Bag type packaging structure for scorpions

Through the seal, deoxygenation module and light-shielding design in the whole scorpion bag packaging structure, the problem of rancidity caused by oxidation during the storage of whole scorpions is solved, and high-quality preservation of whole scorpions and improved economic benefits are achieved.

CN223421404UActive Publication Date: 2025-10-10CHONGQING INST FOR FOOD & DRUG CONTROL
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Patent Information

Application Number
CN202423095186.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-16
Publication Date
2025-10-10
Estimated Expiration
2034-12-16

AI Technical Summary

Technical Problem

During the medicinal process, scorpions are prone to becoming rancid due to oxidation, which affects the medicinal effect.

Method used

It adopts a full-scorpion bag packaging structure, including a seal, a deoxidation module and a light-shielding design. It uses a deoxidizer to eliminate oxygen to ensure a low-oxygen environment in the package. When the full-scorpion is not used up, the spare deoxidizer is replaced to extend the shelf life.

Benefits of technology

Effectively inhibit the rancidity of scorpions, improve the stability of medicinal quality, and enhance the economic benefits of the enterprise.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a scorpion bag type packaging structure, and relates to the technical field of scorpion storage, the scorpion bag type packaging structure is characterized in that the opening end of a bag body is provided with a sealing strip and a deoxidation module, the deoxidation module comprises a sealing bag, a bonding sheet and an easy-to-tear sheet, at least one surface of the bonding sheet is a bonding surface and is attached to the inner wall of the opening end of the bag body, and the other surface of the bonding sheet is connected with the outer wall of the sealing bag; the interior of the packet is divided into two mutually separated filling cavities, one filling cavity is called as a normal cavity, and the other filling cavity is called as a standby cavity; a plurality of first micropores are formed in the cavity wall of the normal cavity, and a plurality of second micropores are formed in the cavity wall of the standby cavity; one end of the easy-to-tear piece is fixed to the inner wall, where the bonding piece is not fixed, of the opening of the bag body, and the other end of the easy-to-tear piece is attached to the outer wall of the sealing bag and shields the second micro hole; the edge of the easy-to-tear piece is connected with the sealing bag through an easy-to-tear structure, and the sealing bag is close to the middle of the sealing strip. The method has the effects of inhibiting rancidity of the scorpion product and improving the quality stability of the scorpion.
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Description

Technical Field

[0001] The present application relates to the field of scorpion storage technology, and in particular to a scorpion bag-type packaging structure. Background Art

[0002] The whole scorpion is the dried whole insect of the Scorpionidae family. In traditional Chinese medicine, it is used to treat infantile convulsions, convulsions, facial paralysis due to stroke, hemiplegia, tetanus, rheumatism, hemiplegia, sores, etc., and has high medicinal value.

[0003] Before scorpions are added to medicinal formulas for use by physicians, they are not preserved alive and require processing and packaging by manufacturers. During their use, users and manufacturers have discovered that scorpions can become rancid. One reason for this rancidity is that scorpions are rich in protein and lipid organic components, which can be oxidized by residual oxygen in the packaging or by oxygen exposed to damaged packaging. This can cause the scorpions to become rancid, affecting their medicinal effects. Therefore, this application proposes a new technical solution. Utility Model Content

[0004] In order to inhibit the rancidity of whole scorpion products and improve the quality stability of whole scorpions, the present application provides a whole scorpion bag packaging structure.

[0005] This application provides a full scorpion bag packaging structure, which adopts the following technical solutions:

[0006] A scorpion bag packaging structure, comprising a bag body with an open end, the open end of the bag body being provided with a seal and a deoxidation module, the seal extending along the width direction of the bag body and comprising a matching main seal piece and a secondary seal piece, the main seal piece and the secondary seal piece being respectively fixed to two opposite inner walls of the open end of the bag body;

[0007] The deoxidation module includes a package for filling the deoxidizer, an adhesive sheet and a tearable sheet, wherein at least one surface of the adhesive sheet is an adhesive surface and is attached to the inner wall of the open end of the bag body, and the other surface of the adhesive sheet is connected to the outer wall of the package;

