can separating paddle 41 opens the inlet of the first can outlet channel 31, and the can separating paddle 41 closes the inlet of the second can outlet channel 32. The packaging cans on the can inlet channel 20 can be guided by the can separating paddle 41 to one side of the can separating paddle 41 to enter the inlet of the first can outlet channel 31. When the can separating member 40 is in the second working state, the can separating paddle 41 opens the inlet of the second can outlet channel 32, and the can separating paddle 41 closes the inlet of the first can outlet channel 31. The packaging cans on the can inlet channel 20 can be guided by the can separating paddle 41 to one side of the can separating paddle 41 to enter the inlet of the second can outlet channel 32.

[0035] As Figure 4 shown in the figure, the driving member 42 includes a telescopic member 421. The telescopic member 421 extends in the transverse direction and is arranged on the frame body 10. The telescopic member 421 is drivingly connected to the can separating paddle 41, and the control member is respectively connected to the full material detection member and the telescopic member 421. By adopting the above-mentioned telescopic member 421, the can separating paddle 41 is translated between the inlet of the first can outlet channel 31 and the inlet of the second can outlet channel 32, improving the certainty of the movement track of the can separating paddle 41.

[0036] As Figure 4 shown in the figure, the telescopic member 421 includes a first air cylinder 4211 and a second air cylinder 4212. The first air cylinder 4211 includes a first cylinder body 42111 and a first piston rod 42112. One end of the first piston rod 42112 departing from the first cylinder body 42111 is connected to the frame body 10. The second air cylinder 4212 includes a second cylinder body 42121 and a second piston rod 42122. The second cylinder body 42121 is arranged at one end of the first cylinder body 42111 departing from the first piston rod 42112. One end of the second piston rod 42122 departing from the second cylinder body 42121 is drivingly connected to the can separating paddle 41. Among them, the full material detection member includes a first detection member and a second detection member. The first detection member is arranged on the first can outlet channel 31, and the second detection member is arranged on the second can outlet channel 32. The control member is respectively signal-connected to the first detection member and the first air cylinder 4211 to control the first air cylinder 4211 according to the detection result of the first detection member. The control member is respectively connected to the second detection member and the second air cylinder 4212 to control the second air cylinder 4212 according to the detection result of the second detection member.

[0037] As Figure 4As shown in the figure, the can separating device further includes a connecting pin 50 and a spherical eye joint 60. One end of the first piston rod 42112 facing away from the first cylinder block 42111 is connected to the frame body 10 through the spherical eye joint 60, and one end of the second piston rod 42122 facing away from the second cylinder block 42121 is fixedly connected to the can separating paddle 41 through the connecting pin 50. By arranging the spherical eye joint 60 between the first piston rod 42112 and the frame body 10, while allowing the relative movement generated by the spherical eye joint 60 caused by the shaking deviation, foreign objects are prevented from being generated above the can inlet channel 20, the first can outlet channel 31 or the second can outlet channel 32, and foreign objects are prevented from contacting the transported packaging cans, thereby improving the product quality.

[0038] In this embodiment, the first detection member includes a transmitter and a receiver. The transmitter and the receiver are respectively arranged on both sides of the first can outlet channel 31, and the control member is signal-connected to the receiver.

[0039] As Figure 4 shown in the figure, the can separating paddle 41 includes a can separating block 411 and a connecting frame 412. The can separating block 411 is movably arranged between the inlet of the first can outlet channel 31 and the inlet of the second can outlet channel 32. The driving member 42 is drivingly connected to the connecting frame 412, and the lower end of the connecting frame 412 is connected to the can separating block 411. With the can separating paddle 41 having the above structure, while using the can separating block 411 to distribute and guide the transported packaging cans, the connecting frame 412 is used to connect the telescopic member 421 and the can separating block 411, reducing the cost of the can separating paddle 41, and different materials can also be selected for the can separating block 411 and the connecting frame 412. For example, the can separating block 411 is made of plastic material, and the connecting frame 412 is made of sheet metal parts, thereby improving the reliability of the connecting frame 412 in connecting the telescopic member 421 and the can separating block 411, and preventing the packaging cans from being deformed or scratched by impact.

