Vibrating type soft sweet canning device

By using a vibratory gummy candy filling device, the gummy candies are moved along the channel by vibration and gravity, which solves the problem of gummy candy adhesion, improves filling efficiency and reduces power consumption, and realizes a highly efficient gummy candy filling process.

CN223605819UActive Publication Date: 2025-11-28BOSCHLE AUTOMATION TECH (KUNSHAN) CO LTD
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Patent Information

Application Number
CN202423230491.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-26
Publication Date
2025-11-28
Estimated Expiration
2034-12-26

AI Technical Summary

Technical Problem

During the filling process, gummies tend to stick to the inner wall of the filling equipment, resulting in low filling efficiency and requiring manual cleaning, which affects production efficiency.

Method used

A vibratory gummy candy filling device is adopted. The drive component rotates the vibrating channel and starts the vibrating motor. The vibration and gravity are used to move the gummy candy along the channel into the filling bag, reducing adhesion. The filling process is optimized by combining linkage components and installation components.

Benefits of technology

It improves filling efficiency, reduces the possibility of gummies adhering to the surface of the vibrating channel, eliminates manual cleaning steps, reduces energy consumption, and improves production stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a vibration type soft sweet canning device which comprises a machine frame, a rotating seat is connected to the machine frame, a vibration channel is rotationally connected to the rotating seat, a vibration motor is arranged on the vibration channel, a driving piece for driving the vibration channel to rotate is arranged on the machine frame, and the driving piece is arranged on the machine frame. A conveying cylinder is installed at the position, corresponding to a discharging port of the vibration channel, of the machine frame, a filling bag is detachably connected to the machine frame, and the filling bag is aligned to a discharging port of the conveying cylinder. The soft sweet filling device has the effect of improving the filling efficiency of the soft sweet filling device.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of soft candy packaging, in particular to a vibrating soft candy packaging device. BACKGROUND

[0002] Gelatin candy is made of sugar, starch syrup as the main raw material, agar, modified starch, gelatin, pectin as a coagulant, through the process of boiling, molding, etc. It is a candy with high moisture content and soft texture.

[0003] During the production and manufacturing of soft candy, the surface of soft candy will have certain stickiness due to the presence of pectin, gelatin and other substances in soft candy. In order to avoid the adhesion of soft candy to the equipment during production and filling, some anti-sticking agents and other substances are often added during the production process of soft candy to reduce the adhesion of soft candy. Because the audience of soft candy products is mostly children, various molds with different shapes are used to shape the soft candy during the production process.

[0004] During filling, the soft candy is poured through an inclined filling channel, so that the soft candy moves along the direction of the filling channel and finally flows into the filling bag.

[0005] In the shape of soft candy, there are some flat or flat bottom conditions, such as round cake shape, round table shape, etc. The flat surface of these shaped soft candies contacts the flat surface of the filling channel, which causes the adhesion of the inner wall of the filling channel. As a result, the amount of soft candy in the filling bag does not reach the specified amount, and the staff has to clean the inner wall of the filling channel again, which reduces the filling efficiency of the soft candy filling device. CONTENT OF THE INVENTION

[0006] In order to improve the filling efficiency of the soft candy filling device, the present application provides a vibrating soft candy packaging device.

[0007] The vibrating soft candy packaging device provided by the present application adopts the following technical scheme:

[0008] A vibrating soft candy packaging device, comprising a rack, a rotating seat connected to the rack, a vibrating channel rotatably connected to the rotating seat, a vibrating motor provided on the vibrating channel, a driving member provided on the rack to drive the vibrating channel to rotate, a conveying cylinder installed on the rack corresponding to the position of the discharge port of the vibrating channel, and a filling bag detachably connected to the rack, wherein the filling bag is aligned with the discharge port of the conveying cylinder.

[0009] By adopting the technical scheme, when the soft sweets are filled, the driving member rotates the vibration channel until the discharge opening of the vibration channel moves to the inlet end of the conveying cylinder, at this time, the vibration channel is in an inclined state, then the vibration motor is started to make the vibration channel vibrate, the soft sweets are affected by the vibration and gravity and move along the vibration channel, and fall into the filling bag through the conveying cylinder, so that the effect of filling the soft sweets is achieved. The vibration motor transmits vibration energy to the vibration channel, reduces the contact time of the soft sweets and the surface of the vibration channel, compared with the prior art, reduces the possibility of the soft sweets adhering to the surface of the vibration channel, makes the number of soft sweets in the packaging bag meet the requirements as much as possible, omits the step of cleaning the vibration channel by the staff, and improves the filling efficiency of the soft sweet filling device.

