A new foot bath bag and a foot bath basin matched with the foot bath bag

By combining aluminum foil film sealing cavity and ultrasonic vibration, the sealing and dissolution efficiency problems of non-woven packaging are solved, realizing the design of foot bath packs with multi-dosage form adaptability and rapid dissolution, and extending the shelf life.

CN224292203UActive Publication Date: 2026-05-29HEILONGJIANG YUAI CULTURE TECHNOLOGY CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HEILONGJIANG YUAI CULTURE TECHNOLOGY CO LTD
Filing Date
2025-05-12
Publication Date
2026-05-29

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  • Figure CN224292203U_ABST
    Figure CN224292203U_ABST
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Abstract

The utility model discloses a novel foot bath bag and cooperate the foot bath basin of this foot bath bag, including consumable bag, the consumable bag includes the sealed cavity that constitutes by aluminium foil and film, the sealed cavity is folded by aluminium foil and film and is adhered by adhesive in its opening, and the sealed cavity stores water agent, semi -fluid or solid consumable, the consumable bag uses ultrasonic oscillation to break and release its sealed consumable in water. Through setting up a foot bath bag made of aluminium foil and film, the sealed cavity that aluminium foil and film constitute is arranged in it, the sealed cavity stores the consumable made of water agent / semi -fluid or solid particle, not only has improved the problem that traditional non -woven fabric package can only store solid particle, but also has overcome the defect of non -woven fabric package in the aspect of sealing, effectively has improved the storage state of foot bath bag, and the shelf life of storage link before production, transportation and sale of foot bath bag is favorable.
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Description

Technical Field

[0001] This utility model relates to the field of daily necessities technology, specifically to a foot bath pack with a novel packaging structure and its matching foot bath basin. Background Technology

[0002] Existing foot bath packs often use non-woven fabric to wrap solid medicinal materials or powdered foot bath consumables. When using them, the foot bath packs need to be placed in a foot bath basin in advance and soaked in boiling water so that the consumables in the foot bath packs come into contact with water under the wrapping of non-woven fabric and are released into the water. The problems it faces are as follows.

[0003] Firstly, non-woven packaging is only suitable for packaging solid materials, which limits the choice of consumable dosage forms, such as aqueous solutions, pastes, or those requiring mixing.

[0004] Secondly, non-woven fabric packaging is not naturally airtight and cannot inhibit the evaporation and oxidation of the material, which is not conducive to extending the shelf life of the medicinal bath material.

[0005] Thirdly, although non-woven fabrics are naturally permeable, allowing their inner materials to come into contact with water, they are overly dependent on water temperature. When the water temperature is low, the permeability will decrease, which is not conducive to the dissolution of the medicated bath materials and the release of the medicine. Furthermore, even when soaking in high-temperature water, due to the filter membrane structure of the non-woven fabric, the bath liquid dissolved in water is difficult to penetrate the non-woven fabric and mix in the foot bath basin without convection or back pressure.

[0006] The solution lies in providing a foot bath pack that is easy to seal, adaptable to different material types, and allows for unobstructed release of medicinal herbs, thus overcoming the various defects of the aforementioned non-woven medicinal bath packs.

[0007] At the same time, while ensuring the packaging is airtight, how to release the sealed aqueous solution inside the packaging is a factor that needs to be considered. The packaging materials and the corresponding unsealing methods need to be improved. Utility Model Content

[0008] To overcome the shortcomings of existing technologies, this application designs a novel foot bath pack, including a consumable pack. The consumable pack includes a sealed cavity made of aluminum foil film. The sealed cavity is formed by folding the aluminum foil film, and its opening is sealed with an adhesive. The sealed cavity stores water-based, semi-fluid, or solid consumables. The consumable pack is broken up and its sealed consumables are released when it is placed in water using ultrasonic vibration.

[0009] To solve the above-mentioned technical problems, this utility model provides the following technical solution: the consumable package of the water-based foot bath pack is sealed in a plastic sealed bag, and the plastic sealed bag is filled with gas to make the plastic sealed bag expand.

[0010] Furthermore, the consumable package is sealed in a plastic sealed bag, which is filled with gas to inflate the plastic sealed bag.

