Residual material suction device for cream production line
Quickly clean the residue of the cream filling head through the cream production line leftover suction device, solving the problem of difficulty in cleaning the leftover in the cream filling head, ensuring the quality of the cream and production continuity.
Patent Information
- Application Number
- CN202422223717.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-11
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-09-11
AI Technical Summary
The residual material left in the cream filling head is difficult to clean, affecting the quality of subsequent cream, and the cleaning process can easily interfere with the production line operation.
A cream production line residual material suction device is designed, including a extraction part, a suction pump, a position adjustment part and a support part. The position adjustment part is driven to quickly move to the bottom end of the cream filling head through the position adjustment part, and the residual material is cleaned by a suction pump, and quickly move it away after cleaning to avoid affecting production.
Effectively clean the remaining materials in the cream filling head to prevent deterioration from affecting the quality of subsequent cream, while avoiding interference with the production line by the cleaning process.
Smart Images

Figure CN223134091U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of cream production line facilities, and particularly relates to a device for sucking remaining materials in a cream production line. Background Art
[0002] Cream refers to the light cream obtained by centrifugally separating milk, and is a dairy product made through ripening, stirring, and pressing. It is divided into two categories: vegetable cream and animal cream. Vegetable cream is extracted from soybeans, etc., while animal cream is made from milk, which is the light cream obtained by centrifugally separating milk and is a dairy product made through ripening, stirring, and pressing.
[0003] During the production and processing of cream, it is necessary to extrude the cream contained in the cream tank through a filling head, and inject the extruded cream into a sub-packaging tank conveyed by a conveyor belt below the filling head. After a batch of sub-packaging operations, there will be some remaining materials in the filling heads below each cream tank on the cream filling production line. The remaining materials in the relatively long and thin filling heads are not easy to clean, and the deterioration of the remaining materials will affect the quality of the subsequent sub-packaged cream. Content of the Utility Model
[0004] In order to improve the problems proposed in the above background art, this application provides a device for sucking remaining materials in a cream production line.
[0005] A device for sucking remaining materials in a cream production line provided by this application adopts the following technical solution:
[0006] A residual material suction device for a cream production line, comprising a suction part, a suction pump, a position adjustment part and a support part. The suction pump is installed inside the support part, and the suction pump is connected to the suction part. The suction part is used for sucking the residual material inside the cream filling head. The bottom of the position adjustment part is rotatably installed on the support part, and the position adjustment part is connected to the suction part. The position adjustment part drives and adjusts the position state of the suction part. The suction part includes an outer cover, an approaching linear driver, a collar, a suction seat and a suction pipe. The approaching linear driver is installed inside the inner cavity of the outer cover, and the output end of the approaching linear driver is connected to the outer edge of the collar. The middle part of the collar is sleeved on the outer wall of the suction seat and fixedly connected thereto. One end of the suction seat is formed with an opening adapted to the cream filling head, and the other end of the suction seat is communicated with the suction pump through the suction pipe. The suction pipe is arranged in a hose structure, and the length of the suction pipe is greater than the length of the outer cover. The position adjustment part includes a first linear driver, a second linear driver, two deflection seats and a docking structure. The docking structure is installed outside the suction part and fixedly connected thereto. The output ends of the first linear driver and the second linear driver are respectively rotatably connected to the middle part and the bottom of the docking structure. The bottom ends of the first linear driver and the second linear driver are both fixedly installed with deflection seats, and both of the two deflection seats are rotatably connected to the support part
[0007] Further, the docking structure includes at least one fitting ring, a bracket, a first connecting frame and a second connecting frame. At least one fitting ring is formed on the side of the bracket facing the outer cover, and the fitting ring fits the outer wall of the outer cover. The first connecting frame and the second connecting frame are respectively formed on the side of the bracket facing away from the outer cover. The first connecting frame and the second connecting frame are respectively rotatably connected to the output ends of the first linear driver and the second linear driver.
