Foam generating device and foam generating method

By introducing a rotating part and rotating mechanism into the foam generator, the foam growth process is generated and controlled, solving the problem of low foam density in existing products and achieving the generation of high-density foam, which is suitable for home and beauty salons.

CN116113686BActive Publication Date: 2026-05-29FOUR T KAKEN CO LTD +2

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
FOUR T KAKEN CO LTD
Filing Date
2021-06-01
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

Existing foam generators produce low foam density.

Method used

A foam generating device is used, comprising a container, a rotating part and a rotating mechanism. A first foam is generated by the first rotating part, the first foam is grown into a second foam by the foam generating part, and the rising or falling of the second foam is suppressed by the second rotating part, thereby achieving high-density foam.

Benefits of technology

It effectively produces high-density foam and is suitable for general households, beauty salons, and other similar establishments.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a foam generating device and a foam generating method capable of generating a high-density foam. A foam generating device is used, which has a container, a rotating portion inside the container, and a rotating mechanism that rotates the rotating portion. The rotating portion has a first rotating portion that generates a first foam, a foam generating portion that grows the first foam into a second foam, and a second rotating portion that holds the second foam. A foam generating method is used, which includes a first step of generating a first foam from a liquid using rotation of a first rotating portion, a second step of further generating a second foam by passing the first foam through a foam generating portion, and a third step of inhibiting the second foam from rising or falling using a second rotating portion.
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Description

Technical Field

[0001] This invention relates to a foam generating apparatus and a foam generating method. In particular, it relates to a foam generating apparatus and a foam generating method for making soapy water, etc., foam. Background Technology

[0002] Previously, a type of bubbler was used (Patent Document 1). Utilizing... Figure 1 The cross-sectional view illustrates an existing foaming device. The existing foaming device is cylindrical. A disc-shaped foam generating section 34 is disposed inside the cylindrical container 15. The foam generating section 34 is connected to the holding section 33 via a shaft 36. The foam generating section 34 has multiple through holes 37. If the holding section 33 is moved up and down, the foam generating section 34 moves, generating foam from the soapy water 20 through the through holes 37. Once foam is formed, the cap 32 is removed to use the foam.

[0003] Patent Document 1: Japanese Patent Application Publication No. 2015-139545

[0004] However, with existing foamers, the foam density is low. Summary of the Invention

[0005] Therefore, the subject of this invention is to provide a foam generating apparatus and a foam generating method capable of producing high-density foam.

[0006] To solve the above-mentioned problem, a foam generating device is used, which includes: a container; a rotating part located inside the container; and a rotating mechanism for rotating the rotating part, wherein the rotating part has: a first rotating part for generating a first foam; a foam generating part for growing the first foam into a second foam; and a second rotating part for holding the second foam.

[0007] In addition, a foam generation method is used, which includes: a first step of generating a first foam from a liquid by rotating a first rotating part; a second step of further generating a second foam by passing the first foam through a foam generation part; and a third step of suppressing the rise or fall of the second foam by using a second rotating part.

[0008] The bubbler, foam generating apparatus and foam generating method of this application are capable of generating high-density foam. Attached Figure Description

[0009] Figure 1 This is a cross-sectional view of an existing bubbler.

[0010] Figure 2 (a) is a cross-sectional view of the foam generating apparatus of Embodiment 1, and (b) is a top view of the foam generating apparatus of Embodiment 1.

[0011] Figure 3 (a) is a bottom view of the first rotating part of the bubbler of Embodiment 1, and (b) is a side view of the first rotating part of the bubbler of Embodiment 1.

[0012] Figure 4 (a) is a top view of the second rotating part of the bubbler of Embodiment 1, and (b) is a partial side view of the second rotating part of the bubbler of Embodiment 1.

[0013] Figure 5 (a) to (c) are top views of the foam generating section of the foam generator according to Embodiment 1.

[0014] Figure 6 This is a side view of the foam generating apparatus according to Embodiment 2.