[0040] Specifically, the can separating block 411 adopts a triangular plate. One angle of the triangular plate points to the can inlet channel 20, and the other two angles of the triangular plate respectively point to the inlet of the first can outlet channel 31 and the inlet of the second can outlet channel 32.

[0041] As Figures 1 to 3 shown in the figure, the can separating member 40 further includes a flexible retaining strip 44. The flexible retaining strip 44 surrounds one side of the can separating block 411 facing away from the first can outlet channel 31 and the second can outlet channel 32. The first end of the flexible retaining strip 44 is connected to the side of the first can outlet channel 31 facing the second can outlet channel 32, and the second end of the flexible retaining strip 44 is connected to the side of the second can outlet channel 32 facing the first can outlet channel 31. With the above flexible retaining strip 44, on the one hand, it plays a protective role for the packaging cans, preventing the packaging cans from being deformed or scratched by impact, and on the other hand, when the packaging cans enter the first can outlet channel 31 or the second can outlet channel 32 from the can inlet channel 20, it prevents the packaging cans from deviating from the first can outlet channel 31 and the second can outlet channel 32.

[0042] As Figure 4 shown, the connecting frame 412 includes a slider 4121 and a vertical plate 4122. The can separating member 40 further includes a slide rail member 43. The slide rail member 43 extends in the lateral direction and is disposed on the frame body 10 and above the can inlet passage 20, the first can outlet passage 31, and the second can outlet passage 32. The slider 4121 is movably disposed on the slide rail member 43 along the extending direction of the slide rail member 43. The upper end of the vertical plate 4122 is connected to the slider 4121. The driving member 42 is drivingly connected to the vertical plate 4122. The can separating block 411 is disposed at the lower end of the vertical plate 4122. The slide rail member 43 guides the movement of the slider 4121, thereby determining the movement track of the can separating flap 41, preventing the can separating flap 41 from shifting and causing can jamming, and improving production efficiency.

[0043] Another embodiment of the present utility model provides a filling production line, which includes the can separating device provided above. By disposing the full material detection member corresponding to the first can outlet passage 31 and the second can outlet passage 32 to respectively detect the full material conditions of the first can outlet passage 31 and the second can outlet passage 32, when both the first can outlet passage 31 and the second can outlet passage 32 are not full, the control member controls the can separating member 40 to switch to the intermediate working state, so that the packaging cans on the can inlet passage 20 can be separated by the can separating member 40 into the first can outlet passage 31 and the second can outlet passage 32. When the first can outlet passage 31 is full, the control member controls the can separating member 40 to switch to the second working state, so that the packaging cans on the can inlet passage 20 can be separated by the can separating member 40 into the second can outlet passage 32. When the second can outlet passage 32 is full, the control member controls the can separating member 40 to switch to the first working state, so that the packaging cans on the can inlet passage 20 can be separated by the can separating member 40 into the first can outlet passage 31, thereby preventing the packaging cans from accumulating on the first can outlet passage 31 or the second can outlet passage 32, avoiding can jamming, and improving production efficiency.

[0044] Wherein, the can separating device further includes a feeding member disposed on the can inlet passage 20. The control member is respectively in signal connection with the full material detection member and the feeding member. When the full material detection member detects that both the first can outlet passage 31 and the second can outlet passage 32 are full, the control member controls the feeding member to stop operating. Then, when the full material detection member detects again that the first can outlet passage 31 and / or the second can outlet passage 32 is not full, the control member controls the feeding member to start operating again.

[0045] It should be noted that the terms used herein are only for describing specific embodiments and are not intended to limit the exemplary embodiments according to the present application. As used herein, unless the context clearly indicates otherwise, the singular form is also intended to include the plural form. In addition, it should be understood that when the terms "comprise" and / or "include" are used in this specification, they indicate the presence of features, steps, operations, devices, components, and / or combinations thereof.

