Massage mats and multi-functional spa machines

The massage mat and spa machine address the lack of versatility in whirlpool baths by using dual fluid supply systems for gas-liquid mixtures and air, offering enhanced massage and skin care through separate fluid actions.

JP7777709B1Active Publication Date: 2025-11-28XIAMEN SOLEX HIGH TECH INDUSTRIES CO LTD
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Patent Information

Application Number
JP2025035088
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2024-12-06
Filing Date
2025-03-06
Publication Date
2025-11-28
Estimated Expiration
2045-03-06

AI Technical Summary

Technical Problem

Existing whirlpool baths lack versatility to meet the diverse needs of users, primarily in terms of massage and skin care functionalities.

Method used

A massage mat with dual storage chambers and fluid supply devices for separate fluids, allowing simultaneous application of gas-liquid mixtures and air for enhanced massage and skin care effects, along with additional features like microporous materials and auxiliary chambers for various treatments.

Benefits of technology

The massage mat and spa machine provide simultaneous aerated water and bubble massage, catering to diverse user needs, enhancing skin cleansing and relaxation through separate fluid actions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The Company offers massage mats and multi-function spa machines. The massage mat (10) comprises a housing having a first storage chamber and a second storage chamber spaced apart from each other, the housing having a first inlet and a first outlet communicating with the first storage chamber, and a second inlet and a second outlet communicating with the second storage chamber, the first inlet being connectable to a first fluid supply device, and the second inlet being connectable to a second fluid supply device. The massage mat and a host machine (20) equipped with the massage mat can meet the diverse usage needs of users.
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Description

[Technical Field]

[0001] The present invention relates to the technical field of spa machines, and more particularly to massage mats and multi-function spa machines. [Background technology]

[0002] Bubble bathing has become one of the most popular types of hot spring bathing in recent years. When bathers take a bubble bath, they are surrounded by a large area of ​​bubbles. The bubbles in the bath water generate bubble-breaking vibrations on the surface of the bather's skin, which can relieve stress, relax muscles, massage the skin, and promote blood microcirculation in the human body's subcutaneous tissue.

[0003] As living standards continue to improve, people are paying more and more attention to the quality of life. Whirlpool baths have gradually become more common in homes. However, existing whirlpool baths only have a single function, making it difficult to meet the different needs of users. Summary of the Invention [Problem to be solved by the invention]

[0004] The present invention aims to provide a massage mat and a multi-function spa machine to meet different needs of users. [Means for solving the problem]

[0005] To achieve this goal, the present invention adopts the following technical solutions.

[0006] A massage mat comprising a housing, a cutting material, and a microporous material, wherein a first storage chamber and a second storage chamber are spaced apart within the housing, the housing is provided with a first inlet and a first outlet connecting the first storage chamber to the outside, and a second inlet and a second outlet connecting the second storage chamber to the outside, the first inlet being connectable to a first fluid supply device, and the second inlet being connectable to a second fluid supply device.

[0007] Preferably, the massage mat further includes a first joint connected to the housing, and the first joint has a first flow path and a second flow path spaced apart from each other, the first flow path being used to connect the first fluid supply device to the first inlet, and the second flow path being used to connect the second fluid supply device to the second inlet.

[0008] Preferably, the first outlet is provided on an outer surface of the housing, and the second outlet is provided on an upper surface of the housing.

[0009] Preferably, the second storage chamber is set in an annular shape, and the first storage chamber and the second storage chamber are provided spaced apart from each other in the vertical direction.

[0010] Preferably, the massage mat further comprises a first one-way valve, the first one-way valve only allowing fluid to flow from the second chamber to the second outlet.

[0011] Preferably, a gap exists in the height direction between the top wall of the second storage chamber and the top wall of the housing, a second mounting hole is opened through the top wall of the second storage chamber, and the first one-way valve is mounted within the second mounting hole.

[0012] Preferably, the first outlet includes a large diameter segment and a small diameter segment, the small diameter segment communicates with the first storage chamber, and the large diameter segment is located at one end of the small diameter segment remote from the first storage chamber.

[0013] Preferably, the housing further includes a third storage chamber, as well as a third inlet and a third outlet connecting the third storage chamber to the outside, and the third outlet is configured to be connected to the inlet end of the first fluid supply device.

[0014] Preferably, the massage mat includes a first joint connected to the housing, the first joint having a first flow path and a second flow path spaced apart from each other, the first flow path being used to connect the first fluid supply device to the first inlet, the second flow path being used to connect the second fluid supply device to the second inlet, and the first joint further having a third flow path being used to connect the third outlet to the inlet end of the first fluid supply device.

[0015] Preferably, a fourth storage chamber is further provided within the housing, and the housing is provided with a first port and a second port connecting the fourth storage chamber to the outside, and the fourth storage chamber is used to fill with auxiliary material.

