A confectionery processing mixer granulator
Patent Information
- Application Number
- CN202522344580.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-05
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2035-11-05
AI Technical Summary
[0005]本实用新型的目的是为了解决现有技术制粒脱模效率低问题而提出的一种糖果加工混合制粒机
1、本实用新型通过输送杆和横向凹槽的设置,当糖浆输出管将糖浆输入至成型凹槽以及成型体上后,干冰机会将干冰气体输入至输送杆处,干冰气体会透过干冰孔填满横向凹槽,横向凹槽与成型凹槽的温度会快速降低,迫使糖果表面形成硬质糖霜,同时提高糖果与成型凹槽以及成型体的脱模效果,减少粘黏模具的现象,从而提高糖果制粒的脱模效率。
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Figure CN224761256U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of confectionery processing technology, and in particular to a confectionery processing mixing and granulation machine. Background Technology
[0002] The candy processing production line achieves fully automated production through five core stages: ingredient mixing, sugar melting, vacuum cooking, molding, and packaging. Vacuum sugar cooking equipment lowers the boiling point of the sugar solution, which is then preheated, evaporated, and concentrated to form a high-concentration sugar paste. Moisture content is controlled below 2% to ensure transparency and crispness. The molding stage includes two processes: stamping and casting. The former uses a rotary press to create candy blocks, while the latter uses a nozzle to inject liquid syrup into a silicone mold for cooling and shaping, supporting diverse products such as single-color, filled, and two-color spray-painted designs.
[0003] Candy processing is typically carried out using modern and intelligent machinery, with the entire process from syrup to candy shaping integrated. This allows the candy to proceed normally to the next packaging step after granulation. Due to the current granulation technology, a two-way mold is usually used to solidify the syrup before it is removed. Although this can improve the candy production effect, some candies may stick to the mold due to incomplete solidification during the demolding stage of the candy granulation process. This phenomenon not only affects the granulation of the next batch of candy but also increases the workload of the staff in cleaning.
[0004] To address this, we designed a candy processing mixing and granulation machine. Utility Model Content
[0005] The purpose of this invention is to propose a candy processing mixing and granulating machine to solve the problem of low granulation and demolding efficiency in existing technologies.
[0006] To achieve the above objectives, the present invention adopts the following technical solution: A candy processing mixing and granulation machine includes a device body, a first plate symmetrically arranged on the device body, a second plate symmetrically arranged on the side wall of the device body, a collection chamber disposed at the bottom of the device body, a third plate disposed on the side wall of the device body, a vertical plate disposed on the device body, a cylinder disposed on the vertical plate, and a syrup output pipe disposed on the side wall of the device body, and further includes: The candy detachment assembly includes a dry ice machine disposed on one side of the device body, a plurality of conveying rods disposed on the dry ice machine, a plurality of dry ice holes disposed on the conveying rods, a forming assembly disposed on the syrup output pipe, a plate disposed on the device body, and a rotating assembly disposed on the side wall of the device body.
[0007] Preferably, the dry ice machine is fixed to the side wall of the device body by fasteners, the conveying rod is fixedly connected to the output end of the dry ice machine by fasteners, the vertical plate is fixed to the device body, and the cylinder is connected to the vertical plate by a fixing bracket.
[0008] Preferably, the molding assembly includes a conveying pipe disposed on the syrup output pipe, a dispensing plate disposed on the conveying pipe, a plurality of molding grooves disposed on the dispensing plate, and a plurality of transverse grooves disposed on the dispensing plate.
[0009] Preferably, the conveying pipe is connected to the syrup output pipe through a telescopic end, the transverse groove is adapted to the conveying rod, the plate is provided with multiple molded bodies, and the plate is connected to the device body through a rotating shaft.
[0010] Preferably, the rotating assembly includes a motor disposed on the side wall of the device body and a connecting shaft disposed at the output end of the motor.
[0011] Preferably, the vertical plate is provided with an assisting component, which includes a push shaft disposed on the cylinder, an extension rod disposed at the bottom of the push shaft, an extension plate symmetrically disposed on the side wall of the extension rod, and a limiting component disposed on the vertical plate.
[0012] Preferably, the limiting component includes slide rails symmetrically arranged on the sidewall of the vertical plate and limiting heads symmetrically arranged on the sidewall of the slide rails.
