Massage cushion with inflatable and air-dissipating function

DE202021004512U1Active Publication Date: 2025-06-18TSAI PEI LIN
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Patent Information

Application Number
DE202021004512
Authority / Receiving Office
DE · DE
Patent Type
Utility models
Current Assignee / Owner
Priority Date
2020-10-13
Filing Date
2021-04-09
Publication Date
2025-06-18
Estimated Expiration
2031-04-30

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Abstract

A massage cushion with inflatable and air-discharging functions, comprising a massage cushion body and a control box, the control box being connected to the massage cushion body via air lines, characterized in that the massage cushion body comprises a plurality of air bags, and the air bags are continuously connected to one another via an air path, the number of air paths being more than one, each air path being connected to a plurality of air bags, and the air bags connected to different air paths being arranged in a staggered manner; wherein at least one air bag not continuously connected to it is arranged around each air bag, so that the not continuously connected air bags are inflated and deflated via a different air path, thereby achieving excellent effects in terms of breathability and massage.
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Description

TECHNICAL FIELDThe present invention relates to a massage pad having inflatable and air-dissipating functions.PRIOR ARTAt present, the massage pads have two main methods of massaging: The first method is to use objects such as balls, massage rods, etc. for obtaining a massage effect, and to apply mechanical actions to the human body; and the second method is to repeatedly inflate and deflate the air pad, thereby abruptly raising and lowering the air pad to obtain a massage effect.The first method has a complicated structure and causes high use costs, and is usually used in medical or special locations. The second method is inexpensive. Due to production problems, the production amount of the products based on the second method is small. Most products are a structure for inflation and air extraction once, so that the massage effect is difficult to achieve.CONTENT OF THE PRESENT INVENTIONThe present invention provides a massage pad with inflatable and air-discharging function, which can provide a massage pad for alternately inflating and exhausting air, whereby different portions of the massage pad can be alternately raised and lowered. By separately inflating, the effects of breathability and massage can be achieved so that muscles relax and blood flow is promoted.In the massage pad with inflatable and air-diverting function according to the invention, the method of manufacturing the massage pad is based on the fact that the inflation and air extraction of the different air bags located in the massage pad takes place via two air paths, whereby the alternating inflation and air extraction is controlled in the different regions. Moreover, both inflation and air exhaust are controlled via a remote controlled air pump. The invention is simple to operate and control and time and labor saving. With the invention, the amount of inflation air can be accurately controlled.BRIEF DESCRIPTION OF THE DRAWINGSFIG. 1 is a schematic view showing the overall structure of the massage pad of a first embodiment according to the present invention; FIG. 2 is a bottom view of the massage pad of the first embodiment according to the present invention; FIG. 3 is a schematic view of the upper pad body of the massage pad of the first embodiment according to the present invention; FIG. 4 is a schematic view of the lower pad body of the massage pad of the first embodiment according to the present invention; FIG. 5 is a view showing the assembled control box of the massage pad of the first embodiment according to the present invention; FIG. 6 is an exploded view of the control box of the massage pad of the first embodiment according to the present invention; FIG. 7 is a schematic view showing connection of a plurality of massage pads of a second embodiment according to the present invention; FIG. 8 is an enlarged partial view of A of FIG. 7 ; FIG. 9 is a view showing the lower cushion body of a massage cushion body of the second embodiment according to the present invention; FIG. 10 is a view showing a third embodiment according to the present invention, in which the massage pad is used as a lower pad body for mattresses; FIG. 11 is a view showing a fourth embodiment according to the present invention, in which the massage pad is used as a sofa pad; FIG. 12 is a view showing a fifth embodiment according to the present invention in which the massage pad is used as a seat cushion; FIG. 13 is a view showing a sixth embodiment according to the present invention in which the massage pad is used as another sofa pad; Fig. 14 is a view of a seventh embodiment according to the present invention, in which the massage pad is used as a double-layered mattress; Fig. 15 is a view showing an eighth embodiment according to the present invention, in which the massage pad is used as a pillow. FIG. 