Stirring device for quick forming of blasting beads

By combining a vibrating plate and a horizontal discharge hopper, the problem of long hardening time after bursting bead molding is solved, enabling rapid batch hardening molding and improving production efficiency.

CN223915286UActive Publication Date: 2026-02-17CHANGZHOU JINMA PACKAGING MACHINERY CO LTD
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Patent Information

Application Number
CN202422919678.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-28
Publication Date
2026-02-17
Estimated Expiration
2034-11-28

AI Technical Summary

Technical Problem

In existing technologies, the hardening time required after the burst beads are formed is much longer than the forming time, resulting in low production efficiency of single-line mixing devices and easy adhesion.

Method used

The vibrating disc disperses the bursting beads and quickly distributes them into the mixing tank through multiple horizontal discharge hoppers. Combined with the mixing device driven by the mixing motor, rapid hardening and molding are achieved.

Benefits of technology

While avoiding sticking, the production efficiency of burst beads has been significantly improved, and rapid batch hardening and molding has been achieved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a quick forming and stirring device for blasting beads, which comprises a blasting bead feeding port, a vibrating disc, a plurality of transverse blasting bead discharging hoppers and a stirring barrel, the blasting bead feeding port is arranged right above the vibrating disc, the inlet ends of the transverse blasting bead discharging hoppers are respectively and uniformly distributed below the peripheral edge of the vibrating disc, and the stirring barrel is arranged above the vibrating disc. Discharge hopper inlet baffles which can be movably opened are arranged on the transverse blast bead discharge hoppers, and stirring barrels corresponding to the transverse blast bead discharge hoppers are arranged below the outlet ends of the transverse blast bead discharge hoppers. According to the device, under the condition that adhesion is avoided, just-formed blasting beads can be rapidly distributed into different stirring barrels to be hardened and formed, and the production efficiency is greatly improved.
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Description

Technical Field

[0001] This utility model belongs to the field of popping bead production equipment, specifically relating to a rapid popping bead forming and mixing device. Background Technology

[0002] Popping boba, also known as popping beads, popping eggs, or magic beans, are popular beverages. They are used in milk tea, fruit drinks, dairy drinks, cake decorations, egg tart fillings, and iced porridge. There are two main types: those filled with fruit juice and those filled with fruit puree.

[0003] During the production of popping beads, after the beads are formed, they need to continue to be stirred and soaked in the molding liquid for a period of time to harden and prevent them from sticking together. However, the hardening time required is much longer than the time required for the popping beads to be formed. Therefore, the current single-line stirring and hardening equipment is an obstacle to improving production efficiency. Summary of the Invention

[0004] The purpose of this invention is to provide a rapid molding and mixing device for popping beads based on existing technology. This device can quickly distribute freshly formed popping beads into different mixing tanks for hardening and molding without sticking, thus greatly improving production efficiency.

[0005] The technical solution of this utility model is:

[0006] A rapid molding and mixing device for popping beads includes a popping bead feeding port, a vibrating plate, a popping bead horizontal discharge hopper, and a mixing tank. The popping bead feeding port is located directly above the vibrating plate. There are multiple popping bead horizontal discharge hoppers, and the inlet ends of each popping bead horizontal discharge hopper are evenly distributed below the perimeter of the vibrating plate. A movable and openable discharge hopper inlet baffle is provided on the popping bead horizontal discharge hopper. A mixing tank corresponding to the popping bead horizontal discharge hopper is provided below the outlet end of each popping bead horizontal discharge hopper.

[0007] In a preferred embodiment, the upper part of the burst bead feeding port is an open frustum shape, and the lower part is a barrel shape.

[0008] In a preferred embodiment, a drive device for vibrating the vibrating plate is provided below the vibrating plate.

[0009] In a preferred embodiment, multiple popping bead horizontal discharge hoppers are evenly distributed around the edge of the vibrating plate, and popping bead baffles are provided between two adjacent popping bead horizontal discharge hoppers to prevent popping beads from escaping. Each popping bead baffle and each closed discharge hopper inlet baffle together form a temporary popping bead storage space around the vibrating plate.

[0010] In a preferred embodiment, there are four transverse discharge hoppers for the burst beads, which are arranged orthogonally around the edge of the vibrating disc.

[0011] In a preferred embodiment, the bottom of the transverse discharge hopper for burst beads is provided with a plurality of burst bead grooves, the grooves of which extend from the inlet end of the transverse discharge hopper to its outlet end, and an outlet baffle that can be movably opened is provided at the outlet of the transverse discharge hopper for burst beads.

[0012] In a more preferred embodiment, the outlet baffle of the discharge hopper is provided on the outlet baffle rotating component, which is driven to rotate by a rotating cylinder.

[0013] In a more preferred embodiment, the discharge hopper outlet baffle has a concave-convex portion on its contact side with the outlet of the bursting bead transverse discharge hopper that matches the bursting bead groove.

[0014] In a preferred embodiment, side plates for the discharge hopper are provided on both sides to prevent the burst beads from escaping.