[0008] The package is located on a side of the seal facing the bottom of the bag body and is adjacent to the seal; the interior of the package is divided into two mutually separated filling chambers, one of which is called a normal chamber and the other is called a standby chamber; the standby chamber is located in a direction from the normal chamber toward the seal, a plurality of first micropores are formed on the wall of the normal chamber, and a plurality of second micropores are formed on the wall of the standby chamber;

[0009] The seal is formed with a notch for the tear sheet to extend out, one end of the tear sheet is fixed to the inner wall of the bag opening where the adhesive sheet is not fixed, and the other end is attached to the outer wall of the package and blocks the second microhole; the edge of the tear sheet and the package are connected with an easy-tear structure, and the package is close to the middle of the seal.

[0010] Optionally, a light-shielding area is formed on the bag body or a light-shielding sheet structure is fixed on the wall surface of the bag body.

[0011] Optionally, several inner seals are further included, which are located on the side of the seal facing the bottom of the bag body. The structure of the inner seal is the same as that of the seal and is normally in an unsealed state.

[0012] Optionally, the package has a partition section, the inner walls of the partition section are fixed to each other and form an easy-to-tear line structure, and the upper and lower parts of the partition section are the spare cavity and the normal cavity respectively.

[0013] Optionally, an intermediate film is fixed to a section of the outer wall of the package having a regular cavity, one end of the intermediate film extends toward the seal and is fixed to the side of the adhesive sheet facing the package, and the side of the intermediate film facing away from the adhesive sheet is connected to the package with an easy-to-tear structure.

[0014] Optionally, a secondary film is bonded to a side of the intermediate film facing away from the adhesive sheet, the upper portion of the secondary film has no adhesive and is separated from the adhesive sheet, and the lower portion of the secondary film is bonded and fixed to the outer wall of the package.

[0015] Optionally, a strip film is fixed to a side of the intermediate film facing away from the adhesive sheet, one end of the strip film is formed on the intermediate film, and the other end is adhered to the outer wall of the package.

[0016] Optionally, the open end of the bag body forms a heat-sealing section, and the sealing strip is located inside the heat-sealing section.

[0017] Optionally, an air nozzle is provided at the lower portion of the bag body, and the air nozzle is a one-way valve structure for releasing air outward or is adapted to be provided with a sealing cover.

[0018] In summary, the present application includes the following beneficial technical effects: after the whole scorpion is packaged using the present application, on the one hand, the deoxidizer in the regular cavity in the package can be used to eliminate the oxygen remaining in the bag, or some of the oxygen that escapes due to damaged packaging can be eliminated, thereby inhibiting the sourness of the whole scorpion; on the other hand, when the bag is opened, the opening will also pull the easy-tear sheet and the package apart, exposing the second micropore and allowing the previously unused spare cavity to connect to the outside world. When the whole scorpion is not used up at one time, the bag can be resealed to utilize the relatively new deoxidizer in the spare cavity to eliminate oxygen, thereby improving the effect of inhibiting the sourness of the whole scorpion, improving the quality stability of the whole scorpion, and helping to improve the economic benefits of the enterprise. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a front view of the present application;

[0020] Figure 2 It is a schematic diagram of the partial longitudinal structure of this application.

[0021] Explanation of the accompanying reference numerals: 1. bag body; 11. heat sealing section; 12. air nozzle; 2. sealing strip; 3. deoxidation module; 31. package; 32. adhesive sheet; 33. tear-off sheet. DETAILED DESCRIPTION

[0022] The following is combined with Figure 1-2 This application is described in further detail.

[0023] The embodiment of the present application discloses a full-scorpion bag packaging structure.

[0024] Reference Figure 1 and Figure 2 The full scorpion bag packaging structure includes a bag body 1, a seal 2 and a deoxygenation module 3. It can be understood that the above structures in this application are all flexible to meet the use requirements.

[0025] The bag 1 can be made of food-grade PE, with one end open to accommodate whole scorpions. The seal 2 extends across the width of the bag and includes a primary seal and a secondary seal. These seals are heat-fused to the two opposing inner walls of the bag's open end. The user manually presses the primary and secondary seals together, locking them into place to seal the bag.