16 is a side plan view showing the application of an air inflatable massage pad according to a ninth embodiment of the present invention. FIG. 17 is a perspective view showing the application of an air inflatable massage pad according to the ninth embodiment of the present invention. FIG. 18 is a side plan view showing the use of an air inflatable massage pad according to a tenth embodiment of the present invention. FIG. 19 is a side view showing the application of an air inflatable massage pad according to an eleventh embodiment of the present invention. FIG. 20 is a side plan view showing the application of an air inflatable massage pad according to a twelfth embodiment of the present invention. FIG. 21 is a perspective view showing the application of an air inflatable massage pad according to a thirteenth embodiment of the present invention. FIG. 22 is a side view showing the application of an air inflatable massage pad according to a fourteenth embodiment of the present invention. FIG. 23 is a side view showing the application of an air inflatable massage pad according to a fifteenth embodiment of the present invention. FIG. 24 is a perspective view showing the application of an air inflatable massage pad according to a sixteenth embodiment of the present invention. FIG. 25 is a side plan view showing the use of an air inflatable massage pad according to a twentieth embodiment of the present invention. FIG. 26 is a side view showing the use of an air inflatable massage pad according to an eighth embodiment of the present invention. FIG. 27 is a side plan view showing the use of an air inflatable massage pad according to an eighth embodiment of the present invention.DETAILED DESCRIPTIONThe technical features of the present invention will be described below with reference to the figures: The massage cushion includes a massage cushion body 1, air pipes 2, and a control box 3, the massage cushion body 1 includes a plurality of air bags 112, and the air bags 112 are continuously connected to one air path through an air duct 113, the number of air paths is more than one, and each air path is connected to a plurality of air bags 112, and the air bags connected to different air paths are arranged in a staggered manner, and at least one air bag 112 not continuously connected to it is arranged around each air bag 112, so that the air bags 112 not continuously connected are inflated and deflated through another air path. In this way, the air bags 112 at different positions can be simultaneously inflated and deflated, respectively, to form an offset structure having excellent breathability and massage effects.In the arrangement, an airway and the air bags 112 connected thereto form an inflation and air extraction unit, the massage cushion comprising at least two inflation and air extraction units, the at least two inflation and air extraction units being arranged obliquely offset or offset in parallel.The massage cushion body 1 has an upper cushion body 11 and a lower cushion body 12, and each airway includes an air duct 113, an air hole 122, and an air nozzle 123. The lower end of the upper cushion body 11 is fixedly connected to the lower cushion body 12. The upper cushion body 11 includes an upper cushion surface 111, air bags 112 and air passages 113, and a plurality of air bags 112 protruding upward are disposed on the upper cushion surface 111.The lower cushion body 12 includes a lower cushion surface 121, air holes 122, and air nozzles 123, the air holes 122 being provided at the periphery of the lower cushion surface 121, and the air nozzles 123 being attached to the respective air holes 122 and connected to the corresponding air pipes 2.FIGS. 1 to 6 show the first embodiment of the present invention. The massage pad includes a massage pad 1, air pipes 2, and a control box 3, and the massage pad 1 is connected to the control box 3 through the air pipes 2.The massage cushion body 1 has an upper cushion body 11 and a lower cushion body 12, the lower end of the upper cushion body 11 being fixedly connected to the lower cushion body 12. Reference is made to FIG. 3. The upper cushion body 11 includes an upper cushion surface 111, air bags 112 and air passages 113, wherein a plurality of air bags 112 protruding upward are disposed on the upper cushion surface 111, and the adjacent air bags 112 are continuously connected to each other via an air passage 113. Reference is made to FIG. 4. The lower cushion body 12 includes a lower cushion surface 121, air holes 122, and air nozzles 123, the air holes 122 being provided at the periphery of the lower cushion surface 121, and the air nozzles 123 being attached to the respective air holes 122 and connected to the corresponding air pipes 2.An air duct 113, an air hole 122, and an air nozzle 123 constitute an air path. In each airway, one airway and the air bags 112 connected thereto form an inflation and exhaust unit as shown in Fig. 3. In FIG. 3, to distinguish between two inflation and air extraction units, the air bags 112 located on one air path are marked with a cross and the air bags 112 located on the other air path are marked with a circle.The vents