[0016] A multifunctional spa machine comprising a host machine and any one of the massage mats described above, wherein a first fluid supply device and a second fluid supply device are provided within the host machine, the first fluid supply device being connected to the first inlet, and the second fluid supply device being connected to the second inlet.

[0017] Preferably, the first fluid supply device is a gas-liquid mixture supply device, and the second fluid supply device is an air supply device. [Effects of the Invention]

[0018] The beneficial effects of the present invention are as follows:

[0019] The massage mat and multifunctional spa machine of the present invention have a first storage chamber and a second storage chamber separated from each other within the massage mat, allowing two different fluids to act on the human body simultaneously through the massage mat, thereby meeting the diverse needs of users. [Brief explanation of the drawings]

[0020] [Figure 1] 1 is a perspective structural schematic diagram of a multi-functional spa machine according to an embodiment of the present invention; [Figure 2]1 is a perspective structural schematic diagram of a massage mat according to an embodiment of the present invention; [Figure 3] 1 is a side view of a massage mat according to an embodiment of the present invention. [Figure 4] 1 is a cross-sectional view of a massage mat according to an embodiment of the present invention. [Figure 5] FIG. 2 is a diagram showing the flow path of gas in a massage mat according to an embodiment of the present invention. [Figure 6] FIG. 3 is a diagram showing the flow path of the gas-liquid mixture in the massage mat according to the embodiment of the present invention. [Figure 7] FIG. 7 is an enlarged schematic view of a portion A in FIG. 6. [Figure 8] FIG. 2 is a diagram showing a liquid reflux path according to an embodiment of the present invention. [Figure 9] 1 is a schematic exploded view of a massage mat according to an embodiment of the present invention; [Figure 10] FIG. 2 is a structural schematic diagram of one angle of the surrounding sheet. [Figure 11] FIG. 10 is a structural schematic diagram of the surrounding sheet at another angle. [Figure 12] FIG. 1 is a structural schematic diagram of one angle of the flow dividing tray. [Figure 13] FIG. 10 is a structural schematic diagram of another angle of the flow dividing tray. [Figure 14] FIG. 1 is a structural schematic diagram of one angle of the base. [Figure 15] FIG. 10 is a structural schematic diagram of the base at another angle. [Figure 16] 1 is a schematic diagram of the fitting structure of the auxiliary lid and the lid body. [Figure 17] 1 is a plan view of a multifunctional spa machine according to an embodiment of the present invention. [Figure 18] 1 is a cross-sectional view of a multi-functional spa machine according to an embodiment of the present invention. [Figure 19] FIG. 2 is another cross-sectional view of the multifunctional spa machine according to an embodiment of the present invention. [Figure 20] 10 is a structural schematic diagram of one angle of connection between the first fluid supply device and the massage mat according to the embodiment of the present invention; FIG. [Figure 21]FIG. 10 is a structural schematic diagram of another angle of connection between the first fluid supply device and the massage mat according to the embodiment of the present invention. [Figure 22] 1 is a schematic diagram illustrating the principle of how a multi-functional spa machine according to an embodiment of the present invention provides a gas-liquid mixture and gas. DETAILED DESCRIPTION OF THE INVENTION

[0021] The present invention will be described in more detail below with reference to the drawings and examples. It should be understood that the specific examples described here are merely for the purpose of illustrating the present invention and are not intended to limit the present invention. For ease of description, the drawings show only parts relevant to the present invention, rather than all structures.

[0022] In describing the present invention, unless otherwise clearly defined and limited, the terms "connect," "couple," and "fix" should be understood in a broad sense, and may refer to, for example, a fixed connection, a detachable connection, or an integral connection, a mechanical connection, an electrical connection, a direct connection, an indirect connection via an intermediate medium, an internal communication between two elements, or an interactive relationship between two elements. Those skilled in the art may understand the specific meaning of the above terms in the present invention in specific situations.

[0023] In the present invention, unless otherwise clearly defined and limited, a first feature being "above" or "below" a second feature may include direct contact between the first and second features, or contact between the first and second features via another feature between them. Furthermore, a first feature being "above," "above," and "on the upper surface" of a second feature may include the first feature being directly above or diagonally above the second feature, or simply mean that the horizontal height of the first feature is higher than that of the second feature. A first feature being "below," "below," and "on the lower surface" of a second feature may include the first feature being directly below or diagonally below the second feature, or simply mean that the horizontal height of the first feature is lower than that of the second feature.

[0024] In the description of the present embodiment, the terms "upper," "lower," "left," "right," and other orientations or positional relationships are based on the orientations or positional relationships shown in the drawings and are merely used to facilitate the description and simplify the operation, and do not necessarily indicate or suggest that such devices or elements must have a specific orientation, be configured and operated in a specific orientation, and therefore should not be understood as limiting the present invention. Furthermore, the terms "first" and "second" are merely used to distinguish between the two in the description and do not have any special meaning.