[0026] To prevent the scorpions from becoming rancid and leaking due to accidental opening of the seal during packaging, transportation, and sale, the bag 1 has a heat-sealed section 11 at its open end. This allows the two sides of the bag 1 to be brought together and heat-pressed together. The seal 2 is located inside this section, and the bag 1 has a notch at the end of this section. This ensures that even if the seal 2 is accidentally opened, the heat-sealed section 11 seals the bag 1, minimizing the risk of excessive oxygen ingress into the bag 1, which could accelerate rancidity and thus ensure the quality of the scorpion product.

[0027] In another embodiment of the present application, in order to minimize the residual oxygen in the bag 1 after packaging the whole scorpion, it is considered to purify the atmosphere of the bag 1 by extraction and exhaust. In this case, if the bag 1 is only as described above, it needs to be evacuated and sealed in a non-oxygen protective atmosphere. The negative pressure generated by the extraction may crush the dried whole scorpion, and the non-oxygen protective atmosphere has higher requirements for the production environment. Therefore, the present application makes the following settings:

[0028] A through hole is opened at the lower part of the bag body 1, and an elastic air nozzle 12 is inserted into the through hole. The air nozzle 12 is a one-way valve structure for outward air or is adapted to be equipped with a sealing cover; the side view of the air nozzle 12 is an inverted T-shape, the horizontal section of the T-shape is located inside the bag body 1 and adhered to the inner wall of the bag body 1, and the vertical section of the T-shape passes through the above-mentioned through hole.

[0029] After the whole scorpion is bagged, an inflation tube connected to a non-oxygen atmosphere (nitrogen, etc.) gas source is inserted into the opening of the bag body 1. The seal 2 of the bag body 1 is gradually sealed, and the gas source supplies air for a period of time. After it is estimated that the oxygen-containing air has been squeezed out, the inflation tube seal 2 is pulled out and the bag is completely sealed. After that, heat sealing is performed to minimize the oxygen content in the bag body 1 to inhibit the rancidity of the whole scorpion.

[0030] In another embodiment of the present application, a shading area is formed on the bag body 1 or a shading sheet structure is fixed on the wall of the bag body 1; an example of a shading area: the outer wall of the bag body 1 is colored and dark colors are preferred; an example of a shading sheet structure: kraft paper, and kraft paper is attached to the bag body 1.

[0031] When the above shading is set, the bag body 1 does not need to be completely blocked, and a section in the middle or other positions can be kept transparent and visible to facilitate buyers to observe the full scorpion product in the bag body 1.

[0032] Regarding the deoxidation module 3 , in another embodiment of the present application, the deoxidation module 3 includes a package 31 , an adhesive sheet 32 ​​and a tearable sheet 33 .

[0033] The package 31 can be a high-density cloth bag or a rigid paper bag, filled with a deoxidizer, and mounted within the bag body 1 via an adhesive sheet 32. The adhesive sheet 32 ​​is flexible and can be a laminated paper structure, with at least one surface being an adhesive surface (coated with glue) and attached to the inner wall of the open end of the bag body 1. The other surface of the adhesive sheet 32 ​​is connected to the outer wall of the package 31.

[0034] It should be noted that the package 31 is located on the side of the seal 2 facing the bottom of the bag body 1 and is adjacent to the seal 2. This position is set to cooperate with other structures, specifically:

[0035] The interior of the package 31 is divided into two separate filling chambers, one of which is called a normal chamber and the other is called a spare chamber. The spare chamber is located in the direction from the normal chamber to the seal 2. If the bag body 1 is picked up squarely, the spare chamber is located above the normal chamber.

[0036] The wall of the normal cavity is formed with a plurality of evenly distributed first micropores (air gap holes), and the wall of the standby cavity is formed with a plurality of second micropores, which are relatively concentrated and may form a circular area.

[0037] The seal 2 is formed with a notch for the tear sheet 33 to extend out. One end of the tear sheet 33 is fixed to the inner wall of the opening of the bag body 1 where the adhesive sheet 32 ​​is not fixed, and the other end is attached to the outer wall of the package 31 and blocks the second microhole; the edge of the tear sheet 33 and the package 31 are connected by an easy-tear structure, such as: a thin plastic film adhesive.