[0013] The beneficial effects of this utility model are as follows: 1. This utility model, through the setting of the conveying rod and the transverse groove, allows the dry ice machine to input dry ice gas into the conveying rod after the syrup output pipe inputs the syrup into the forming groove and the forming body. The dry ice gas will fill the transverse groove through the dry ice hole, and the temperature of the transverse groove and the forming groove will drop rapidly, forcing the surface of the candy to form a hard sugar frosting. At the same time, it improves the demolding effect of the candy from the forming groove and the forming body, reduces the phenomenon of sticking to the mold, and thus improves the demolding efficiency of candy granulation.
[0014] 2. This utility model, through the setting of a flat plate and a motor, when syrup overflows from both sides of the molded body and the temperature of the dry ice gas has solidified the overflowing syrup, the candy will have a stronger adhesion to the molded body, making it impossible for the candy to fall off normally. With the connection between the motor and the rotating shaft, the flat plate can rotate repeatedly on the rotating shaft, and at the same time, it can collide with the third plate to generate vibration, forcing the sticky candy to fall off, thereby reducing the workload of the staff in cleaning. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the structure of a candy processing mixing and granulation machine proposed in this utility model; Figure 2 for Figure 1 Enlarged view of the structure of the Chinese A-label; Figure 3 This is a bottom view of a candy processing mixing and granulation machine proposed in this utility model; Figure 4 for Figure 3 Enlarged view of the structure of the Chinese B-number; Figure 5 This is a top view of a candy processing mixing and granulation machine proposed in this utility model; Figure 6 This is a side view of a candy processing mixing and granulation machine proposed in this utility model.
[0016] In the diagram: 1. Device body; 101. First plate; 102. Clamping plate; 103. Dry ice machine; 104. Conveying rod; 105. Dry ice hole; 106. Second plate; 107. Collection chamber; 108. Third plate; 2. Vertical plate; 201. Slide rail; 202. Limiting head; 3. Cylinder; 301. Push shaft; 302. Extension rod; 303. Extension plate; 4. Syrup output pipe; 401. Telescopic end; 402. Conveying pipe; 403. Distribution plate; 404. Forming groove; 405. Transverse groove; 5. Flat plate; 501. Forming body; 6. Motor; 601. Connecting shaft; 602. Rotating shaft. Detailed Implementation
[0017] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the protection scope of the present utility model.
[0018] Reference Figures 1-6 A candy processing mixing and granulation machine includes a device body 1, a first plate 101 symmetrically arranged on the device body 1, a second plate 106 symmetrically arranged on the side wall of the device body 1, a collection chamber 107 at the bottom of the device body 1, a third plate 108 on the side wall of the device body 1, a vertical plate 2 on the device body 1, a cylinder 3 on the vertical plate 2, and a syrup output pipe 4 on the side wall of the device body 1. It also includes a candy release component, which is mainly used for demolding after candy molding, reducing the phenomenon of candy sticking to the mold and improving the candy granulation effect. Before use, it is necessary to check whether the connection between the device body 1 and the vertical plate 2 is secure, and the first plate 101, the second plate 106 and the third plate 108 are all fixed to the side wall of the device body 1 by welding. It is also necessary to clean the collection chamber 107 to reduce the impact of internal dust and particles on the taste and quality of the candy. Then, the cylinder 3 on the vertical plate 2 is checked to ensure that the cylinder 3 can operate normally. The syrup output pipe 4 is checked to ensure that it can deliver syrup normally and without blockage. With the cooperation of the candy detachment component, the syrup can be made into candy and effectively detached.
[0019] Specifically, the candy detachment assembly includes a dry ice machine 103 disposed on one side of the device body 1, a plurality of conveying rods 104 disposed on the dry ice machine 103, a plurality of dry ice holes 105 disposed on the conveying rods 104, a forming assembly disposed on the syrup output pipe 4, a plate 5 disposed on the device body 1, and a rotating assembly disposed on the side wall of the device body 1. Dry ice machine 103 is fixed to the side wall of device body 1 by fasteners, conveying rod 104 is fixedly connected to the output end of dry ice machine 103 by fasteners, vertical plate 2 is fixed to device body 1, and cylinder 3 is connected to vertical plate 2 by fixing bracket. When the candy enters the molding component, the dry ice machine 103 operates to send dry ice gas into the molding component through the conveyor rod 104. The dry ice gas contacts the molding component and the plate 5 through multiple dry ice holes 105, which quickly cools the syrup on both and forms sugar frosting on the surface of the syrup, making it easier to remove the candy with the help of the rotating component. The dry ice machine 103 is fixed to the device body 1 with fasteners, which mainly facilitates disassembly and maintenance in the later stage. The conveying rod 104 is connected to the output end of the dry ice machine 103 to stabilize the dry ice machine 103 when conveying dry ice gas. The vertical plate 2 needs to be connected to the top of the device body 1 by welding to ensure that the structure on the vertical plate 2 can remain stable. The fixing frame is an existing connection structure. The fixing frame is connected to the cylinder 3 by rivets, and its other end is fixed to the vertical plate 2 by welding, thereby suspending the cylinder 3 on the vertical plate 2 to facilitate the operation of the cylinder 3. It should be noted that the device body 1 is a collection device used in the candy granulation process in the prior art, the dry ice machine 103 is a device used in the prior art to produce and transport dry ice gas, ensuring that the dry ice gas will not heat up during the transport process, and the cylinder 3 is a common driving component in the prior art, and is connected to an external power supply.