[0025] In this embodiment, a massage mat and a multifunctional spa machine are provided. The multifunctional spa machine includes a host machine 20 and a massage mat 10 according to this embodiment. The host machine 20 further includes a first fluid supply device 21 and a second fluid supply device 22. The first fluid supply device 21 and the second fluid supply device 22 can respectively supply a first fluid and a second fluid to the massage mat 10, and the first fluid and the second fluid have different effects when acting on the human body.

[0026] 2 to 16, massage mat 10 includes a housing 11. Housing 11 includes first and second storage chambers 11a and 11b, which are spaced apart from each other. Housing 11 also includes a first inlet 11e and a first outlet 11f connected to first storage chamber 11a, and a second inlet 11g and a second outlet 11h connected to second storage chamber 11b. A first fluid supply device 21 supplies a first fluid to first storage chamber 11a via first inlet 11e, and a second fluid supply device 22 supplies a second fluid to second storage chamber 11b via second inlet 11g. Housing 11 may be circular, rectangular, or another shape as needed. In this embodiment, housing 11 is circular to prevent massage mat 10 from scratching the human body.

[0027] The massage mat 10 described above can perform different functions to meet the diverse needs of users. In this embodiment, the first fluid supply device 21 is a gas-liquid mixture supply device, i.e., the first fluid is a gas-liquid mixture, and the second fluid supply device 22 is an air supply device, i.e., the second fluid is gas. Thus, the massage mat 10 can simultaneously generate aerated water and bubbles in the water, of which the aerated water can deep clean the user's pores and the bubbles can provide a massage effect, thereby meeting the diverse needs of users. It should be understood that aerated water and bubbles can be generated simultaneously, or the second fluid supply device 22 or the first fluid supply device 21 can be turned off according to the user's needs to generate aerated water or bubbles separately.

[0028] In other embodiments, the first or second fluid may also be a source of bubbles and may act to cleanse the surface of the skin.

[0029] 7 and 9, the massage mat 10 further includes a cutting material 12 and / or a microporous material 13, of which the cutting material 12 is provided at the first outlet 11f and is used to further cut the gas in the gas-liquid mixture to form microbubbles and enhance the skin cleansing effect, and the microporous material 13 is provided at the second outlet 11h and is used to further divide the gas injected into the liquid through the second outlet 11h into several small bubbles.

[0030] Specifically, the cutting material 12 comprises a first filtering screen and a first mounting seat, the first mounting seat having a first mounting hole extending therethrough, the first mounting seat being fixed to the first outlet 11f in a removable manner including, but not limited to, screwing, insertion, etc. The first filtering screen is disposed within the first mounting hole of the first mounting seat, and has pores between 40 and 500 mesh, and the microporous material 13 has pores between 50 and 300 μm, which may be an air stone or other porous structure. Fixing the cutting material 12 to the housing 11 in a removable manner makes it easier to clean and replace the cutting material 12, particularly the first filtering screen, in the future.

[0031] In other embodiments, the cutting material 12 and the microporous material 13 can be provided at other positions on the massage mat 10, for example, the cutting material 12 is provided at the first inlet 11e and the microporous material 13 is provided at the second inlet 11g, or the cutting material 12 and the microporous material 13 are provided in areas where the gas-liquid mixture and gas can flow, respectively.

[0032] In this embodiment, the massage mat 10 further includes a first joint 14 connected to the housing 11, and in order to reduce the volume of the massage mat 10, a first flow path and a second flow path separated from each other are provided within the first joint 14, with one end of the first flow path being connected to the first fluid supply device 21 and the other end being connected to the first storage chamber 11a via the first inlet 11e, and the second flow path being connected to the second fluid supply device 22 at one end and the other end being connected to the second storage chamber 11b via the second inlet 11g.

[0033] At the same time, in order to make efficient use of the surface space of the housing 11 and improve the coverage of the aerated water and bubbles, one of the first outlet 11f and the second outlet 11h is provided on the outer surface of the housing 11, and the other is provided on the top surface of the housing 11.

[0034] In this embodiment, multiple first outlets 11f are spaced apart along the circumferential direction of the housing 11 on the outer surface, and multiple second outlets 11h are arranged in a honeycomb pattern on the top surface of the housing 11. Based on this, the first chamber 11a is connected to the first outlets 11f via first guide passages 11m extending radially, and each of the multiple first guide passages 11m corresponds to each first outlet 11f. More specifically, the first outlet 11f includes a large-diameter segment and a small-diameter segment, the small-diameter segment being connected to the first chamber 11a via the first guide passage 11m, the large-diameter segment being located at one end of the small-diameter segment away from the first chamber 11a, and the cutting material 12 being disposed within the large-diameter segment. The small-diameter segment increases the flow rate of the gas-liquid mixture flowing through the cutting material 12, allowing the gas-liquid mixture to flow quickly through the cutting material 12.

