Quantitative filling device for solid beverage

By designing a solid beverage quantitative filling device, including a transmission frame, storage hopper, quantitative cutting mechanism and transmission mechanism, the problems of troublesome operation, low efficiency and easy bonding and blockage of materials during the filling process of solid beverages are solved, and automated stirring and quantitative cutting are achieved, which improves work efficiency.

CN222973660UActive Publication Date: 2025-06-13YUNNAN GUDAO TRADITIONAL CHINESE MEDICINE TECH DEV CO LTD
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Patent Information

Application Number
CN202422314798.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-23
Publication Date
2025-06-13
Estimated Expiration
2034-09-23

AI Technical Summary

Technical Problem

The existing solid beverage filling process is troublesome and inconvenient, the work efficiency is low, and the materials stored in the filling machine cannot be stirred during the filling process, resulting in the materials being easily bonded or blocked.

Method used

A solid beverage quantitative filling device is designed, including a transmission frame, a storage hopper, a quantitative discharge mechanism and a transmission mechanism. The transmission mechanism stirs the materials in the storage hopper through the agitation shaft, and the quantitative discharge mechanism realizes automatic quantitative discharge through gear missing and return spring.

Benefits of technology

It realizes automatic stirring during the filling process, avoids material bonding and blockage, simplifies the operation process, and improves work efficiency and automation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of solid beverage filling devices, and provides a solid beverage quantitative filling device which comprises a quantitative discharging mechanism and a transmission mechanism, a motor on the transmission mechanism can drive a shaft rod to rotate through an output shaft of the motor, and when the shaft rod rotates to drive a stirring shaft to conduct stirring work, the stirring shaft is driven by the motor to conduct stirring work. The shaft rod can also drive the missing gear to revolve, and every time the missing gear revolves for a circle, the T-shaped rod can be pushed once through the gear block, so that the T-shaped rod moves leftwards to push the moving plate leftwards, the discharging barrel and the lower end opening of the storage hopper are gradually staggered, and the beverage particles in the discharging barrel fall into the receiving hopper. After beverage particles in the discharging barrel are discharged, the missing gear and the tooth block are staggered, the movable plate moves rightwards to reset under the action of the reset spring, the discharging barrel and the lower end opening of the storage hopper are aligned and communicated again, the next round of quantitative filling work continues, operation is easy and convenient, the automation degree is high, the working efficiency is greatly improved, and high use value is achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of solid beverage filling devices, in particular to a solid beverage quantitative filling device. Background Art

[0002] Solid beverages refer to solid products with sugar, milk and dairy products, eggs or egg products, fruit juice or edible plant extracts as the main raw materials, with appropriate amounts of auxiliary materials or food additives added, and the moisture content of every 100 grams of finished product is not more than 5 grams. They are in powder, granular or block form, such as bean crystal powder, malted milk, instant coffee, chrysanthemum crystal, etc., and are divided into protein type solid beverages, ordinary solid beverages and baked solid beverages.

[0003] After the production of fixed beverages is completed, the fixed beverage particles need to be packaged and stored in filling bottles or packaging bags. At present, when filling fixed beverage particles, manual weighing is generally used to store the fixed beverage particles of equal mass in filling bottles or packaging bags. This method is troublesome and inconvenient to operate, and the work efficiency is low. Alternatively, an electric filling machine is used for filling, but each time the filling work is performed, it generally needs to be opened and closed manually, which is inconvenient to operate. At the same time, the materials stored in the filling machine cannot be stirred during the filling process, which makes the materials inside the filling machine easy to stick or block the discharge port.

[0004] In view of this, the utility model provides a solid beverage quantitative filling device. Utility Model Content

[0005] The utility model provides a solid beverage quantitative filling device, which solves the problems in the related art that the quantitative filling of solid beverages is currently complicated and inconvenient to operate, has low work efficiency, and cannot stir the materials stored in the filling machine during filling.