[0015] Figure 7 (a) to (b) are cross-sectional views of the foam generating apparatus of Embodiment 3.

[0016] Figure 8 This is a cross-sectional view of the foam generating device according to Embodiment 4.

[0017] Figure 9 (a) is a perspective view of the rotating part of Embodiment 5, (b) is a cross-sectional view of the foam generating apparatus of Embodiment 5, and (c) is a perspective view of a modified example of the rotating part of Embodiment 5.

[0018] Figure 10 (a) to (d) are perspective views of modified examples of the rotating part of Embodiment 5.

[0019] Figure 11 (a) to (d) are perspective views of modified examples of the rotating part of Embodiment 6, and (e) to (f) are front views of modified examples of the rotating part of Embodiment 6.

[0020] Figure 11 (g) is a top view illustrating a modified example of the rotating part of Embodiment 6.

[0021] Figure 11 (h) is a top view illustrating a modified example of the rotating part of Embodiment 6.

[0022] Figure 12 (a) is a perspective view of the rotating part of Embodiment 7, (b) is a cross-sectional view of the foam generating device of Embodiment 7, and (c) to (d) are perspective views illustrating the operation of the ejector tube of Embodiment 7.

[0023] Figure 13 (a) to (b) are cross-sectional views illustrating the operation of the foam generating apparatus of Embodiment 7.

[0024] Figure 14 (a) is a cross-sectional view illustrating a modified example of the foam generating apparatus of Embodiment 7, and (b) is a control diagram of the foam generating apparatus of Embodiment 7.

[0025] Figure 15 (a) is a cross-sectional view illustrating a modified example of the foam generating apparatus of Embodiment 8, and (b) is a perspective view of the air inlet section of Embodiment 8.

[0026] Figure 16 (a) is a cross-sectional view illustrating a modified example of the foam generating apparatus of Embodiment 9, and (b) is a perspective view of the air inlet section of Embodiment 9.

[0027] Figure 17 This is a cross-sectional view illustrating the application of the foam generating apparatus of Embodiment 10.

[0028] Figure 18 (a) to (b) are cross-sectional views showing modified examples of the foam generating device. Detailed Implementation

[0029] The following describes the implementation methods, but the invention is not limited to the following.

[0030] (Implementation Method 1)

[0031] <Structure>

[0032] use Figure 2 The cross-sectional view of (a) and Figure 2 (b) is a top view illustrating the foam generating apparatus 17a of Embodiment 1. The foam generating apparatus 17a includes a container 15, a rotating part 30a, and a rotating mechanism 13.

[0033] <Rotating part 30a>

[0034] The rotating part 30a has a first rotating part 11, a foam generating part 14, a second rotating part 12 and a rotating shaft 16, the rotating shaft 16 connecting the first rotating part 11, the foam generating part 14, the second rotating part 12 and the rotating mechanism 13.

[0035] The first rotating part 11 blows the soapy water 20 upward by rotating, creating the first foam 21.

[0036] The foam generating section 14 is a thin plate with through holes. Second foam 22 is generated by passing the first foam 21 through the through holes. Alternatively, a slit can be used instead of a through hole. As long as there is a gap, it is acceptable.

[0037] The second rotating part 12 prevents the second foam 22 from moving upward. The second foam 22 is pressed downward. The second foam 22, moving downward, is then re-formed into the first foam 21 by the first rotating part 11. The above actions are repeated to produce stable foam.

[0038] The rotating shaft 16 connects the first rotating part 11, the foam generating part 14, the second rotating part 12, and the rotating mechanism 13. The entire assembly forms the rotating part 30a. The rotating shaft 16 is the central axis of rotation of the rotating part 30a. In this example, the foam generating part 14 covers the first rotating part 11.

[0039] <Container 15>

[0040] Soapy water 20 is added to container 15. Container 15 is cylindrical. The rotating part 30a rotates inside container 15 to generate foam.

