Taurine bottling screw cap structure
By designing an automated conveyor belt and capping mechanism, and utilizing belt guides and capping wheels to automatically tighten the taurine lozenge bottle caps, the problem of low manual capping efficiency is solved, and efficient automated production is achieved.
Patent Information
- Application Number
- CN202422714291.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-07
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2034-11-07
AI Technical Summary
In the prior art, the capping process of taurine lozenges relies on manual operation, resulting in low efficiency and difficulty in meeting the needs of large-scale production.
An automated equipment including a conveyor belt, a bottle cap unloading mechanism and a capping mechanism was designed. The belt guide mechanism and the counter-rotating capping wheel were used to achieve automatic tightening of the bottle caps in a mechanized manner.
It improves the efficiency of capping, realizes efficient and labor-saving automated production, and is suitable for large-scale production.
Smart Images

Figure CN223315283U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a taurine bottling and capping structure. Background Art
[0002] Currently, with consumers' increasing attention to health and nutrition, taurine, an amino acid with multiple physiological functions, is increasingly being used in food, medicine, and other fields. For ease of consumption, taurine is currently manufactured in the form of lozenges. In the prior art, taurine lozenges must first be placed in an empty bottle, and then the bottle cap is screwed onto the bottle body via a threaded connection. Traditionally, this process involves manual capping, which is time-consuming and labor-intensive, resulting in low efficiency when producing large quantities. Utility Model Content
[0003] The present invention improves upon the aforementioned problems, specifically, the technical problem to be solved by the present invention is to provide a taurine bottle capping structure that is convenient to use and highly efficient. The present invention comprises a conveyor belt for conveying bottles, and a bottle cap unloading mechanism and a capping mechanism sequentially arranged along the conveying direction of the conveyor belt. The capping mechanism comprises symmetrically arranged belt guide mechanisms disposed front and rear, with a bottle position limiting conveying space formed between the two belt guide mechanisms. Capping wheels that can rotate in opposite directions are symmetrically arranged front and rear above the belt guide mechanisms, with a bottle cap rotation space formed between the front and rear capping wheels.
[0004] Furthermore, a motor box is provided above the capping wheel body, and a motor for driving each capping wheel body to rotate is provided in the motor box.
[0005] Furthermore, a groove is provided on the circumference of the rotary cover wheel body.
[0006] Furthermore, a bottle cap limiting rod is provided between the upper parts of the front and rear capping wheel bodies.
[0007] Furthermore, the bottle cap feeding mechanism includes an inclined bottle cap feeding chute, and an output end of the bottle cap feeding chute is provided with two bottle cap blocking rods, each of which is driven to extend and retract by a blocking rod cylinder.
[0008] Furthermore, a bottle cap limiting plate is provided on the side of the upper part of the output end of the bottle cap feeding chute.
[0009] Furthermore, the two front-to-back capping wheel bodies form a capping wheel body group, and there are multiple capping wheel body groups. The distance between each capping wheel body group decreases successively along the bottle conveying direction.
[0010] Furthermore, the belt guiding mechanism includes a belt box and two pulleys arranged inside the belt box, a belt is sleeved between the two pulleys, and the belt conveying surfaces of the two belt guiding mechanisms are arranged opposite to each other.
[0011] Furthermore, a connecting plate is provided above the rotary cover wheel body, and the upper part of the connecting plate is connected to the motor output shaft in the motor box.
[0012] Compared with the prior art, the utility model has the following beneficial effects: the device has a simple structure, a reasonable design, saves time and effort, is easy to use, and is conducive to improving work efficiency. The uncovered bottles filled with materials are transported to the position of the bottle cap unloading mechanism via the conveyor belt, and the opening of the bottle body corresponds to the output end of the bottle cap unloading chute of the bottle cap unloading mechanism. At this time, the bottle cap stopper rod shrinks and rises, and the bottle cap slides to the opening above the bottle body; the conveyor belt continues to drive the bottle body with the bottle cap to continue to move, and the bottle body moves to the bottle body limiting conveying space of the two belt guide mechanisms. While limiting the bottle body, it also drives the bottle body to continue to move. The bottle cap on the bottle body is in the bottle cap rotating space. Under the action of the two rotating capping wheels, the bottle cap is tightened on the bottle body to complete the capping work. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 This is a schematic diagram of the front structure of an embodiment of the utility model;
[0014] Figure 2 This is a side structural sectional view of an embodiment of the utility model;
[0015] Figure 3 It is a partial top view of an embodiment of the present utility model. DETAILED DESCRIPTION
[0016] The present invention will be further described in detail below with reference to the accompanying drawings and specific implementation methods.
