Nano-bubble generating stirring ball

The nano-bubble generating stirring ball with a hollow structure and surface holes effectively generates highly concentrated nano-bubbles by shearing and crushing actions, addressing the inefficiency of conventional stirring balls.

JP3252195UActive Publication Date: 2025-07-28渡辺隼人
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Patent Information

Application Number
JP2025001764U
Authority / Receiving Office
JP · JP
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2025-05-30
Publication Date
2025-07-28
Estimated Expiration
2035-05-30

AI Technical Summary

Technical Problem

Conventional stirring balls generate extremely insufficient nano bubbles when used in paint sprays or drugs with precipitating components.

Method used

A nano-bubble generating stirring ball with a hollow structure and multiple holes on its surface is used in a liquid storage container, generating nano-bubbles through shearing and crushing actions by shaking.

Benefits of technology

The nano-bubble generating stirring ball efficiently produces highly concentrated nano-bubbles with a simple structure and low cost, suitable for cosmetic and drink containers.

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Abstract

Provided is a nano-bubble generating stirring ball. 【Solution means】A nano-bubble generating stirring ball 12 having a hollow structure with a hollow body and a plurality of holes 13 through which liquid passes provided in the wall surface of the hollow structure. The nano-bubble generating stirring ball is stored in a liquid storage container 11 such as a bottle, and by shaking the liquid storage container up and down, nano-bubbles 14 are generated by shearing and crushing actions. Conventional stirring balls used for paint sprays, drugs in which components precipitate, etc. are simply spheres, and by shaking, the precipitated components are dispersed and stirred uniformly. However, with such stirring balls, the generation of nano-bubbles was extremely insufficient.
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Description

Technical Field

[0001] The present invention relates to a nano bubble generating stirring ball that can efficiently generate nano bubbles.

Background Art

[0002] A general stirring ball used in paint spray, drugs with precipitating components, etc. is simply a sphere, which disperses and uniformly stirs the precipitated components by shaking. However, such a stirring ball generates extremely insufficient nano bubbles.

Prior Art Documents

Patent Documents

[0003]

Patent Document 1

Summary of the Invention

Problems to be Solved by the Invention

[0004] The problem to be solved is that the conventional stirring ball is simply a sphere, which disperses and uniformly stirs the precipitated components by shaking. However, such a stirring ball generates extremely insufficient nano bubbles. Therefore, the nano bubble generating stirring ball of this invention has a very simple structure and aims to provide a nano bubble generating stirring ball that can generate nano bubbles very efficiently.

Means for Solving the Problems

[0005] The nano bubble generating stirring ball of this invention is a hollow body with a hollow structure and has a plurality of holes through which liquid passes provided on the wall surface of the hollow structure. The nano bubble generating stirring ball is stored in a liquid storage container such as a bottle, and by shaking the liquid storage container up and down, nano bubbles are generated by shear and crushing actions.

[0006] The nano-bubble generating and stirring ball of this invention is a nano-bubble generating and stirring ball that is a hollow body with a hollow structure and has a plurality of holes through which liquid passes provided on the wall surface of the hollow structure. By attaching this nano-bubble generating and stirring ball to a straw provided in a liquid storage container such as a bottle and shaking the liquid storage container up and down, nano-bubbles are generated by shearing and crushing actions, which is also a feature of this invention.

[0007] The nano-bubble generating and stirring ball of this invention is also characterized in that the hollow body with a hollow structure has two or more holes of 1 mm or more provided on the wall surface of the hollow structure so that nano-bubbles are generated.

[0008] The nano-bubble generating and stirring ball of this invention is also characterized in that the hollow body with a hollow structure has two or more holes at predetermined intervals with various patterns formed on the wall surface of the hollow structure so that nano-bubbles are generated.

[0009] The nano-bubble generating and stirring ball of this invention is also characterized in that the hollow body with a hollow structure is made of a material heavier than water, such as polyethylene terephthalate (PET, specific gravity around 1.38), polystyrene (specific gravity around 1.05), and steel.

Advantages of the Invention

[0010] The nano-bubble generating and stirring ball of this invention is a nano-bubble generating and stirring ball that is a hollow body with a hollow structure and has a plurality of holes through which liquid passes provided on the wall surface of the hollow structure. By storing this nano-bubble generating and stirring ball in a liquid storage container such as a bottle and shaking the liquid storage container up and down, nano-bubbles with extremely high concentration can be generated very efficiently by shearing and crushing actions, which is an advantage of this invention.

[0011] Moreover, the nano-bubble generating stirring ball of this invention is a nano-bubble generating stirring ball that is a hollow body with a hollow structure and has a plurality of holes through which liquid passes provided on the wall surface of the hollow structure. By attaching this nano-bubble generating stirring ball to a straw provided in a liquid storage container such as a bottle and shaking the liquid storage container up and down, nano-bubbles can be generated in a very stable state due to shearing and crushing actions.