[0041] <Rotating Mechanism 13>

[0042] The rotating mechanism 13 is the starting unit that rotates the rotating shaft 16 of the rotating part 30a. It can also be rotated manually or by using a motor or the like.

[0043] <Craftsmanship>

[0044] (1) Put soapy water 20 into container 15.

[0045] (2) Place the rotating part 30a into container 15.

[0046] (3) The rotating part 30a is rotated by the rotating mechanism 13, and the soap water 20 is blown upward to generate the first foam 21.

[0047] (4) When the first foam 21 passes through the gaps such as the through hole and slit of the foam generating part 14, the second foam 22 is generated. If the foam increases, the foam reaches the second rotating part 12. At this time, the second rotating part 12 is used to prevent the second foam 22 from moving upward. The second foam 22 returns to the soap water 20 at the bottom of the container 15.

[0048] (5) By repeating the above actions again, high-density foam with tiny shapes is formed.

[0049] <First Rotating Part 11>

[0050] use Figure 3 (a) bottom view, Figure 3 (b) is a partial side view illustrating the first rotating part 11 of Embodiment 1.

[0051] The first rotating part 11 has a plurality of blades 11a around the rotating shaft 16. The blades 11a are inclined relative to the vertical direction. By rotating, the soapy water 20 located at the bottom is blown upward, generating the first foam 21.

[0052] <Second Rotating Part 12>

[0053] use Figure 4 (a) Top view, Figure 4 (b) is a partial side view illustrating the second rotating part 12 of Embodiment 1.

[0054] The second rotating part 12 has a plurality of blades 12a around the rotating shaft 16. The blades 12a are inclined relative to the horizontal direction. By rotating, the second foam 22 that rises upward is pressed downward.

[0055] <Foam Generation Section 14>

[0056] Figure 5 (a)~ Figure 5 (c) is a top view illustrating a portion of the foam generating section 14.

[0057] exist Figure 5 In (a), it is indicated that the foam-generating part 14 is a mesh. Figure 5 (b) indicates that the foam generating section 14 has a circular opening 14a on the flat plate. Figure 5 In (c), it is indicated that the foam generating part 14 has a slit-shaped opening 14a on the flat plate.

[0058] The foam generating section 14 needs to have at least an opening through which the first foam 21 can pass. The foam generating section 14 can have various shapes.

[0059] Furthermore, it is preferable that the foam generating section 14 substantially surrounds the space between the periphery of the first rotating section 11 and the rotating axis 16. It is not necessary to completely surround it.

[0060] <Soapy Water 20>

[0061] Soap water 20 is soap water, surfactants, etc. Any foaming aqueous solution can be used.

[0062] <Container 15 and rotating part 30a>

[0063] The rotating part 30a changes position relative to the container 15 by rotating, thereby generating foam. In particular, the rotating part 30a can also generate foam by moving and rotating relative to the container 15 in the up and down direction.

[0064] <First gap 18a and second gap 18b>

[0065] A second gap 18b is provided between the inner surface of the container 15 and the second rotating part 12, and a first gap 18a is provided between the inner surface of the container 15 and the first rotating part 11.

[0066] The second rotating part 12 presses down on the second foam 22. Therefore, the second gap 18b is narrow. The first rotating part 11 generates the first foam 21, thus the first gap 18a is relatively large. At least the first gap 18a is larger than the second gap 18b.

[0067] <Axis Top 19>

[0068] The top tip 19 of the rotating shaft 16 protrudes further downward than the first rotating part 11. This top tip 19 contacts the bottom surface of the container 15, allowing the rotating part 30a to rotate. However, it is also possible to raise the top tip 19 above the bottom surface of the container 15 and allow the rotating part 30a to rotate. Alternatively, a protrusion may be present at the bottom of the container 15, and a recess may be present at the lower part of the rotating part 30a.

[0069] <Effect>

[0070] (1) Foam can be effectively generated by rotating movement.

[0071] (2) The foam returns using the second rotating part 12, forming high-density micro foam.