[0010] Optionally, the rotating seat is rotatably connected with a mounting plate, the mounting plate is connected with a plurality of first mounting columns, the vibration channel is connected with a plurality of second mounting columns, and a plurality of supporting springs are mounted between the first mounting columns and the second mounting columns.

[0011] By adopting the technical scheme, the vibration amplitude of the vibration channel is increased through the cooperation of the first mounting column, the second mounting column and the supporting spring, and the possibility of the soft sweets adhering to the vibration channel is further reduced.

[0012] Optionally, the vibration channel is provided with a linkage assembly, the linkage assembly comprises a sliding cylinder, a driving screw, a limiting block and a linkage column, the sliding cylinder is connected to the mounting plate, the rotating seat is provided with a rotating arc slot, the center of the rotating arc slot coincides with the rotating axis of the mounting plate, the sliding cylinder moves in the rotating arc slot, the limiting block is connected in the sliding cylinder, the linkage column is slidingly connected in the sliding cylinder, the linkage column is provided with a limiting slot, the limiting block is slidingly connected in the limiting slot, the driving screw is rotatably connected in the sliding cylinder and is in threaded connection with the linkage column, the driving member is a hydraulic cylinder, the driving member is rotatably connected to the rack, the output end of the driving member is connected with a connecting cylinder, the linkage column passes through the connecting cylinder, and when the linkage is performed, the linkage column in one of the sliding cylinders enters another one of the sliding cylinders.

[0013] By adopting the technical scheme, when the other vibration channels are linked, the driving screw is rotated, the linkage column moves under the cooperation of the limiting block and the limiting slot and enters another one of the sliding cylinders, and the driving member pushes the linkage column to link the movement of the other sliding cylinders, so that the effect of rotating the other vibration channels is achieved. By arranging the linkage assembly, the use of the vibration channels can be increased or reduced at any time according to the production requirements, compared with all the vibration channels being enabled, unnecessary power consumption is reduced.

[0014] Optionally, the other sliding cylinder is connected with a limiting plate.

[0015] By adopting the technical scheme, the limiting plate is used to limit the distance of the linkage column entering another sliding cylinder, ensures that the two sliding cylinders are equally affected by the force of the linkage column, and ensures the consistency of the several vibration channels during linkage.

[0016] Optionally, the conveying cylinder is vertically arranged, and the conveying cylinder is arranged in a circular truncated cone shape, and the smaller end of the conveying cylinder faces downward.

[0017] By adopting the technical scheme, the circular truncated cone-shaped conveying cylinder can concentrate the conveying of soft candies, ensure that the soft candies can smoothly enter the filling bag, and improve the filling efficiency of the soft candies.

[0018] Optionally, the rotating seat is connected with a stop block at a position corresponding to the movement path of the sliding cylinder, and when a gap is left between the vibration channel and the conveying cylinder, the sliding cylinder abuts against the stop block.

[0019] By adopting the technical scheme, the stop block is used to limit the rotation angle of the vibration channel, and the possibility of the vibration channel colliding with the conveying cylinder during rotation is reduced.

[0020] Optionally, the rack is provided with a mounting assembly, the mounting assembly comprises a fixing ring, a pressing ring, a rotating block, a fixing block and a limiting flange, the rack is provided with a mounting hole at a position corresponding to the conveying cylinder, the fixing ring is connected to the rack and is aligned with the mounting hole, the fixing ring is provided with a mounting step, the fixing block is connected to the fixing ring, the limiting flange is connected to the fixing block, the pressing ring is arranged on the mounting step, the rotating block is rotatably connected to the pressing ring, the rotating block is provided with an avoiding groove, and the avoiding groove is provided with a limiting arc groove, during installation, the filling bag is located between the pressing ring and the fixing ring, the fixing block is located in the avoiding groove, and the limiting flange is partially embedded in the limiting arc groove.

[0021] By adopting the technical scheme, during installation of the filling bag, the filling bag is passed through the fixing ring, the pressing ring is placed on the mounting step, the filling bag is pressed between the pressing ring and the fixing ring, then the rotating block is turned over, the fixing block is arranged in the avoiding groove, and the limiting flange is matched with the limiting arc groove, so as to limit the degree of freedom of the pressing ring, and the effect of installing the filling bag is achieved.

[0022] Optionally, the rotating block is connected with an extension lever, and one end of the extension lever is arranged in an arc transition manner.