[0038] According to the above arrangement, after the whole scorpion is packaged using the present application, on the one hand, the deoxidizer in the normal cavity in the package 31 can be used to eliminate the oxygen remaining in the bag body 1, or to eliminate part of the oxygen that has entered due to the damaged package, thereby inhibiting the whole scorpion from becoming rancid. On the other hand, when the bag body 1 is opened, the opening will also pull the easy-tear sheet 33 and the package 31 apart, exposing the second micropore and allowing the previously unused spare cavity to communicate with the outside world. When the whole scorpion is not used up at one time, the bag body 1 can be resealed to utilize the relatively new deoxidizer in the spare cavity to eliminate oxygen, thereby improving the effect of inhibiting the rancidity of the whole scorpion, improving the quality stability of the whole scorpion, and helping to improve the economic benefits of the enterprise.

[0039] It should be noted that the package 31 should be close to the middle of the seal 2 to ensure that the tear sheet 33 can be torn off from the package 31 when the bag 1 is opened.

[0040] Furthermore, the bag 1 is provided with several inner seals. In this embodiment, one inner seal is used as an example, located at a depth of 1 / 3 to 2 / 5 of the bag. The inner seal is located on the side of seal 2 toward the bottom of the bag 1. Its structure is identical to seal 2 and it is normally unsealed. That is, when the bag 1 is packed with scorpions and shipped out of the factory, the inner seal is not closed to avoid affecting the normal packaging of the scorpions. However, after the buyer opens the bag 1 and consumes a portion of the scorpions, he or she can close the inner seal to separate the portion of the scorpions near the bottom, extending the shelf life.

[0041] Based on the above, in another embodiment of the present application, there is a partition section on the package 31, and the inner walls of the package 31 of the partition section are fixed to each other and form an easy-to-tear line structure; the upper and lower parts of the partition section are the spare cavity and the normal cavity respectively.

[0042] According to the above arrangement, after the bag body 1 is opened to take out the whole scorpion but not used, the package 31 can be divided into two parts by the above-mentioned tear line structure, and a part of the package 31 can be placed in the closed structure at the lower part of the bag body 1 before closing the inner seal strip at the bottom, thereby further improving the effect of inhibiting the rancidity of part of the whole scorpion.

[0043] In another embodiment, the above configuration is such that the closed structure at the bottom of the bag body 1 is basically the normal cavity section of the package 31, but this section has been used for a long time and the effect is relatively unsatisfactory; therefore, further configuration is as follows:

[0044] An intermediate film is fixed to a section of the outer wall of the package 31 having a permanent cavity. One end of the intermediate film extends toward the seal 2 and is fixed to the side of the adhesive sheet 32 ​​facing the package 31. In other words, the package 31 has a permanent cavity, that is, the lower part is actually connected to the adhesive sheet 32 ​​through the intermediate film.

[0045] The side of the intermediate film facing away from the adhesive sheet 32 ​​is connected to the package 31 with an easy-tear structure, that is, the spare cavity of the package 31, that is, the upper part is not directly fixed on the adhesive sheet 32, but is connected to the intermediate film with an easy-tear structure.

[0046] Therefore, the user can directly tear off the upper portion of the packet 31 from the middle film and separate it from the lower portion; at this time, a section of the lower portion (with the normal cavity) of the packet 31 remains in the upper portion of the bag body 1, while a section of the upper portion (with the spare cavity) of the packet 31 can be placed in the closed structure at the bottom of the bag body 1 for use, thereby ensuring the rancidity inhibition effect.

[0047] It should be noted that the intermediate film can be a plastic sheet, and its strength should be greater than the tearable structure between the intermediate film and the package 31 .

[0048] Regarding the tear-away structure between the middle film and the package, specifically:

[0049] First, a secondary film is bonded to the side of the intermediate film facing away from the adhesive sheet 32. The upper part of the secondary film has no adhesive and is separated from the adhesive sheet 32, while the lower part is bonded and fixed to the outer wall of the package 31. Note that the adhesive here is the same as the glue on the tape and will not be completely cured to avoid being difficult to tear. Alternatively, the secondary film should be weaker than the intermediate film to ensure that when it is torn, it is not the intermediate film that is damaged.

[0050] In this way, the package 31 is not easy to shake, and even relatively strong shaking after the whole scorpion is packaged will not have much impact.