[0072] Compared to existing foamers, it can effectively and easily produce high-density foam. Therefore, in addition to its use in ordinary households, it can also be used in beauty salons and beauty parlors.

[0073] (Implementation Method 2) (Utilization of an electric motor, manual rotation mechanism, etc.)

[0074] use Figure 6 The foam generating apparatus 17b of Embodiment 2 is described.

[0075] The differences from Embodiment 1 are (1) the rotating mechanism 13 and (2) the foam generating part 14.

[0076] The undescribed matters are the same as in Implementation Method 1.

[0077] <Rotating Mechanism 13>

[0078] The rotating mechanism 13 has gears on the second rotating part 12 and the cover 40a respectively. By rotating the gears on the cover 40, the second rotating part 12 rotates. As a result, the rotating part 30b rotates as a whole.

[0079] In addition, Figure 6 In the middle, the gear of cover 40a is rotated manually, but a rotating device such as a motor can also be used.

[0080] <Foam Generation Section 14>

[0081] Based on the foam generating section 14 of Embodiment 1, the foam generating section 14 also has a first protrusion 41 and a second protrusion 42 on its side.

[0082] The first protrusion 41 and the second protrusion 42 further produce a third foam 23 from the second foam 22, thus generating foam more efficiently.

[0083] <Effect>

[0084] It can make the foam smaller.

[0085] (Implementation Method 3)

[0086] use Figure 7 (a) illustrates the foam generating apparatus 17c of embodiment 3.

[0087] The difference from Embodiment 1 is that the rotating part 30c is upside down. Matters not described are the same as in Embodiment 1.

[0088] The first rotating part 11 is located above, and the second rotating part 12 is located below. The foam generating part 14 covers the first rotating part 11. By inverting the rotating part 30c, the second rotating part 12 generates the first foam 21. The first foam 21 rises from the side of the foam generating part 14. The first foam 21 enters the foam generating part 14 from near the second rotating part 12, creating the second foam 22. The second foam 22 passes through the lower foam generating part 14 again and becomes finer. Furthermore, in the second rotating part 12, the descent of the foam is suppressed and it rises, and the above action is repeated, resulting in finer foam.

[0089] Figure 7 (b) is a variation. Figure 7 (b) and Figure 7 The difference in (a) is that (1) the container 15 is trapezoidal (frustum conical), (2) a lid 32 is provided, and (3) a sealing part 38 is provided between the lid 32 and the rotating part 30c.

[0090] According to (1), foam formation occurs earlier. Because the top is not dense, foam can be generated effectively.

[0091] According to (2), the foam can be made to face downwards by using the cover 32, which enables the production of high-density foam.

[0092] According to (3), it can seal the foam and make high-density foam.

[0093] The sealing part 38 consists of a recess and a convex part, but it can also be other structures. It can also be a sealing structure using rubber material.

[0094] These three structures can also be used in other implementation methods, enabling the production of high-density foam more effectively.

[0095] <Effect>

[0096] It can make the foam smaller.

[0097] Alternatively, the top and bottom can be reversed in other implementations.

[0098] (Implementation Method 4)

[0099] use Figure 8 Explanation of the foam generating apparatus 17d of Embodiment 4.

[0100] The difference from Embodiment 1 is the structure of the rotating part 30d. Matters not described are the same as in Embodiment 1.

[0101] The foam generating section 14 connects the first rotating section 11 and the second rotating section 12. The first rotating section 11, the second rotating section 12, and the foam generating section 14 form a space. This allows the first foam 21 to reliably transform into the second foam 22.

[0102] <Effect>

[0103] It can make the foam smaller.

[0104] (Implementation Method 5)

[0105] use Figure 9 (a)~ Figure 9 (b) illustrates the foam generating apparatus 17e of embodiment 5.

[0106] The difference from Embodiment 1 is the structure of the rotating part 30e.

[0107] The undescribed matters are the same as in Implementation Method 1.