[0023] By adopting the technical scheme, the extension lever is used to drive the rotating block, so that the limiting flange can smoothly separate from the limiting arc groove, and the operability of the rotating block is improved.

[0024] In summary, the present application has at least one of the following beneficial technical effects:

[0025] 1. When filling soft sweets, the vibration channel is rotated by the driving member until the discharge port of the vibration channel moves to the inlet end of the conveying cylinder, at which time the vibration channel is in an inclined state, and then the vibration motor is started to vibrate the vibration channel, and the soft sweets are affected by vibration and gravity and move along the vibration channel and fall into the filling bag through the conveying cylinder to achieve the effect of filling soft sweets. The vibration motor transmits vibration energy to the vibration channel, reducing the contact time of the soft sweets with the surface of the vibration channel, reducing the possibility of the soft sweets adhering to the surface of the vibration channel compared to the prior art, and as much as possible to make the number of soft sweets in the packaging bag meet the requirements, omitting the step of cleaning the vibration channel by the staff, and improving the filling efficiency of the soft sweet filling device;

[0026] 2. When linking other vibration channels, rotate the driving screw, and the linkage column moves in cooperation with the limiting block and the limiting groove, and enters another sliding cylinder, and the driving member pushes the linkage column to move the linkage other sliding cylinder, achieving the effect of rotating the linkage other vibration channel. By setting the linkage assembly, the use of the vibration channel can be increased or decreased at any time according to the production requirements, and compared with all the vibration channels, unnecessary power consumption is reduced;

[0027] 3. When installing the filling bag, the filling bag is inserted through the fixing ring, the compression ring is placed on the installation step, the filling bag is compressed between the compression ring and the fixing ring, then the rotating block is turned over, the fixed block enters the avoidance groove, and the limiting flange is attached to the limiting arc groove, thereby limiting the degree of freedom of the compression ring, and the effect of installing the filling bag is achieved. BRIEF DESCRIPTION OF DRAWINGS

[0028] Figure 1 is the overall structure schematic diagram of the vibrating soft sweet filling device in the embodiment of the application.

[0029] Figure 2 is the structure schematic diagram of the mounting plate and the vibration motor in the embodiment of the application.

[0030] Figure 3 is the exploded view of the driving member structure in the embodiment of the application.

[0031] Figure 4 is the sectional view of the linkage assembly structure in the embodiment of the application.

[0032] Figure 5 is the exploded view of the mounting assembly structure in the embodiment of the application.

[0033] Figure 6 is Figure 5 is the enlarged view of A in FIG.

[0034] Figure 7 is the sectional view of the mounting assembly structure in the embodiment of the application.

[0035] Explanation of reference signs: 1, rack; 11, rotating seat; 111, rotating arc groove; 112, stop block; 2, mounting plate; 21, first mounting column; 3, vibration channel; 31, second mounting column; 32, supporting spring; 33, vibration motor; 4, linkage assembly; 41, sliding cylinder; 411, limiting plate; 42, drive screw; 43, limiting block; 44, linkage column; 441, limiting groove; 5, driving piece; 51, connecting cylinder; 6, conveying cylinder; 7, filling bag; 8, mounting assembly; 81, fixing ring; 811, mounting step; 82, pressing ring; 83, rotating block; 831, avoiding groove; 832, extended lever; 84, fixing block; 85, limiting flange. DETAILED DESCRIPTION

[0036] The following will be described in detail with reference to the accompanying drawings. Figures 1-7 The application is further described in detail.

[0037] The embodiment of the application discloses a vibrating gummy candy canning device. Figure 1 and Figure 2 The vibrating gummy candy canning device comprises a rack 1, a plurality of rotating seats 11 are fixedly connected on the rack 1, and three rotating seats 11 are taken as an example in the embodiment. A mounting plate 2 is rotationally connected on the rotating seat 11, a plurality of first mounting columns 21 are fixedly connected on the mounting plate 2, a vibration channel 3 is arranged above the mounting plate 2, a plurality of second mounting columns 31 are fixedly connected on the bottom wall of the vibration channel 3, and supporting springs 32 are arranged between the first mounting columns 21 and the second mounting columns 31. A vibration motor 33 is mounted on the bottom wall of the vibration channel 3.

