A fruit powder bagging assembly
Patent Information
- Application Number
- CN202522469429.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-21
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-11-21
AI Technical Summary
而现有的果粉装袋组件,自动化程度不高,还需要操作者手动将包装袋放置在吸盘两侧进行扩袋,在扩袋装料之后,还需要将其手动提升,最后进行热封
[0016]1、通过该果粉装袋组件,能够实现将果粉包装袋快速的进行吸取并使其脱出包装袋存储仓,最后实现翻转,翻转后能够对其进行扩袋动作,便于果粉物料的装纳;
Smart Images

Figure CN224797351U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of powder bagging, and in particular to a fruit powder bagging component. Background Technology
[0002] In the food processing industry, for example, when packaging fruit powder, automated equipment is typically used for powder assembly and sealing to improve production efficiency and ensure product hygiene. Automatic fruit powder filling equipment generally includes a powder bagging assembly, a powder feeding assembly, and a bag heat-sealing assembly. The powder is quantitatively discharged from the feeding assembly and then placed into the packaging bag within the powder bagging assembly. Finally, the bag is heat-sealed by the bag heat-sealing assembly. However, existing fruit powder bagging assemblies are not highly automated; operators still need to manually place the packaging bag on both sides of the suction cup to expand the bag, and after filling, manually lift it before finally heat-sealing. Utility Model Content
[0003] To address the shortcomings of existing technologies, this utility model provides a fruit powder bagging component. This fruit powder bagging component can automatically pick up and expand the packaging bag upwards. After the bag is expanded, it can be raised and lowered upwards. During the raising and lowering process, the packaging bag is less likely to fall, making it easier for the heat sealing machine to seal the packaging bag.
[0004] To achieve the above objectives, the present invention adopts the following technical solution: a fruit powder bagging assembly, comprising:
[0005] Install the base plate;
[0006] A suction bag assembly includes a mounting plate fixed to a mounting base plate, a rotating mechanism fixed to the mounting plate, a positioning seat mounted on the rotating mechanism, a support plate connected to the positioning seat, a lifting cylinder fixed to the support plate, a mounting plate connected to the top of the lifting cylinder, a first cantilever and a second cantilever fixed to the mounting plate, and a plurality of first suction cups respectively mounted on the first cantilever and the second cantilever.
[0007] A bag expansion assembly includes a lifting mechanism, a lifting plate connected to the lifting block of the lifting mechanism, and a plurality of second suction cups installed on the lifting plate, the positions of the second suction cups corresponding to the first suction cups;
[0008] A support assembly, the support assembly including a support vertical plate and a support inclined plate, the support inclined plate being inclined downward;
[0009] A packaging bag storage assembly includes a column, a storage compartment fixed to the side of the column, and a square gripping hole at the bottom of the storage compartment.
[0010] Furthermore, the rotating mechanism is a rotary cylinder, and the lifting mechanism is a linear slide.
[0011] Furthermore, both sides of the first and second cantilever are provided with first adjustment slots, and there are four first suction cups, with one first suction cup installed in each first adjustment slot. The first and second cantilever are fixed to the mounting plate by studs and nuts.
[0012] Furthermore, the lifting plate has two second adjustment slots, and the number of second suction cups is also four. The distance between the two second adjustment slots is the same as the distance between the two first adjustment slots, and two second suction cups are installed in each second adjustment slot.
[0013] Furthermore, the inclination angle of the supporting inclined plate is 10-15 degrees.
[0014] Furthermore, the support plate is provided with a weight reduction groove, and the support plate is provided with multiple mounting holes on both sides of the weight reduction groove. The lifting cylinder is fixed to the support plate through the mounting holes.
[0015] Compared with the prior art, the present invention has the following beneficial effects:
[0016] 1. This fruit powder bagging component can quickly suck up fruit powder packaging bags and remove them from the packaging bag storage compartment, and finally flip them over. After flipping, it can expand the bag to facilitate the filling of fruit powder materials.
[0017] 2. The support components can support the packaging bag, preventing the second suction cup from being unable to support the weight of the packaging bag after it is filled with powder, thus ensuring that the packaging bag can be lifted smoothly.
[0018] 3. The position of the first suction cup installed on the first and second cantilever arms is adjustable, and the position of the second suction cup connected to the lifting plate can also be adjusted. In this way, it can be used to adsorb and grab packaging bags of different models and specifications, making it more adaptable. Attached Figure Description
[0019] Figure 1 This is a structural diagram of the present invention (the packaging bag storage component is not shown).
[0020] Figure 2 This is a schematic diagram of the present invention when absorbing a packaging bag;
[0021] Figure 3 This is a structural diagram of the first and second suction cups of this utility model before bag expansion;
[0022] In the diagram: 1. Mounting base plate; 2. Mounting upright plate; 3. Rotary cylinder; 4. Positioning seat; 5. Support plate; 6. Lifting cylinder; 7. Mounting plate; 8. First cantilever; 9. Second cantilever; 10. First suction cup; 11. Second suction cup; 12. Supporting upright plate; 13. Supporting inclined plate; 14. First adjusting groove; 15. Second adjusting groove; 16. Weight reduction groove; 17. Mounting hole; 18. Column; 19. Storage bin; 20. Packaging bag; 21. Powder feeding assembly; 22. Linear slide; 23. Nut; 24. Square gripping hole; 25. Bag opening heat sealing assembly; Detailed Implementation
[0023] The technical solution of this utility model will be further described below with reference to the accompanying drawings and embodiments.