[0108] Figure 9 (a) is a perspective view of the rotating part 30e of the foam generating device 17e in Embodiment 5.

[0109] Figure 9 (b) is a cross-sectional view of the foam generating apparatus 17e of Embodiment 5.

[0110] Similar to the above embodiment, the rotating part 30e is placed inside the container 15 and rotated by the rotating mechanism 13.

[0111] The rotating part 30e includes a first rotating part 11, a second rotating part 12, and a foam generating part 14.

[0112] The first rotating part 11 is annular.

[0113] The second rotating part 12 is annular, and its upper surface has a protrusion on the side of the rotating shaft 16. The second foam 22 is guided toward the rotating shaft 16 in such a way that the generated second foam 22 does not grow along the inner surface of the container 15.

[0114] The foam generating section 14 is plate-shaped and has a flat portion 14b along the inner surface of the container 15. The foam generating section 14 is composed of the flat portion 14b and a plate-shaped body on the inner side of the container. The plate-shaped body is approximately perpendicular to the inner surface of the container. A second foam 22 is generated in the gap between the flat portion 14b and the inner surface of the container 15. Because the second foam 22 is generated in the gap, fine, high-density foam can be generated. Preferably, there are no openings in the flat portion 14b. Large, low-density foam will not be generated due to openings. In the rotating section 30e, two foam generating sections 14 are provided in opposite positions.

[0115] Figure 9 (c)~ Figure 10 (d) is Figure 9 A variation of the rotating part 30e of (a).

[0116] Figure 9 In (c), there are four foam generating parts 14 in the rotating part 30e.

[0117] Figure 10 In (a), there are six foam generating parts 14 in the rotating part 30e.

[0118] Figure 10 In (b), in the rotating part 30e, an opening is provided on the flat plate inside the foam generating part 14. The second rotating part 12 is flat, but it can also be annular.

[0119] Figure 10 In (c), in the rotating part 30e, the foam generating part 14 is a flat plate with an opening. The second rotating part 12 is annular.

[0120] Figure 10 In (d), the first rotating part 11 has a blade 12a (plate-like body). The blade 12a is a plate-like surface parallel to the upper or lower surface of the container, closing off a portion. (This is consistent with Embodiment 1.) Figure 3 of (a), Figure 3 Similar to (b), the second rotating part 12 may also have blades 12a.

[0121] <Effect>

[0122] It can make the foam smaller.

[0123] (Implementation Method 6)

[0124] use Figure 11(a)~ Figure 11 (d) illustrates the rotating part 30g of embodiment 6.

[0125] Figure 11 of (a), Figure 11 (d) is a perspective view of the rotating part 30g in embodiment 6.

[0126] Figure 11 (b) Figure 11 (c) is an enlarged perspective view of the rotating part 30g in embodiment 6. Figure 11 of (e) Figure 11 (f) is the front view of the rotating part 30g. Furthermore, Figure 11 (g) Figure 11 (h) is a top view illustrating the process of forming fine foams 74 and 75 in the foam generating section 14, depicted with a portion of the rotating section omitted.

[0127] The difference from Embodiment 5 is the structure of the rotating part 30g. Matters not described are the same as in Embodiments 1-5.

[0128] The first rotating part 11 and the second rotating part 12 are straight plates.

[0129] The foam generating section 14 includes an outer plate 14e, an inner plate 14c, and an opening 14a. These are located in parallel positions in the vertical direction.

[0130] The outer plate 14e agitates the foam on the inner surface of the container 15, while the inner plate 14c refines the foam and causes it to return to the inner surface of the container through the opening 14a. Viewed from the top surface, the rotating part 30g can rotate clockwise.

[0131] In addition, such as Figure 11 (g) and Figure 11 As shown in (h), by repeatedly agitating the foam 74 between the inner plate 14c and the outer plate 14e, the foam 75 can be made fine.

[0132] Figure 11 (f) represents a variation. Figure 11 (f) is a modified example of the rotating part 30g.

