Airflow jet type anti-adhesion slicing device for soft sweet production
By using an airflow jet-type anti-adhesion slicing device, which utilizes a motor to control the screw speed and a vibration motor to remove residue, the problem of difficult-to-control export speed during the gummy candy cutting process is solved, and precise control of the amount of gummy candy added and efficient recycling of residue are achieved.
Patent Information
- Application Number
- CN202520566493.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2035-03-28
AI Technical Summary
During the production of gummy candies, it is difficult to control the speed at which the candies are extracted during cutting, making it difficult to control the amount of gummy candies added.
An airflow jet-type anti-sticking slicing device is used. The screw rotation is controlled by a motor to adjust the export speed and flow rate of the gummy candy. Combined with a vibrating motor to remove residue, the device uses through holes and a residue collection track to screen out and recycle impurities.
It enables precise control of the amount of gummies added, reduces sticking, improves production efficiency, and facilitates the recycling and disposal of residues.
Smart Images

Figure CN223890130U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of gummy candy production technology, and in particular relates to an airflow jet-type anti-sticking slicing device for gummy candy production. Background Technology
[0002] Gummy candy production is mainly a process of manufacturing candy, which is a type of snack that people often eat. Its main component is sugar, which has a sweet taste.
[0003] A search revealed a candy slicing device with publication number CN115648307A. This invention belongs to the field of candy production, specifically a candy slicing device comprising a workbench, a first vertical plate, and a second vertical plate. The first and second vertical plates are symmetrically fixed to the top side of the workbench. A first block and a second block are slidably connected to the middle portions of the first and second vertical plates, respectively. A pair of hydraulic cylinders are fixed to the top of the workbench. The output ends of the pair of hydraulic cylinders are respectively fixed to the first block and the second block. In use, different blades are switched by rotating the cylinder. Different blades on the cylinder have different patterns. Switching between different blades can cut candies of different shapes. With the above configuration, the workload of changing blades can be reduced, thus facilitating the production of candies of different shapes.
[0004] During the production of gummy candies, it is necessary to cut the gummy candies to be produced. However, during the cutting process, it is inconvenient to control the speed at which the gummy candies are extruded. Summary of the Invention
[0005] The purpose of this invention is to provide an airflow jet-type anti-sticking slicing device for gummy candy production. The device uses a motor to control the rotation of a screw to export the gummy candy. By controlling the motor speed, the rotation speed of the screw can be controlled, thereby controlling the gummy candy export flow rate, which facilitates operation and control of the amount of gummy candy added.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a gas jet anti-sticking slicing device for gummy candy production, comprising a first conveyor belt, a second conveyor belt, and a feeding cylinder. A first support is provided outside the first conveyor belt, and a second support is provided outside the second conveyor belt. The first conveyor belt is rotatably connected inside the first support, and a first motor is connected to one end of the first conveyor belt. The second conveyor belt is rotatably connected inside the second support, and a second motor is connected to the second conveyor belt. The first conveyor belt is located above the second conveyor belt. The first support is fixed to the upper end of the first support. A slide rail is fixedly connected to the end of the first support near the second support, and the end of the slide rail away from the first support is located above the second conveyor belt. The feeding cylinder is located at the end of the second conveyor belt away from the slide rail, and a feeding control component is provided at the bottom of the feeding cylinder.
[0007] Preferably, the second conveyor belt has a plurality of through holes, which are evenly distributed on the second conveyor belt.
[0008] Preferably, a residue collection track is fixed between the second supports, and the residue collection track extends toward the second motor.
[0009] Preferably, a support rod is fixed to the end of the second bracket near the feed cylinder, and a vibration motor is fixed to the support rod facing the direction of the second conveyor belt. The end of the vibration motor away from the support rod is in contact with the surface of the second conveyor belt.
[0010] Preferably, an outlet pipe is fixed at the bottom of the feed cylinder, and a vertical rod is also fixed at the bottom of the feed cylinder, with several vertical rods arranged along the circumference of the feed cylinder.
[0011] Preferably, the feeding control component includes a support plate fixed to the outside of the outlet pipe, a third motor fixed to the upper end of the support plate, the support plate being positioned near the upper end of the outlet pipe, a bevel gear set fixed to the output shaft end of the third motor, an outlet screw fixed vertically to the bevel gear set, a crossbar provided at the upper end of the outlet screw, the outlet screw being rotatably connected inside the crossbar, and both ends of the crossbar being fixed to the inner wall of the outlet pipe.