[0024] like Figures 1 to 3 The illustrated fruit powder bagging assembly includes:
[0025] 1. Install base plate 1;
[0026] A suction bag assembly includes a mounting plate 2 fixed on a mounting base plate 1, a rotating mechanism fixed on the mounting plate 2, a positioning seat 4 mounted on the rotating mechanism, a support plate 5 connected to the positioning seat 4, a lifting cylinder 6 fixed on the support plate 5, a mounting plate 7 connected to the top of the lifting cylinder 6, a first cantilever 8 and a second cantilever 9 fixed on the mounting plate 7, and a plurality of first suction cups 10 respectively mounted on the first cantilever 8 and the second cantilever 9.
[0027] A bag expansion assembly includes a lifting mechanism, a lifting plate connected to the lifting block of the lifting mechanism, and a plurality of second suction cups 11 installed on the lifting plate, the positions of the second suction cups 11 corresponding to the first suction cups 10;
[0028] A support assembly, the support assembly including a support vertical plate 12 and a support inclined plate 13, the support inclined plate 13 being inclined downward;
[0029] A packaging bag 20 storage component includes a column 18, a storage compartment 19 fixed to the side of the column 18, and a square gripping hole 24 opened at the bottom of the storage compartment 19.
[0030] In use, this invention requires first connecting the vacuum generator to the first suction cup 10 and the second suction cup 11. Then, the bag-collecting assembly is installed below the bag storage assembly. Activating the bag-collecting assembly causes the cylinder rod of the lifting cylinder 6 to move upwards, bringing the first suction cup 10 on the first cantilever 8 and the second cantilever 9 into contact with the bag 20 in the bag storage compartment 19. The vacuum generator then operates, expelling air from the suction cups. At this point, the bag 20 is firmly adhered to the first suction cup 10 on the first cantilever 8 and the second cantilever 9. Subsequently, the cylinder rod of the lifting cylinder 6 (using a double-rod cylinder) retracts, and the storage compartment... The bottom of the 19th bag has a square gripping hole. Under the suction of the first suction cup 10, the edge of the bottommost packaging bag 20 will deform and finally come out of the square gripping hole. Then, the rotating mechanism rotates 90 degrees, so that the first suction cup 10 and the second suction cup 11 on the lifting plate correspond to each other. The cylinder rod of the lifting cylinder 6 extends again, attaching the other side of the packaging bag 20 to the second suction cup 11 on the lifting plate. The vacuum generator connected to the second suction cup 11 also starts to operate, so that the second suction cup 11 on the other side of the packaging bag 20 tightly adsorbs the packaging bag 20. At this time, the support inclined plate 13 of the support assembly will also contact the bottom of the packaging bag 20. The lifting cylinder 6... The cylinder rod retracts again, and the pulling action of the first suction cup 10 and the second suction cup 11 opens the opening of the packaging bag 20. The powder feeding component 21 moves downward through the space between the two heat-sealing plates of the bag opening heat-sealing component (the heat-sealing plates are in an open state) and enters the packaging bag to unload the powder into the packaging bag 20. After the powder enters the bag, air is introduced into the first suction cup 10, causing the first suction cup 10 to detach from the packaging bag 20. The rotating mechanism resets the lifting cylinder 6. At this time, due to the adsorption of the second suction cup 11 and the support of the supporting inclined plate 13 (the supporting inclined plate supports most of the weight of the packaging bag 20), the packaging bag 20 can still be fixed in place. On the second suction cup 11, the lifting mechanism starts to drive the lifting plate to rise, causing the packaging bag 20 to rise as well. The top of the packaging bag 20 enters both sides of the heat sealing assembly, and is finally heat-sealed by the bag opening heat sealing assembly 25 (the powder feeding assembly and heat sealing assembly are existing technologies that can be purchased directly from the market and are not within the scope of protection of this solution, so they will not be described in detail). After the heat sealing is completed, air is introduced into the second suction cup 11. At this time, since the supporting inclined plate is tilted, the packaging bag 20 will automatically slide down and finally fall down onto the mounting base plate 1. Of course, a drop hole can also be opened on the mounting base plate 1 so that the packaging bag 20 falls directly to the next process (such as a conveyor belt).
[0031] Furthermore, the rotating mechanism adopts a rotary cylinder 3, and the lifting mechanism adopts a linear slide 22. Specifically, the rotary cylinder 3 has the characteristics of fast response speed and precise angle control, which can realize the rapid angle conversion of the lifting cylinder 6, so that the packaging bag 20 can be quickly flipped. The linear slide 22 has a simple structure, and the lifting block on it can realize the rapid lifting and lowering of the lifting plate.
