Confectionery packaging apparatus
By designing screening, pushing, and pressing units for candy packaging equipment, the high labor costs caused by manual sorting and packaging were solved, achieving efficient and automated candy packaging and improving production efficiency and equipment practicality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANGDONG DOBI BIOTECHNOLOGY CO LTD
- Filing Date
- 2025-06-30
- Publication Date
- 2026-06-19
Smart Images

Figure CN224376025U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of food processing technology, specifically to a candy packaging device. Background Technology
[0002] Candy is a type of confectionery, referring to a snack whose main ingredient is sugar. If fruits or nuts are coated with sugar, they are called sweets. During the production process, candy needs to be packaged in bags for sale.
[0003] Currently, most candy production processes rely on manual sorting and packaging, resulting in high labor costs, low efficiency, and hindering large-scale development. Utility Model Content
[0004] To address the aforementioned problems, this utility model provides a candy packaging equipment that solves the problem that in the existing candy production process, most of the picking and packaging is done manually, resulting in high labor costs, low efficiency, and hindering large-scale development.
[0005] The technical solution adopted by this utility model is as follows: a candy packaging device, including a frame, a conveying unit, a screening unit, a pushing unit, a covering unit, a boxing unit, and a return unit; the conveying unit is mounted on the frame, the screening unit is mounted on the frame near the conveying unit, the pushing unit is mounted on one side of the frame near the screening unit, the covering unit is mounted on the return unit relative to the pushing unit, and the boxing unit is mounted on the return unit, the return unit being used for return boxing by the boxing unit; the screening unit is equipped with a shaking element, the shaking element being used for shaking and screening of candies, and conveying them towards the pushing unit through the conveying unit; the pushing unit is equipped with a pushing plate and a packaging bag, the packaging bag being used for packaging the candies after screening, and the packaging bag being covered by the covering unit through the pushing plate; the boxing unit is located below the covering unit, the boxing unit being used for uniformly packaging the covered and packaged candies, and being returned and conveyed through the return unit.
[0006] A further improvement to the above scheme is that the frame includes a conveyor frame and a return frame, which are arranged opposite to each other; the conveying unit is arranged on the conveyor frame, and the return unit is arranged on the return frame.
[0007] A further improvement to the above scheme is that the conveying unit includes a conveying guide roller, a conveyor belt, a conveying motor, and conveying baffles. The conveying guide roller is movably mounted on the conveying frame, the conveyor belt covers the conveying guide roller, and the conveying baffles are arranged on both sides of the conveying frame near the conveyor belt to form a conveying channel.
[0008] A further improvement to the above scheme is that the conveying motor is located inside the frame near the conveying guide roller, and one end of the conveying motor is connected to drive the conveying guide roller to guide and convey the conveyor belt.
[0009] A further improvement to the above solution is that the shaking element includes a shaking frame, a shaking rod, a shaking baffle, a shaking disk, and a shaking drive element. Multiple sets of shaking frames are arranged sequentially on both sides of the machine frame. The shaking rod is mounted on the shaking frame and supports the shaking disk. The shaking baffle passes through the shaking rod and limits the shaking of the shaking disk. One end of the shaking drive element drives the shaking rod to cause the shaking disk to shake.
[0010] A further improvement to the above solution is that the shaking disk is provided with a shaking grid, and there are multiple shaking grids, with the mesh size of the multiple shaking grids being the same.
[0011] A further improvement to the above solution is that the pushing unit further includes a pushing driving element and a pushing driving rod. One end of the pushing driving rod is disposed on the pushing disk, and the other end is connected to the pushing driving element. One end of the pushing driving element is connected to drive the pushing driving rod to push the pushing disk back and forth toward the covering unit.
[0012] A further improvement to the above scheme is that the covering unit includes a covering transmission element, a covering transmission plate, and a covering device; one end of the covering transmission element is connected to the covering transmission plate, and the covering device is disposed on the covering transmission plate; multiple covering devices are disposed, and the multiple covering devices are arranged in an array on the covering transmission plate; one end of the covering transmission plate is connected to drive the covering transmission plate to drive the covering device to cover and package the packaging bag in the push tray.