in the two inflation and air exhaust units are not in continuous communication with each other. The vents of all the inflation and air extraction units are connected to one another continuously by a corresponding air duct 113. Here, an inflation and air exhaust unit includes only an air hole 122 and an air nozzle 123.The massage pad shown in FIG. 3 has a square structure. To facilitate inflation and air extraction, a respective air duct 113 connected to the corresponding air nozzle has an "L" or inverted "L" shape. The air bags 112 are connected obliquely to one another, so that the air bags 112 connected in rows to one another run obliquely 45°. In this way, the air channels 113 and the air bags 112 connected to them are arranged offset. The aim is that when the massage pad is energized and put into operation, the air bags 112 of the two inflation and air extraction units are alternately jumped back and forth to achieve an alternating actuation and thus achieve the effects of breathability and massage.FIGS. 5 and 6 show the structure of the control box 3. the air pump 4 is located in the control box 3, the control box 3 has a resin case top cover 31 and a resin case bottom cover 32, and the resin case top cover 31 is provided with a control panel 311, the control panel 311 is electrically connected to a control board 312, and the control board 312 is electrically connected to the air pump 4, and the air pump 4 is connected to an air valve assembly 42 through an air exhaust pipe 41, and the air valve assembly 42 is connected to an air exhaust hole 44 through a Y-shaped ventilation pipe 43, and the air exhaust hole 44 is provided on the resin case bottom cover 32 and connected to an air pipe 2.The air flow flows from an inflating and exhausting unit to one of the air pipes 2 via the air hole 122 and the air nozzle 123 and then to the air pump 4 via this air pipe 2, the air pump 4 driving the air flow to successively flow through the air exhausting pipe 41, the air valve assembly 42, the Y-shaped ventilating pipe 43 and the air exhausting hole 44 to the other air pipe 2, the air flow being supplied to the other inflating and exhausting unit via this air pipe 2.In addition, in various inflation and air exhaust units, inflation and air exhaust can be performed independently of each other via various air pipes 2. Within the control box 3, the air valve assembly 42 can provide air to the different air lines 2 by means of individual ventilation pipes 43 or can suck air through them.A fuse 321, a power switch 322 and a power socket 323 are attached to the resin case bottom cover 32 of the control box 3, the power switch 322 being connected to the air pump 4. The main control circuit of the control board 312 drives four relays by means of four relay driving circuits so as to control three inflation and air exhaust positions and an emergency position for air exhaust respectively (the three inflation and air exhaust positions are divided into small, medium and large ones after the inflation time, namely, according to the inflation and air exhaust respectively). The time key, start key, position key and frequency key of the main control circuit are connected to a power source lamp, respectively. The mains warning light indicates the working time, the working status, the pneumatic frequency and the quantity of air flow exchanged between two air chambers.The main control circuit can be connected to a 220 V power supply and is thus supplied with current via the 220 V power supply. The power supply module displays the working status by a power indicator lamp and is connected to a remote control receiving module. The remote control receiving module is connected to a remote control receiving antenna and is for receiving the command information sent from the remote control and sending this command information to the main control circuit. The main control circuit controls the air pump 4 according to the command information. A remote control transmission module is disposed in the remote control, the remote control transmission module is powered by remote control transmission, and receives the command information input through the remote control transmission button and transmits commands to the remote control reception antenna through a remote control transmission antenna. The remote control can be implemented using existing technology.The control box 3 is a control mechanism for inflating or evacuating the massage pad driven by a power source. For the present invention, besides the control box 3 shown in the figure, another device such as an electric air pump may be further used as long as the inflation and air exhaust operation can be carried out using a power source. For the power supply, 220 V mains power can be used, then the 220 V mains power is converted into 22 V, 24 V or into 5 V, 12 V. Power banks and batteries may also be used.FIG. 7 shows the second exemplary embodiment. The massage pad must be made relatively large. The massage pad may be divided into many small units. After the many small units of massage pads are separately manufactured, they are assembled together.As shown in the figure, slide fasteners