[0008] Further, the docking structure further includes a number of hoop clamps equal to the number of fitting rings. A circular inner cavity adapted to the outer cover is formed between the fitting ring and the hoop clamp, and the fitting ring is detachably fixed to the outer cover by the hoop clamp.
[0009] Further, the support part includes a base. Two connection positions are formed at the top of the base, each of which is rotatably connected to an adjacent deflection seat. The bottom of the base protrudes outward to form a fixed edge. The support part further includes a bracket formed at one end of the base away from the position adjustment part. The bracket is perpendicular to the base and protrudes upward. An avoidance groove through which the bracket can move is formed in the middle of the bracket.
[0010] Further, the approaching linear driver, the first linear driver and the second linear driver are all set as hydraulic push rods, electric push rods or pneumatic push rods.
[0011] The beneficial technical effects of the present application are as follows: Through the cooperative setting of the position adjustment part and the extraction part, after the cream filling production line finishes filling each dispensing bottle conveyed on the conveyor belt below it using the filling head, the position of the extraction part can be quickly adjusted by the position adjustment part, and the extraction seat in the extraction part can be sleeved on the bottom end of the cream filling head. Then, the residual material in the cream filling head is pumped out and cleaned using the suction pump, reducing the deterioration caused by the residual material remaining in the cream filling head and affecting subsequent processing. Additionally, after the extraction is completed, the position adjustment part can also drive the extraction part to quickly move away from the cream filling head and avoid to the side of the conveyor belt below the cream filling head, thus preventing it from affecting subsequent filling. Description of the Drawings
[0012] Figure 1 is a schematic structural diagram of a residual material suction device for a cream production line according to an embodiment of the present application;
[0013] Figure 2 is a schematic structural diagram of the cooperative connection between the position adjustment part and the outer cover in an embodiment of the present application;
[0014] Figure 3 is a schematic structural diagram of the cooperative connection between the position adjustment part and the support part in an embodiment of the present application.
[0015] Reference Signs: 10, extraction part; 11, outer cover; 12, approaching linear driver; 13, collar; 14, extraction seat; 15, extraction pipe; 20, position adjustment part; 21, fitting ring; 22, bracket; 23, hoop; 24, first connecting frame; 25, second connecting frame; 26, first linear driver; 27, second linear driver; 28, deflection seat; 30, support part; 31, base; 32, connection position; 33, fixed edge; 34, bracket; 35, avoidance groove. Detailed Embodiments
[0016] Next, the technical solutions of the present application will be described clearly and completely in conjunction with the accompanying drawings. Obviously, the described embodiments are some, but not all, of the embodiments of the present application. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present application without creative efforts shall fall within the protection scope of the present application.
[0017] An embodiment of the present application discloses a residual material suction device for a cream production line. Refer to Figure 1, the residual material suction device of the cream production line includes a suction part 10, a suction pump, a position adjustment part 20 and a support part 30. The suction pump is installed inside the support part 30, and the suction pump is connected to the suction part 10. The suction part 10 can be used to extract and clean the residual material inside the cream filling head. The bottom of the position adjustment part 20 is rotatably installed on the support part 30, and the position adjustment part 20 is connected to the suction part 10. The position adjustment part 20 is used to drive and adjust the position state of the suction part 10, so that the suction part 10 can approach or move away from the cream filling head, so that the suction part 10 can quickly move close to the cream canning head for cleaning, and after cleaning, the suction part 10 can be quickly moved away, thus avoiding affecting subsequent packaging.