[0015] In a preferred embodiment, the number of transverse discharge hoppers for popping beads is the same as the number of mixing tanks, and the outlet of the transverse discharge hopper for popping beads is located directly above the corresponding mixing tank. A mixing device driven by a mixing motor is provided inside the mixing tank.

[0016] In a preferred embodiment, multiple mixing tanks are fixedly mounted around the vibrating plate by mixing tank fixing brackets, multiple bursting bead horizontal discharge hoppers are fixedly mounted between the vibrating plate and the mixing tanks by discharge hopper fixing brackets, and bursting bead feeding ports are fixedly mounted directly above the vibrating plate by bursting bead feeding port fixing brackets.

[0017] The beneficial effects of this utility model are:

[0018] This invention utilizes a vibrating disc to evenly disperse freshly formed popping beads, preventing them from sticking together. Different popping beads are then rapidly introduced into different mixing tanks via horizontal discharge hoppers for the hardening reaction. The feeding is stopped promptly when the required number of popping beads in a mixing tank is reached. This rapid popping bead forming mixing device enables the rapid, batch-wise hardening of freshly formed popping beads while preventing sticking, significantly improving production efficiency. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the structure of this utility model;

[0020] In the diagram, 1-Bubble feed inlet, 2-Vibrating plate, 3-Bubble horizontal discharge hopper, 4-Bubble chute, 5-Discharge hopper inlet baffle, 6-Discharge hopper side plate, 7-Discharge hopper outlet baffle, 8-Outlet baffle rotating component, 9-Mixing tank, 10-Rotating cylinder, 11-Bubble feed inlet fixing frame, 12-Mixing tank fixing frame, 13-Discharge hopper fixing frame, 14-Mixing motor, 15-Mixing tank bead discharge pipe, 16-Bubble baffle plate. Detailed Implementation

[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments, but the scope of protection of the present invention is not limited to the following examples.

[0022] like Figure 1 As shown, the rapid prototyping mixing device of this utility model includes a popping bead feeding port 1, a vibrating plate 2, a popping bead horizontal discharge hopper 3, and a mixing tank 9. The popping bead feeding port 1 is located directly above the vibrating plate 2. There are multiple popping bead horizontal discharge hoppers 3, and the inlet ends of each popping bead horizontal discharge hopper 3 are evenly distributed below the perimeter of the vibrating plate 2. A movable and openable discharge hopper inlet baffle 5 is provided on the popping bead horizontal discharge hopper 3. A mixing tank 9 corresponding to the popping bead horizontal discharge hopper 3 is provided below the outlet end of each popping bead horizontal discharge hopper 3.

[0023] The upper part of the bursting bead feeding port 1 in this device can be an open frustum shape, and the lower part can be a barrel shape, which makes it easy to feed in freshly formed bursting beads.

[0024] The device has a drive device below the vibrating plate 2 to make it vibrate. The vibration is transmitted to the popping beads fed into the vibrating plate 2 from the popping bead feeding port 1, so as to prevent them from sticking together and disperse them to the periphery of the vibrating plate 2. Then, they are guided into the corresponding mixing tank 9 through an open discharge hopper inlet baffle 5.

[0025] The device has multiple transverse discharge hoppers 3 for exploding beads, which can be evenly distributed around the edge of the vibrating plate. Between two adjacent transverse discharge hoppers 3, there is a bead baffle 16 to prevent the exploding beads from escaping. Each bead baffle 16 and each closed discharge hopper inlet baffle 5 together form a temporary storage space for exploding beads around the vibrating plate 2.

[0026] In a preferred embodiment, such as Figure 1 As shown, there are four transverse discharge hoppers 3 for popping beads, arranged orthogonally around the edge of the vibrating disc. Correspondingly, there are also four mixing tanks 9.

[0027] This device has several popcorn chute 4s at the bottom of the transverse popcorn discharge hopper 3. The chute 4 extends from the inlet end of the transverse popcorn discharge hopper 3 to its outlet end. The popcorn chute 4 facilitates the lateral movement of the popcorns and can also have a certain inclination to further facilitate the sliding out of the popcorns. At the outlet of the transverse popcorn discharge hopper 3, there is a movable and openable discharge hopper outlet baffle 7, which can further control the flow rate and speed of the popcorns.

[0028] The discharge hopper outlet baffle 7 is mounted on the outlet baffle rotating member 8, which is driven to rotate by the rotating cylinder 10. The discharge hopper outlet baffle 7 has protrusions and recesses on its contact edge with the outlet of the transverse discharge hopper 3 for the burst beads, which match the burst bead groove 4. Discharge hopper side plates 6 are provided on both sides of the transverse discharge hopper 3 to prevent the burst beads from escaping.

[0029] In this utility model, the number of transverse discharge hoppers 3 for popping beads is the same as the number of mixing tanks. The outlet of the transverse discharge hopper 3 for popping beads is located directly above the corresponding mixing tank. A mixing device driven by a mixing motor 14 is provided inside the mixing tank, and a mixing tank discharge pipe 15 is also provided on the mixing tank.