[0038] Referring to Figure 1 , Figure 3 and Figure 4 , the vibration channel 3 is provided with a linkage assembly 4, and the linkage assembly 4 comprises a sliding cylinder 41, a drive screw 42, a limiting block 43 and a linkage column 44. The sliding cylinder 41 is fixedly connected on the mounting plate 2, a rotating arc groove 111 is formed in the rotating seat 11, the center of the rotating arc groove 111 coincides with the rotating axis of the mounting plate 2, and the sliding cylinder 41 is slidingly matched in the rotating arc groove 111. The drive screw 42 is rotationally connected in the sliding cylinder 41 on the vibration channel 3 at two positions, and the limiting block 43 is fixedly connected in the sliding cylinder 41.

[0039] Referring to Figure 4 , the linkage column 44 is provided with a limiting groove 441, the linkage column 44 is arranged in the sliding cylinder 41 and slidingly matched with the limiting block 43. The drive screw 42 penetrates through the linkage column 44 and is threadedly matched with the linkage column 44. Two limiting plates 411 are fixedly connected on the inner wall of the sliding cylinder 41 at the middle position of the vibration channel 3, and the two limiting plates 411 are oppositely arranged. The limiting plates 411 are used for limiting the distance of the linkage column 44 entering the sliding cylinder 41 at the middle position.

[0040] Referring to Figure 1 and Figure 3 , the rack 1 is provided with a driving member 5 corresponding to the position between the adjacent two vibration channels 3, the driving member 5 is a hydraulic cylinder, and the driving member 5 is hinged on the rack 1. The output shaft of the driving member 5 is fixedly connected with a connecting barrel 51, and the linkage column 44 penetrates through the connecting barrel 51.

[0041] When linkage, the linkage screw is rotated to move the linkage column 44, and the linkage column 44 enters the intermediate position sliding barrel 41, until the linkage column 44 abuts against the limiting plate 411, so that the linkage effect of synchronous rotation of the other vibration channels 3 is realized.

[0042] Referring to Figure 1 , Figure 5 and Figure 6 , the rack 1 is vertically provided with a conveying barrel 6 corresponding to the position of the discharge port of the vibration channel 3 through a flange, the conveying barrel 6 is in the shape of a circular truncated cone, and the smaller end of the conveying barrel 6 faces downward. The rack 1 is provided with a mounting hole corresponding to the position of the conveying barrel 6, and the mounting hole is provided with a filling bag 7 and a mounting assembly 8, the mounting assembly 8 comprises a fixed ring 81, a pressing ring 82, a rotating block 83, a fixed block 84 and a limiting flange 85.

[0043] Referring to Figure 5 , Figure 6 and Figure 7 , the fixed ring 81 is fixedly connected with the rack 1 and is aligned with the mounting hole, and the fixed ring 81 is provided with a mounting step 811. The pressing ring 82 is placed on the mounting step 811, the rotating block 83 is rotatably connected with the pressing ring 82, the rotating block 83 is provided with an avoiding groove 831, and the side wall of the avoiding groove 831 is provided with a limiting arc groove. One end of the rotating block 83 is fixedly connected with an extension handle 832, one end of the extension handle 832 is circularly transitioned, and the extension handle 832 is used to improve the operability of the rotating block 83. The fixed block 84 is fixedly connected with the fixed ring 81, and the limiting flange 85 is fixedly connected with one of the opposite side walls of the fixed block 84.

[0044] When the filling bag 7 is installed, the filling bag 7 is pressed between the pressing ring 82 and the fixed ring 81, the rotating block 83 is turned over, the fixed block 84 enters the avoiding groove 831, and the limiting flange 85 is embedded in the limiting arc groove, so as to limit the degree of freedom of the pressing ring 82, and the installation of the filling bag 7 is realized.

[0045] Referring to Figure 1 , in order to reduce the possibility of the vibration channel 3 impacting the conveying barrel 6, the rotating seat 11 is fixedly connected with a stop block 112 corresponding to the position of the rotating arc groove 111. When the sliding barrel 41 abuts against the stop block 112, a gap is left between the discharge port of the vibration channel 3 and the conveying barrel 6.

[0046] The implementation principle of the embodiment of the vibrating gummy jelly canning device is as follows: before canning, the canning bag 7 is installed between the pressing ring 82 and the fixing ring 81, the rotating block 83 is turned over, and the limiting flange 85 is embedded in the limiting arc groove; during canning, the driving member 5 is started to rotate the vibration channel 3 until the sliding cylinder 41 abuts against the stop block 112, then the vibration motor 33 is started to vibrate the vibration channel 3, the gummy jelly sequentially passes through the vibration channel 3 and the conveying cylinder 6, and finally enters the canning bag 7, thereby achieving the effect of gummy jelly canning.

