Rapid drying device for raw materials for producing compound leavening agent

By using electric heating tubes and hot air pumps for drying in the compound leavening agent production device, combined with stirring and cooling mechanisms, the problem of excessive temperature was solved, achieving rapid drying and cooling, which facilitates subsequent packaging.

CN224121585UActive Publication Date: 2026-04-14ZHENGZHOU RONGDA FOOD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHENGZHOU RONGDA FOOD
Filing Date
2025-04-09
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

The existing compound leavening agent production equipment has a problem with excessively high temperature, which affects the temperature of the equipment and makes it inconvenient for packaging.

Method used

The drying chamber is dried using electric heating elements, a hot air pump, and a blower. A stirring mechanism is used for stirring, and a cooling mechanism is used for cooling to prevent the temperature from getting too high. A cooling chamber, an exhaust pump, and a duct are used for cooling, and a stirring paddle is used for stirring to ensure that the temperature is suitable for packaging.

Benefits of technology

It enables rapid drying and cooling of compound leavening agents, avoiding inconvenience caused by excessively high temperatures and facilitating subsequent packaging operations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of compound leavening agent production, in particular to a quick drying device for raw materials for compound leavening agent production, which comprises a shell, an electric heating tube is mounted in the shell, a drying box is mounted in the shell, and a stirring mechanism is arranged in the drying box. According to the rapid drying device for the raw materials for production of the compound leavening agent, the interior of the drying box can be dried by arranging an electric heating pipe, a hot air pump and an air blowing pipe, the compound leavening agent can be stirred by arranging a first motor, a first rotating shaft and a first stirring paddle, accumulation of the compound leavening agent is avoided, and the drying efficiency of the raw materials for production of the compound leavening agent is improved. The drying time is long; and by arranging a cooling box, an air draft pump, an air guide pipe and an air blowing box, air blowing cooling can be conducted on the interior of the cooling box, then a compound leavening agent can be stirred through a third motor, a third rotating shaft and a second stirring paddle, and it is avoided that the compound leavening agent is stacked, and the cooling effect is affected.
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Description

Technical Field

[0001] This utility model relates to the field of compound leavening agent production technology, specifically a rapid drying device for raw materials used in the production of compound leavening agents. Background Technology

[0002] Compound leavening agents are highly efficient leavening agents with a strong dual-effect, generating gas and causing the product to expand during both dough (or batter) processing and product baking. In the flour-based food industry, they are used as rapid leavening agents and quality improvers in fried, baked, frozen steamed, and puffed foods.

[0003] However, current drying equipment for compound leavening agent production uses air blowing for drying, which is slow and the high temperature after drying makes it inconvenient to package the raw materials, causing inconvenience in use. Therefore, we propose a rapid drying device for raw materials used in compound leavening agent production. Utility Model Content

[0004] One of the technical problems this application aims to solve is that the current drying equipment for compound leavening agent production uses air blowing for drying. This method is slow, and after drying, the temperature is too high, making it inconvenient to package the product, which causes inconvenience in use.

[0005] To solve the above-mentioned technical problems, this application provides a rapid drying device for raw materials used in the production of compound leavening agents, including a shell, an electric heating tube installed inside the shell, a drying chamber installed inside the shell, a stirring mechanism installed inside the drying chamber, a first material guide pipe installed at the bottom of the shell, a material guide mechanism connected to one end of the first material guide pipe, and a cooling mechanism installed at one end of the material guide mechanism.

[0006] In some embodiments, the electric heating element is installed in the interlayer between the outer casing and the drying oven.

[0007] In some embodiments, a feed pipe is provided at the top of the drying chamber, and a gate valve is installed inside the first feed pipe.

[0008] In some embodiments, the stirring mechanism includes a first motor mounted on the top of the drying chamber, a first rotating shaft mounted on the output end of the first motor, first stirring paddles arranged at equal intervals on the surface of the first rotating shaft, a hot air pump disposed on the surface of the outer shell, a blower pipe mounted on the output end of the hot air pump, and the blower pipe extending into the interior of the drying chamber.

[0009] In some embodiments, the material guiding mechanism includes a material conveying cylinder installed at one end of a first material guiding tube, a second motor installed on one side of the material conveying cylinder, a second rotating shaft installed at the output end of the second motor, threaded blades installed on the surface of the second rotating shaft, and a second material guiding tube formed on the surface of the material conveying cylinder.

[0010] In some embodiments, the cooling mechanism includes a cooling box installed at one end of a second feed pipe, an exhaust pump at the top of the cooling box, an air duct at the output end of the exhaust pump, one end of the air duct extending into the interior of the cooling box and connected to an air blower, a third motor on the surface of the cooling box, a third rotating shaft at the output end of the third motor, a second stirring paddle on the surface of the third rotating shaft, and a discharge pipe on the surface of the cooling box.