[0051] The second type is that a strip film (smaller than the intermediate film, such as about 1 / 4 in width) is fixed on the side of the intermediate film away from the adhesive sheet 32 ​​, one end of the strip film is formed on the intermediate film, and the other end is bonded to the outer wall of the package 31 .

[0052] When using this method, you should pay attention to avoid shaking the scorpion vigorously after packaging it to prevent it from being accidentally broken.

[0053] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.

Claims

1. A scorpion bag packaging structure, comprising a bag body (1) with an open structure at one end, characterized in that: The open end of the bag body (1) is provided with a seal (2) and a deoxidation module (3), the seal (2) extending along the width direction of the bag body (1) and comprising a matching main seal (2) piece and a secondary seal (2) piece, the main seal (2) piece and the secondary seal (2) piece being respectively fixed to two opposite inner walls of the open end of the bag body (1); The deoxidation module (3) comprises a package (31) for filling a deoxidizer, an adhesive sheet (32) and an easily tearable sheet (33), wherein at least one surface of the adhesive sheet (32) is an adhesive surface and is attached to the inner wall of the open end of the bag body (1), and the other surface of the adhesive sheet (32) is connected to the outer wall of the package (31); The package (31) is located on a side of the seal (2) facing the bottom of the bag body (1) and is adjacent to the seal (2); the interior of the package (31) is divided into two mutually separated filling chambers, one of which is called a normal chamber and the other is called a standby chamber; the standby chamber is located in a direction from the normal chamber toward the seal (2), a plurality of first micropores are formed on the wall of the normal chamber, and a plurality of second micropores are formed on the wall of the standby chamber; The seal (2) is formed with a notch for the tear sheet (33) to extend out, one end of the tear sheet (33) is fixed to the inner wall of the opening of the bag body (1) where the adhesive sheet (32) is not fixed, and the other end is attached to the outer wall of the package (31) and blocks the second microhole; the edge of the tear sheet (33) and the package (31) are connected by an easy-tear structure, and the package (31) is close to the middle of the seal (2).

2. The scorpion bag packaging structure according to claim 1 is characterized in that: A light-shielding area is formed on the bag body (1), or a light-shielding sheet structure is fixed on the wall surface of the bag body (1).

3. The full scorpion bag packaging structure according to claim 1 is characterized in that: It also includes a plurality of inner seals (2), which are located on the side of the seal (2) facing the bottom of the bag body (1). The inner seal (2) has the same structure as the seal (2) and is normally in an unsealed state.

4. The full scorpion bag packaging structure according to claim 3 is characterized in that: The package (31) has a partition section, the inner walls of the package (31) of the partition section are fixed to each other and form an easy-tear line structure, and the upper and lower parts of the partition section are respectively a standby cavity and a normal cavity.

5. The full scorpion bag packaging structure according to claim 4 is characterized in that: The package (31) has a section of the outer wall of the regular cavity with an intermediate film fixed thereon, one end of the intermediate film extending toward the seal (2) and fixed to the side of the adhesive sheet (32) facing the package (31), and the side of the intermediate film facing away from the adhesive sheet (32) is connected to the package (31) with an easy-to-tear structure.

6. The full scorpion bag packaging structure according to claim 5 is characterized in that: The side of the intermediate film facing away from the adhesive sheet (32) is bonded with a secondary film, the upper portion of the secondary film has no adhesive and is separated from the adhesive sheet (32), and the lower portion is bonded and fixed to the outer wall of the package (31).

7. The full scorpion bag packaging structure according to claim 6 is characterized in that: A strip film is fixed to one side of the intermediate film facing away from the adhesive sheet (32), one end of the strip film is formed on the intermediate film, and the other end is bonded to the outer wall of the package (31).

8. The full scorpion bag packaging structure according to claim 1 is characterized in that: The open end of the bag body (1) forms a heat-sealing section (11), and the sealing strip (2) is located inside the heat-sealing section (11).

9. The full scorpion bag packaging structure according to claim 1, characterized in that: An air nozzle (12) is provided at the lower part of the bag body (1); the air nozzle (12) is a one-way valve structure for releasing air outward or is adapted to be provided with a sealing cover.