[0035] In other embodiments, only one second outlet 11h may be provided and a microporous material 13 is attached to the second outlet 11h to cut the gas escaping through the second outlet 11h into small bubbles.

[0036] If the first storage chamber 11a and the second storage chamber 11b are located on the same plane, the second storage chamber 11 is configured in a ring shape, with the first storage chamber 11a located inside the second storage chamber 11b, and the first flow guide passage 11m cutting off the second storage chamber 11b in the radial direction, making it difficult for the gas to flow sequentially through each of the second outlets 11h. Therefore, in this embodiment, the first storage chamber 11a and the second storage chamber 11b are provided spaced apart from each other in the vertical direction, thereby preventing the first flow guide passage 11m from affecting the flow of gas within the second storage chamber 11b. It should be understood that the first storage chamber 11a and the second storage chamber 11b being arranged spaced apart from each other in the vertical direction includes two possibilities: the first storage chamber 11a being below the second storage chamber 11b, and the first storage chamber 11a being above the second storage chamber 11b.

[0037] The term "annular" here is a broad concept, and may be an angular annular shape or a circular annular shape, and it should be understood that the specific shape will be adapted to the shape of the housing 11. For example, the housing 11 is set to a circular shape, and the second storage chamber 11b is set to a circular annular shape.

[0038] To prevent the liquid from returning to the second fluid supply device 22 via the second chamber 11b, the massage mat 10 further includes a first one-way valve 17. The first one-way valve 17 allows the fluid to flow only from the second chamber 11b to the second outlet 11h, and the first one-way valve 17 may be fitted into the second outlet 11h. In this embodiment, to reduce the manufacturing cost of the massage mat 10, the second chamber 11b is located below the first chamber 11a, leaving a vertical gap between the top wall of the second chamber 11b and the top wall of the housing 11. A plurality of second mounting holes are drilled through the top wall of the second chamber 11b, and the first one-way valves 17 are mounted in one-to-one correspondence with each of the second mounting holes. Microporous materials 13 are installed in the gaps, corresponding to all of the second outlets 11h. For example, six second mounting holes are arranged in a circular array.

[0039] 4 and 8, in order to fully utilize the water or other liquids mixed with medicine in the environment in which the massage mat 10 is used, such as in a bathtub or tub, the housing 11 is further provided with a third storage chamber 11c, as well as a third inlet 11i and a third outlet 11j connected to the third storage chamber 11c. The third storage chamber 11c is not connected to either the first storage chamber 11a or the second storage chamber 11b. The third outlet 11j is used to connect to the liquid inlet end of the first fluid supply device 21, which can create negative pressure in the third storage chamber 11c. The liquid in the environment in use enters the third storage chamber 11c through the third inlet 11i and flows to the liquid inlet end of the first fluid supply device 21 through the third outlet 11j, thereby providing the liquid to the first fluid supply device 21.

[0040] Specifically, a first filter material 18 is provided at the third inlet 11i to prevent foreign matter from entering the third storage chamber 11c along with the liquid through the third inlet 11i, flowing through the third storage chamber 11c to the first fluid supply device 21 and affecting the first fluid supply device 21.

[0041] In this embodiment, the first filter material 18 has a second mounting seat 181 and a second filter mesh 182, the second mounting seat 181 has a third mounting hole formed therethrough, the second filter mesh 182 is disposed within the third mounting hole, and the second mounting seat 181 is fixed within the third inlet 11i by employing a method including but not limited to screwing, thereby facilitating replacement or cleaning of the first filter material 18.

[0042] Since the massage mat 10 further includes a first joint 14 connected to the housing 11, a third flow path is further provided within the first joint 14, one end of which is connected to the third storage chamber 11c via a third outlet 11j and the other end of which is connected to the liquid inlet end of the first fluid supply device 21, and the third outlet 11j is provided at the bottom of the housing 11.

[0043] Specifically, referring to Figures 3 and 4, a second fitting 15 and a third fitting 16 are inserted into a first fitting 14, the first flow path is formed inside the second fitting 15, the third flow path is formed inside the third fitting 16, and the gap between the first fitting 14 and the second fitting 15 and the third fitting 16 is the second flow path.