are sewn to the edge of the massage pad. The slide fasteners combine many small units of massage pads with one another to form a relatively large massage pad. The figure shows the combination of three units of massage pads. Here, the control box 3 for inflation and air exhaust is provided with three sets of air pipes 2, each set of air pipes 2 comprising two air pipes, so that inflation and air exhaust can be carried out with the two inflation and air exhaust units of the massage cushion, respectively.In this case, the slide fasteners are sewn to the outside of the lower pad surface, namely, to the outside of the air passages, whereby the units of massage pads can be connected to each other without impairing the original functions of the massage pad. For connection, zippers can be sewn to all four sides of the massage pad.FIG. 8 is an enlarged partial view of A of FIG. 7.FIG. 9 shows an air hole 122 and an air nozzle 123 of the second embodiment. The invention is not limited to three units of massage pads. For the invention, more than two units of massage pads may be used for combination.Fig. 10 is a view of the third embodiment in which the massage pad is used as a lower pad body for mattresses.FIG. 11 is a view showing the fourth embodiment in which the massage pad is used as a sofa pad. This type of implementation can also be used for wheelchair cushions. In the figure, it can be seen that the massage cushion body 1 for use as a mattress can be designed in an elongated shape as shown in Fig. 10. Or, the massage pad body may also be made for use as a sofa pad or a wheelchair pad in the form of a small square as shown in Fig. 11.FIG. 12 shows the fifth embodiment. The basic structure of the massage pad is the same as that shown in Fig. 1. Therefore, only the structure of the upper pad surface 111 of the massage pad body 1 is illustrated here. The difference lies in the arrangement of the inflation and air exhaust units.On the upper cushion surface 111, two inflating and evacuating units are provided, each inflating and evacuating unit consisting of an air duct 113 and a plurality of air bags 112. To facilitate inflation, two air passages 113 for the two inflation and air exhaust units are provided at the edge of the upper cushion surface 111 (the air passages 113 are L-shaped and inverted L-shaped, respectively), and the air bags 112 for inflation and air exhaust are continuously connected to each other through the air passages 113. The two inflation and air exhaust units can be distinguished by the markings "empty" and "filled". The air bags shown in black form belong to one inflation and air extraction unit and the air bags shown in black form belong to the other inflation and air extraction unit. All air bags 112 of the two inflation and air extraction units are arranged horizontally, wherein the air bags 112 of the inflation and air extraction unit, shown in solid black, and the air bags 112 of the other inflation and air extraction unit, shown in solid black, are arranged offset. The air bags 112 of the different inflation and air extraction units are arranged horizontally offset, so that during operation the air bags 112 of the two inflation and air extraction units alternately protrude and return. By the alternate actuation of the air bags in different positions, the effects of breathability and massage can be achieved.FIG. 13 shows the sixth embodiment. The basic structure of the massage pad is the same as that shown in Fig. 12. Therefore, only the structure of the upper pad surface 111 of the massage pad body 1 is illustrated here. The difference lies in the arrangement of the air channels 113.On the upper cushion surface 111, two inflating and evacuating units are also provided, each inflating and evacuating unit consisting of an air duct 113 and a plurality of air bags 112, the air bags 112 being directly continuously connected to each other through the air ducts 113 for inflating and evacuating. The two inflation and air exhaust units can be distinguished by the markings "empty" and "filled". The air bags shown in black form belong to one inflation and air extraction unit and the air bags shown in black form belong to the other inflation and air extraction unit. All air bags 112 of the two inflation and air extraction units are arranged horizontally, wherein the air bags 112 of the inflation and air extraction unit, shown in solid black, and the air bags 112 of the other inflation and air extraction unit, shown in solid black, are arranged offset. The air bags 112 of the different inflation and air extraction units are arranged horizontally offset, so that during operation the air bags 112 of the two inflation and air extraction units alternately protrude and return. By the alternate actuation of the air bags in different positions, the effects of breathability and massage can be achieved.In this implementation mode, it is not necessary to design the air passages 113 to be adjacent to the edge of the upper cushion surface 111, but the air passages 113 may be directly connected to the air bags 112. During processing, an air path can be less produced. At the same time, detachment