[0032] Furthermore, both sides of the first cantilever 8 and the second cantilever 9 are provided with first adjustment slots 14. There are four first suction cups 10, with one suction cup 10 installed in each first adjustment slot 14. The first cantilever 8 and the second cantilever 9 are fixed to the mounting plate 7 by studs and nuts 23. Specifically, both sides of the first cantilever 8 and the second cantilever 9 of this invention are provided with first adjustment slots 14. A hollow screw is connected to the back of the first suction cup 10, and the tail of the hollow screw has a connector for connecting to the vacuum generator pipeline. Thus, the first suction cup 10 can be installed in the first adjustment slot 14, and its position can be adjusted by the nuts 23 to accommodate different specifications and models of packaging bags 20.
[0033] Furthermore, the lifting plate has two second adjustment slots 15, and the number of second suction cups 11 is also four. The distance between the two second adjustment slots 15 is the same as the distance between the two first adjustment slots 14. Each second adjustment slot 15 has two second suction cups 11 installed in it. Specifically, the lifting plate has second adjustment slots 15, and the back of the second suction cup 11 is also connected to a hollow screw. The tail of the hollow screw has a connector for connecting to the vacuum generator pipeline. Therefore, the position of the second suction cup 11 can also be adjusted by using the nut 23. The installation position of the second suction cup 11 corresponds to the installation position of the first suction cup 10, making it more stable when adsorbing the packaging bag 20.
[0034] Furthermore, the inclination angle of the supporting inclined plate 13 is 10-15 degrees. Specifically, setting the angle of the supporting inclined plate 13 to 10-15 degrees can provide stable support for the packaging bag 20 containing powder. After the first suction cup 10 detaches from the packaging bag 20, it is used to disperse the force on the second suction cup 11, prevent its deformation, and avoid the packaging bag 20 falling due to insufficient suction force. At the same time, when air is introduced into the second suction cup 11, the packaging bag 20 can slide smoothly down because the supporting inclined plate 13 is inclined. In addition, the back of the supporting upright plate 12 is provided with a screw, which is connected to the second adjustment slot of the lifting plate through the screw and nut. In this way, the position of the supporting upright plate can be adjusted to adapt to packaging bags of different sizes.
[0035] Furthermore, the support plate 5 is provided with a weight-reducing groove 16, and the support plate 5 has multiple mounting holes 17 on both sides of the weight-reducing groove 16. The lifting cylinder 6 is fixed to the support plate 5 through the mounting holes 17. The weight-reducing groove 16 on the support plate 5 can effectively reduce the weight of the support plate 5 and reduce the load on the rotating cylinder 3. At the same time, the design of multiple mounting holes 17 can realize the adjustment of the installation position of the lifting cylinder 6, improving the adaptability of the fruit powder bagging assembly.
[0036] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model and are not intended to limit it. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this utility model without departing from the spirit and scope of the technical solutions of this utility model, and all such modifications or substitutions should be covered within the scope of the claims of this utility model.
Claims
1. A fruit powder bagging assembly, characterized in that, include: Install the base plate; A suction bag assembly includes a mounting plate fixed to a mounting base plate, a rotating mechanism fixed to the mounting plate, a positioning seat mounted on the rotating mechanism, a support plate connected to the positioning seat, a lifting cylinder fixed to the support plate, a mounting plate connected to the top of the lifting cylinder, a first cantilever and a second cantilever fixed to the mounting plate, and a plurality of first suction cups respectively mounted on the first cantilever and the second cantilever. A bag expansion assembly includes a lifting mechanism, a lifting plate connected to the lifting block of the lifting mechanism, and a plurality of second suction cups installed on the lifting plate, the positions of the second suction cups corresponding to the first suction cups; A support assembly, the support assembly including a support vertical plate and a support inclined plate, and mounted on a lifting plate via the support vertical plate, the support inclined plate being inclined downward; A packaging bag storage assembly includes a column, a storage compartment fixed to the side of the column, and a square gripping hole at the bottom of the storage compartment.
2. The fruit powder bagging assembly according to claim 1, characterized in that: The rotating mechanism uses a rotary cylinder, and the lifting mechanism uses a linear slide.
3. The fruit powder bagging assembly according to claim 2, characterized in that: Both sides of the first and second cantilever are provided with first adjustment slots. There are four first suction cups, and one first suction cup is installed in each first adjustment slot. The first and second cantilever are fixed to the mounting plate by studs and nuts.
4. A fruit powder bagging assembly according to claim 3, characterized in that: The lifting plate has two second adjustment slots, and there are also four second suction cups. The distance between the two second adjustment slots is the same as the distance between the two first adjustment slots. Two second suction cups are installed in each second adjustment slot.
5. A fruit powder bagging assembly according to claim 4, characterized in that: The inclination angle of the supporting inclined plate is 10-15 degrees.
6. A fruit powder bagging assembly according to claim 5, characterized in that: The support plate has a weight reduction groove, and the support plate has multiple mounting holes on both sides of the weight reduction groove. The lifting cylinder is fixed to the support plate through the mounting holes.