[0047] The vibration motor 33 transmits vibration energy to the vibration channel 3, the contact time of the gummy jelly with the surface of the vibration channel 3 is reduced, compared with the prior art, the possibility of the gummy jelly adhering to the surface of the vibration channel 3 is reduced, the number of gummy jelly in the packaging bag is as required as far as possible, the step of the staff cleaning the vibration channel 3 is omitted, and the canning efficiency of the gummy jelly canning device is improved.

[0048] The above are preferred embodiments of the present application, and do not limit the protection scope of the present application, so: any equivalent changes made according to the structure, shape, principle of the present application should be covered within the protection scope of the present application.

Claims

1. A vibrating gummy jar filling apparatus, characterized by: The device includes a frame (1), a rotating seat (11) connected to the frame (1), a vibration channel (3) rotatably connected to the rotating seat (11), a vibration motor (33) installed on the vibration channel (3), a driving component (5) for driving the vibration channel (3) to rotate on the frame (1), a conveying cylinder (6) installed on the frame (1) at the position corresponding to the discharge port of the vibration channel (3), and a filling bag (7) detachably connected to the frame (1), the filling bag (7) being aligned with the discharge port of the conveying cylinder (6).

2. The vibrating gummy jar filling apparatus of claim 1, wherein: A mounting plate (2) is rotatably connected to the rotating seat (11), and a plurality of first mounting posts (21) are connected to the mounting plate (2). A plurality of second mounting posts (31) are connected to the vibration channel (3), and a plurality of support springs (32) are installed between the first mounting posts (21) and the second mounting posts (31).

3. The vibrating gummy jar filling apparatus of claim 2, wherein: Several vibration channels (3) are provided, and a linkage assembly (4) is provided on one of the vibration channels (3). The linkage assembly (4) includes a sliding cylinder (41), a drive screw (42), a limiting block (43), and a linkage column (44). The sliding cylinder (41) is connected to the mounting plate (2). A rotating arc groove (111) is opened on the rotating seat (11). The center of the rotating arc groove (111) coincides with the rotation axis of the mounting plate (2). The sliding cylinder (41) moves in the rotating arc groove (111). The limiting block (43) is connected in the sliding cylinder (41). The linkage column (44) is slidably engaged with the rotating seat (111). Inside the sliding cylinder (41), a limiting groove (441) is opened on the linkage column (44), and the limiting block (43) is slidably fitted in the limiting groove (441). The driving screw (42) is rotatably connected inside the sliding cylinder (41) and threadedly fitted with the linkage column (44). The driving component (5) is a hydraulic cylinder, which is rotatably connected to the frame (1). The output end of the driving component (5) is connected to a connecting cylinder (51). The linkage column (44) passes through the connecting cylinder (51). When linked, the linkage column (44) in one of the sliding cylinders (41) enters the other sliding cylinder (41).

4. The vibrating gummy jar packing apparatus of claim 3, wherein: Another sliding cylinder (41) is connected to a limiting plate (411).

5. The vibrating gummy jar packing apparatus of claim 1, wherein: The conveying cylinder (6) is arranged vertically and is in the shape of a frustum, with the smaller end of the conveying cylinder (6) facing downwards.

6. The vibrating soft candy filling device according to claim 3, characterized in that: A stop block (112) is connected to the rotating seat (11) at the position corresponding to the moving path of the sliding cylinder (41). When there is a gap between the vibration channel (3) and the conveying cylinder (6), the sliding cylinder (41) abuts against the stop block (112).

7. The vibrating soft candy filling device according to claim 1, characterized in that: The frame (1) is provided with an installation assembly (8), which includes a fixing ring (81), a pressure ring (82), a rotating block (83), a fixing block (84), and a limiting flange (85). The frame (1) has an installation hole corresponding to the position of the conveying cylinder (6). The fixing ring (81) is connected to the frame (1) and aligned with the installation hole. The fixing ring (81) has an installation step (811). The fixing block (84) is connected to the fixing ring (81). The limiting flange (85)... The filling bag (7) is connected to the fixed block (84), the pressure ring (82) is set on the mounting step (811), the rotating block (83) is rotatably connected to the pressure ring (82), the rotating block (83) has a relief groove (831), and a limiting arc groove is provided in the relief groove (831). During installation, the filling bag (7) is located between the pressure ring (82) and the fixed ring (81), the fixed block (84) is located in the relief groove (831), and the limiting flange (85) is partially embedded in the limiting arc groove.

8. The vibrating soft candy filling device according to claim 7, characterized in that: An extension lever plate (832) is connected to the rotating block (83), and one end of the extension lever plate (832) is rounded.