Bagged tea vibration collator
By designing a vibration finisher to vibrate, shape and compact the tea bags, the problem of uneven appearance of the tea bags is solved, and the packaging speed and aesthetics are improved.
Patent Information
- Application Number
- CN202423029105.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-09
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2034-12-09
AI Technical Summary
In the conventional tea bag packaging process, the tea bags have an uneven appearance, which affects the aesthetics and packaging speed.
A vibration sorter is designed, which includes a vibration base, a bag sorting frame, a compacting structure and a vibration structure. The vibration hammer and the compacting plate are used to vibrate and compact the tea leaves to form a quadrilateral structure, which is then combined with vacuum treatment.
The tea bags are made smooth and beautiful, the packaging speed is improved, and the exquisite effect after vacuuming is achieved.
Smart Images

Figure CN223420967U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of bagged tea packaging, in particular to a bagged tea vibration organizer. Background Art
[0002] Traditional packaging methods for tea are usually kraft paper bags, polyethylene bags, polypropylene bags, and iron cans. To prevent the tea from being loose and bulky, which is not conducive to transportation, the tea in the bag is usually vacuum-packed. Tea is usually loose and bulky, which is not conducive to transportation. Therefore, after the existing tea is packaged and sealed, the tea is vacuum-packed to facilitate transportation and prevent the tea from coming into contact with the outside air and environment, which may affect its quality and absorb odors. The existing tea bag packaging process has the following shortcomings:
[0003] In the prior art, there is no structure designed to reshape the tea bag first. Instead, the air in the tea bag is completely sucked out directly by using a vacuum structure and vacuum packaging. As a result, the surface of the tea bag is uneven, and the contents of the tea bag are not flat, resulting in rounded corners of the tea bag, which affects the flatness and aesthetics of the tea bag. Utility Model Content
[0004] The technical problem to be solved by the utility model is to address the defects of the existing technology and provide a vibration organizer that can vibrate and shape bagged tea into a quadrilateral, which is conducive to flattening and compacting the tea in the packaging bag, facilitating vacuuming of the tea, and helping to increase the packaging speed of bagged tea, and can make the vacuumed bag packaging exquisite and beautiful.
[0005] In order to solve the above technical problems, the present invention adopts the following technical solutions:
[0006] A vibrating organizer for bagged tea leaves comprises a vibrating base and a bag sorting frame mounted on the upper end of the vibrating base, several groups of compacting structures, and four groups of vibrating structures. The several groups of compacting structures are respectively mounted on the outer periphery of the bag sorting frame, and the four groups of vibrating structures are respectively mounted on the four sides of the bag sorting frame. Each group of compacting structures is located on one side of the vibrating structure. Each group of vibrating structures comprises a vibrating hammer, which is fixed on an outer side wall of the bag sorting frame.
[0007] Further, each group of compaction structure comprises a fixed plate, a compaction plate, four groups of guide rod assemblies, two groups of compaction telescopic cylinders, the compaction plate is installed on the upper end surface of the vibration base and located outside the bag arranging frame, the fixed plate is installed on one side of the compaction plate, a space is formed between the fixed plate and the compaction plate, two groups of compaction telescopic cylinders are distributed at the space between the fixed plate and the compaction plate, the piston rods of the two groups of compaction telescopic cylinders are fixed to the compaction plate outside the bag arranging frame, and four groups of guide rod assemblies are distributed at four corners of the fixed plate and sequentially pass through the fixed plate, the compaction plate and are fixed to the compaction plate in sequence from outside to inside.
[0008] Further, each group of vibration structure comprises a plurality of shock-absorbing pads, the plurality of shock-absorbing pads are fixed between the compaction plate of the compaction structure and the outer side wall of the bag arranging frame, and the plurality of shock-absorbing pads are distributed at intervals along the edge of the outer side wall of the bag arranging frame and the compaction plate.
[0009] Further, each group of guide rod assembly comprises a linear motion bearing and a guide shaft, the guide shaft is installed at the center hole of the linear motion bearing, one end of the guide shaft is installed on the fixed plate through the linear motion bearing, and the other end of the guide shaft sequentially passes through the fixed plate.
[0010] Further, the bag arranging frame comprises a front pressing plate, a rear pressing plate, a left pressing plate and a right pressing plate, and the left pressing plate, the front pressing plate, the right pressing plate and the rear pressing plate are sequentially connected to form a quadrilateral bag arranging frame.