[0013] A further improvement to the above solution is that the covering and pressing transmission element includes a linear covering and pressing transmission and a lifting covering and pressing transmission. The linear covering and pressing transmission drives the covering and pressing unit to adjust its position, and the lifting covering and pressing transmission drives the covering and pressing unit to lift and press the packaging bag.
[0014] A further improvement to the above scheme is that the reflux unit includes a reflux guide roller, a reflux motor, and a reflux conveyor belt; both ends of the reflux guide roller are mounted on the reflux frame, the reflux conveyor belt is sleeved on the reflux guide roller, and the reflux motor is located inside the reflux frame near the reflux guide roller; one end of the reflux motor is connected to drive the reflux guide roller to drive the reflux conveyor belt for reflux conveying.
[0015] The beneficial effects of this utility model are:
[0016] Compared to existing candy packaging, this invention effectively separates sticky candies through a shaking element in the screening unit, ensuring that individual candies are accurately conveyed to the pushing unit via the conveying unit. The pushing unit adopts a collaborative design between the pushing tray and the packaging bag, accurately pushing the packaging bag to the pressing unit while completing quantitative dispensing. The pressing unit achieves standardized sealing of the packaging bag through precise pressure control, and the packing unit automatically completes the bundled packaging of multiple bags of candy. The return unit allows empty boxes to be recycled, improving processing efficiency. The structure is compact, streamlined, and highly practical. Attached Figure Description
[0017] Figure 1 This is a perspective view of the candy packaging equipment of this utility model;
[0018] Figure 2 This is a perspective view of the candy packaging equipment of this utility model from another angle;
[0019] Figure 3 This is a top view of the candy packaging equipment of this utility model.
[0020] Explanation of reference numerals in the attached drawings: Frame 10, Conveyor 11, Return 12;
[0021] Conveying unit 20, conveying guide roller 21, conveying belt 22, conveying motor 23, conveying baffle 24;
[0022] Screening unit 30, shaking element 31, shaking frame 32, shaking rod 33, shaking baffle 34, shaking disk 35, shaking drive element 36, shaking grid 37;
[0023] Push unit 40, push disk 41, packaging bag 42, push drive element 43, push drive rod 44;
[0024] The pressing unit 50, the pressing transmission element 51, the linear pressing transmission 511, the lifting pressing transmission 512, the pressing transmission plate 52, and the pressing device 53;
[0025] Packing unit 60;
[0026] 70. Reflux unit 71. Reflux guide roller 71. Reflux motor 72. Reflux conveyor belt 73. Detailed Implementation
[0027] To facilitate understanding of this utility model, a more complete description will be given below with reference to the accompanying drawings. Preferred embodiments of this utility model are shown in the drawings. However, this utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and complete understanding of the disclosure of this utility model.
[0028] It should be noted that when a component is said to be "fixed to" another component, it can be directly attached to the other component or there may be an intervening component. When a component is said to be "connected to" another component, it can be directly connected to the other component or there may be an intervening component.
[0029] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention.
[0030] like Figure 1-3 As shown in the embodiment of this utility model, a candy packaging device includes a frame 10, a conveying unit 20, a screening unit 30, a pushing unit 40, a covering unit 50, a boxing unit 60, and a return unit 70. The conveying unit 20 is disposed on the frame 10, the screening unit 30 is mounted on the frame 10 near the conveying unit 20, the pushing unit 40 is disposed on one side of the frame 10 near the screening unit 30, the covering unit 50 is disposed on the return unit 70 relative to the pushing unit 40, and the boxing unit 60 is disposed on the return unit 70. The return unit 70 is used for boxing. Unit 60 performs return packing; the screening unit 30 is equipped with a shaking element 31, which is used to shake and screen the candies, and then conveys them towards the pushing unit 40 through the conveying unit 20; the pushing unit 40 is equipped with a pushing plate 41 and a packaging bag 42, which is used to package the candies after screening, and the pushing plate 41 presses the packaging bag 42 towards the pressing unit 50; a boxing unit 60 is provided below the pressing unit 50, which is used to uniformly pack the pressed and packaged candies, and then return them through the return unit 70. In this embodiment, the shaking element 31 equipped in the screening unit 30 can effectively separate sticky candies, ensuring that a single candy is accurately conveyed to the pushing unit 40 through the conveying unit 20. The pushing unit 40 adopts a collaborative design of pushing disk 41 and packaging bag 42. While completing quantitative dispensing, it accurately pushes the packaging bag 42 to the covering unit 50. The covering unit 50 achieves standardized sealing of the packaging bag 42 through precise pressure control, and automatically completes the bundle packaging of multiple bags of candies through the boxing unit 60. The empty box can be recycled through the return unit 70, improving processing efficiency. The structure is compact and streamlined, and it is highly practical.