of the airway can be avoided.FIG. 14 shows the seventh embodiment. The massage pad is used as a mattress. As shown in the figure, a certain supporting height is required for the human body, and therefore two massage pads 1 are combined with each other. In this case, the air bags 112 of the two massage cushion bodies 1 are protruded to form a two-layered mattress, with which the height of the massage cushion can be effectively increased and thereby the intensity of massage can be increased.According to the above embodiment, the number of the inflating and evacuating units may be two or more than two. Since the inflating and air sucking units function as the core of the massage cushion, the number of the inflating and air sucking units must be two or more than two in order to enable asynchronous inflation and air sucking and thus an effective massage effect can be obtained.The air passages 113 may be disposed only at the periphery of the massage pad, or may be directly combined with the air bags 112 as long as they can be continuously connected to the air bags 112 for inflating and exhausting the air bags 112.The above-mentioned double layer structure can also be used for seat cushions, wheelchair cushions, sofa cushions, head cushions, etc.As described above, the plurality of air bags 112 may be constructed in the same size, or may be constructed in different sizes as needed.FIG. 15 shows the eighth embodiment. In this type of implementation, the object is a pillow.In order to effectively support the human head, the air bags 112 located in the pillow have different sizes depending on the design position. For example, the two-side air bags 112 are larger than the center air bags 112. An air bag is designed in the form of an elongated air bag to support the neck. There are two air paths 113.The shapes of the massage pad need not necessarily be regular geometric shapes such as squares, triangles, and regular polygons.In the present invention, a plurality of air paths are designed so that the air bags 112 connected to each other are no longer continuously connected to each other. When the massage pad is energized and put into operation, the adjacent air bags 112 are alternately inflated and deflated so that the adjacent air bags 112 alternately jump back and forth to form an offset high-low structure. By pressing a muscle region, blood circulation of the body can be accelerated, so that advantageous effects with respect to breathability and massage are achieved.Moreover, the air bags 112 may be configured in various shapes, sizes, and height positions to meet various requirements and thus increase user comfort. The inflation operation and the air exhaust operation are both performed by remote control, whereby the operation is less difficult and time-saving and labor-saving. The amount of inflation air can be accurately adjusted and accurately controlled to the needs of the users.In addition, at least two air inflating units are provided so that when one air inflating unit is inflated, the other air inflating unit is deflated, thereby improving massage.A plurality of air lines are disposed in a circumferential side of the air inflatable massage cushion and communicate with the plurality of airbags, thereby inflating and exhausting the air into the inflatable massage cushion.The two bodies 1 of the air inflatable massage pad are applicable to a seat cushion, a wheelchair pad, a sofa pad and a pad pad.In an eighth embodiment, a plurality of air passages of different sizes are disposed in an air-inflatable massage pad as shown in FIG. 7. 15, and the inflatable massage pad is a pad pad.For example, some airbags 112 adjacent to a circumferential side of each body 1 have a size larger than a size of the other airbags 112 disposed at a central portion of each body 1, and one of the plurality of airbags 112 is elongated so as to support a neck of a user.Two air passages 113 are disposed in an upper surface 111 of one body 1, and a plurality of air holes 122 and a plurality of air nozzles 123 are disposed in an upper surface 111 of the other body 1.The air inflatable massage pad has a square shape, a triangular shape, a regular polygonal shape, a heart shape, a star shape, or an animal shape. The plurality of air passages are configured to inflate the air into the plurality of airbags that are not communicated, such that after the air inflatable massage pad is electrically conductive, some airbags are inflated and the other airbags are deflated, thereby protruding the plurality of airbags and alternatingly sinking airbags to massage the user. Preferably, the plurality of airbags have different shapes, sizes, heights, and positions that are adjustable to meet various usage requirements. The air inflatable massage pad is simply operated by remote control. It should be noted that after the thread sewing is omitted and the air pump 4 is received in the semi-finished product in step 6), the plurality of airbags 112 are produced and the respective air duct 113 passes through at least one airbag 112, wherein the respective airbag 112 extends only from the upper surface 111 or extends from the upper surface 111 and