[0006] The technical solution of the utility model is as follows: a solid beverage quantitative filling device, comprising: a mounting frame, a transmission frame fixedly mounted on the top of the mounting frame, and a storage hopper arranged on the upper side of the transmission frame for storing solid beverage particles, the upper port of the storage hopper is fixedly connected to a star frame, the center of the star frame is rotatably connected to a stirring shaft, the lower outer wall of the storage hopper is fixedly connected to a lap plate, and the lap plate is fixedly connected to the top of the transmission frame;

[0007] A quantitative unloading mechanism is arranged inside the transmission frame, and the quantitative unloading mechanism comprises a moving plate, a unloading barrel is arranged inside the moving plate, and the solid beverage particles stored in the storage hopper are received by the unloading barrel, a reinforcing plate is fixedly connected between the unloading barrel and the moving plate, and a cover plate is rotatably connected to the outer wall of the reinforcing plate for opening and closing the lower port of the unloading barrel, and a right-angle frame matched with the cover plate is fixedly connected to the bottom end of the transmission frame;

[0008] A receiving hopper is provided below the transmission frame for collecting solid beverage particles in the quantitative feeding mechanism. A support frame is fixedly connected between the receiving hopper and the right-angle frame;

[0009] A transmission mechanism is provided between the mounting frame and the star-shaped frame for rotating the stirring shaft and pushing the moving plate in the transmission frame.

[0010] Preferably, guiding chutes are provided between the opposing inner walls of the transmission frame, and the moving plate is slidably sleeved inside the two guiding chutes.

[0011] Preferably, the quantitative feeding mechanism includes two guiding rods respectively fixedly connected to the ends of the two guiding chutes. The guiding rods extend into the interior of the moving plate and are slidably connected thereto.

[0012] Preferably, the quantitative feeding mechanism further includes a return spring sleeved outside the guiding rod. The two ends of the return spring are respectively fixedly connected to the moving plate and the end of the guiding chute.

[0013] Preferably, the lower port of the storage hopper penetrates through the bottom of the star-shaped frame, and the lower port of the star-shaped frame abuts against the top end of the moving plate.

[0014] Preferably, the transmission mechanism includes a frame fixedly connected to the side wall of the mounting frame. A motor is fixedly installed at the bottom of the frame. A shaft rod is fixedly connected to the end of the output shaft of the motor. A missing gear is fixedly sleeved on the outer wall of the shaft rod.

[0015] Preferably, the transmission mechanism includes a T-shaped rod slidably sleeved inside the transmission frame. Tooth blocks are distributed on one side of the T-shaped rod and are engaged with the missing gear. One end of the T-shaped rod is fixedly connected to the moving plate.

[0016] Preferably, the transmission mechanism further includes two sprockets and a chain drivingly connected between the two sprockets. One of the sprockets is fixedly connected to the top end of the shaft rod, and the other sprocket is fixedly connected to the top end of the stirring shaft. A bracket is rotatably sleeved on the outer wall of the shaft rod, and the bracket is fixedly connected to the outer wall of the storage hopper.

[0017] The working principle and beneficial effects of the present utility model are as follows:

[0018] In the utility model, a quantitative feeding mechanism is arranged inside the transmission frame, a star-shaped frame is fixedly connected to the upper end of the storage hopper, a stirring shaft is rotatably connected at the center of the star-shaped frame, a receiving hopper is arranged below the transmission frame, a transmission mechanism is arranged between the mounting frame and the star-shaped frame, and when working, the motor on the transmission mechanism can drive the shaft rod to rotate through its output shaft, and under the action of the chain and two sprockets, the sprocket drives the stirring shaft to rotate inside the storage hopper, and the beverage particles inside the storage hopper can be stirred through the stirring shaft, so as to avoid adhesion between the beverage particles inside the storage hopper and to avoid clogging of the beverage particles at the bottom of the storage hopper;

[0019] In the utility model, while the shaft rotates to drive the stirring shaft to perform stirring work, the shaft can also drive the missing gear to revolve. Each time the missing gear revolves, it can push the T-bar once through the tooth block, so that the T-bar moves leftward to push the moving plate leftward, so that the reset spring stretches, so that the lower barrel and the lower port of the storage hopper are gradually staggered. When the cover plate slides away from the upper end of the right-angle frame horizontal plate, the beverage particles stored inside the lower barrel push the cover plate open, so that the beverage particles inside the lower barrel fall into the receiving hopper, and the quantitative beverage particles are sent to the fixed beverage bottle through the receiving hopper. After the beverage particles inside the lower barrel are discharged, the missing gear and the tooth block are staggered. Under the action of the reset spring, the moving plate moves rightward and resets, so that the lower barrel and the lower port of the storage hopper are aligned and connected again, and the next round of quantitative filling work is continued. The operation is simple and convenient, the degree of automation is high, the work efficiency is greatly improved, and it has a high use value. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] The utility model is further described in detail below in conjunction with the accompanying drawings and specific implementation methods.