[0011] Furthermore, the consumable package is encapsulated in a rigid plastic shell, and its surface has two or more holes for water to flow through.

[0012] Furthermore, it includes a basin body, the basin body being provided with a partition, the partition being provided with a placement groove, and a storage section for storing consumable packages being detachably connected to the placement groove.

[0013] Furthermore, one or more ultrasonic transducers are connected to the placement slot, and the ultrasonic transducers abut against the storage section.

[0014] Furthermore, a stainless steel sheet is embedded in the placement groove.

[0015] Furthermore, the storage section is provided with one or more filter bars.

[0016] Furthermore, the storage section is provided with magnets, which are symmetrically arranged at both ends of the storage section, and the magnets abut against the partition.

[0017] Furthermore, the basin is provided with soaking areas, and there are two soaking areas symmetrically arranged at both ends of the basin.

[0018] Furthermore, a rubber ring is provided between the basin and the partition.

[0019] Compared with the prior art, the beneficial effects that this utility model can achieve are:

[0020] 1. By setting up a foot bath pack made of aluminum foil film, which contains a sealed cavity formed by the aluminum foil film, and storing consumables made of water-based / semi-fluid or solid particles in the sealed cavity, not only is the problem of traditional non-woven packaging being able to store only solid particles improved, but the defects of non-woven packaging in terms of sealing are also overcome. This effectively improves the storage condition of the foot bath pack and benefits the shelf life of the foot bath pack in storage stages such as production, transportation and sales.

[0021] 2. By setting up a storage section on the basin, the consumable pack is compressed and forced to be submerged in water, thereby ensuring that the contents of the consumable pack can come into contact with the water.

[0022] 3. By compressing the storage section, the consumable package is brought infinitely close to the ultrasonic transducer, thereby improving the vibration transmission efficiency of the ultrasonic transducer to the aluminum foil of the consumable bag. Attached Figure Description

[0023] Figure 1 This is a schematic diagram of the overall structure of the present invention. Figure 1 ;

[0024] Figure 2 This is a cross-sectional schematic diagram of the overall structure of this utility model;

[0025] Figure 3 This is a schematic diagram of the overall structure of the present invention. Figure 2 ;

[0026] Figure 4 This is a schematic diagram showing the connection between the storage part and the bath bag in this utility model;

[0027] Figure 5 This is a schematic diagram of the storage section of the present invention. Figure 1 ;

[0028] Figure 6 This is a schematic diagram of the storage section of the present invention. Figure 2 ;

[0029] Figure 7 This is a schematic diagram of the structure of the bath bag of this utility model.

[0030] The components include: basin 1; partition 11; placement tank 12; ultrasonic transducer 13; soaking area 14; storage section 2; filter rail 21; magnet 22; and consumable package 3. Detailed Implementation

[0031] This application relates to a novel packaged foot bath pack, comprising, as follows: Figure 7 The consumable package 3 shown includes a sealed cavity formed by an aluminum foil film with a thickness of less than 0.1 mm. The sealed cavity is formed by folding the aluminum foil film, and its opening is sealed with an adhesive (preferably a thermoplastic resin adhesive). The sealed cavity stores consumables for foot baths, which can be aqueous / semi-fluid or water-soluble solids. Further, the consumable package 3 is sealed in a plastic sealed bag filled with gas to prevent leakage during transportation and storage due to external pressure puncturing the outer layer of the aluminum foil sealed cavity. Preferably, to facilitate storage, the consumable package 3 can also be sealed in a rigid plastic shell with two or more holes on its surface for water flow. These improvements enhance the production, transportation, and sales of foot bath packs, improve product storage, and objectively extend the shelf life of the consumable package.

[0032] This application also includes a foot bath basin suitable for the aforementioned foot bath pack, the foot bath basin comprising, as shown in the image... Figure 1 The basin 1 shown is similar in shape to an existing foot bath basin. The basin 1 has an open chamber for storing water, allowing the user to immerse their feet in the water. The basin 1 can be made of PVE or other plastic materials. The bottom of the basin 1 has... Figure 3The partition 11 shown divides the interior of the basin 1 into two independent soaking areas 14, each corresponding to a user's feet. Each soaking area 14 is used to place the user's feet within it. The bottom of each soaking area 14 has a protrusion, allowing the user to actively press the soles of their feet. The partition 11 is positioned underwater with... Figure 2 The placement slot 12 shown is used to place the consumable pack 3.