[0044] Preferably, the housing 11 is further provided with a fourth storage chamber 11d that does not communicate with any of the first storage chamber 11a, the second storage chamber 11b, and the third storage chamber 11c, and the housing 11 is provided with a first port 11k and a second port 11l that communicate with the fourth storage chamber 11d, and by setting the first port 11k and the second port 11l, the fourth storage chamber 11d can be communicated with the external environment, and the fourth storage chamber 11d can be filled with auxiliary materials having different functions according to needs, and the auxiliary materials can be hydrogen-rich stone, VC balls, carbonate tablets, sulfite, etc. These include, but are not limited to, the use of one or more of calcium filter media and KDF filter media, among which hydrogen-rich stone has antioxidant and anti-inflammatory effects on the skin, VC balls, carbonate tablets, calcium sulfite filter media and KDF filter media can remove heavy metals and residual chlorine from water, volcanic stone and Maifan stone can promote blood circulation, PP cotton and activated carbon filter media can remove residual chlorine impurities and improve water quality, and aromatic essential oils can provide fragrance during massage to improve the massage atmosphere.

[0045] Specifically, the fourth storage chamber 11d is set to a circular shape and is located inside the first storage chamber 11a, the multiple first communication ports 11l are provided on the upper surface of the housing 11 and are generally honeycomb-shaped, and the multiple second communication ports 11k are provided on the lower surface of the housing 11. In this embodiment, the first storage chamber 11a, the second storage chamber 11b, and the fourth storage chamber 11d are arranged coaxially, and the first storage chamber 11a is also set to annular shape.

[0046] In order to maintain the stability of the massage mat 10 in water, the massage mat 10 further includes chucks 19, and a plurality of chucks 19 are provided on the underside of the housing 11 for fixing the massage mat 10.

[0047] Referring to Figure 9, the housing 11 comprises a base 111, a fixed lid, a surrounding sheet 114 and a diversion tray 115, of which a ring-shaped separation rib 1121 is provided on one side of the fixed lid facing the base 111, and the fixed lid is connected to and surrounds the base 111 using a method including, but not limited to, insertion and bolt connection to form an inner chamber, and the separation rib 1121 separates the inner chamber into a first inner chamber and a second inner chamber, and the first inner chamber is the fourth storage chamber 11d.

[0048] In order to facilitate replacement of the auxiliary material in the fourth storage chamber 11d according to the user's needs, the fixed lid comprises a lid main body 112 and an auxiliary material lid 113, the lid main body 112 has an attachment opening aligned with the separating rib 1121, the auxiliary material lid 113 is removably connected to the lid main body 112 to close the attachment opening, and a second communication opening 11l is opened in the auxiliary material lid 113.

[0049] Considering that the auxiliary member is a consumable material, it needs to be replaced frequently. In this embodiment, the diameter of the mounting hole is the same as the inner diameter of the separating rib 1121, and the auxiliary member cover 113 is engaged and fixed to the separating rib 1121. Specifically, referring to FIG. 16 , an L-shaped engaging buckle 1122 is provided on the inner wall of the separating rib 1121, and an L-shaped rotating buckle 1131 is provided on the outer wall of the auxiliary member cover 113. The interlocking of the engaging buckle 1122 and the rotating buckle 1131 prevents the auxiliary member cover 113 from being removed upward from the base 111. A stopper bar 1123 is further provided on the inner wall of the separating rib 1121 to limit the depth to which the auxiliary member cover 113 enters the fourth receiving chamber 11d. When the upper surface of the auxiliary member cover 113 is flush with the upper surface of the cover body 112, the lower surface of the auxiliary member cover 113 abuts against the stopper bar 1123. More specifically, the engagement buckles 1122 and the rotation buckles 1131 are distributed in four circular arrays.

[0050] When assembling the auxiliary material lid 113 to the mounting opening, first place the auxiliary material lid 113 in the fourth storage chamber 11d and bring the auxiliary material lid 113 into contact with the stopper bar 1123, and then rotate one horizontally extending end of the rotating buckle 1131 directly below the horizontally extending end of the rotating buckle 1131, thereby restricting the auxiliary material lid 113 from being removed upward from the mounting seat. If it is necessary to open the auxiliary material lid 113 for replacement, simply rotate the auxiliary material lid 113 in the opposite direction.

[0051] 5, 6, and 9 to 15, the first outlet 11f is provided on the base 111, the surrounding sheet 114 is provided on one side of the flow distribution tray 115 facing away from the base 111, and surrounds the flow distribution tray 115 together with the first storage chamber 11a and the first guiding passage 11m, and the flow distribution tray 115 is provided with a first guiding port 115a that connects the first guiding passage 11m and the first outlet 11f, and the base 111 together with the flow distribution tray 115 Surrounding the tray 115 are second storage chamber 11b, third storage chamber 11c, second directing passage 11n connecting first inlet 11e and first storage chamber 11a, and third directing passage 11o connecting third outlet 11j and third storage chamber 11c. A fourth directing passage is further provided below second directing passage 11n, and one exhaust port 111a is provided on each of opposing sides of the fourth directing passage to connect second storage chamber 11b and second inlet 11g. A second directing port 115d is further formed through the distribution tray 115, connecting second directing passage 11n and first storage chamber 11a.