[0012] The beneficial effects of this utility model are:
[0013] This gummy candy production airflow jet anti-sticking slicing device has several through holes evenly distributed on the second conveyor belt. A residue collection track is fixed between the second supports, extending towards the second motor. A support rod is fixed near the feed cylinder end of the second support, and a vibration motor is fixed towards the second conveyor belt on the support rod. The end of the vibration motor away from the support rod contacts the surface of the second conveyor belt. The vibration motor generates a vibration effect on the second conveyor belt, which can remove impurities from the gummy candies during transport. At the same time, impurities and residues enter the residue collection track along the through holes for easy recycling.
[0014] 2. The airflow jet anti-sticking slicing device for gummy candy production includes a feeding control component comprising a support plate fixed to the outside of the outlet tube. A third motor is fixed to the upper end of the support plate. The support plate is positioned near the upper end of the outlet tube. A bevel gear set is fixed to the output shaft end of the third motor. An outlet screw is vertically fixed to the bevel gear set. A crossbar is provided at the upper end of the outlet screw. The outlet screw is rotatably connected inside the crossbar. Both ends of the crossbar are fixed to the inner wall of the outlet tube. The motor controls the rotation of the screw to export the gummy candy. By controlling the motor speed, the rotation speed of the screw can be controlled, thereby controlling the gummy candy export flow rate, facilitating operation and control of the amount of gummy candy added.
[0015] 3. The gummy candy production uses an air jet anti-sticking slicing device with two conveyor belts. The gummy candy first passes through the first conveyor belt and slide rail into the second conveyor belt, where it is gradually spread out and moved. Compared to the piled-up state, it is placed directly on the second conveyor belt, which facilitates vibration on the second conveyor belt to remove residues and impurities, thus removing residues more thoroughly. Attached Figure Description
[0016] Figure 1 This is a three-dimensional structural diagram of an airflow jet-type anti-sticking slicing device for gummy candy production provided by this utility model;
[0017] Figure 2 This utility model provides an airflow jet-type anti-sticking slicing device for gummy candy production. Figure 1 A top-down view;
[0018] Figure 3 This utility model provides an airflow jet-type anti-sticking slicing device for gummy candy production. Figure 2 Schematic diagram of cross section along line AA.
[0019] In the diagram: 1. First conveyor belt; 2. Second conveyor belt; 3. Feed cylinder; 4. First support; 5. Second support; 6. First motor; 7. Second motor; 8. Slide rail; 9. Feed control assembly; 10. Through hole; 11. Residue collection track; 12. Support rod; 13. Vibration motor; 14. Outlet pipe; 15. Vertical rod; 16. Support plate; 17. Third motor; 18. Bevel gear set; 19. Outlet screw; 20. Horizontal bar. Detailed Implementation
[0020] To further understand the utility model content, features and effects of this utility model, the following embodiments are provided, and detailed descriptions are given in conjunction with the accompanying drawings.
[0021] Please also refer to Figures 1 to 3 The following is a detailed description of the airflow jet-type anti-sticking slicing device for producing soft candy according to an embodiment of the present invention, with reference to the accompanying drawings.
[0022] The air jet anti-sticking slicing device for producing gummy candies includes a first conveyor belt 1, a second conveyor belt 2, and a feeding cylinder 3. The first conveyor belt 1 is provided with a first support 4 on its outside, and the second conveyor belt 2 is provided with a second support 5 on its outside. The first conveyor belt 1 is rotatably connected inside the first support 4. One end of the first conveyor belt 1 is connected to a first motor 6. The second conveyor belt 2 is rotatably connected inside the second support 5 and is connected to a second motor 7. The first conveyor belt 1 is located above the second conveyor belt 2. The first support 4 is fixed to the upper end of the first support 4. A slide rail 8 is fixedly connected to the end of the first support 4 near the second support 5. The end of the slide rail 8 away from the first support 4 is located above the second conveyor belt 2. The feeding cylinder 3 is located at the end of the second conveyor belt 2 away from the slide rail 8. A feeding control component 9 is provided at the bottom of the feeding cylinder 3.
[0023] Specifically, the second conveyor belt 2 has several through holes 10, which are evenly distributed on the second conveyor belt 2.
[0024] Specifically, a residue collection track 11 is fixed between the second brackets 5, and the residue collection track 11 extends toward the second motor 7.
[0025] Specifically, a support rod 12 is fixed to the end of the second bracket 5 near the feed cylinder 3, and a vibration motor 13 is fixed to the support rod 12 in the direction of the second conveyor belt 2. The end of the vibration motor 13 away from the support rod 12 is in contact with the surface of the second conveyor belt 2.
[0026] When the vibration motor 13 is turned on, it can generate a vibration effect on the entire second conveyor belt 2 due to its contact with the lower part of the second conveyor belt 2, which will shake out the residue and debris inside the candy and collect it through the through hole 10 into the residue collection track 11 below.