[0133] Net sections 11a and 12b are provided in the first rotating part 11 and the second rotating part 12. Either one can also be provided. The net sections 11b and 12b are used to further improve the foam generation efficiency.

[0134] <Effect>

[0135] It can make the foam smaller.

[0136] Alternatively, the inner plate 14c may not be tilted. It may also be perpendicular to the direction of rotation or perpendicular to the outer plate 14e. Furthermore, the cross-section of the end (outer side) of the outer plate 14e may be arrow-shaped, wedge-shaped, or pointed.

[0137] (Implementation Method 7)

[0138] use Figure 12 (a)~ Figure 13 (b) illustrates the foam generating apparatus 17f of embodiment 7.

[0139] The difference from Embodiment 1 is the structure of the rotating part 30f.

[0140] The undescribed matters are the same as in Implementation Method 1.

[0141] Figure 12 (a) is a perspective view of the rotating part 30f of the foam generating device 17f in Embodiment 6.

[0142] Figure 12 (b) is a cross-sectional view of the foam generating apparatus 17f according to embodiment 6.

[0143] Unlike the embodiment described above, the rotating part 30f has a pushing part 40b. The pushing part 40b pushes the surrounding foam downwards.

[0144] Container 15 differs from the embodiment described above in that it has a cylinder 40c. Cylinder 40c is a cylindrical body that causes the foam to move downwards.

[0145] Figure 12 (c) Figure 12 (d) is a three-dimensional view representing the action of container 15. Cylinder 40c is... Figure 12 The state of (c) and Figure 12 The state (d) changes between states. In the cylindrical tube 40c, a door 43 and an opening 40d are provided along the side of the tube 40c. Figure 12 In (c), opening 40d is closed by door 43. Figure 12 In (d), door 43 moves, and opening 40d opens. In this example, viewed from the top surface, it is preferable that the rotating part 30f rotates counterclockwise, making it easy to remove the foam.

[0146] use Figure 13 of (a), Figure 13 (b) A cross-sectional view of the foam generating device 17f is provided to illustrate the process.

[0147] Figure 13 (a) indicates the state in which the first foam 21 and the second foam 22 are generated by rotating the rotating part 30f using the rotating mechanism 13.

[0148] Figure 13 (b) indicates that in Figure 13 (a) then causes the door 43 of cylinder 40c to move and open the opening 40d.

[0149] If the rotating part 30f is rotated in this state, the foam is introduced into the cylinder 40c by the door 43, and the foam is moved downward by the push-out part 40b.

[0150] At the same time, open outlet 44 to discharge foam into container 45.

[0151] <Variation Example>

[0152] Figure 14 (a) is a cross-sectional view of a modified example of the foam generating device 17f. Figure 14 (b) is a diagram showing the control of the foam generating device 17f.

[0153] exist Figure 14 In (a), the foam generating device 17f also has a supply unit 52.

[0154] The supply unit 52 maintains soapy water 20 and replenishes it to the container 15 by opening valve 51. Valve 51 is opened and closed by control unit 53. Control unit 53 also controls the rotating mechanism 13.

[0155] That is, the control unit 53 controls the rotating mechanism 13 and the supply unit 52.

[0156] <Craftsmanship>

[0157] (1) Add soapy water 20 from the supply section 52 to the container 15.

[0158] (2) The rotating part 30f rotates by means of the rotating mechanism 13.

[0159] (3) After the foam has been fully made, stop the rotating part 30f, move the door 43 of the cylinder 40c, and open the opening 40d.

[0160] (4) Then, rotate the rotating part 30f, use the door 43 to introduce the foam into the cylinder 40c, and use the push-out part 40b to move the foam downward. At the same time, open the outlet 44 to discharge the foam into the container 45.

[0161] The foam can be easily removed from container 15f.

[0162] <Effect>

[0163] It can make the foam smaller.

[0164] (Implementation Method 8)

[0165] use Figure 15 (a)~ Figure 15(b) describes the foam generating device 17g of embodiment 8.