[0011] This utility model has at least the following beneficial effects:

[0012] By setting up electric heating tubes, hot air pumps, and blower pipes, the inside of the drying chamber can be dried. By setting up a first motor, a first rotating shaft, and a first stirring paddle, the compound leavening agent can be stirred to avoid the accumulation of the compound leavening agent, which would result in a long drying time.

[0013] By setting up a cooling box with an exhaust pump, an air duct and a blower box, the inside of the cooling box can be cooled by blowing air. Then, by using a third motor, a third rotating shaft and a second stirring paddle, the compound leavening agent can be stirred to avoid the compound leavening agent from accumulating and affecting the cooling effect. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0015] Figure 2 This is a front view structural diagram of the present invention;

[0016] Figure 3 This is a three-dimensional cross-sectional structural diagram of the present invention;

[0017] Figure 4 This is a frontal cross-sectional view of the present invention.

[0018] In the diagram: 1. Outer shell; 2. Electric heating element; 3. Drying oven; 301. Feed pipe; 302. First guide pipe; 303. Gate valve; 4. Stirring mechanism; 401. First motor; 402. First rotating shaft; 403. First stirring paddle; 404. Hot air pump; 405. Air blowing pipe; 5. Material guiding mechanism; 501. Material transfer cylinder; 502. Second motor; 503. Second rotating shaft; 504. Threaded blade; 505. Second guide pipe; 6. Cooling mechanism; 601. Cooling box; 602. Exhaust pump; 603. Air blowing pipe; 604. Air blowing box; 605. Third motor; 606. Third rotating shaft; 607. Second stirring paddle; 608. Discharge pipe. Detailed Implementation

[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0020] Please see Figure 1-4 This utility model provides a technical solution: a rapid drying device for raw materials used in the production of compound leavening agents, including a shell 1, an electric heating tube 2 installed inside the shell 1, a drying box 3 installed inside the shell 1, a stirring mechanism 4 installed inside the drying box 3, a first guide pipe 302 installed at the bottom of the shell 1, a guide mechanism 5 connected to one end of the first guide pipe 302, and a cooling mechanism 6 installed at one end of the guide mechanism 5.

[0021] Specifically, the electric heating element 2 is installed in the interlayer between the outer shell 1 and the drying chamber 3. A feed pipe 301 is installed on the top of the drying chamber 3. A gate valve 303 is installed inside the first guide pipe 302. The stirring mechanism 4 includes a first motor 401, which is installed on the top of the drying chamber 3. A first rotating shaft 402 is installed at the output end of the first motor 401. First stirring paddles 403 are arranged at equal intervals on the surface of the first rotating shaft 402. A hot air pump 404 is installed on the surface of the outer shell 1. A blower is installed at the output end of the hot air pump 404. The air duct 405 extends into the interior of the drying chamber 3. The compound leavening agent to be dried is introduced into the drying chamber 3 through the feed pipe 301. It is heated by the electric heating tube 2. The hot air pump 404, in conjunction with the air duct 405, blows air into the interior of the drying chamber 3 to dry the compound leavening agent inside the drying chamber 3. The first motor 401 drives the first rotating shaft 402 to rotate, causing the first stirring paddle 403 to rotate and stir the compound leavening agent to prevent it from piling up and affecting the heating.

[0022] Specifically, the material guiding mechanism 5 includes a material conveying cylinder 501, which is installed at one end of the first material guiding pipe 302. A second motor 502 is installed on one side of the material conveying cylinder 501. A second rotating shaft 503 is installed at the output end of the second motor 502. A threaded blade 504 is installed on the surface of the second rotating shaft 503. A second material guiding pipe 505 is opened on the surface of the material conveying cylinder 501. When the gate valve 303 inside the first material guiding pipe 505 is opened, the dried compound leavening agent is introduced into the material conveying cylinder 501 through the first material guiding pipe 302. Then, the second rotating shaft 503 is driven to rotate by the second motor 502, causing the threaded blade 504 to rotate. The compound leavening agent is then introduced into the cooling box 601 through the second material guiding pipe 505.