[0011] Compared with the prior art, the utility model has the advantages of the following beneficial effects:
[0012] The utility model discloses a vibration arrangement device, which comprises a vibration base, a bag arranging frame installed on the upper end of the vibration base, a plurality of groups of compaction structures and four groups of vibration structures, the plurality of groups of compaction structures are respectively installed on the outer periphery of the bag arranging frame, the four groups of vibration structures are respectively installed on four sides of the bag arranging frame, each group of compaction structure is located on one side of the vibration structure, each group of vibration structure comprises a vibration hammer, and the vibration hammer is fixed to one outer side wall of the bag arranging frame. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is an overall structural schematic view of the utility model vibration arrangement device.
[0014] Figure 2 It is a relationship schematic view of the utility model bag arranging frame and the plurality of groups of compaction structures and the four groups of vibration structures.
[0015] Figure 3This is a schematic diagram of the relationship between the bag sorting frame and the four sets of vibration structures of the utility model;
[0016] Figure 4 This is a schematic diagram of the relationship between the compaction structure and the vibration structure of the utility model.
[0017] In the figure, there are a vibration base 1, a bag sorting frame 2, a accommodating cavity 21, a front pressure plate 22, a left pressure plate 23, a rear pressure plate 24, a right pressure plate 25, a compacting structure 3, a fixing plate 31, a compacting plate 32, a compacting telescopic cylinder 33, a guide rod assembly 34, a linear motion bearing 341, a guide shaft 342, a vibration structure 4, a vibration hammer 41, and a shock-absorbing pad 42. DETAILED DESCRIPTION
[0018] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0019] like Figure 1-Figure 4As shown, the utility model provides a vibration organizer for bagged tea leaves, which includes a vibration base 1 and a bag sorting frame 2 installed on the upper end of the vibration base 1, several groups of compacting structures 3, and four groups of vibration structures 4. Several groups of compacting structures 3 are respectively installed on the outer periphery of the bag sorting frame 2, and four groups of vibration structures 4 are respectively installed on the four sides of the bag sorting frame 2. The compacting structure 3 is located on one side of the vibration structure 4, and each group of compacting structures 3 is located on one side of the vibration structure 4. Each group of vibration structures 4 includes a vibration hammer 41, which is fixed to an outer side wall of the bag sorting frame 2. A accommodating cavity 21 is formed inside the bag sorting frame 2, and the accommodating cavity 21 is used to place bagged tea leaves. An opening is provided at the top of the bag sorting frame 2, and the opening is provided to facilitate the placement of bagged tea leaves in the accommodating cavity 21. In this embodiment, the bag sorting frame 2 includes a front pressure plate 22, a rear pressure plate 24, a left pressure plate 23, and a right pressure plate 25. The left pressure plate 23, the front pressure plate 22, the right pressure plate 25, and the rear pressure plate 24 are connected in sequence to form a quadrilateral bag sorting frame 2. The front pressure plate 22, the rear pressure plate 24, the left pressure plate 23, and the right pressure plate 25 are all fixed to the upper end surface of the vibration base 1, and the vibrating hammer 41 of each group of vibration structures 4 is fixed to the middle position of the front pressure plate 22, the rear pressure plate 24, the left pressure plate 23, and the right pressure plate 25. The utility model places bagged tea by bag sorting frame 2, and the vibrating hammer 41 drives the compacting plate 32 and the bag sorting frame 2 to vibrate the bagged tea synchronously, so as to facilitate the arrangement and vibration of the bagged tea and arrange it into a quadrilateral shape, thereby achieving the shaping effect of the bagged tea, making the appearance of the bagged tea smooth, beautiful and generous, and the tea leaves in the tea bag can be flattened, before and during the vibration, the plurality of groups of compacting structures 3 on the outer periphery of the bag sorting frame 2 will squeeze the bag sorting frame 2, quickly compacting the bagged tea, preventing the tea leaves from being shaken out during the vibration process, facilitating the subsequent vacuuming process of the bagged tea, and helping to increase the packaging speed of the bagged tea, so that the bagged packaging after vacuuming is exquisite and beautiful. The vibration sorting device provided by the utility model has the characteristics of simple structure and easy installation and placement, low cost of use, long service life, good use effect, and high practicality.
[0020] In the embodiment of the present invention, the bag sorting frame 2 is configured as a quadrilateral structure.
[0021] In other embodiments, the shape of the bag sorting frame 2 may also be set to a cylindrical structure.