[0052] The gas-liquid mixture enters the housing 11 through the first inlet 11e and then flows through the second guide passage 11n, the second guide port 115d, the first storage chamber 11a, the first guide passage 11m, and the first guide port 115a, before flowing to the first outlet 11f, while the gas enters the housing 11 through the second inlet 11g and then flows through the fourth guide passage, the exhaust port 111a, the second storage chamber 11b, the first one-way valve 17, and the microporous material 13, before flowing to the second outlet 11h.

[0053] 14, the base 111 is provided with a first annular blocking rib 1111 and a second annular blocking rib 1112 that are coaxially arranged, and the first annular blocking rib 1111 and the second annular blocking rib 1112 are arranged in order from the inside to the outside, and the first annular blocking rib 1111 and the second annular blocking rib 1112 are both abutted against the flow dividing tray 115 to form a second receiving chamber 11b between the first annular blocking rib 1111 and the second annular blocking rib 1112. At the same time, the base 111 is further provided with a third annular blocking rib 1113 that is located inside the first annular blocking rib 1111, and the outer surface of the separating rib 1121 of the lid body 112 is in close contact with the inner surface of the third annular blocking rib 1113, thereby improving the accuracy when assembling the lid body 112 to the base 111.

[0054] More specifically, in order to improve the strength of the structure, a reinforcing rib may be provided between the first blocking rib 1111 and the second blocking rib 1112 and between the second blocking rib 1112 and the third blocking rib 1113, and the reinforcing rib extends along the radial direction of the first blocking rib 1111. Note that the reinforcing rib provided between the second blocking rib 1112 and the third blocking rib 1113 is provided in only one location, and the reinforcing rib at that location separates the second storage chamber 11b into two sub-cavities that communicate with the two exhaust ports 111a, respectively.

[0055] Continuing to refer to Figure 14, the base 111 is further provided with a fourth blocking rib 1114, a fifth blocking rib 1115 and a sixth blocking rib 1116, and one end of the two fourth blocking ribs 1114 is both connected to the second blocking rib 1112 and engages with the flow distribution tray 115 to form a second flow guide passage 11n, the fifth blocking rib 1115 is provided outside the second blocking rib 1112 and engages with the second blocking rib 1112 and the flow distribution tray 115 to form a third storage chamber 11c, and the two sixth blocking ribs 1116 engage with the flow distribution tray 115 to form a third flow guide passage 11o connected to the third storage chamber 11c.

[0056] In this embodiment, the base 111 and the diverter tray 115 are welded together, and in order to improve the stability of the welding between the base 111 and the diverter tray 115, welding ribs 1151 are protruded from one side of the diverter tray 115 facing the base 111 at positions corresponding to each blocking rib on the base 111, but this will not be described in detail here. At the same time, a mounting sleeve for mounting the first one-way valve 17 is further provided on one side of the diverter tray 115 facing the base 111, and a positioning post 1152 and a positioning sleeve 1117 that fit together are further provided on the diverter tray 115 and the base 111, and the positioning sleeve 1117 is inserted into the positioning post 1152.

[0057] Referring to Figures 10 to 12, one side of the flow distribution tray 115 facing the surrounding sheet 114 is provided with an annular mounting groove 115b and a water passage groove 115c extending radially of the mounting groove 115b, and the first flow guide port 115a is located outside the mounting groove 115b and is connected to the mounting groove 115b.

[0058] Specifically, the surrounding sheet 114 includes a surrounding body 1141, a flow guide portion 1142, and a communication portion 1143, of which the surrounding body 1141 is annular, and a ring-shaped storage groove 114c is provided on one side of the surrounding body 1141 facing the flow distribution tray 115, the flow guide portion 1142 is provided to protrude from the surrounding body 1141 along the radial direction, and a guide portion that communicates with the storage groove 114c is provided on one side of the flow guide portion 1142 facing the flow distribution tray 115. A flow groove 114b is provided, and a communication section 1143 protrudes from the outer surface of the surrounding body 1141. A communication groove 114a is opened on one side of the communication section 1143 facing the diversion tray 115. The surrounding body 1141 is inserted into the mounting groove 115b to form the first storage chamber 11a. The flow guide section 1142 is inserted into the water passage groove 115c to form the first flow guide passage 11m. The communication section 1143 is inserted into the second flow guide port 115d.

[0059] More specifically, the surrounding sheet 114 and the flow distribution tray 115 are similarly welded and connected. To achieve positioning when welding the surrounding sheet 114 and the flow distribution tray 115, the flow distribution tray 115 is provided with an annular seventh blocking rib 1153, which is provided on one side of the flow distribution tray 115 facing the surrounding sheet 114 and is located inside the receiving groove 114c. The inner wall surface of the surrounding sheet 114 is attached to the outer surface of the seventh blocking rib 1153.