[0018] Refer to Figure 1 , the suction part 10 includes a housing 11, a proximity linear driver 12, a collar 13, a suction seat 14 and a suction pipe 15. The proximity linear driver 12 is installed in the inner cavity of the housing 11, and the output end of the proximity linear driver 12 is connected to the outer edge of the collar 13, so that the output end of the proximity linear driver 12 can drive the collar 13 to move up and down in the housing 11. The middle part of the collar 13 is sleeved on the outer wall of the suction seat 14 and fixedly connected thereto. The suction seat 14 can follow the movement of the collar 13 to make a short-distance position adjustment so that it can be sleeved on the lower end of the cream filling head for use. One end of the suction seat 14 is formed with an opening that matches the cream filling head, and the other end of the suction seat 14 is connected to the suction pump through the suction pipe 15, so that when cleaning the cream filling head, the extracted residual material can flow through the suction seat 14 and the suction pipe 15 and be discharged. The suction pipe 15 adopts a hose structure, and the length of the suction pipe 15 needs to be greater than the length of the housing 11, so as to avoid excessive bending or excessive pulling of the suction pipe when the suction part 10 is driven to adjust its position, which affects the cleaning and extraction.
[0019] Refer to Figure 2, the position adjustment part 20 includes a first linear driver 26, a second linear driver 27, two deflection seats 28 and a docking structure. The docking structure is installed outside the extraction part 10 and fixed thereto. The output ends of the first linear driver 26 and the second linear driver 27 are respectively rotatably connected to the middle part and the bottom part of the docking structure. Deflection seats 28 are fixedly installed at the bottom ends of the first linear driver 26 and the second linear driver 27, and both of the two deflection seats 28 are rotatably connected to the support part 30. When it is necessary to clean the remaining material in the cream filling head, the output ends of the first linear driver 26 and the second linear driver 27 can be extended out a certain length. At this time, under the push of the output ends of the first linear driver 26 and the second linear driver 27 and the deflection support of the first linear driver 26 and the second linear driver 27, the extraction part 10 can be driven to move to a vertical state and the extraction part 10 is located directly below the cream filling head. After the cleaning is completed, the retraction of the output ends of the first linear driver 26 and the second linear driver 27 can drive the extraction part 10 to deflect downward to a horizontal state for placement.
[0020] In this embodiment, the docking structure may include at least one fitting ring 21, a bracket 22, a first connecting frame 24 and a second connecting frame 25. At least one fitting ring 21 is formed on the side of the bracket 22 facing the outer cover 11. The fitting ring 21 fits the outer wall of the outer cover 11. The fitting ring 21 can be fixedly welded to the outer cover 11. Additionally, the fitting ring 21 can also be fixed to the outer cover 11 by using a hoop 23. The hoop 23 is installed on the fitting ring 21, and a circular inner cavity adapted to the outer cover 11 can be formed between the fitting ring 21 and the hoop 23, and the fitting ring 21 can be detachably fixed to the outer cover 11 by using the hoop 23.
[0021] Refer to Figure 3 , the support part 30 may include a base 31 and a bracket 34. The bracket 34 is formed at one end of the base 31 away from the position adjustment part 20. And the bracket 34 protrudes upward perpendicular to the base 31. The bracket 34 can support the outer cover 11 in a horizontal state. An avoidance groove 35 through which the bracket 22 can move is formed in the middle of the bracket 34 to prevent interference between the outer cover 11 and the bracket 34 when the outer cover 11 falls to a horizontal state or the outer cover 11 deflects upward. Two connection positions 32 each rotatably connected to an adjacent deflection seat 28 are formed at the top of the base 31. A fixing edge 33 protrudes outward from the bottom of the base 31, and locking members such as bolts can be inserted through the fixing edge 33 to fix the entire support part 30 and the placement surface.
[0022] In this embodiment, the approaching linear driver 12, the first linear driver 26 and the second linear driver 27 can all adopt hydraulic push rods, electric push rods or pneumatic push rods existing in the prior art that have output ends capable of moving along a straight line.
[0023] The system of the present invention may further include a control system for controlling the operations of the above-mentioned approaching linear driver 12, the first linear driver 26, and the second linear driver 27 to perform automatic operations of the movement of the extraction part. It should be understood that there is no particular limitation on this control system, and it can be implemented by control technologies in the prior art, which will not be elaborated here.