[0017] Example: Figure 1-3 As shown, in this embodiment, a taurine bottling and capping structure is provided, including a conveyor belt 1 for conveying bottles 4 and a bottle cap unloading mechanism 2 and a capping mechanism 3 arranged in sequence along the conveying direction of the conveyor belt. The bottle cap unloading mechanism is used to convey and place bottle caps on the openings of the bottles, and the bottles are placed vertically for conveyance. The capping mechanism 3 includes belt guide mechanisms 31 symmetrically arranged at the front and rear ends, and a bottle body limiting conveying space is formed between the two belt guide mechanisms. Capping wheels 32 that can rotate in opposite directions are symmetrically arranged at the front and rear ends above the belt guide mechanisms, and a bottle cap rotation space is formed between the front and rear capping wheels.
[0018] The bottle body and the bottle cap are threadedly engaged with each other.
[0019] The above-mentioned conveyor belt is a prior art, and a belt conveyor mechanism, a chain conveyor mechanism, etc. can be used.
[0020] During operation, the uncovered bottle filled with materials is transported to the position of the bottle cap unloading mechanism via the conveyor belt, and the opening of the bottle body corresponds to the output end of the bottle cap unloading chute of the bottle cap unloading mechanism. At this time, the bottle cap blocking rod shrinks and rises, and the bottle cap 41 slides to the opening above the bottle body, and the conveyor belt stops at this time; the conveyor belt continues to drive the bottle body with the bottle cap to continue to move. As the conveyor belt drives the bottle body to move, the bottle cap is pressed at the bottle mouth position under the action of the bottle cap limiting plate, and then the bottle body moves to the bottle body limiting conveying space of the two belt guide mechanisms, while limiting the bottle body, it also drives the bottle body to continue to move. The bottle cap on the bottle body is in the bottle cap rotating space, and under the action of the two rotating capping wheel bodies, the bottle cap is tightened on the bottle body to complete the capping work.
[0021] In the embodiment of the present invention, a motor box 5 is provided above the capping wheel body 32 , and a motor for driving each capping wheel body to rotate is provided in the motor box.
[0022] In the embodiment of the present invention, a connecting plate 7 is provided above the rotary cover wheel body, and the upper part of the connecting plate is connected to the motor output shaft in the motor box.
[0023] In the embodiment of the present invention, in order to guide the bottle cap to rotate stably, a groove 321 is provided on the circumference of the capping wheel.
[0024] In the embodiment of the present utility model, a bottle cap limiting rod 8 is provided between the upper parts of the front and rear rotating cap wheels; the bottle cap limiting rod is connected to the motor box via a connecting piece 6, and the bottle cap limiting plate and the bottle cap limiting rod are at the same height; the bottle cap limiting plate 9 and the bottle cap limiting rod play a limiting role on the bottle cap, assisting in pressing the bottle cap against the opening of the bottle body to ensure that the bottle cap is in a flush position.
[0025] In the embodiment of the present utility model, the bottle cap discharging mechanism 2 includes a bottle cap discharging chute 21 arranged obliquely, and a bottle cap blocking rod 22 is provided at the output end of the bottle cap discharging chute. The bottle cap blocking rod is driven to extend and retract by a blocking rod cylinder 23.
[0026] There are two groups of bottle cap stop rods and stop rod cylinders, one group of bottle cap stop rods and stop rod cylinders is set at the outermost output port of the bottle cap feeding chute, and the other group of bottle cap stop rods and stop rod cylinders is set beside it. The outermost bottle caps to be output are between the two groups of bottle cap stop rods.
[0027] When the bottle body moves to below the output end of the bottle cap feeding chute, the stop rod cylinder located on the outside contracts, and the outermost bottle cap loses the limit of the outermost bottle cap stop rod and slides down to the opening above the bottle body through the output end of the bottle cap feeding chute; the outermost bottle cap stop rod extends and resets, at this time the bottle cap stop rod located on the inside rises, and the new bottle cap continues to slide down to the position of the bottle cap stop rod located on the outside and is limited, and then the bottle cap stop rod located on the inside extends to block the bottle caps beside the outermost bottle cap to prevent the bottle caps beside from sliding down when the outermost bottle cap loses the limit of the outermost stop rod and slides down.
[0028] In the embodiment of the present invention, a bottle cap limiting plate 9 is provided on the side of the upper part of the output end of the bottle cap feeding chute; the setting of the bottle cap limiting plate can play a role in limiting the vertical direction of the bottle cap on the bottle body.
[0029] In an embodiment of the present invention, two capping wheel bodies arranged in front and behind form a capping wheel body group, and multiple capping wheel body groups are provided. The spacing between each capping wheel body group decreases successively along the bottle conveying direction; by providing multiple groups of capping wheel bodies, the force driving the bottle cap to rotate along the circumferential direction of the bottle body is gradually increased, so that the bottle cap can be better screwed on the bottle body.
