Subpackaging dustproof system for solid beverage

By arranging elastic and retractable dust covers on the outer shell of the discharge nozzle and the hopper, the problem of dust pollution during the packaging process of granular solid beverages is solved, and the maintenance of a clean production environment is achieved.

CN223355954UActive Publication Date: 2025-09-19ZHONGSHAN MEITAI HEALTH PROD CO LTD
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Patent Information

Application Number
CN202422612355.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-28
Publication Date
2025-09-19
Estimated Expiration
2034-10-28

AI Technical Summary

Technical Problem

Granular solid beverages easily raise dust during the discharge process from the hopper, polluting the production environment. Existing technologies are difficult to effectively prevent dust from splashing.

Method used

An elastically retractable dust cover is installed outside the discharge nozzle and the hopper. The corrugated telescopic hose structure is used to synchronously retract to cover the space between the discharge nozzle and the hopper to prevent dust from spreading.

Benefits of technology

It effectively prevents dust splashing, keeps the production environment clean, and improves the hygiene management level of the filling workshop.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a split charging dustproof system for solid beverages. The split charging dustproof system comprises a quantitative discharging mechanism, a material distributing mechanism and a material distributing driving mechanism. The discharging mechanism is located below the quantitative discharging mechanism. The material distribution driving mechanism is connected with the material distribution mechanism and drives the material distribution mechanism to move up and down relative to the quantitative discharging mechanism so as to be switched between a material receiving position and a discharging position; the quantitative discharging mechanism comprises a discharging nozzle; the material distributing mechanism comprises a hopper; the hopper is located below the discharging nozzle, and the discharging nozzle and the hopper are sleeved with a dust cover capable of elastically stretching out and drawing back so as to cover the space between the discharging nozzle and the hopper. The dustproof cover can stretch out and draw back synchronously when the hopper moves up and down, the space between the discharging nozzle and the hopper is covered all the time, dust is prevented from splashing and diffusing in the granular solid beverage subpackaging process, and the clean production environment can be kept.
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Description

Technical Field

[0001] The utility model relates to a dust-proof system for packaging solid beverages. Background Art

[0002] Solid beverages are solid products made from food ingredients and additives in powdered, granular, or block form, intended for mixing or brewing. Granular solid beverages are typically packaged in a hopper. Because granules can easily get stuck in the hopper's outlet, a hopper that moves upward and downward is required to facilitate the granules' drop and delivery into packaging bags. However, the hopper's inlet is typically open, and the upward and downward movement of the hopper can easily cause dust to rise from the granules, polluting the surrounding environment and compromising hygiene management in the filling workshop. Utility Model Content

[0003] The purpose of the utility model is to propose a dust-proof system for dispensing and packaging solid beverages, comprising a quantitative discharging mechanism, a dividing mechanism and a dividing drive mechanism; the quantitative discharging mechanism is used to quantitatively output granular solid beverages; the discharging mechanism is located below the quantitative discharging mechanism, and is used to receive the granular solid beverage output by the quantitative discharging mechanism; the dividing drive mechanism is connected to the dividing mechanism and drives the dividing mechanism to move up and down relative to the quantitative discharging mechanism to switch between a material receiving position and a material discharging position; the quantitative discharging mechanism includes a discharging nozzle; the dividing mechanism includes a hopper; the hopper is located below the discharging nozzle, and the discharging nozzle and the hopper outer shell are provided with an elastically retractable dust cover to cover the space between the discharging nozzle and the hopper; the lower end of the hopper is fixedly connected to a discharging pipe, and the discharging pipe is used to be inserted into a packaging bag to transport the granular solid beverage into the packaging bag.

[0004] The utility model provides an elastically retractable dust cover outside the discharge nozzle and the hopper, which can be retracted and expanded synchronously during the up and down movement of the hopper, always covering the space between the discharge nozzle and the hopper, preventing dust from splashing and spreading during the packaging of granular solid beverages, and is conducive to maintaining a clean production environment. BRIEF DESCRIPTION OF THE DRAWINGS

[0005] Figure 1 This is a structural schematic diagram of the material dividing drive mechanism of the present utility model in the material receiving position.

[0006] Figure 2 This is a structural exploded view of the present invention.

[0007] Figure 3 This is a structural schematic diagram of the material distribution drive mechanism of the present invention in the material discharging position. DETAILED DESCRIPTION

[0008] The present application is further described below with reference to the accompanying drawings:

[0009] See attached Figure 1-3 A dust-proof system for dispensing and packaging solid beverages includes a quantitative discharging mechanism 1, a dispensing mechanism 2 and a dispensing drive mechanism 3; the quantitative discharging mechanism 1 is used to quantitatively output granular solid beverages; the discharging mechanism 1 is located below the quantitative discharging mechanism 1 and is used to receive the granular solid beverage output by the quantitative discharging mechanism 1; the dispensing drive mechanism 3 is connected to the dispensing mechanism 2 and drives the dispensing mechanism 2 to move up and down relative to the quantitative discharging mechanism 1 to switch between a material receiving position and a material discharging position.

[0010] The quantitative discharging mechanism 1 includes a plurality of discharging nozzles 11 , and the discharging nozzles 11 are evenly spaced apart in the horizontal direction.