[0021] Figure 1 This is a three-dimensional structural diagram of a solid beverage quantitative filling device proposed by the utility model;

[0022] Figure 2 This is a schematic diagram of the transmission mechanism structure proposed by the utility model;

[0023] Figure 3 This is a partial cross-sectional structural diagram of the storage hopper and transmission frame proposed in the utility model;

[0024] Figure 4 for Figure 3 The enlarged structural diagram at A in the middle;

[0025] In the figure: 1. Transmission mechanism; 101. Frame; 102. Motor; 103. Missing gear; 104. Tooth block; 105. T-shaped rod; 106. Bracket; 107. Shaft rod; 108. Chain; 109. Sprocket; 2. Mounting frame; 3. Stirring shaft; 4. Storage hopper; 401. Star-shaped frame; 402. Lapping plate; 5. Transmission frame; 501. Guide slideway; 6. Quantitative feeding mechanism; 601. Moving plate; 602. Feeding cylinder; 603. Cover plate; 604. Reinforcing plate; 605. Guide rod; 606. Return spring; 7. Receiving hopper; 8. Support frame; 9. Right-angle frame. Specific embodiments

[0026] Next, in combination with the embodiments of the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts fall within the scope of protection of the present invention.

[0027] Please refer to Figure 1 , Figure 3 and Figure 4 , a solid beverage quantitative filling device, comprising: a mounting frame 2, a transmission frame 5 fixedly installed at the top of the mounting frame 2, and a storage hopper 4 provided above the transmission frame 5 for storing solid beverage particles. A star-shaped frame 401 is fixedly connected to the upper port of the storage hopper 4. A stirring shaft 3 is rotatably connected to the center of the star-shaped frame 401. A lapping plate 402 is fixedly connected to the outer wall of the lower side of the storage hopper 4, and the lapping plate 402 is fixedly connected to the top of the transmission frame 5.

[0028] A quantitative feeding mechanism 6 is arranged inside the transmission frame 5. The quantitative feeding mechanism 6 includes a moving plate 601. A feeding cylinder 602 is arranged inside the moving plate 601. The solid beverage particles stored in the storage hopper 4 are received through the feeding cylinder 602. A reinforcing plate 604 is fixedly connected between the feeding cylinder 602 and the moving plate 601. A cover plate 603 is rotatably connected to the outer wall of the reinforcing plate 604 for opening and closing the lower port of the feeding cylinder 602. A right-angle frame 9 matched with the cover plate 603 is fixedly connected to the bottom end of the transmission frame 5.

[0029] Furthermore, guide slideways 501 are opened between the opposite inner walls of the transmission frame 5, and the moving plate 601 is slidably sleeved inside the two guide slideways 501.

[0030] Furthermore, the quantitative feeding mechanism 6 includes two guide rods 605 respectively fixed to the ends of the two guide slideways 501, and the guide rods 605 extend into the interior of the movable plate 601 and are slidably connected thereto. The quantitative feeding mechanism 6 also includes a return spring 606 sleeved on the outer side of the guide rods 605, and the two ends of the return spring 606 are respectively fixed to the movable plate 601 and the ends of the guide slideway 501.

[0031] It should be noted that the lower end of the storage hopper 4 passes through the bottom of the star frame 401, and the lower end of the star frame 401 conflicts with the top of the moving plate 601. A receiving hopper 7 is provided below the transmission frame 5 for collecting solid beverage particles in the quantitative feeding mechanism 6, and a support frame 8 is fixedly connected between the receiving hopper 7 and the right-angle frame 9.

[0032] Specifically, when working, solid beverage particles are put into the storage hopper 4 for storage in advance, and under the action of gravity, the beverage particles in the storage hopper 4 fall to the lower port of the storage hopper 4. Initially, the return spring 606 is in a natural state, and the lower barrel 602 is located directly below the storage hopper 4. At this time, the lower barrel 602 is connected to the lower port of the storage hopper 4, so that the material in the storage hopper 4 can fall into the lower barrel 602, and at this time the lower port of the lower barrel 602 is blocked by the cover plate 603, and the bottom end of the cover plate 603 abuts against the upper end wall of the horizontal plate of the right-angle frame 9.

[0033] When the movable plate 601 is pushed to the left, the return spring 606 can be stretched, so that the lower barrel 602 and the lower port of the storage hopper 4 are gradually offset. When the cover plate 603 slides away from the upper end of the horizontal plate of the right-angle frame 9, the beverage particles stored in the lower barrel 602 push the cover plate 603 open, so that the beverage particles in the lower barrel 602 fall into the receiving hopper 7, and the quantitative beverage particles are delivered to the fixed beverage bottle through the receiving hopper 7.