the lower surface 121, such that the air is inflated or deflated into the at least one airbag 112 via the respective air duct 113.In one embodiment, only one air conduit 113 is disposed among the plurality of airbags 112. In another embodiment, a plurality of air conduits 113 are disposed on the plurality of airbags 112, a respective air conduit 113 is defined between and communicates with any two adjacent airbags 112', and the respective air conduit 113 corresponds to a respective air opening 122. Preferably, the body 1 is made of a flexible material to provide support and absorb a weight of a user.Referring to FIG. In FIGS. 16 to 17, the body 1 is formed in a shoe shape, and a shape of each airbag 112 is irregular, the body 1 having a front portion, a middle portion, and a rear portion. The front portion of the body 1 corresponds to the toes of the user and has two airbags 112 extending therefrom, the two airbags 112 of the front portion of the body 1 being formed in an arc-shaped rod shape. The central part of the body 1 corresponds to a sole of the user and comprises two airbags 112 not communicating with the respective air duct 113. The rear part of the body 1 corresponds to a heel of the user and has a plurality of airbags 112 connected to a plurality of air ducts 113. Preferably, the respective airbag 112 has a rubber pad accommodated therein to support a foot of the user, and the respective airbag 112 is made of far infrared material or antibacterial material.Referring to FIG. Referring to Fig. 18, in a tenth embodiment, the body 1 is formed in a shoe shape in which a shape of each airbag 112 is irregular, and the body 1 has a front portion and a rear portion, a plurality of small airbags 112 extend from the front side, portions of the body 1 and do not communicate with each other, and a plurality of large airbags 112 extend from the rear portion of the body 1 and are connected to each other via a plurality of air ducts 113.As in FIG. In Fig. 19, in an eleventh embodiment, the body 1 is a seat cushion and has fifty-six airbags 112 uniformly arranged on the body 1, the second cushion layer 12 has an air nozzle 123 defined thereon, and an air inflator having the air nozzle 123 to inflate the air into the fifty-six airbags 112, and a plug is configured to close the air nozzle 12, thereby preventing leakage of the air. When the body 1 is not used, the air is discharged from the air nozzle 12. Preferably, a non-slip cloth is disposed on a lower surface of the body 1 to enhance safety.Referring to FIG. In Fig. 20, in a twelfth embodiment, the body 1 is a seat cushion and has forty-two airbags 112 uniformly arranged on the body 1.Referring to FIG. In Fig. 21, in a thirteenth embodiment, the body 1 is a seat cushion and has an oval hollow portion surrounded by a plurality of airbags 112 to be applicable to the user with hemorrhoids. Referring to FIG. In Fig. 22, in a fourteenth embodiment, the body 1 is a seat cushion applicable to a motorcycle, and an air nozzle 123 is disposed on the body 1 to inflate the air and to be closed by a plug. When the body 1 is not used, the air is discharged from the air nozzle 123. Preferably, a cable is arranged on the body 1 in order to bind the body 1 to the motorcycle.As in FIG. 23, in a fifteenth embodiment, the body 1 is formed in a bicycle cushion shape and has a plurality of airbags 112 extending therefrom, an air nozzle (not shown) being defined at one of the plurality of airbags 112.As in FIG. 24, in a sixteenth embodiment, the body 1 is a seat cushion suitable for a motorcycle, and a plurality of airbags 112 extend from the body 1, wherein the sizes of the plurality of airbags 112 are different and the heights of the plurality of airbags 112 are different so as to correspond to the buttocks of the user.Referring to FIG. 25, in a seventeenth embodiment, the body 1 is fixed to an upper surface of an outer side of a helmet, the body 1 is formed in a four-leaf shape, and twelve airbags 112 having a size of some airbags 112 on a circumferential side of the body 1 is larger than a size of the other airbags 112 at a center of the body 1, and the respective air duct 113 communicates with any two adjacent airbags 112.Referring to FIGS. 26 and 27, in an eighteenth embodiment, the body 1 is formed in a shoulder belt shape, and the respective air duct 113 is defined between any two adjacent airbags 112, as shown in FIG. 26. 26 As in FIG. 27, sixteen airbags 112 are disposed on the body 1, and an air nozzle 123 is configured to inflate the air into the sixteen airbags 112 via the plurality of air lines 112, wherein a respective shut-off valve 50 of four air valves 50 having four airbags 112 and four air passages 113 to form an airbag unit 52.Accordingly, the air inflatable massage pad of the present invention is applicable to the seat cushion, the wheelchair pad, the sofa pad and the pad pad and a waist pad.The present invention may be implemented in various forms such as mattresses, sofa cushions, wheelchair cushions, seat cushions, pillows and lumbar cushions, and may be adjusted according to the type, shape, size, height and other aspects of the massage cushion.