[0012] The nano-bubble generating stirring ball of this invention has the advantage that it can be manufactured at low cost with a very simple structure in which nano-bubbles are generated by providing two or more holes of 1 mm or more in the wall surface of the hollow structure of the hollow body with a hollow structure.

[0013] The nano-bubble generating stirring ball of this invention has the advantage that it can produce a product with a very simple structure and excellent fashionability in which nano-bubbles are generated by providing two or more holes at predetermined intervals with various patterns formed on the wall surface of the hollow structure of the hollow body.

[0014] The nano-bubble generating stirring ball of this invention is made of a material heavier than water, such as polyethylene terephthalate (PET, specific gravity around 1.38), polystyrene (specific gravity around 1.05), or steel, and has the advantage that nano-bubbles can be generated more efficiently.

Brief Description of the Drawings

[0015]

Figure 1

Figure 2

Figure 3

Figure 4

Mode for Carrying Out the Invention

[0016] Hereinafter, a first embodiment of the nano-bubble generating stirring ball of the present invention will be described in detail with reference to the drawings. In FIG. 1, reference numeral 11 denotes a liquid storage container such as a bottle, and examples thereof include liquid cosmetics, soft drinks, fruit drinks and other drink agents, and liquid fertilizer containers. In the liquid storage container 11, a nano-bubble generating stirring ball 12 having a hollow structure and a plurality of holes 13 through which the liquid passes provided in the wall surface of the hollow structure is stored. By storing this nano-bubble generating stirring ball 12 in a liquid storage container 11 such as a bottle and shaking the liquid storage container 11 up and down, extremely highly concentrated nano-bubbles 14 are generated very efficiently by shearing and crushing actions.

[0017] The nano-bubble generating stirring ball 12 may have a hollow structure as a basic structure, and may have a spherical shape, a rugby ball shape, a cylindrical shape, a heart shape or other appropriate shapes. In FIG. 1, holes 13 through which the liquid passes are formed in the spherical nano-bubble generating stirring ball 12 at appropriate intervals. Then, by storing this nano-bubble generating stirring ball 12 in a liquid storage container 11 such as a bottle and shaking the liquid storage container 11 up and down, nano-bubbles 14 are generated very efficiently by shearing and crushing actions in the holes 13 through which the liquid passes.

[0018] FIG. 2 shows a second embodiment of the nano-bubble generating stirring ball of the present invention. Also in this example, in the liquid storage container 21, a nano-bubble generating stirring ball 22 having a hollow structure and a plurality of holes 23 through which the liquid passes provided in the wall surface of the hollow structure is stored. The nano-bubble generating stirring ball 22 is stored in a liquid storage container 21 such as a bottle, and by shaking the liquid storage container 21 up and down, extremely highly concentrated nano-bubbles 24 are generated very efficiently due to shearing and crushing actions.

[0019] The above nano-bubble generating stirring ball 22 is spherical, and a hole 23 through which liquid passes is formed along a plurality of circular virtual lines in an appropriate sense through the spherical upper and lower vertices 25 of the nano-bubble generating stirring ball 22 of this sphere. Then, the nano-bubble generating stirring ball 22 is stored in a liquid storage container 21 such as a bottle, and by shaking the liquid storage container 21 up and down, nano-bubbles 24 are generated very efficiently due to shearing and crushing actions in the hole 23 through which the liquid passes.

[0020] Figure 3 shows a third embodiment of the nano-bubble generating stirring ball of the present invention. In this example, a straw 33 is attached to the upper injection part 32 of the liquid storage container 31, and a nano-bubble generating stirring ball 34 having a hollow structure and a plurality of holes 35 through which liquid passes provided in the wall surface of the hollow structure is fitted at an appropriate position on the outer periphery of the straw 33. The nano-bubble generating stirring ball 34 is attached to an appropriate position on the outer periphery of the straw 33, and by shaking the liquid storage container 31 up and down, with the injection of liquid from the straw 33 and due to shearing and crushing actions in the nano-bubble generating stirring ball 34, extremely highly concentrated nano-bubbles 36 are generated very efficiently.

[0021] Figure 4 shows a fourth embodiment of the nano-bubble generating stirring ball of the present invention. In this example, a straw 43 is attached to the upper injection part 42 of the liquid storage container 41, and a nano-bubble generating stirring ball 44 having a hollow structure and a plurality of holes 45 through which liquid passes provided in the wall surface of the hollow structure is fitted at an appropriate position on the outer periphery of the straw 43. Attach this nanobubble generating stirring ball 44 to an appropriate position on the outer periphery of this straw 43, and by shaking the liquid storage container 41 up and down, with the injection of the liquid from the straw 43 and also due to the shearing and crushing actions in the nanobubble generating stirring ball 44, extremely highly concentrated nanobubbles 46 are generated very efficiently.