[0046] Unless otherwise specifically stated, the relative arrangements of components and steps, numerical expressions, and numerical values set forth in these embodiments do not limit the scope of the present utility model. At the same time, it should be understood that for the sake of convenience in description, the dimensions of the various parts shown in the drawings are not drawn in accordance with actual proportional relationships. Technologies, methods, and devices known to those of ordinary skill in the relevant art may not be discussed in detail, but where appropriate, the said technologies, methods, and devices should be regarded as part of the description. In all the examples shown and discussed here, any specific values should be construed as merely exemplary and not as a limitation. Therefore, other examples of the exemplary embodiments may have different values. It should be noted that like reference numerals and letters denote like items in the following drawings, and thus, once an item is defined in one drawing, it does not need to be further discussed in subsequent drawings.

[0047] In the description of the present utility model, it should be understood that the orientation or positional relationships indicated by orientation words such as "front, rear, upper, lower, left, right", "lateral, vertical, perpendicular, horizontal", and "top, bottom" are generally based on the orientation or positional relationships shown in the drawings, and are only for the convenience of describing the present utility model and simplifying the description. Without contrary statements, these orientation words do not indicate and imply that the devices or elements referred to must have a specific orientation or be constructed and operated in a specific orientation, and thus should not be construed as limiting the protection scope of the present utility model; the orientation words "inside, outside" refer to the inside and outside relative to the contours of the respective components.

[0048] For the sake of convenience in description, spatial relative terms such as "above...", "over...", "on the upper surface of...", "above" can be used here to describe the spatial positional relationships of one device or feature to other devices or features as shown in the drawings. It should be understood that the spatial relative terms are intended to encompass different orientations in use or operation in addition to the orientation depicted in the drawings for the device. For example, if the device in the drawing is inverted, the device described as "above other devices or structures" or "over other devices or structures" will then be positioned "below other devices or structures" or "under other devices or structures". Thus, the exemplary term "above" can include both the orientations of "above" and "below". The device can also be positioned in other different ways (rotated 90 degrees or in other orientations), and corresponding interpretations will be made for the spatial relative descriptions used here.

[0049] In addition, it should be noted that the use of words such as "first", "second" to limit components is only for the convenience of differentiating the corresponding components. Without additional statements, the above words have no special meanings, and thus should not be construed as limiting the protection scope of the present utility model.

[0050] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. For those skilled in the art, various modifications and variations can be made to the present utility model. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A tank separation device, characterized in that: The tank separation device comprises: Frame (10); A tank inlet channel (20) is arranged on the frame (10); A first tank outlet channel (31) and a second tank outlet channel (32) are arranged downstream of the tank inlet channel (20), and an inlet of the first tank outlet channel (31) and an inlet of the second tank outlet channel (32) can both be connected to an outlet of the tank inlet channel (20); a tank dividing member (40) arranged on the frame (10), the tank dividing member (40) having an intermediate working state, a first working state and a second working state; when the tank dividing member (40) is in the intermediate working state, the inlet of the first tank outlet passage (31) and the inlet of the second tank outlet passage (32) are both connected to the outlet of the tank inlet passage (20); when the tank dividing member (40) is in the first working state, the inlet of the first tank outlet passage (31) is connected to the outlet of the tank inlet passage (20); when the tank dividing member (40) is in the second working state, the inlet of the second tank outlet passage (32) is connected to the outlet of the tank inlet passage (20); A full material detection member is provided corresponding to the first tank outlet passage (31) and the second tank outlet passage (32); A control component is connected to the full material detection component and the tank separation component (40) respectively, so as to control the tank separation component (40) to switch between the intermediate working state, the first working state and the second working state according to the detection result of the full material detection component.

2. The tank separation device according to claim 1, characterized in that: The tank distributing member (40) comprises: a can separating paddle (41) movably arranged between the inlet of the first can outlet passage (31) and the inlet of the second can outlet passage (32); when the can separating member (40) is in the intermediate working state, the can separating paddle (41) opens the inlet of the first can outlet passage (31) and the inlet of the second can outlet passage (32); when the can separating member (40) is in the first working state, the can separating paddle (41) opens the inlet of the first can outlet passage (31) and closes the inlet of the second can outlet passage (32); when the can separating member (40) is in the second working state, the can separating paddle (41) opens the inlet of the second can outlet passage (32) and closes the inlet of the first can outlet passage (31); A driving member (42) is arranged on the frame (10), the driving member (42) is drivingly connected to the can separating paddle (41), and the control member is respectively connected to the full material detection member and the driving member (42) so as to control the driving member (42) according to the detection result of the full material detection member so as to drive the can separating paddle (41) to move.