[0020] The molding assembly includes a conveying pipe 402 disposed on the syrup output pipe 4, a distribution plate 403 disposed on the conveying pipe 402, a plurality of molding grooves 404 disposed on the distribution plate 403, and a plurality of transverse grooves 405 disposed on the distribution plate 403. The conveying pipe 402 is connected to the syrup output pipe 4 through the telescopic end 401, the transverse groove 405 is adapted to the conveying rod 104, and the plate 5 is provided with multiple molded bodies 501. The plate 5 is connected to the device body 1 through the rotating shaft 602. After the syrup output pipe 4 delivers the syrup into the distribution plate 403, the multiple pipes in the distribution plate 403 will evenly distribute the syrup. Through the telescopic end 401 at the bottom of the syrup output pipe 4, the height of the conveying pipe 402 can be finely adjusted so that the plate 5 and the distribution plate 403 are kept in a tight state, ensuring that the syrup has reached the forming groove 404 and the forming body 501. During this period, the conveying rod 104 is pressed against the transverse groove 405, ensuring that the dry ice gas in the transverse groove 405 condenses the syrup in the forming groove 404, so that the syrup surface forms sugar frosting and hardens, while reducing the phenomenon of candy sticking to the forming groove 404 and the forming body 501. It should be noted that the distribution plate 403 has multiple pipes that communicate with the forming groove 404, and the pipes are connected to the delivery pipe 402. The syrup flows in the syrup output pipe 4 through an external pressure pump, which reduces the phenomenon of syrup clogging the pipes due to viscosity.
[0021] The rotating assembly includes a motor 6 disposed on the side wall of the device body 1 and a connecting shaft 601 disposed at the output end of the motor 6; After the candy is formed, the connecting shaft 601 can be rotated by the motor 6. The connecting shaft 601 is connected to the rotating shaft 602 by fasteners. One end of the rotating shaft 602 is fixed to the side wall of the device body 1, and the other end is fixed to the plate 5 by welding. After the plate 5 is separated from the distribution plate 403, it can rotate downwards, so that the plate 5 collides with the third plate 108 at the top of the collection chamber 107, causing the candy left on the plate 5 to vibrate, thereby improving the demolding effect after the candy granulation is successful. The demolded candy can enter the collection chamber 107 from both sides of the plate 5, or slide into the collection structure outside the device body 1.
[0022] The vertical plate 2 is provided with an assisting component, which includes a push shaft 301 disposed on the cylinder 3, an extension rod 302 disposed at the bottom of the push shaft 301, an extension plate 303 symmetrically disposed on the side wall of the extension rod 302, and a limiting component disposed on the vertical plate 2. The limiting components include slide rails 201 symmetrically arranged on the sidewalls of the vertical plate 2 and limiting heads 202 symmetrically arranged on the sidewalls of the slide rails 201; In the early stage of candy granulation, the cylinder 3 is used to push the distribution plate 403 onto the plate 5. The push shaft 301 at the bottom of the cylinder 3 will move downwards at the same time with the extension rod 302 which is fixedly connected to it. The extension rod 302 moves vertically under the restriction of the slide rail 201 to ensure that there is no deviation. The extension rod 302 is T-shaped, and its two extension ends are pressed against the clamping plate 102 in the slide rail 201. The clamping plate 102 is fixed to the inner wall of the slide rail 201 by welding. The purpose is to avoid the extension rod 302 moving too far and improve the efficiency of the cylinder 3 resetting. The extension plates 303 on both sides of the extension rod 302 are adapted to the first plate 101. When the extension plate 303 enters the area of the first plate 101, the deviation of the extension rod 302 can be further reduced. The extension rod 302 and the extension plate 303 need to be connected to the distribution plate 403 by fasteners. The telescopic end 401 at the top of the distribution plate 403 facilitates the height adjustment of the extension rod 302. It should be noted that the extension plate 303 and the distribution plate 403 are connected to each other by a snap fastener, so that the extension plate 303 will not cause the distribution plate 403 to move upward during the reset period. On the contrary, when the extension plate 303 moves downward, it will cause the distribution plate 403 to press against the plate 5. During the reset phase of the extension plate 303, the telescopic end 401 will also cause the distribution plate 403 to be effectively reset.