[0033] One or more ultrasonic transducers 13 for converting electrical energy into ultrasonic waves are provided in the basin area where the placement slot 12 is located. The ultrasonic transducers 13 are preferably located on the side of the placement slot 12 outside the basin, and are tightly attached to the basin.

[0034] Preferably, the ultrasonic transducer 13 can be a piezoelectric ceramic transducer in conjunction with a drive module. This type of transducer is commonly found in small household appliances such as eyeglass cleaners and fruit and vegetable cleaners. It utilizes the inverse piezoelectric effect of piezoelectric ceramics, providing a current of a certain frequency to the piezoelectric ceramic transducer through the drive module. The piezoelectric ceramic vibrates mechanically, converting electrical energy into mechanical energy. The current frequency is positively correlated with the ultrasonic frequency and can be selected based on the thickness, distance, and size of the consumable package 3, or a frequency-adjustable drive module can be used for free adjustment within a certain range. It should be noted that the piezoelectric ceramic transducer and the corresponding drive module or device are existing technologies with a broad civilian market base and a complete supply chain. They are not the core of the technical solution protected in this application, and this application will not elaborate on their principles. Those skilled in the art can fully understand their principles and applications and obtain the aforementioned components without difficulty. Preferably, the piezoelectric ceramic transducer is bonded and fixed to the basin 1 with ceramic adhesive. Because it lacks elasticity after curing, it will not absorb the vibrations generated by the transducer.

[0035] Furthermore, the connection between the piezoelectric ceramic transducer and the basin 1 includes a stainless steel metal sheet. This metal sheet is embedded in the basin area where the placement groove 12 is located by creating a through hole in the groove 12. One side of the metal sheet is located on the water-filled side of the basin 1, and the other side is located on the outside of the basin 1. The side outside the basin 1 is bonded to the piezoelectric ceramic transducer using ceramic adhesive. The metal sheet covers the surface of the ultrasonic transducer 13, forming an ultrasonic transmission medium and reducing attenuation during ultrasonic transmission. Furthermore, the connection between the placement groove 12 and the metal sheet may be equipped with a rubber ring for sealing and reducing vibration transmission. This rubber ring reduces the diffusion of vibrations generated by the ultrasonic transducer 13 into the basin 1 body, concentrating the energy generated by the vibration onto the metal sheet. The drive module of the ultrasonic transducer 13 is located on the side of the partition 11 outside the basin 1. Its output terminal is electrically connected to the piezoelectric ceramic transducer, used to input high-frequency electrical energy (frequency above 20kHz) generated by the drive module to the piezoelectric ceramic transducer, driving it to generate ultrasonic waves. The ultrasonic waves create a "cavitation effect" in the basin 1 and couple to the liquid on the surface of the aluminum foil consumable package 3. The negative pressure phase of the ultrasonic waves causes tiny bubbles to form in the liquid, while in the positive pressure phase, these bubbles rapidly collapse, generating localized high temperature, high pressure, and strong shock waves. These shock waves act on the aluminum foil surface, causing puncture damage and allowing the consumables sealed within to flow out and mix with the water stored in the basin 1.

[0036] Furthermore, to ensure that the consumable package 3 remains submerged in water, the placement slot 12 is detachably connected to a device such as... Figure 4 As shown, a storage section 2 is used to hold foot bath packs. The storage section 2 can accommodate at least one consumable pack 3. The consumable pack 3 is forcibly submerged in water by the storage section 2. All dimensions of the consumable pack 3 are smaller than the internal dimensions of the storage section 2. The storage section 2 is as follows... Figure 6 The diagram shows a box with an opening for disassembling and assembling the consumable pack 3. Preferably, the box wall has multiple openings for water permeation. When used in conjunction with the basin 1, the opening for disassembling and assembling the consumable pack faces the placement slot 12, allowing the consumable pack 3 to be infinitely close to the piezoelectric ceramic transducer in the ultrasonic transducer 13, thereby improving its efficiency in breaking down the consumable pack 3.