[0060] In order to improve the structural strength of the surrounding sheet 114 , the surrounding sheet 114 further comprises a reinforcing portion, which is set in a triangular shape and connects the flow guide portion 1142 and the surrounding body 1141 .

[0061] 1 and 17 to 22, the first fluid supply device 21 includes an ejector 211, a water pump 212, an intake pipe 213, an air-mixing tank 214, and an electromagnetic valve 215. The water inlet end of the ejector 211 is connected to the third outlet 11j via the return pipe 50, the intake end of the ejector 211 is connected to the intake pipe 213, and one end of the intake pipe 213 remote from the ejector 211 is connected to the outlet of the electromagnetic valve 215. The ejector 211 has a first air inlet port connected to the outlet end thereof, a throttle valve 217 is provided at the first air inlet port of the electromagnetic valve 215, the second air inlet port of the electromagnetic valve 215 is connected to the outside, the discharge end of the ejector 211 is connected to the water inlet port of the water pump 212, the water inlet port of the air mixture tank 214 is connected to the discharge end of the water pump 212, and the discharge end of the air mixture tank 214 is connected to the first inlet 11e of the massage mat 10 via the water inlet pipe 40.

[0062] When the water pump 212 is operating, it pumps the liquid in the environment where the massage mat 10 is located into the ejector 211. The liquid flows through the narrow segment of the ejector 211 and then accelerates. Air is sucked in by the solenoid valve 215 and pumped together with the liquid into the air-mixing tank. The air-liquid mixture is thoroughly mixed in the air-mixing tank 214, which can be pressurized so that the air can be dissolved in the water, and finally, aerated water is formed by the cutting material 12 provided at the first outlet 11f of the massage mat 10.

[0063] In order to prevent the liquid from flowing back into the water pump 212 when the mixed gas tank 214 is pressurized, the first fluid supply device 21 further includes a second one-way valve 216, which is provided between the water pump 212 and the mixed gas tank 214.

[0064] Continuing to refer to FIGS. 17 to 24, the second fluid supply device 22 includes a fan 221, which is connected to the second inlet 11g via the air intake duct 30 to supply gas to the massage mat .

[0065] The second fluid supply device 22 further includes a second filter material 222 and a third one-way valve 223. The second filter material 222 is disposed at the inlet end of the fan 221 to filter out impurities in the air. The second filter material 222 may specifically be filter cotton. The third one-way valve 223 is disposed at the outlet end of the fan 221 to prevent gas backflow.

[0066] In this embodiment, the return water pipe 50 and the water inlet pipe 40 are both installed inside the air inlet pipe 30, with the air inlet pipe 30 connected to the first joint 14, the water inlet pipe 40 connected to the second joint 15, and the return water pipe 50 connected to the third joint 16. Specifically, the air inlet pipe 30 uses a bellows, and the second joint 15 and the third joint 16 both protrude from one end of the first joint 14 that is remote from the housing 11, thereby reducing the difficulty of connecting the water inlet pipe 40 to the second joint 15 and the return water pipe 50 to the third joint 16.

[0067] The host machine 20 further comprises a host machine casing 23, a control circuit board, and an operation panel. The first fluid supply device 21, the second fluid supply device 22, and the control circuit board are all installed within the host machine casing 23. The operation panel is fitted into the host machine casing 23, and the control circuit board is electrically connected to the operation panel, the first fluid supply device 21, and the second fluid supply device 22. During actual use, the multi-functional spa machine can be controlled via the operation panel.

[0068] Of course, the above examples of the present invention are merely intended to clearly explain the examples of the present invention, and do not limit the embodiments of the present invention. Those skilled in the art can make various obvious changes, adjustments, and substitutions without departing from the scope of protection of the present invention. There is no need or method to cover all embodiments here. Regardless of any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention, they should all be included in the scope of protection of the claims of the present invention. [Explanation of symbols]