[0031] like Figure 1 As shown Figure 2As shown, the frame 10 includes a conveyor frame 11 and a return frame 12, which are arranged opposite to each other. The conveying unit 20 is disposed on the conveyor frame 11, and the return unit 70 is disposed on the return frame 12. In this embodiment, by arranging the conveyor frame 11 and the return frame 12 opposite to each other, the material conveying and return are effectively separated. The conveying unit 20 and the return unit 70 are respectively installed on their respective frames 10, making the equipment operation more orderly.
[0032] The conveying unit 20 includes a conveying guide roller 21, a conveyor belt 22, a conveying motor 23, and conveying baffles 24. The conveying guide roller 21 is movably mounted on the conveying frame 11, and the conveyor belt 22 covers the conveying guide roller 21. The conveying baffles 24 are located on both sides of the conveying frame 11 near the conveyor belt 22 to form a conveying channel. In this embodiment, the conveying guide roller 21, movably mounted on the conveying frame 11, cooperates with the conveyor belt 22 to form a stable transmission, ensuring a smooth and reliable conveying process. The conveying baffles 24, located on both sides of the conveyor belt 22, form a conveying channel, effectively preventing material from shifting or falling during conveying. All components work together to form a complete conveying system with strong practicality.
[0033] A conveyor motor 23 is positioned inside the frame 10 near the conveyor guide roller 21. One end of the conveyor motor 23 is connected to and drives the conveyor guide roller 21 to guide and convey the conveyor belt 22. In this embodiment, by positioning the conveyor motor 23 inside the frame 10 and near the conveyor guide roller 21, a compact and efficient transmission structure is achieved. The conveyor motor 23 directly drives the conveyor guide roller 21 to rotate, thereby driving the conveyor belt 22 to complete a stable guiding and conveying function, shortening the transmission path, reducing energy loss, and improving transmission efficiency.
[0034] The shaking element 31 includes a shaking frame 32, a shaking rod 33, a shaking baffle 34, a shaking disk 35, and a shaking drive element 36. Multiple sets of shaking frames 32 are arranged sequentially on both sides of the frame 10. The shaking rod 33 is mounted on the shaking frame 32 and supports the shaking disk 35. The shaking baffle 34 passes through the shaking rod 33 and limits the shaking of the shaking disk 35. One end of the shaking drive element 36 drives the shaking rod 33 to shake the shaking disk 35. In this embodiment, by arranging multiple sets of shaking frames 32 sequentially, combined with the supporting role of the shaking rod 33 and the limiting function of the shaking baffle 34, a stable shaking effect of the shaking disk 35 can be effectively achieved. This achieves the limiting function of the shaking disk 35 and ensures precise control during the shaking process, meeting the process requirements for material shaking in candy packaging and improving packaging quality and production efficiency.
[0035] like Figure 3 As shown, the vibrating disk 35 is provided with a vibrating grid 37, and multiple vibrating grids 37 are provided, with the mesh size of the multiple vibrating grids 37 being the same. In this embodiment, the uniformly distributed grid structure can ensure that the candy obtains a stable vibration frequency during the conveying process, avoid material accumulation or uneven distribution, and enable candies of different specifications to obtain the same screening accuracy, thereby improving the uniformity of packaging specifications and increasing packaging efficiency.
[0036] The pushing unit 40 also includes a pushing drive element 43 and a pushing drive rod 44. One end of the pushing drive rod 44 is disposed on the pushing disk 41, and the other end is connected to the pushing drive element 43. One end of the pushing drive element 43 drives the pushing drive rod 44 to push the pushing disk 41 back and forth toward the covering unit 50. In this embodiment, the efficient reciprocating motion of the pushing disk 41 is achieved through the linkage between the pushing drive element 43 and the pushing drive rod 44. One end of the pushing drive rod 44 is fixed to the pushing disk 41, and the other end is connected to the drive element, forming a stable power transmission path. The pushing drive rod 44 directly transmits power to the pushing disk 41, enabling it to accurately push and return toward the covering unit 50, simplifying the transmission links and improving the operating efficiency of the equipment.