3. The tank separation device according to claim 2, characterized in that: The driving member (42) comprises a telescopic member (421), the telescopic member (421) extending in a transverse direction and arranged on the frame (10), the telescopic member (421) being drivingly connected to the can separation paddle (41), and the control member being respectively connected to the full material detection member and the telescopic member (421).

4. The tank separation device according to claim 3, characterized in that: The telescopic member (421) comprises: A first cylinder (4211), comprising a first cylinder body (42111) and a first piston rod (42112), wherein an end of the first piston rod (42112) facing away from the first cylinder body (42111) is connected to the frame body (10); The second cylinder (4212) comprises a second cylinder body (42121) and a second piston rod (42122), wherein the second cylinder body (42121) is arranged at an end of the first cylinder body (42111) away from the first piston rod (42112), and the end of the second piston rod (42122) away from the second cylinder body (42121) is drivingly connected to the tank separating paddle (41); The full-material detection component comprises a first detection component and a second detection component, the first detection component is arranged on the first tank outlet channel (31), the second detection component is arranged on the second tank outlet channel (32), the control component is respectively connected to the first detection component and the first cylinder (4211) by signals so as to control the first cylinder (4211) according to the detection result of the first detection component, and the control component is respectively connected to the second detection component and the second cylinder (4212) so as to control the second cylinder (4212) according to the detection result of the second detection component.

5. The tank separation device according to claim 4, characterized in that: The tank separating device further comprises a connecting pin (50) and a fisheye joint (60); an end of the first piston rod (42112) which faces away from the first cylinder body (42111) is connected to the frame body (10) via the fisheye joint (60); and an end of the second piston rod (42122) which faces away from the second cylinder body (42121) is fixedly connected to the tank separating paddle (41) via the connecting pin (50).

6. The tank separation device according to claim 4, characterized in that: The first detection component comprises a transmitter and a receiver, the transmitter and the receiver are respectively arranged on two sides of the first can outlet channel (31), and the control component is connected to the receiver by signal.

7. The tank separation device according to claim 2, characterized in that: The can separation paddle (41) comprises: A can distributing block (411) is movably disposed between the inlet of the first can outlet passage (31) and the inlet of the second can outlet passage (32); A connecting frame (412), the driving member (42) is drivingly connected to the connecting frame (412), and the lower end of the connecting frame (412) is connected to the tank distribution block (411).

8. The tank separation device according to claim 7, characterized in that: The tank distributing member (40) further comprises a flexible baffle (44), the flexible baffle (44) being arranged around a side of the tank distributing block (411) away from the first tank outlet channel (31) and the second tank outlet channel (32), a first end of the flexible baffle (44) being connected to a side of the first tank outlet channel (31) facing the second tank outlet channel (32), and a second end of the flexible baffle (44) being connected to a side of the second tank outlet channel (32) facing the first tank outlet channel (31).

9. The tank separation device according to claim 7, characterized in that: The connecting frame (412) comprises: A slider (4121), the tank distributing member (40) further comprising a slide rail member (43), the slide rail member (43) extending in a transverse direction and arranged on the frame (10) and located above the tank inlet channel (20), the first tank outlet channel (31) and the second tank outlet channel (32), the slider (4121) being movably arranged on the slide rail member (43) along an extending direction of the slide rail member (43); A vertical plate (4122), the upper end of the vertical plate (4122) is connected to the slider (4121), the driving member (42) is drivingly connected to the vertical plate (4122), and the tank dividing block (411) is arranged at the lower end of the vertical plate (4122).

10. A filling production line, characterized in that: The filling production line comprises the canning device according to any one of claims 1 to 9.