Claims

A massage pad with inflatable and air-diverting function, comprising a massage pad body and a control box, wherein the control box is connected to the massage pad body via air lines, characterized in that the massage pad body comprises a plurality of air bags and the air bags are continuously connected to each other via an air path, wherein the number of air paths is more than one and each air path is connected to a plurality of air bags and the air bags connected to different air paths are arranged offset; wherein at least one air bag not continuously connected to it is arranged around each air bag, such that the air bags not continuously connected are inflated and deflated via a different air path, whereby excellent effects are obtained with respect to breathability and massage.Massage cushion with inflatable and air-diverting function according to claim 1, characterised in that an air path and the air bags connected to it form an inflation and air suction unit, wherein the massage cushion comprises at least two inflation and air suction units, wherein the at least two inflation and air suction units are arranged obliquely offset or parallel offset.The massage pad with inflatable and air-diverting function according to claim 2, characterized in that the air bags are arranged to form an air bag area, wherein an air path is arranged at the edge of the air bag area and has an "L" shape, wherein, except that the air bags located on two sides are directly connected to the corresponding air paths, the remaining air bags are connected to each other in rows and arranged at an oblique angle of 45°.The massage pad with inflatable and air-diverting function according to claim 2, characterized in that the air bags are arranged to form an air bag portion, one air path passing through the periphery of the air bag portion and being connected to the respective air bags in rows, wherein, except that the air bags located on the upper and lower or on the left and right sides are directly connected to the respective air paths, the remaining air bags are connected to each other in rows and arranged in parallel.The massage pad with inflatable and air-diverting function according to claim 2, characterized in that the massage pad has an upper pad and a lower pad, each airway comprising an air duct, an air hole and an air nozzle; wherein the lower end of the upper pad is fixedly connected to the lower pad and the upper pad comprises an upper pad, air bags and air ducts, wherein a plurality of air bags protruding upward are arranged on the upper pad; wherein the lower pad comprises a lower pad, an air hole and an air nozzle, wherein the air hole is provided at the edge of the lower pad and the air nozzle is attached to the air hole and the air nozzle is connected to an air duct; wherein the massage pad comprises a plurality of massage pad bodies, wherein the adjacent massage pad bodies are connectable to each other by slide fasteners, hook and loop fasteners or buttons.The inflatable and air-diverting massage pad of claim 5, wherein the top surface is made of one of thermoplastic polyurethane (TPU), polyester lycra, and fingerprint polyurethane; and the bottom surface is made of TPU and is bonded to a cloth using reactive polyurethane adhesive (PUR adhesive).The massage pad with inflatable and air-diverting function according to claim 5, characterized in that at least two bodies are stacked one above the other such that the first pad layer of one body is in contact with the first pad layer of another body or the second pad layer of one body is in contact with the first pad layer of another body, and the first pad layer of at least one body is exposed.The massage pad with inflatable and air-diverting function according to claim 6, characterized in that an air pump is disposed in the control box, the control box having a resin case top cover and a resin case bottom cover, and the resin case top cover is provided with a control panel, the control panel is electrically connected to a control board, and the control board is electrically connected to the air pump, and the air pump is connected to an air valve assembly through an air exhaust pipe, and the air valve assembly is connected to an air exhaust hole through a vent pipe, and the air exhaust hole is provided on the resin case bottom cover and connected to an air pipe; wherein the air pump drives the air flow to successively flow through the air exhaust pipe, the air valve assembly, the air exhaust pipe and the air exhaust hole to an air pipe, the air flow being introduced into the air bags via this air pipe; wherein a fuse, a power switch and a power plug are mounted on the resin case bottom cover, the power plug and the power switch being connected to the air pump via a power control member.The massage cushion with inflatable and air-diverting function according to claim 6, characterized in that the body includes the plurality of airbags and at least one air duct, and a respective air duct passes through at least one airbag, and shapes and heights of the plurality of airbags are different.The inflatable and air-diverting massage pad according to claim 8, characterized in that respective air passages, the respective air opening and the respective air nozzle are connected to form the respective air passage, and the respective air passage is connected to the respective air bag to form the respective air inflating unit.