[0034] See also Figure 1 , Figure 2 , Figure 3 as well as Figure 4 A transmission mechanism 1 is provided between the mounting frame 2 and the star frame 401, for rotating the stirring shaft 3 and pushing the moving plate 601 in the transmission frame 5. The transmission mechanism 1 comprises a frame 101 fixedly connected to the side wall of the mounting frame 2, a motor 102 is fixedly installed at the bottom of the frame 101, a shaft 107 is fixedly connected to the end of the output shaft of the motor 102, and a gear 103 is fixedly sleeved on the outer wall of the shaft 107.

[0035] Furthermore, the transmission mechanism 1 includes a T-shaped rod 105 slidably sleeved inside the transmission frame 5 , a tooth block 104 matching with the missing gear 103 is distributed on one side of the T-shaped rod 105 , and one end of the T-shaped rod 105 is fixedly connected to the moving plate 601 .

[0036] Further, the transmission mechanism 1 further includes two sprockets 109 and a chain 108 drivingly connected between the two sprockets 109. One of the sprockets 109 is fixedly connected to the top end of the shaft rod 107, and the other sprocket 109 is fixedly connected to the top end of the stirring shaft 3. A bracket 106 is rotatably sleeved on the outer wall of the shaft rod 107, and the bracket 106 is fixedly connected to the outer wall of the storage hopper 4.

[0037] Specifically, during quantitative filling, the power is turned on and the motor 102 is started. The motor 102 drives the shaft rod 107 to rotate through its output shaft. The shaft rod 107 drives one of the sprockets 109 to rotate. Under the action of the chain 108, the two sprockets 109 rotate synchronously. The sprocket 109 drives the stirring shaft 3 to rotate inside the storage hopper 4, and the beverage particles inside the storage hopper 4 are stirred by the stirring shaft 3, so as to prevent the beverage particles inside the storage hopper 4 from sticking to each other and prevent the beverage particles from clogging at the bottom of the storage hopper 4.

[0038] While the shaft rod 107 rotates, it can drive the missing gear 103 to revolve. Every time the missing gear 103 revolves one week, it can push the T-shaped rod 105 once through the tooth block 104, so that the T-shaped rod 105 moves leftward to push the moving plate 601 leftward, and the return spring 606 is stretched. After the beverage particles in the blanking cylinder 602 are discharged, the missing gear 103 and the tooth block 104 are staggered. Under the action of the return spring 606, the moving plate 601 moves rightward to reset, so that the blanking cylinder 602 is aligned and communicated with the lower port of the storage hopper 4 again.

[0039] Working principle and usage process: When working, the solid beverage particles are pre-put into the storage hopper 4 for storage. Under the action of gravity, the beverage particles in the storage hopper 4 fall to the lower port of the storage hopper 4. Initially, the return spring 606 is in a natural state, and the blanking cylinder 602 is located directly below the storage hopper 4. At this time, the blanking cylinder 602 is communicated with the lower port of the storage hopper 4, so that the materials in the storage hopper 4 can fall into the blanking cylinder 602. At this time, the lower port of the blanking cylinder 602 is blocked by the cover plate 603, and the bottom end of the cover plate 603 abuts against the upper end wall of the cross plate of the right-angle frame 9.

[0040] Specifically, during quantitative filling, the power is turned on and the motor 102 is started. The motor 102 drives the shaft rod 107 to rotate through its output shaft. The shaft rod 107 drives one of the sprockets 109 to rotate. Under the action of the chain 108, the two sprockets 109 rotate synchronously. The sprocket 109 drives the stirring shaft 3 to rotate inside the storage hopper 4, and the beverage particles inside the storage hopper 4 are stirred by the stirring shaft 3, so as to prevent the beverage particles inside the storage hopper 4 from sticking to each other and prevent the beverage particles from clogging at the bottom of the storage hopper 4.

[0041] While the shaft rod 107 rotates, it can drive the missing gear 103 to revolve. Every time the missing gear 103 makes one revolution, it can push the T-shaped rod 105 once through the tooth block 104, causing the T-shaped rod 105 to move leftward and push the moving plate 601 to the left, stretching the return spring 606, and gradually staggering the lower port of the blanking cylinder 602 from the lower port of the storage hopper 4. When the cover plate 603 slides away from the upper end of the cross plate of the right-angle frame 9, the beverage particles stored inside the blanking cylinder 602 push the cover plate 603 to turn away, causing the beverage particles inside the blanking cylinder 602 to fall into the receiving hopper 7. The receiving hopper 7 sends a fixed quantity of beverage particles into the fixed beverage bottle. After the beverage particles inside the blanking cylinder 602 are discharged, the missing gear 103 is staggered from the tooth block 104. Under the action of the return spring 606, the moving plate 601 moves rightward to reset, making the lower port of the blanking cylinder 602 and the lower port of the storage hopper 4 align and communicate again to continue the next round of quantitative filling work.