[0166] The difference from the above embodiments is the presence of an air inlet 60. An air inlet 60 can be provided in all of the above embodiments.

[0167] The undescribed matters are the same as those described above.

[0168] Figure 15 (a) is a cross-sectional view of the foam generating apparatus 17g of Embodiment 8.

[0169] Figure 15 (b) is a perspective view of the air inlet 60 of embodiment 8.

[0170] Foam generating device 17g in Figure 7 In Embodiment 3, the foam generating apparatus 17c has an air inlet 60 at its rotating shaft 16. The air inlet 60 has an inlet cylinder 60a and an outlet 60b at its top. The inlet cylinder 60a draws in external air and delivers it to the outlet 60b. The outlet 60b then supplies this air to the soapy water 20.

[0171] It is easy to bubble by supplying air.

[0172] Preferably, the blowing section 60b is located at the lower part of the container 15. The air inlet section 60 can also be provided independently of the rotating section 30c. Furthermore, the air inlet section 60 can be provided in the rotating section of any of the above embodiments.

[0173] The air inlet 60 is tubular, with a blowout 60b at the top end, allowing air to be introduced into the soapy water 20 from the outside. The blowout 60b is obliquely cut into the tube, with an opening on the side opposite to the rotation direction of the air inlet 60. Thus, air is naturally introduced from the inlet cylinder 60a. Alternatively, a pump can be separately installed and connected to the inlet cylinder 60a to forcibly supply air to the inlet cylinder 60a.

[0174] <Effect>

[0175] It can make the foam smaller.

[0176] (Implementation Method 9)

[0177] use Figure 16 (a)~ Figure 16 (b) describes the foam generating apparatus 17h of embodiment 9. Figure 16 (a) is a cross-sectional view of the foam generating device 17h. Figure 16 (b) is a perspective view of the air inlet 60 of the foam generating apparatus 17h of Embodiment 9 (the first rotating part 11 is omitted).

[0178] The difference from Embodiment 8 described above lies in the air inlet 60. Matters not described are the same as in the previous embodiment. The air inlet 60 has a spiral protrusion 14d on its side. A first rotating part 11 is located at the top. A blowout part 60b, serving as a second rotating part 12, is located at the bottom. As the rotating part 30c rotates, air is naturally introduced from the blowout part 60b, generating foam. By using the protrusion 14d to move the foam upwards, the foam moves and effectively becomes finer. By using the first rotating part 11 to press the foam downwards, the foam moves again from the bottom to the top and becomes finer.

[0179] <Effect>

[0180] It can make the foam smaller.

[0181] (Implementation Method 10)

[0182] use Figure 17 This describes the application of the foam generating device in Embodiment 10. Figure 17 This is an application example of using the foam generating device for 17 hours. Using the foam generating device of Embodiment 9, foam is generated in a large container 70.

[0183] Container 70 is, for example, a large container such as a bathtub and contains water 73. Container 70 may also be a pond or a canal.

[0184] The foam generating device 17h has a guide 71 on its side and an suction part 72 at its bottom. The suction part 72 consists of blades or the like that that attract water. The guide 71 is a wall that causes the foam to rise along the side of the foam generating device 17h. This makes the foam finer.

[0185] Alternatively, the foam generating device 17h can also be a foam generating device in other embodiments.

[0186] Foam produced by the foam generating device 17h is released from above into water 73, creating foam in the container 70 as a whole.

[0187] (Implementation Method 11)

[0188] In embodiment 6, when soapy water 20 is replaced with egg white, a high-density egg white cream is formed more effectively and easily compared to existing foamers. Therefore, the foam generating apparatus and foam generating method of this invention can also be applied to general households, food manufacturing industries, restaurants, pastry shops, etc.

[0189] (Implementation Method 12)

[0190] In embodiment 6, when soapy water 20 is replaced with fresh cream, high-density foamed cream can be formed more effectively and easily compared to existing foamers. Therefore, the foam generating apparatus and foam generating method of this invention can also be applied to general households, food manufacturing industries, restaurants, pastry shops, etc.