[0022] In a 160 cc bottle generally used for cosmetics etc., as the shaking conditions, the vertical width was 10 cm or more, 10 times in 10 seconds, the hole diameter was 2 mm, and 8 holes were arranged in a well - balanced manner so that no water remained in the stirring ball. When the number of hollow and perforated nanobubble generating stirring balls was 1, the amount of generated nanobubbles per 1 ml was on average 3.5E×7 (35 million). When the number of hollow and perforated nanobubble generating stirring balls was 3, the amount of generated nanobubbles per 1 ml was on average 1.0E×8 (100 million). When the number of hollow and perforated nanobubble generating stirring balls was 5, the amount of generated nanobubbles per 1 ml was an average generation amount of 2.2E×8 (220 million). The amount of generated nanobubbles increased as the number of hollow and perforated stirring balls increased. Also, when the vertical width was 10 cm or more and 20 times in 20 seconds, the average generation amount increased by about 10%. Also, similar results were obtained when using Tsuyu - type and Marquis - type holes through which the liquid passes. Furthermore, similar results were obtained by arranging the holes in a well - balanced manner even when the nanobubble generating stirring ball itself was in the shape of a rugby ball, cylinder, heart, etc. That is, it was found that by shaking the container with the nanobubble generating stirring ball up and down and having the liquid pass through the inside of the nanobubble generating stirring ball, shearing and crushing occur, and nanobubbles are generated.

[0023] The advantages of the above - mentioned nanobubble generating stirring ball are that it is possible to generate nanobubbles by putting a stirring ball of a size that can enter through the container mouth into generally used cosmetic containers, drink containers, liquid fertilizer containers, etc. Therefore, it is not necessary to install the parts for generating nanobubbles anywhere inside a cosmetic container, a drink container, a liquid fertilizer container, etc.

Industrial Applicability

[0024] By preparing a nanobubble generation stirring ball that is a hollow body with a hollow structure and has a plurality of holes through which liquid passes provided on the wall surface of the hollow structure, and storing this nanobubble generation stirring ball in a liquid storage container such as a bottle, just by shaking the liquid storage container up and down, nanobubbles of extremely high concentration can be generated very efficiently by shear and crushing actions. Moreover, it is only necessary to prepare a nanobubble generation stirring ball that is a hollow body with a hollow structure and has a plurality of holes through which liquid passes provided on the wall surface of the hollow structure. High-density nanobubbles can be obtained at very low cost and can be suitably used in cosmetic containers, drink containers, liquid fertilizer containers, etc.

Explanation of Signs

[0025] 11 Liquid storage container 12 Nanobubble generation stirring ball 13 Hole through which liquid passes 14 Nanobubble 21 Liquid storage container 22 Nanobubble generation stirring ball 23 Hole through which liquid passes 24 Nanobubble 25 Spherical upper and lower vertices 31 Liquid storage container 32 Injection part 33 Straw 34 Nanobubble generation stirring ball 35 Hole 36 Nanobubble 41 Liquid storage container 42 Injection part 43 Straw 44 Nanobubble generation stirring ball 45 Hole 46 Nanobubble

Claims

1. A nanobubble generation and agitation ball which is a hollow body with a hollow structure and has a plurality of holes through which liquid passes provided in the wall surface of the hollow structure, wherein the nanobubble generation and agitation ball is housed in a liquid storage container such as a bottle, and by shaking the liquid storage container up and down, nanobubbles are generated by shearing and crushing actions. The nanobubble generation and agitation ball is characterized by this.

2. A nanobubble generation and agitation ball which is a hollow body with a hollow structure and has a plurality of holes through which liquid passes provided in the wall surface of the hollow structure, wherein the nanobubble generation and agitation ball is attached to a straw provided in a liquid storage container such as a bottle, and by shaking the liquid storage container up and down, nanobubbles are generated by shearing and crushing actions. The nanobubble generation and agitation ball according to claim 1 is characterized by this.

3. The nanobubble generation and agitation ball according to claim 1 or 2, wherein the hollow body with the hollow structure is provided with two or more holes of 1 mm or more in the wall surface of the hollow structure so that nanobubbles are generated.

4. The nanobubble generation and agitation ball according to claim 1 or 2, wherein the hollow body with the hollow structure is provided with two or more holes at predetermined intervals with various patterns formed in the wall surface of the hollow structure so that nanobubbles are generated.

5. The nanobubble generation and agitation ball according to claim 1 or 2, wherein the hollow body with the hollow structure is made of a material heavier than water, such as polyethylene terephthalate (PET, specific gravity around 1.38), polystyrene (specific gravity around 1.05), or steel.