[0042] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A solid beverage quantitative filling device, comprising: A mounting frame (2), a transmission frame (5) fixedly mounted on the top of the mounting frame (2), and a storage hopper (4) arranged on the upper side of the transmission frame (5) for storing solid beverage particles, characterized in that a star frame (401) is fixedly connected to the upper end of the storage hopper (4), a stirring shaft (3) is rotatably connected to the center of the star frame (401), a lap plate (402) is fixedly connected to the lower outer wall of the storage hopper (4), and the lap plate (402) is fixedly connected to the top of the transmission frame (5); A quantitative unloading mechanism (6) is arranged on the inner side of the transmission frame (5), and the quantitative unloading mechanism (6) comprises a movable plate (601), a unloading barrel (602) is arranged inside the movable plate (601), and the solid beverage particles stored in the storage hopper (4) are received by the unloading barrel (602), a reinforcing plate (604) is fixedly connected between the unloading barrel (602) and the movable plate (601), and a cover plate (603) is rotatably connected to the outer wall of the reinforcing plate (604) for opening and closing the lower port of the unloading barrel (602), and a right-angle frame (9) matched with the cover plate (603) is fixedly connected to the bottom end of the transmission frame (5); A material receiving hopper (7) is provided below the transmission frame (5) for collecting solid beverage particles in the quantitative feeding mechanism (6); a support frame (8) is fixedly connected between the material receiving hopper (7) and the right-angle frame (9); A transmission mechanism (1) is provided between the mounting frame (2) and the star frame (401), and is used to rotate the stirring shaft (3) and to push the moving plate (601) in the transmission frame (5).

2. A solid beverage quantitative filling device according to claim 1, characterized in that: Guide slideways (501) are provided between the opposing inner walls of the transmission frame (5), and the movable plate (601) is slidably sleeved on the inner sides of the two guide slideways (501).

3. A solid beverage quantitative filling device according to claim 2, characterized in that: The quantitative unloading mechanism (6) comprises two guide rods (605) respectively fixed to the ends of the two guide slideways (501), and the guide rods (605) extend into the interior of the movable plate (601) and are slidably connected thereto.

4. A solid beverage quantitative filling device according to claim 3, characterized in that: The quantitative unloading mechanism (6) further comprises a return spring (606) sleeved on the outside of the guide rod (605), and two ends of the return spring (606) are respectively fixedly connected to the end of the moving plate (601) and the guide slideway (501).

5. A solid beverage quantitative filling device according to claim 4, characterized in that: The lower port of the storage hopper (4) passes through the bottom of the star-shaped frame (401), and the lower port of the star-shaped frame (401) abuts against the top of the movable plate (601).

6. A solid beverage quantitative filling device according to claim 1, characterized in that: The transmission mechanism (1) comprises a frame (101) fixedly connected to a side wall of the mounting frame (2); a motor (102) is fixedly mounted on the bottom of the frame (101); an output shaft end of the motor (102) is fixedly connected to a shaft (107); and a missing gear (103) is fixedly sleeved on an outer wall of the shaft (107).

7. A solid beverage quantitative filling device according to claim 6, characterized in that: The transmission mechanism (1) comprises a T-shaped rod (105) slidably sleeved inside the transmission frame (5), a tooth block (104) matching the missing gear (103) being distributed on one side of the T-shaped rod (105), and one end of the T-shaped rod (105) being fixedly connected to the moving plate (601).

8. A solid beverage quantitative filling device according to claim 7, characterized in that: The transmission mechanism (1) further comprises two sprocket wheels (109) and a chain (108) drivingly connected between the two sprocket wheels (109), wherein one of the sprocket wheels (109) is fixedly connected to the top end of the shaft rod (107), and the other sprocket wheel (109) is fixedly connected to the top end of the stirring shaft (3), and a bracket (106) is rotatably sleeved on the outer wall of the shaft rod (107), and the bracket (106) is fixedly connected to the outer wall of the storage hopper (4).

Citation Information

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