[0037] Furthermore, in order to facilitate the mixing of water with consumable pack 3, the storage section 2 is provided with a filter bar 21 composed of multiple water-permeable openings. The filter bars 21 are arranged at equal intervals on the box wall of the storage section 2. The filter bars 21 not only facilitate the mixing of the water / semi-fluid or water-soluble solid state stored in the consumable pack 3 after the aluminum foil is punctured with the water stored in the basin 1, but also filter the broken aluminum foil to a certain extent to prevent it from flowing into the two soaking zones 14.

[0038] Furthermore, to ensure that the storage section 2 can always forcibly compress the consumable package 3 into the water body, the storage section 2, as follows: Figure 5 The storage section 2 is provided with a magnet 22 connected to the partition 11. The magnet 22 is located at the center of the storage section 2. The storage section 2 is placed in the placement groove 12, and its opening is in contact with the placement groove 12. Its top end is higher than the partition 11. The bottom end of the magnet 22 is magnetically connected to the metal sheet embedded in the partition 11, ensuring that the storage section 2 is always in contact with the partition 11 without the influence of external force. There are two magnets 22, which are symmetrically arranged at both ends of the storage section 2.

[0039] The user pours warm water into basin 1 to soak their feet, then places consumable pack 3 into storage section 2. Storage section 2 is then placed into placement slot 12. Ultrasonic waves generated by ultrasonic transducer 13 vibrate and break through consumable pack 3, allowing the precipitated aqueous / semi-fluid or water-soluble solids to quickly dissolve in the warm water. A filter bar 21 on storage section 2 ensures that the water from basin 1 flows into storage section 2 and dissolves with the aqueous / semi-fluid or water-soluble solids in consumable pack 3, filtering the shattered aluminum foil membrane to some extent. The density of the aluminum foil is 2.7 g / cm³. 3 Density greater than 1 g / cm³ of water 3 The aluminum foil cannot float on the water surface and will settle on the placement tank 12 for easy cleaning after use.

Claims

1. A novel foot bath pack, comprising a consumable pack (3), wherein the consumable pack (3) includes a sealed cavity formed by aluminum foil film, the sealed cavity being formed by folding the aluminum foil film and having its opening sealed with an adhesive, the sealed cavity storing an aqueous solution, a semi-fluid or solid consumable, characterized in that: The consumable package (3) can be broken and its sealed consumables released by ultrasonic vibration in water.

2. The foot bath pack as described in claim 1, characterized in that: The consumable package (3) is sealed in a plastic sealed bag, which is filled with gas to make the plastic sealed bag expand.

3. The foot bath pack as described in claim 1, characterized in that: The consumable package (3) is encapsulated in a rigid plastic shell, and its surface has two or more holes for water to flow through.

4. A foot bath basin, comprising a basin body (1), characterized in that: The basin (1) is provided with a partition (11), and a placement groove (12) is provided on the partition (11). A storage part (2) is detachably connected to the placement groove (12), and the storage part (2) is used to store the consumable pack (3) in the novel foot bath pack as described in claim 1.

5. The foot bath basin according to claim 4, characterized in that: One or more ultrasonic transducers (13) are connected to the placement slot (12), and the ultrasonic transducers (13) are connected to the basin area where the storage part (2) is located.

6. The foot bath basin according to claim 5, characterized in that: The placement slot (12) is inlaid with a stainless steel sheet.

7. The foot bath basin according to claim 6, characterized in that: The storage section (2) is provided with one or more filter bars (21).

8. The foot bath basin according to claim 6, characterized in that: The storage section (2) is provided with a magnet (22), which is symmetrically arranged at both ends of the storage section (2) and abuts against the partition (11).

9. The foot bath basin according to any one of claims 4-8, characterized in that: The basin (1) is provided with a soaking area (14), and there are two soaking areas (14) symmetrically arranged at both ends of the basin (1).

10. The foot bath basin according to claim 4, characterized in that: A rubber ring is provided between the basin (1) and the partition (11).