[0022] In this embodiment, each group of compaction structures 3 includes a fixed plate 31, a compaction plate 32, four groups of guide rod assemblies 34, and two groups of compaction telescopic cylinders 33. The compaction plate 32 is installed on the upper end surface of the vibration base 1 and is located on the outside of the bag sorting frame 2. The fixed plate 31 is installed on one side of the compaction plate 32. A gap is formed between the fixed plate 31 and the compaction plate 32. The two groups of compaction telescopic cylinders 33 are spaced apart and distributed at the gap between the fixed plate 31 and the compaction plate 32. The piston rods of the two groups of compaction telescopic cylinders 33 are fixed to the compaction plate 32 on the outside of the bag sorting frame 2. The four groups of guide rod assemblies 34 are distributed at the four corners of the fixed plate 31 and pass through the fixed plate 31 and the compaction plate 32 in sequence from outside to inside and are fixed on the compaction plate 32. In specific implementation, four groups of guide rod assemblies 34 are distributed on the periphery of two groups of compacting telescopic cylinders 33, and the piston rods of the two groups of compacting telescopic cylinders 33 are used to extend and retract so as to squeeze the outer wall of the bag sorting frame 2, and vibrate with the vibration hammer 41, which is beneficial to shaping the bagged tea leaves in the bag sorting frame 2. The provision of the guide rod assembly 34 is beneficial to improving the stability of the extension and compression process of the compacting telescopic cylinder 33.
[0023] Each guide rod assembly 34 includes a linear motion bearing 341 and a guide shaft 342. The guide shaft 342 is mounted in the center hole of the linear motion bearing 341. One end of the guide shaft 342 is mounted on the fixed plate 31 through the linear motion bearing 341, and the other end of the guide shaft 342 is fixed to the compaction plate 32. The guide shaft 342 provided in the present invention mainly serves as a guide and linear motion function, which can improve the stability of the compaction telescopic cylinder 33 during the expansion and contraction process.
[0024] Each set of vibration structures 4 of the present invention includes a plurality of shock-absorbing pads 42, which are fixed between the compacting plate 32 of the compacting structure 3 and the outer wall of the bag sorting frame 2. The shock-absorbing pads 42 are spaced apart along the outer wall of the bag sorting frame 2 and the edge of the compacting plate 32. In a specific implementation, the shock-absorbing pads 42 of the present invention can be rubber shock-absorbing pads 42. The provision of the shock-absorbing pads 42 can reduce vibration and noise during the operation of the vibration structure 4. The use of rubber shock-absorbing pads 42 is highly elastic, wear-resistant and tear-resistant, and provides shock absorption and buffering, thereby extending the service life of the vibration sorter.
[0025] The present invention has been described in detail above. The above description is only a preferred embodiment of the present invention and should not limit the scope of implementation of the present invention. All equivalent changes and modifications made within the scope of this application should still fall within the scope of the present invention.
Claims
1. A tea bag vibrating organizer, characterized by: The vibration sorter includes a vibration base and a bag sorting frame installed on the upper end of the vibration base, several groups of compacting structures, and four groups of vibration structures. The several groups of compacting structures are respectively installed on the outer periphery of the bag sorting frame, and the four groups of vibration structures are respectively installed on the four sides of the bag sorting frame. Each group of compacting structures is located on one side of the vibration structure. Each group of vibration structures includes a vibration hammer, which is fixed on an outer side wall of the bag sorting frame.
2. The tea bag vibrating organizer according to claim 1, characterized in that: Each group of compaction structures includes a fixed plate, a compaction plate, four groups of guide rod assemblies, and two groups of compaction telescopic cylinders. The compaction plate is installed on the upper end surface of the vibration base and is located on the outside of the bag sorting frame. The fixed plate is installed on one side of the compaction plate. A gap is formed between the fixed plate and the compaction plate. The two groups of compaction telescopic cylinders are spaced apart and distributed at the gap between the fixed plate and the compaction plate. The piston rods of the two groups of compaction telescopic cylinders are fixed to the compaction plate outside the bag sorting frame. The four groups of guide rod assemblies are distributed at the four corners of the fixed plate and pass through the fixed plate and the compaction plate in sequence from outside to inside and are fixed to the compaction plate.
3. The tea bag vibrating organizer according to claim 1, characterized in that: Each set of vibration structures includes several shock-absorbing pads, which are fixed between the compacting plate of the compacting structure and the outer wall of the bag sorting frame. The shock-absorbing pads are spaced apart from each other along the outer wall of the bag sorting frame and the edge of the compacting plate.
4. The tea bag vibrating organizer according to claim 2, characterized in that: Each guide rod assembly includes a linear motion bearing and a guide shaft. The guide shaft is installed at the center hole of the linear motion bearing. One end of the guide shaft is installed on the fixed plate through the linear motion bearing, and the other end of the guide shaft is passed through and fixed on the compaction plate.
5. The tea bag vibrating organizer according to claim 1, characterized in that: The bag sorting frame comprises a front pressing plate, a rear pressing plate, a left pressing plate, and a right pressing plate, which are sequentially connected to form a quadrilateral bag sorting frame.