[0023] The working principle of this utility model is as follows: When the syrup output pipe 4 is about to deliver syrup to the distribution plate 403, the start cylinder 3 drives the extension rod 302 to move within the slide rail 201. When the extension rod 302 reaches the same height as the distribution plate 403, the distribution plate 403 is pushed downwards and pressed against the plate 5 under the connection of the buckle. Then the syrup fills the forming groove 404, and the dry ice machine 103 is started to deliver dry ice gas to the transverse groove 405. The dry ice gas in the transverse groove 405 will directly affect the forming groove 404 at the bottom of the distribution plate 403, forcing the syrup surface to form sugar frosting, which is then transformed into solid granular candy. Then the motor 6 is started, causing the plate 5 to rotate downwards under the influence of the rotating shaft 602 and collide with the third plate 108, shaking off the candy stuck to the forming body 501, achieving the demolding effect. With the setting of conveyor rod 104 and transverse groove 405, after the syrup output pipe 4 inputs syrup into the molding groove 404 and the molding body 501, the dry ice machine 103 will input dry ice gas into the conveyor rod 104. The dry ice gas will fill the transverse groove 405 through the dry ice hole 105. The temperature of the transverse groove 405 and the molding groove 404 will drop rapidly, forcing the surface of the candy to form hard sugar frosting. At the same time, it improves the demolding effect of the candy with the molding groove 404 and the molding body 501, reduces the phenomenon of sticking to the mold, and thus improves the demolding efficiency of candy granulation.
[0024] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A candy processing mixing and granulation machine, comprising a device body (1), a first plate (101) symmetrically arranged on the device body (1), a second plate (106) symmetrically arranged on the side wall of the device body (1), a collection chamber (107) arranged at the bottom of the device body (1), a third plate (108) arranged on the side wall of the device body (1), a vertical plate (2) arranged on the device body (1), a cylinder (3) arranged on the vertical plate (2), and a syrup output pipe (4) arranged on the side wall of the device body (1), characterized in that, Also includes: The candy detachment assembly includes a dry ice machine (103) disposed on one side of the device body (1), a plurality of conveying rods (104) disposed on the dry ice machine (103), a plurality of dry ice holes (105) disposed on the conveying rods (104), a molding assembly disposed on the syrup output pipe (4), a plate (5) disposed on the device body (1), and a rotating assembly disposed on the side wall of the device body (1).
2. The candy processing mixing and granulation machine according to claim 1, characterized in that, The dry ice machine (103) is fixed to the side wall of the device body (1) by fasteners. The conveying rod (104) is fixedly connected to the output end of the dry ice machine (103) by fasteners. The vertical plate (2) is fixed to the device body (1). The cylinder (3) is connected to the vertical plate (2) by a fixing bracket.
3. The candy processing mixing and granulation machine according to claim 1, characterized in that, The molding assembly includes a conveying pipe (402) disposed on the syrup output pipe (4), a dispensing plate (403) disposed on the conveying pipe (402), a plurality of molding grooves (404) disposed on the dispensing plate (403), and a plurality of transverse grooves (405) disposed on the dispensing plate (403).
4. The candy processing mixing and granulation machine according to claim 3, characterized in that, The conveying pipe (402) is connected to the syrup output pipe (4) through the telescopic end (401), the transverse groove (405) is adapted to the conveying rod (104), the plate (5) is provided with multiple molded bodies (501), and the plate (5) is connected to the device body (1) through the rotating shaft (602).
5. A candy processing mixing and granulation machine according to claim 4, characterized in that, The rotating assembly includes a motor (6) disposed on the side wall of the device body (1) and a connecting shaft (601) disposed at the output end of the motor (6).
6. A candy processing mixing and granulation machine according to claim 1, characterized in that, The vertical plate (2) is provided with an assisting component, which includes a push shaft (301) disposed on the cylinder (3), an extension rod (302) disposed at the bottom of the push shaft (301), an extension plate (303) symmetrically disposed on the side wall of the extension rod (302), and a limiting component disposed on the vertical plate (2).
7. A candy processing mixing and granulation machine according to claim 6, characterized in that, The limiting components include slide rails (201) symmetrically arranged on the side wall of the vertical plate (2) and limiting heads (202) symmetrically arranged on the side wall of the slide rails (201).