[0011] The material distribution mechanism 2 includes a movable frame 23 and a plurality of hoppers 21 fixed on the movable frame 23; the number and position of the hoppers 21 correspond to the discharge nozzle 11; the movable frame 23 is connected to the material distribution drive mechanism 3 and is driven by the material distribution drive mechanism 3 to move up and down.

[0012] The material distribution driving mechanism 3 is an existing lifting driving mechanism such as a cylinder, an oil cylinder, etc.

[0013] Each hopper 21 is located below each discharge nozzle 11 , and each discharge nozzle 11 and the hopper 21 below it are respectively provided with an elastically retractable dust cover 5 to cover the space between the discharge nozzle 11 and the hopper 21 .

[0014] A discharge pipe 22 is fixedly connected to the lower end of each hopper 21 . The discharge pipe 22 is used to be inserted into the packaging bag 4 to transport the granular solid beverage into the packaging bag 4 .

[0015] The dust cover 5 is a bellows telescopic hose structure. This type of telescopic structure is a prior art, and the telescopic hose is telescopic using a bellows expansion joint, and the processing technology is mature and easy to implement.

[0016] One end of the dust cover 5 is fixedly connected to the discharge nozzle 11, and the other end is fixedly connected to the hopper 21. In this embodiment, the dust cover 5 is made of silicone. The two ends of the dust cover 5 are respectively placed on the discharge nozzle 11 and the hopper 21 and tightened by a clamp (not shown in the figure).

[0017] In this embodiment, the upper portion of the hopper 21 is in the shape of a hollow cylinder, and the lower portion of the hopper 21 is in the shape of a hollow frustum.

[0018] The upper end of the hopper 21 is provided with a feed port 211; when the material distribution mechanism 2 is in the material receiving position, the discharge nozzle 11 enters the hopper 21 through the feed port 211 of the hopper 21; when the material distribution mechanism 2 is in the material discharging position, the discharge nozzle 11 is separated from the hopper 21.

[0019] During use, the dividing mechanism 2 is in the material receiving position, the quantitative discharging mechanism 1 outputs a set amount of granular solid beverage from the discharge nozzle 11 into each hopper 21, and the dividing mechanism 2 moves downward to switch to the material discharging position, and the granular solid beverage in the hopper 21 is input into the packaging bag 4 along the discharge pipe 22; then the dividing mechanism 2 moves upward to the material receiving position and enters the next round of packaging operation.

[0020] In this technical solution, an elastically retractable dust cover 5 is installed outside the discharge nozzle 11 and the hopper 21, which can be synchronously retracted and retracted during the up and down movement of the hopper 21, always covering the space between the discharge nozzle 11 and the hopper 21, preventing dust from splashing and spreading during the packaging of granular solid beverages, which is conducive to maintaining a clean production environment.

[0021] The above preferred embodiments should be regarded as examples of the implementation methods of the present application scheme. Any technical deductions, replacements, improvements, etc. that are identical or similar to the present application scheme or made based on it should be regarded as within the scope of protection of this patent.

Claims

1. A dust-proof system for dispensing solid beverages, comprising a quantitative discharging mechanism, a dispensing mechanism, and a dispensing drive mechanism; the quantitative discharging mechanism is configured to quantitatively discharge granular solid beverages; the dispensing mechanism is located below the quantitative discharging mechanism and is configured to receive the granular solid beverages discharged by the quantitative discharging mechanism; the dispensing drive mechanism is connected to the dispensing mechanism and drives the dispensing mechanism to move up and down relative to the quantitative dispensing mechanism to switch between a material receiving position and a material discharging position; and is characterized in that: The quantitative discharging mechanism includes a discharging nozzle; The material distribution mechanism includes a hopper; The hopper is located below the discharge nozzle, and the discharge nozzle and the hopper outer shell are provided with an elastically retractable dust cover to cover the space between the discharge nozzle and the hopper; A discharge pipe is fixedly connected to the lower end of the hopper, and the discharge pipe is used to be inserted into the packaging bag to transport the granular solid beverage into the packaging bag.

2. The dust-proof system for dispensing solid beverages according to claim 1, characterized in that: The dust cover is a corrugated telescopic hose structure; one end of the dust cover is fixedly connected to the discharge nozzle, and the other end of the dust cover is fixedly connected to the hopper.

3. The dust-proof system for dispensing solid beverages according to claim 2, characterized in that: The upper end of the hopper is provided with a feed port; When the material dispensing mechanism is in the material receiving position, the discharge nozzle enters the hopper through the feed port of the hopper; The discharge nozzle is separated from the hopper when the material distribution mechanism is in the material discharge position.

4. The dust-proof system for dispensing solid beverages according to claim 3, characterized in that: There are multiple discharge nozzles, and each discharge nozzle is evenly spaced along the horizontal direction; The number and position of the hoppers correspond to the discharge nozzles; The material distribution mechanism also includes a movable frame, and each hopper is fixed on the movable frame; The movable frame is connected to the material distribution driving mechanism and is driven by the material distribution driving mechanism to move up and down.

Citation Information

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