[0027] Specifically, a discharge pipe 14 is fixed at the bottom of the feed cylinder 3, and a vertical rod 15 is also fixed at the bottom of the feed cylinder 3. Several vertical rods 15 are provided along the circumference of the feed cylinder 3.
[0028] Specifically, the feeding control component 9 includes a support plate 16 fixed to the outside of the outlet pipe 14. A third motor 17 is fixed to the upper end of the support plate 16. The support plate 16 is located near the upper end of the outlet pipe 14. A bevel gear set 18 is fixed to the output shaft end of the third motor 17. An outlet screw 19 is fixed vertically to the bevel gear set 18. A crossbar 20 is provided at the upper end of the outlet screw 19. The outlet screw 19 is rotatably connected to the inside of the crossbar 20. Both ends of the crossbar 20 are fixed to the inner wall of the outlet pipe 14.
[0029] When the third motor 17 is turned on, the output screw 19 can be driven to rotate through the bevel gear set 18. When the output screw 19 rotates, the flow rate of the candy can be controlled.
[0030] The working principle of this utility model is as follows: During use, the soft candy is transported by the first conveyor belt 1 and reaches the second conveyor belt 2 via the slide rail 8. When passing the second conveyor belt 2, the vibration motor 13 can be turned on to vibrate the second conveyor belt 2, and the residue inside the soft candy is screened out. The residue is collected by the residue collection track 11. When the soft candy falls into the feed cylinder 3, it can be connected to the soft candy production equipment through the outlet pipe 14. The flow rate of the soft candy outlet is controlled by turning on the third motor 17. After the soft candy is outleted, it is sliced using an existing cutter.
[0031] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A gas jet-type anti-sticking slicing device for gummy candy production, characterized in that, The air jet anti-sticking slicing device for producing gummy candies includes a first conveyor belt (1), a second conveyor belt (2), and a feeding cylinder (3). The first conveyor belt (1) is provided with a first support (4) on its outside, and the second conveyor belt (2) is provided with a second support (5) on its outside. The first conveyor belt (1) is rotatably connected inside the first support (4). One end of the first conveyor belt (1) is connected to a first motor (6). The second conveyor belt (2) is rotatably connected inside the second support (5). The second conveyor belt (2) is connected to a second motor (7). The first conveyor belt (1) is located above the second conveyor belt (2). The first support (4) is fixed at the upper end of the first support (4). The end of the first support (4) near the second support (5) is fixedly connected to a slide rail (8). The end of the slide rail (8) away from the first support (4) is located above the second conveyor belt (2). The feeding cylinder (3) is located at the end of the second conveyor belt (2) away from the slide rail (8). The bottom of the feeding cylinder (3) is provided with a feeding control component (9).
2. The airflow jet-type anti-sticking slicing device for gummy candy production according to claim 1, characterized in that, The second conveyor belt (2) has several through holes (10) evenly distributed on the second conveyor belt (2).
3. The airflow jet-type anti-sticking slicing device for gummy candy production according to claim 1, characterized in that, A residue collection track (11) is fixed between the second brackets (5), and the residue collection track (11) extends toward the second motor (7).
4. The airflow jet-type anti-sticking slicing device for gummy candy production according to claim 1, characterized in that, The second bracket (5) has a support rod (12) fixed near the end of the feed cylinder (3). The support rod (12) has a vibration motor (13) fixed in the direction of the second conveyor belt (2). The end of the vibration motor (13) away from the support rod (12) is in contact with the surface of the second conveyor belt (2).
5. The airflow jet-type anti-sticking slicing device for gummy candy production according to claim 1, characterized in that, The bottom of the feed cylinder (3) is fixed with an outlet pipe (14), and the bottom of the feed cylinder (3) is also fixed with a vertical rod (15), which is provided with several vertical rods (15) along the circumference of the feed cylinder (3).
6. The airflow jet-type anti-sticking slicing device for gummy candy production according to claim 5, characterized in that, The feeding control component (9) includes a support plate (16) fixed outside the outlet pipe (14). A third motor (17) is fixed at the upper end of the support plate (16). The support plate (16) is located near the upper end of the outlet pipe (14). A bevel gear set (18) is fixed at the output shaft end of the third motor (17). An outlet screw (19) is fixed vertically in the bevel gear set (18). A crossbar (20) is provided at the upper end of the outlet screw (19). The outlet screw (19) is rotatably connected inside the crossbar (20). Both ends of the crossbar (20) are fixed on the inner wall of the outlet pipe (14).
Citation Information
Patent Citations
Slicing device for candy production
CN115648307A