[0037] The covering unit 50 includes a covering transmission element 51, a covering transmission plate 52, and a covering device 53. One end of the covering transmission element 51 is connected to the covering transmission plate 52, and the covering device 53 is disposed on the covering transmission plate 52. Multiple covering devices 53 are arranged in an array on the covering transmission plate 52. One end of the covering transmission plate 52 is connected to a drive mechanism that drives the covering devices 53 to cover the packaging bag 42 within the pusher tray 41. In this embodiment, through the coordinated operation of the covering transmission element 51, the transmission plate, and the covering device 53, efficient covering of the packaging bag 42 is achieved. The array of multiple covering devices 53 on the transmission plate ensures uniform distribution of covering pressure, effectively avoiding damage caused by excessive localized force on the packaging bag 42. The system boasts a high degree of automation and strong process adaptability.
[0038] The pressing drive element 51 includes a linear pressing drive 511 and a lifting pressing drive 512. The linear pressing drive 511 drives the pressing unit 50 to adjust its position, and the lifting pressing drive 512 drives the pressing unit 50 to lift and press the packaging bag 42. In this embodiment, the pressing drive element 51 achieves efficient pressing of the packaging bag 42, while the linear pressing drive 511 mechanism can precisely adjust the horizontal position of the pressing unit 50 to ensure accurate alignment between the pressing device and the packaging bag 42. The lifting pressing drive 512 mechanism controls the pressing unit 50 to move vertically, realizing the pressing operation of the packaging bag 42, improving the automation of the packaging process, making the candy packaging more compact and neat, and improving packaging efficiency.
[0039] The reflux unit 70 includes a reflux guide roller 71, a reflux motor 72, and a reflux conveyor belt 73. The two ends of the reflux guide roller 71 are mounted on the reflux frame 12, and the reflux conveyor belt 73 is fitted onto the reflux guide roller 71. The reflux motor 72 is located close to the reflux guide roller 71 within the reflux frame 12. One end of the reflux motor 72 drives the reflux guide roller 71 to move the reflux conveyor belt 73 for reflux conveying. In this embodiment, the synergistic cooperation of the reflux guide roller 71, the reflux motor 72, and the reflux conveyor belt 73 achieves a highly efficient material reflux conveying function. The two ends of the reflux guide roller 71 are firmly mounted on the reflux frame 12, providing reliable support and guidance for the conveyor belt, ensuring efficient power transmission while reducing energy loss.
[0040] A candy packaging device includes a frame 10, a conveying unit 20, a screening unit 30, a pushing unit 40, a covering unit 50, a boxing unit 60, and a return unit 70. The conveying unit 20 is mounted on the frame 10. The screening unit 30 is mounted on the frame 10 near the conveying unit 20. The pushing unit 40 is located on one side of the frame 10 near the screening unit 30. The covering unit 50 is mounted on the return unit 70 relative to the pushing unit 40. The boxing unit 60 is mounted on the return unit 70, and the return unit 70 is used for returning the boxing unit 60 to its original position. The candy is sorted by a series of steps: a screening unit 30 is equipped with a shaking element 31 for screening the candy by shaking, and the candy is conveyed towards the pushing unit 40 via the conveying unit 20; the pushing unit 40 is equipped with a pushing plate 41 and a packaging bag 42 for packaging the candy after screening, and the packaging bag 42 is pressed towards the pressing unit 50 via the pushing plate 41; a boxing unit 60 is located below the pressing unit 50 for uniformly packaging the pressed candy, and the candy is returned and conveyed via the return unit 70. In this embodiment, the shaking element 31 equipped in the screening unit 30 can effectively separate sticky candies, ensuring that a single candy is accurately conveyed to the pushing unit 40 through the conveying unit 20. The pushing unit 40 adopts a collaborative design of pushing disk 41 and packaging bag 42. While completing quantitative dispensing, it accurately pushes the packaging bag 42 to the covering unit 50. The covering unit 50 achieves standardized sealing of the packaging bag 42 through precise pressure control, and automatically completes the bundle packaging of multiple bags of candies through the boxing unit 60. The empty box can be recycled through the return unit 70, improving processing efficiency. The structure is compact and streamlined, and it is highly practical.