[0069] In the figure: 10 Massage mat, 11 Housing, 111 Base, 1111 First blocking rib, 1112 Second blocking rib, 1113 Third blocking rib, 1114 Fourth blocking rib, 1115 Fifth blocking rib, 1116 Sixth blocking rib, 1117 Positioning sleeve, 111a Air outlet, 112 Cover main body, 1121 Separating rib, 1122 Engagement buckle, 1123 Stopper bar, 113 Auxiliary cover, 1131 Rotating buckle, 114 Surrounding sheet, 1141 Surrounding body, 1142 Flow guide portion, 1143 Communication portion, 114a Communication groove, 114b Flow guide groove, 114c Storage groove, 115 Flow distribution tray, 1151 Welding rib, 1152 Positioning pillar, 1153 Seventh blocking rib, 115a...first flow guide port, 115b...mounting groove, 115c...water passage groove, 115d...second flow guide port, 11a...first storage chamber, 11b...second storage chamber, 11c...third storage chamber, 11d...fourth storage chamber, 11e...first inlet, 11f...first outlet, 11g...second inlet, 11h...second outlet, 11i...third inlet, 11j...third 3 outlet, 11k···first port, 11l···second port, 11m···first guiding passage, 11n···second guiding passage, 11o···third guiding passage, 12···cutting material, 13···microporous material, 14···first joint, 15···second joint, 16···third joint, 17···first one-way valve, 18···first filter material, 181···second mounting seat, 182···second filter screen, 19···chuck, 20... host machine, 21... first fluid supply device, 211... ejector, 212... water pump, 213... intake pipe line, 214... air-mixing tank, 215... solenoid valve, 216... second one-way valve, 217... throttle valve, 22... second fluid supply device, 221... fan, 222... second filter material, 223... third one-way valve, 23... host machine casing, 30...Air intake pipe, 40···Water inlet pipe, 50...Return pipe.

Claims

1. A massage mat, comprising: The fluid supply device includes a housing (11), in which a first storage chamber (11a) and a second storage chamber (11b) are provided at a distance from each other, and the housing (11) is provided with a first inlet (11e) and a first outlet (11f) communicating with the first storage chamber (11a), and a second inlet (11g) and a second outlet (11h) communicating with the second storage chamber (11b), the first inlet (11e) being connectable to a first fluid supply device (21), and the second inlet (11g) being connectable to a second fluid supply device (22). A massage mat characterized by:

2. The massage mat further comprises a cutting material (12) and / or a microporous material (13), the cutting material (12) being provided on one side of the first outlet (11f), and the microporous material (13) being provided on one side of the second outlet (11h).

2. The massage mat according to claim 1.

3. The massage mat further includes a first joint (14) connected to the housing (11), and the first joint (14) has a first flow path and a second flow path spaced apart from each other, the first flow path being used to connect the first fluid supply device (21) and the first inlet (11e), and the second flow path being used to connect the second fluid supply device (22) and the second inlet (11g).

2. The massage mat according to claim 1.

4. The first outlet (11f) is provided on the outer surface of the housing (11), and the second outlet (11h) is provided on the top surface of the housing (11).

2. The massage mat according to claim 1.

5. The second storage chamber (11b) is set in an annular shape, and the first storage chamber (11a) and the second storage chamber (11b) are provided spaced apart from each other in the vertical direction.

5. The massage mat according to claim 4.

6. The massage mat further comprises a first one-way valve (17), which allows fluid to flow only from the second chamber (11b) to the second outlet (11h).

2. The massage mat according to claim 1.

7. A gap exists in the height direction between the top wall of the second storage chamber (11b) and the top wall of the housing (11), a second mounting hole penetrates the top wall of the second storage chamber (11b), and the first one-way valve (17) is mounted in the second mounting hole.

7. The massage mat according to claim 6.

8. The first outlet (11f) includes a large diameter segment and a small diameter segment, the small diameter segment is in communication with the first storage chamber (11a), and the large diameter segment is located at one end of the small diameter segment away from the first storage chamber (11a).

2. The massage mat according to claim 1.

9. The housing (11) is further provided with a third storage chamber (11c), a third inlet (11i) and a third outlet (11j) that communicate with the third storage chamber (11c), and the third outlet (11j) is configured to be connected to a liquid inlet end of the first fluid supply device (21).

2. The massage mat according to claim 1.

10. The massage mat includes a first joint (14) connected to the housing (11), and the first joint (14) has a first flow path and a second flow path spaced apart from each other, the first flow path being used to connect the first fluid supply device (21) and the first inlet (11e), the second flow path being used to connect the second fluid supply device (22) and the second inlet (11g), and a third flow path being further provided in the first joint (14), and the third flow path being used to connect the third outlet (11j) and the pre-filled liquid end of the first fluid supply device (21).

10. The massage mat according to claim 9.

11. A fourth storage chamber (11d) is further provided in the housing (11), and a first port (11k) and a second port (11l) communicating with the fourth storage chamber (11d) are provided in the housing (11), and the fourth storage chamber (11d) is used for filling an auxiliary material.

2. The massage mat according to claim 1.

12. A multifunctional spa machine, comprising a host machine (20) and the massage mat according to any one of claims 1 to 10, wherein the host machine (20) is provided with the first fluid supply device (21) and the second fluid supply device (22), the first fluid supply device (21) being connected to the first inlet (11e), and the second fluid supply device (22) being connected to the second inlet (11g). A multi-functional spa machine.

13. The first fluid supply device (21) is a gas-liquid mixture supply device, and the second fluid supply device (22) is an air supply device. The multi-functional spa machine according to claim 12.

Citation Information

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