[0191] (Postscript)

[0192] The above implementation methods can be combined.

[0193] In the above embodiment, the container 15 preferably has a lid. This prevents foam from overflowing to the outside and allows the foam to return to the inside of the container 15, resulting in finer foam.

[0194] In the above embodiments, the second rotating part 12 is not necessary, but it is preferable to have a second rotating part 12.

[0195] Figure 18 of (a), Figure 18 (b) shows a cross-sectional view of an example without the second rotating part 12.

[0196] exist Figure 18 In (a), there is no second rotating part 12 but there is a container upper part 15a. The rising foam is confined below by the container upper part 15a, and the foam becomes fine.

[0197] exist Figure 18 In (b), the generated foam is immediately released into water 73, releasing foam into water 73 as a whole.

[0198] Furthermore, in the above embodiment, the rotating mechanism 13 is positioned at the top, but it can also be positioned at the bottom using a belt or the like. When the rotating mechanism 13 is positioned at the bottom, the heavier component is located below, making the device stable.

[0199] Industrial applicability

[0200] The foam generating device and foam generating method of this application can be applied to general households, beauty salons, beauty parlors, food manufacturing, restaurants, pastry shops, etc.

[0201] Explanation of reference numerals in the attached figures

[0202] 11 First Rotating Part

[0203] 11a blade

[0204] 11b Network Department

[0205] 12 Second Rotating Part

[0206] 12a blade

[0207] 12b Network Department

[0208] 13 Rotating mechanism

[0209] 14. Foam Generation Section

[0210] 14a Opening

[0211] 14b Planar section

[0212] 14c Inner Panel

[0213] 14d protrusion

[0214] 14e outer panel

[0215] 15, 15a containers

[0216] 16 rotating axes

[0217] Foam generating devices 17, 17a, 17b, 17c, 17d, 17e, 17f, 17g

[0218] 18a First gap

[0219] 18b Second gap

[0220] 19 Axis top

[0221] 20 Soapy water

[0222] 21 The First Bubble

[0223] 22 The Second Bubble

[0224] 23 The Third Bubble

[0225] Rotating parts 30, 30a, 30b, 30c, 30d, 30e, 30f, 30g

[0226] 32 lids

[0227] 33. Maintenance Section

[0228] 34 Foam Generation Section

[0229] 36 axes

[0230] 37 Through hole

[0231] 38 Sealing part

[0232] 40 lids

[0233] 40a cover

[0234] 40b Launch Department

[0235] 40C cylinder

[0236] 40d opening

[0237] 41 First protrusion

[0238] 42 Second protrusion

[0239] 43 doors

[0240] 44. Take out the exit

[0241] 45 containers

[0242] 51 valve

[0243] 52 Supply Department

[0244] 53 Control Department

[0245] 60 Air Inlet Section

[0246] 60a Inlet Tube

[0247] 60b blow-out section

[0248] 70 containers

[0249] 71. Guide

[0250] 72. Attraction Department

[0251] 73 Water

[0252] 74, 75 foam.

Claims

1. A foam generating device, comprising: container; A rotating part, located inside the container; and A rotating mechanism is used to rotate the rotating part. The rotating part has: The first rotating part generates the first foam; The foam-generating section causes the first foam to grow into a second foam. as well as The second rotating part holds the second foam inside the container. The second rotating part has a pushing part that pushes the surrounding foam downwards. The foam generating device is characterized in that... The container has a push tube that allows the foam to move downwards. The cylindrical body has an opening on its side.

2. The foam generating device according to claim 1, characterized in that, The side has a door that closes the opening.

3. The foam generating device according to claim 1, characterized in that, For the cylindrical body, the second foam is introduced through the opening and pushed downwards by the ejector. The second foam is discharged from the outlet of the cylindrical body to the outside of the foam generating device.