[0030] In an embodiment of the present invention, the belt guiding mechanism 31 includes a belt box 313 and two pulleys 311 arranged inside the belt box, a belt 312 is placed between the two pulleys, and the belt conveying surfaces of the two belt guiding mechanisms are arranged opposite to each other; one of the pulleys can be driven to rotate by a driving device, thereby driving the belt to move; the driving device can be a belt motor.
[0031] Unless otherwise stated, any numerical range disclosed for any technical solution disclosed in the present invention is a preferred numerical range. Those skilled in the art should understand that a preferred numerical range is merely a numerical range that provides a more significant or representative technical effect among a wide range of practicable values. Due to the large number of numerical values, it is impossible to enumerate them exhaustively. Therefore, only some numerical values are disclosed in the present invention to illustrate the technical solution of the present invention. Furthermore, the numerical values listed above should not be construed as limiting the scope of protection of the present invention.
[0032] If words such as "first" and "second" are used in this document to limit components, those skilled in the art should know that the use of "first" and "second" is only for the convenience of description to distinguish between components. Unless otherwise stated, the above words have no special meaning.
[0033] At the same time, if the above-mentioned utility model discloses or involves components or structural parts that are fixedly connected to each other, then, unless otherwise stated, the fixed connection can be understood as: a detachable fixed connection (for example, using bolts or screws to connect), and can also be understood as: a non-detachable fixed connection (for example, riveting, welding). Of course, the mutual fixed connection can also be replaced by an integrated structure (for example, manufactured by a casting process) (except where it is obviously impossible to use an integrated forming process).
[0034] In addition, unless otherwise stated, the terms used in any technical solution disclosed in the above-mentioned utility model to express positional relationships or shapes include states or shapes that are approximate, similar or close thereto.
[0035] Any component provided by the present invention can be assembled from multiple separate components, or can be a separate component manufactured by an integral forming process.
[0036] Finally, it should be noted that the above embodiments are only used to illustrate the technical solution of the utility model and not to limit it; although the utility model has been described in detail with reference to the preferred embodiments, ordinary technicians in the field should understand that the specific implementation methods of the utility model can still be modified or some technical features can be replaced by equivalents; without departing from the spirit of the technical solution of the utility model, they should all be included in the scope of the technical solution for which protection is requested in the utility model.
Claims
1. A taurine bottle screw capping structure, characterized by: It includes a conveyor belt for conveying bottles and a bottle cap unloading mechanism and a capping mechanism arranged in sequence along the conveying direction of the conveyor belt. The capping mechanism includes a belt guiding mechanism symmetrically arranged at the front and rear, and a bottle body limited conveying space is formed between the two belt guiding mechanisms. Capping wheels that can rotate in opposite directions are symmetrically arranged at the front and rear above the belt guiding mechanism, and a bottle cap rotation space is formed between the front and rear capping wheels.
2. The taurine bottle capping structure according to claim 1, characterized in that: A motor box is provided above the capping wheel body, and a motor for driving each capping wheel body to rotate is provided in the motor box.
3. The taurine bottle screw capping structure according to claim 1, characterized in that: A groove is provided on the circumference of the rotary cover wheel body.
4. The taurine bottle screw capping structure according to claim 1, characterized in that: A bottle cap limiting rod is arranged between the upper parts of the front and rear capping wheel bodies.
5. The taurine bottle screw capping structure according to claim 1, characterized in that: The bottle cap discharging mechanism comprises a tilted bottle cap discharging chute, an output end of which is provided with two bottle cap blocking rods, each of which is driven to extend and retract by a blocking rod cylinder.
6. The taurine bottle screw capping structure according to claim 5, characterized in that: A bottle cap limiting plate is provided on the side of the upper part of the output end of the bottle cap feeding chute.
7. The taurine bottle screw capping structure according to claim 1, characterized in that: The two front and rear capping wheel bodies form a capping wheel body group. There are multiple capping wheel body groups. The distance between each capping wheel body group decreases in sequence along the bottle conveying direction.
8. The taurine bottle screw capping structure according to claim 1, characterized in that: The belt guiding mechanism comprises a belt box and two pulleys arranged inside the belt box, a belt is sleeved between the two pulleys, and the belt conveying surfaces of the two belt guiding mechanisms are arranged opposite to each other.
9. The taurine bottle screw capping structure according to claim 2, characterized in that: A connecting plate is provided above the capping wheel body, and the upper portion of the connecting plate is connected to the motor output shaft in the motor box.