[0030] In one specific embodiment, multiple mixing tanks are fixedly mounted around the vibrating plate 2 by mixing tank fixing brackets 12, multiple bursting bead horizontal discharge hoppers 3 are fixedly mounted between the vibrating plate 2 and the mixing tanks by discharge hopper fixing brackets 13, and bursting bead feeding port 1 is fixedly mounted directly above the vibrating plate 2 by bursting bead feeding port fixing brackets 11.

[0031] The method of using this utility model is as follows: First, a large number of freshly formed popping beads are put into the popping bead feeding port 1. Each popping bead falls onto the vibrating plate 2. The vibration of the vibrating plate 2 evenly disperses the freshly formed popping beads, preventing them from sticking together and dispersing them into the temporary storage space formed by the popping bead baffles 16 and the closed discharge hopper inlet baffles 5. Then, the discharge hopper inlet baffle 5 is opened, and the popping beads enter the horizontal discharge hopper. They are then sequentially discharged from the discharge hopper outlet through the popping bead chute and fall into the mixing tank, where they are stirred, soaked, and reacted in the molding liquid. When the amount of popping beads in the mixing tank reaches the required level, the corresponding discharge hopper inlet baffle 5 and discharge hopper outlet baffle are closed. Then, the discharge hopper inlet baffle 5 and discharge hopper outlet baffle of another popping bead horizontal discharge hopper 3 are opened, and popping beads are introduced into another mixing tank for stirring, soaking, and reaction molding.

[0032] 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 inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A rapid prototyping stirring device for blasting beads, characterized in that It includes the explosive bead feeding port (1), the vibration disc (2), the explosive bead horizontal discharge hopper (3) and the stirring barrel (9), the explosive bead feeding port (1) is arranged above the vibration disc (2), the explosive bead horizontal discharge hopper (3) has multiple, the inlet end of each explosive bead horizontal discharge hopper is evenly distributed below the periphery edge of the vibration disc (2), the movable discharge hopper inlet baffle (5) is arranged on the explosive bead horizontal discharge hopper (3), and the stirring barrel (9) corresponding to the explosive bead horizontal discharge hopper is arranged below the outlet end of each explosive bead horizontal discharge hopper.

2. The rapid prototyping stirring device for a blasting bead according to claim 1, characterized in that The upper part of the explosive bead feeding port (1) is a conical frustum, and the lower part is a barrel.

3. The rapid prototyping stirring device for a blasting bead according to claim 1, characterized in that The driving device for vibrating the vibration disc (2) is arranged below the vibration disc (2).

4. The rapid prototyping stirring device for a blasting bead according to claim 1, characterized in that The multiple explosive bead horizontal discharge hoppers (3) are evenly distributed around the periphery of the vibration disc (2), the explosive bead blocking baffle (16) for preventing the explosive beads from escaping is arranged between the two adjacent explosive bead horizontal discharge hoppers (3), and each explosive bead blocking baffle (16) and each closed discharge hopper inlet baffle (5) jointly form an explosive bead temporary storage space around the vibration disc (2).

5. The rapid prototyping stirring device for a blasting bead according to claim 4, characterized in that The number of the explosive bead horizontal discharge hoppers (3) is four, and they are arranged around the periphery of the vibration disc (2) in a mutually orthogonal manner.

6. The rapid prototyping mixing device of shot according to claim 1, wherein The bottom of the explosive bead horizontal discharge hopper (3) is provided with a plurality of explosive bead sliding grooves (4), the groove body of the explosive bead sliding groove (4) is from the inlet end of the explosive bead horizontal discharge hopper to the outlet end, and the movable discharge hopper outlet baffle (7) is arranged at the outlet of the explosive bead horizontal discharge hopper (3).

7. The rapid prototyping stirring device for a blasting bead according to claim 6, characterized in that The discharge hopper outlet baffle (7) is arranged on the outlet baffle rotating member (8), the outlet baffle rotating member (8) is driven to rotate through the rotating cylinder (10); and the discharge hopper outlet baffle (7) is provided with a concave-convex part matched with the explosive bead sliding groove (4) on the contact edge of the discharge hopper outlet baffle (7) and the explosive bead horizontal discharge hopper outlet.

8. The rapid prototyping mixing device of shot according to claim 1, characterized in that The discharge hopper side plate (6) for preventing the explosive beads from escaping is arranged on both sides of the explosive bead horizontal discharge hopper (3).

9. The rapid prototyping mixing device of claim 1, wherein The number of the explosive bead horizontal discharge hoppers (3) is the same as the number of the stirring barrels (9), the outlet of the explosive bead horizontal discharge hopper (3) is located above the corresponding stirring barrel (9), and the stirring device driven by the stirring motor (14) is arranged in the stirring barrel (9).

10. The rapid prototyping mixing device of a blasting bead according to claim 1, characterized in that The multiple stirring barrels (9) are fixedly arranged around the vibration disc (2) through the stirring barrel fixing frame (12), the multiple explosive bead horizontal discharge hoppers (3) are fixedly arranged between the vibration disc (2) and the stirring barrel (9) through the discharge hopper fixing frame (13), and the explosive bead feeding port (1) is fixedly arranged above the vibration disc (2) through the explosive bead feeding port fixing frame (11).