[0024] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereby. Therefore, all equivalent changes made according to the structure, shape, and principle of the present application shall be covered by the protection scope of the present application.
Claims
1. A residual material suction device for a cream production line, characterized in that, It includes an extraction part (10), a suction pump, a position adjustment part (20) and a support part (30). The suction pump is installed inside the support part (30), and the suction pump is connected to the extraction part (10). The extraction part (10) is used for extracting the remaining material inside the cream filling head. The bottom of the position adjustment part (20) is pivotally installed on the support part (30), and the position adjustment part (20) is connected to the extraction part (10). The position adjustment part (20) drives and adjusts the position state of the extraction part (10). The position adjustment part (20) includes a first linear driver (26), a second linear driver (27), two deflection seats (28) and a docking structure. The docking structure is installed on the outside of the extraction part (10) and fixed thereto. The output ends of the first linear driver (26) and the second linear driver (27) are respectively rotatably connected to the middle part and the bottom part of the docking structure. The bottom ends of the first linear driver (26) and the second linear driver (27) are both fixedly installed with deflection seats (28), and both of the two deflection seats (28) are rotatably connected to the support part (30).
2. The residue suction device for a cream production line according to claim 1, characterized in that The extraction part (10) includes a housing (11), a proximity linear driver (12), a collar (13), an extraction seat (14) and an extraction pipe (15). The proximity linear driver (12) is installed in the inner cavity of the housing (11), and the output end of the proximity linear driver (12) is connected to the outer edge of the collar (13). The middle part of the collar (13) is sleeved on the outer wall of the extraction seat (14) and fixedly connected thereto. One end of the extraction seat (14) is formed with an opening adapted to the cream filling head, and the other end of the extraction seat (14) is communicated with the suction pump by the extraction pipe (15).
3. The residual material suction device for a cream production line according to claim 2, characterized in that, The extraction pipe (15) is arranged in a hose structure, and the length of the extraction pipe (15) is greater than the length of the housing (11).
4. A leftover material suction device for a cream production line according to claim 2 or 3, characterized in that, The docking structure includes at least one fitting ring (21), a bracket (22), a first connecting frame (24) and a second connecting frame (25). At least one fitting ring (21) is formed on the side of the bracket (22) facing the housing (11), and the fitting ring (21) fits the outer wall of the housing (11). The first connecting frame (24) and the second connecting frame (25) are respectively formed on the side of the bracket (22) facing away from the housing (11), and the first connecting frame (24) and the second connecting frame (25) are respectively rotatably connected to the output ends of the first linear driver (26) and the second linear driver (27).
5. The residue suction device for a cream production line according to claim 4, characterized in that, The docking structure further includes clamps (23) with the same number as the fitting rings (21). A circular inner cavity adapted to the housing (11) is formed between the fitting ring (21) and the clamp (23), and the fitting ring (21) is detachably fixed to the housing (11) by the clamp (23).
6. The residual material suction device for a cream production line according to claim 4, characterized in that The support portion (30) includes a base (31). Two connection positions (32) are formed at the top of the base (31), each of which is rotatably connected to an adjacent deflection seat (28). A fixing edge (33) protrudes outward from the bottom of the base (31).
7. The residual material suction device for a cream production line according to claim 6, characterized in that, The support portion (30) further includes a bracket (34) formed at one end of the base (31) away from the position adjustment portion (20). The bracket (34) is perpendicular to the base (31) and protrudes upward. An avoidance groove (35) through which the bracket (22) can move is formed in the middle of the bracket (34).
8. The residual material suction device for a cream production line according to claim 2, characterized in that, The approaching linear actuator (12), the first linear actuator (26), and the second linear actuator (27) are all set as hydraulic push rods, electric push rods, or pneumatic push rods.