[0023] Specifically, the cooling mechanism 6 includes a cooling box 601, which is installed at one end of the second guide pipe 505. A suction pump 602 is installed on the top of the cooling box 601, and a guide pipe 603 is installed at the output end of the suction pump 602. One end of the guide pipe 603 extends into the interior of the cooling box 601 and connects to a blower box 604. A third motor 605 is installed on the surface of the cooling box 601, and a third rotating shaft 606 is installed at the output end of the third motor 605. A second stirring paddle 607 is installed on the surface of the third rotating shaft 606. A discharge pipe 608 is installed on the surface of the cooling box 601, through which the material flows through the second guide pipe 505... 05. The compound leavening agent is introduced into the cooling box 601. The exhaust pump 602, together with the air duct 603 and the air blower 604, blows air into the cooling box 601 to cool the compound leavening agent inside. Then, the third motor 605 drives the third rotating shaft 606 to rotate, causing the second stirring paddle 607 to rotate and stir the compound leavening agent inside the cooling box 601 to prevent the compound leavening agent from accumulating. The compound leavening agent is then cooled down quickly by blowing air into it. Finally, it is discharged from the cooling box 601 through the discharge pipe 608 for packaging.

[0024] All electrical devices in this utility model are powered by an external power source;

[0025] Working principle and usage process: The compound leavening agent to be dried is introduced into the drying chamber 3 through the feed pipe 301. It is heated by the electric heating tube 2. The hot air pump 404, in conjunction with the air blowing pipe 405, blows air into the drying chamber 3 to dry the compound leavening agent inside the drying chamber 3. The first motor 401 drives the first rotating shaft 402 to rotate, causing the first stirring paddle 403 to rotate, stirring the compound leavening agent to prevent it from piling up and affecting the heating. After drying, the gate valve 303 inside the first feed pipe 505 is opened, and the dried compound leavening agent is introduced into the transfer cylinder 501 through the first feed pipe 302. Then, the second motor... 502 drives the second rotating shaft 503 to rotate, causing the threaded blade 504 to rotate. The compound leavening agent is introduced into the cooling box 601 through the second guide pipe 505. The exhaust pump 602, in conjunction with the air guide pipe 603 and the air box 604, blows air into the cooling box 601 to cool the compound leavening agent inside. Then, the third motor 605 drives the third rotating shaft 606 to rotate, causing the second stirring paddle 607 to rotate and stir the compound leavening agent inside the cooling box 601 to prevent the compound leavening agent from accumulating. The compound leavening agent is then cooled quickly by blowing air into it. Finally, it is discharged from the cooling box 601 through the discharge pipe 608 for packaging.

[0026] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0027] 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 rapid drying device for raw materials used in the production of compound leavening agents, comprising a shell (1), characterized in that: An electric heating tube (2) is installed inside the outer shell (1). A drying box (3) is installed inside the outer shell (1). A stirring mechanism (4) is installed inside the drying box (3). A first material guide pipe (302) is provided at the bottom of the outer shell (1). A material guide mechanism (5) is connected to one end of the first material guide pipe (302). A cooling mechanism (6) is installed at one end of the material guide mechanism (5).

2. The rapid drying device for raw materials used in the production of compound leavening agents according to claim 1, characterized in that: The electric heating tube (2) is installed in the interlayer between the outer shell (1) and the drying oven (3).

3. The rapid drying device for raw materials used in the production of compound leavening agents according to claim 1, characterized in that: The top of the drying box (3) is provided with a feed pipe (301), and a gate valve (303) is installed inside the first guide pipe (302).

4. The rapid drying device for raw materials used in the production of compound leavening agents according to claim 1, characterized in that: The stirring mechanism (4) includes a first motor (401), which is installed on the top of the drying chamber (3). A first rotating shaft (402) is installed at the output end of the first motor (401). A first stirring paddle (403) is installed on the surface of the first rotating shaft (402) at equal intervals. A hot air pump (404) is provided on the surface of the outer shell (1). A blower pipe (405) is installed at the output end of the hot air pump (404), and the blower pipe (405) extends into the interior of the drying chamber (3).

5. The rapid drying device for raw materials used in the production of compound leavening agents according to claim 1, characterized in that: The material guiding mechanism (5) includes a material conveying cylinder (501) installed at one end of a first material guiding pipe (302). A second motor (502) is installed on one side of the material conveying cylinder (501). A second rotating shaft (503) is installed at the output end of the second motor (502). A threaded blade (504) is installed on the surface of the second rotating shaft (503). A second material guiding pipe (505) is opened on the surface of the material conveying cylinder (501).

6. The rapid drying device for raw materials used in the production of compound leavening agents according to claim 5, characterized in that: The cooling mechanism (6) includes a cooling box (601) installed at one end of a second feed pipe (505). A blower pump (602) is installed on the top of the cooling box (601). A duct pipe (603) is installed at the output end of the blower pump (602). One end of the duct pipe (603) extends into the interior of the cooling box (601) and is connected to a blower box (604). A third motor (605) is installed on the surface of the cooling box (601). A third rotating shaft (606) is installed at the output end of the third motor (605). A second stirring paddle (607) is installed on the surface of the third rotating shaft (606). A discharge pipe (608) is installed on the surface of the cooling box (601).