[0041] The above embodiments only illustrate several implementation methods of this utility model, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of this utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.
Claims
1. A candy packaging device, characterized in that: It includes a frame, a conveying unit, a screening unit, a pushing unit, a covering unit, a boxing unit, and a return unit; the conveying unit is mounted on the frame, the screening unit is mounted on the frame close to the conveying unit, the pushing unit is mounted on one side of the frame close to the screening unit, the covering unit is mounted on the return unit relative to the pushing unit, and the boxing unit is mounted on the return unit, the return unit is used by the boxing unit for return boxing; The screening unit is equipped with a shaking element for shaking and screening the candies, and then conveys them towards the pushing unit via the conveying unit. The pushing unit is equipped with a pushing plate and a packaging bag. The packaging bag is used to package the candies after screening, and the pushing plate presses the packaging bag towards the pressing unit. Below the pressing unit is a boxing unit for uniformly packing the pressed and packaged candies, and then conveying them back via the return unit.
2. The candy packaging equipment according to claim 1, characterized in that: The frame includes a conveyor frame and a return frame, which are arranged opposite to each other; the conveying unit is arranged on the conveyor frame, and the return unit is arranged on the return frame.
3. The confectionery packaging apparatus of claim 2, wherein: The conveying unit includes a conveying guide roller, a conveyor belt, a conveying motor, and conveying baffles. The conveying guide roller is movably mounted on the conveying frame, the conveyor belt covers the conveying guide roller, and the conveying baffles are arranged on both sides of the conveying frame near the conveyor belt to form a conveying channel.
4. The confectionary packaging apparatus of claim 3, wherein: The conveyor motor is located inside the frame near the conveyor guide roller, and one end of the conveyor motor is connected to drive the conveyor guide roller to guide and convey the conveyor belt.
5. The confectionary packaging apparatus of claim 1, wherein: The vibration element includes a vibration frame, a vibration rod, a vibration baffle, a vibration disk, and a vibration drive element. Multiple sets of vibration frames are provided, and the multiple sets of vibration frames are sequentially arranged on both sides of the frame. The vibration rod is arranged on the vibration frame and is used to support the vibration disk. The vibration baffle is mounted on the vibration rod to limit the vibration of the vibration disk; one end of the vibration driving element drives the vibration rod to cause the vibration disk to vibrate.
6. The confectionary packaging apparatus of claim 5, wherein: The shaking disk is provided with a shaking grid, and there are multiple shaking grids, all of which have the same mesh size.
7. The confectionary packaging apparatus of claim 1, wherein: The pushing unit further includes a pushing driving element and a pushing driving rod. One end of the pushing driving rod is disposed on the pushing disk, and the other end is connected to the pushing driving element. One end of the pushing driving element is connected to drive the pushing driving rod to push the pushing disk back and forth toward the covering unit.
8. The confectionary packaging apparatus of claim 7, wherein: The covering unit includes a covering transmission element, a covering transmission plate, and a covering device; one end of the covering transmission element is connected to the covering transmission plate, and the covering device is disposed on the covering transmission plate; multiple covering devices are disposed, and the multiple covering devices are arranged in an array on the covering transmission plate; one end of the covering transmission plate is connected to drive the covering transmission plate to drive the covering device to cover and package the packaging bag in the push tray.
9. The confectionary packaging apparatus of claim 8, wherein: The covering and pressing transmission element includes a linear covering and pressing transmission and a lifting covering and pressing transmission. The linear covering and pressing transmission drives the covering and pressing unit to adjust its position, and the lifting covering and pressing transmission drives the covering and pressing unit to move up and down towards the packaging bag for covering and pressing.
10. The candy packaging equipment according to claim 2, characterized in that: The reflux unit includes a reflux guide roller, a reflux motor, and a reflux conveyor belt; the two ends of the reflux guide roller are mounted on the reflux frame, the reflux conveyor belt is sleeved on the reflux guide roller, and the reflux motor is located inside the reflux frame near the reflux guide roller; One end of the reflux motor is connected to drive the reflux guide roller, which in turn drives the reflux conveyor belt for reflux conveying.