Multifunctional cushion body and seat

By integrating heating and vibration components on the flexible cushion body and sharing the control components, the problem of mixed line layout in the prior art is solved, and the effect of reducing costs and easy installation and maintenance is achieved. It is suitable for multi-function cushion body for car seats.

CN223278947UActive Publication Date: 2025-08-29TANGTRING SEATING TECH INC
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Patent Information

Application Number
CN202421803439.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-26
Publication Date
2025-08-29
Estimated Expiration
2034-07-26

AI Technical Summary

Technical Problem

The existing multi-function cushion and vibration device of car seats are independent components, resulting in mixed line layouts, increasing installation difficulty and cost, affecting maintenance and replacement work, and not conducive to mass production.

Method used

The heating assembly and vibration assembly are fixed to the flexible pad and a set of control components are shared, which are electrically connected to the control assembly through connecting lines to simplify the line layout and number of parts.

Benefits of technology

It improves the integration of the multi-function cushion body, simplifies line layout, reduces costs, facilitates installation and maintenance, and facilitates mass production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model relates to the technical field of multifunctional cushion bodies, and particularly discloses a multifunctional cushion body and a seat. The control assembly is fixed on the flexible cushion body; the heating assembly is fixed to the flexible pad body, and the heating assembly is electrically connected with the control assembly; the vibration assembly is fixed to the flexible pad body, the vibration assembly is electrically connected with the control assembly, and the control assembly is used for being electrically connected with an external power source. By means of the mode, the vibration assembly originally independent of the multifunctional pad body can be integrated into the multifunctional pad body, so that the vibration assembly and the heating assembly share the same control assembly, and the vibration assembly and the heating assembly can also share the same set of similar circuit layout. Therefore, the integration level of the multifunctional pad body with the vibration function is improved, disassembly and assembly are convenient, and the processing efficiency of batch production is improved.
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Description

Technical Field

[0001] The embodiments of the utility model relate to the technical field of multifunctional cushions, and in particular to a multifunctional cushion and a seat. Background Art

[0002] With the rapid progress of the automotive industry, people's demand for driving comfort is constantly increasing. In order to meet the comfort requirements of winter use, car seats usually use built-in heating wires in the multifunctional cushion of the seat so that the seat can quickly heat up when the external ambient temperature is low, thereby improving the user experience. In order to further improve the user experience when riding, existing car seats are also equipped with vibration devices, so that the car seats can achieve massage effects, thereby alleviating the user's fatigue caused by long-term riding.

[0003] In the process of realizing the present invention, the inventors of the present invention found that: at present, the multifunctional cushion body and the vibration device of the existing automobile seat are two independent components. In order to add the vibration device, it is necessary to add additional control components and lay out related lines, which leads to a mixed circuit layout inside the seat, increases the difficulty of installing the automobile multifunctional cushion body, affects the subsequent maintenance and replacement work, and also greatly increases the overall cost of the automobile seat, which is not conducive to mass production. Utility Model Content

[0004] The main technical problem solved by the embodiments of the present utility model is to provide a multifunctional cushion and a seat, which can improve the integration of the multifunctional cushion with heating and vibration functions, and simplify the circuit layout and number of parts of the heating component and the vibration component.

[0005] In order to solve the above technical problems, a technical solution adopted by the present invention is: providing a multifunctional pad body, including a flexible pad body; a control component fixed to the flexible pad body; a heating component fixed to the flexible pad body, and the heating component is electrically connected to the control component; a vibration component fixed to the flexible pad body, the vibration component is electrically connected to the control component, and the control component is used to be electrically connected to an external power supply.

[0006] Optionally, the multifunctional pad includes a first connecting line and a second connecting line, and the heating component is connected to the control component through the first connecting line; the vibration component is connected to the control component through the second connecting line.

[0007] Optionally, the heating component and the vibration component are arranged on the same surface of the flexible pad.

[0008] Optionally, the heating component and the vibration component are arranged on different surfaces of the flexible pad.

[0009] Optionally, the heating assembly further includes a heating wire, which is S-shaped or sinusoidally arranged on the surface of the flexible pad.

[0010] Optionally, the heating wire is made of carbon fiber.

[0011] In order to solve the above technical problems, another technical solution adopted by the present invention is: to provide a seat, including a pneumatic massage system and the above-mentioned multifunctional cushion body, the pneumatic massage system includes an airbag, an air source and a distribution component, the airbag corresponds to the vibration component, one end of the distribution component is connected to the air source, and the other end of the distribution component is connected to the airbag, and the air source is used to supply air to the airbag; when the amount of air in the airbag reaches a preset amount, the airbag abuts the vibration component.

[0012] Optionally, the vibration component includes a plurality of vibration parts, and the plurality of vibration parts are evenly distributed on the surface of the flexible pad; the number of the airbags is multiple, and the number of the airbags corresponds to the number of the vibration parts.

[0013] Optionally, the multifunctional pad body is provided with a plurality of receiving grooves, and one of the vibration parts is at least partially received in one of the receiving grooves.

[0014] Optionally, the vibration assembly further includes a plurality of pads, wherein one of the pads is disposed between the vibration portion and the inner surface of the airbag.

[0015] The beneficial effects of the embodiment of the present utility model are as follows: Different from the prior art, the embodiment of the present utility model provides a multifunctional pad including a flexible pad, a control component, a heating component and a vibration component, wherein the control component, the heating component and the vibration component are all fixed to the flexible pad, the control component is used to be electrically connected to an external power supply, the heating component is electrically connected to the control component, and the vibration component is electrically connected to the control component. Through the above structure, the embodiment of the present utility model can make the vibration component built into the multifunctional pad, and the vibration component and the heating component share a set of control components, thereby simplifying the overall structure of the vibration component, simplifying the circuit layout of the vibration component, facilitating installation and maintenance, and also reducing the cost of separately adding a vibration component to the seat, which is beneficial to industrial mass production. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for use in the embodiments of the present invention. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the drawings without paying any creative work.

[0017] Figure 1This is a schematic diagram of the explosion structure of a multifunctional cushion provided by an embodiment of the utility model;

[0018] Figure 2 This is a schematic diagram of the assembly structure of a multifunctional pad provided by an embodiment of the present utility model;

[0019] Figure 3 This is an enlarged schematic diagram of the cross-sectional structure of a multifunctional pad provided by an embodiment of the present utility model;

[0020] Figure 4 This is an enlarged schematic cross-sectional view of another multifunctional pad provided by an embodiment of the present invention;

[0021] Figure 5 This is a schematic diagram of the exploded structure of a seat provided by an embodiment of the present utility model;

[0022] Figure 6 This is an enlarged schematic diagram of the cross-sectional structure of a seat provided by an embodiment of the present utility model;

[0023] Figure 7 It is an enlarged schematic diagram of the cross-sectional structure of another seat body provided by an embodiment of the present utility model. DETAILED DESCRIPTION

[0024] In order to facilitate the understanding of the present invention, the present invention is described in more detail below in conjunction with the accompanying drawings and specific embodiments. It should be noted that when an element is described as "fixed to" another element, it can be directly on the other element, or there can be one or more centered elements therebetween. When an element is described as "connected to" another element, it can be directly connected to the other element, or there can be one or more centered elements therebetween. The terms "vertical", "horizontal", "left", "right" and similar expressions used in this specification are for illustrative purposes only.

[0025] Unless otherwise defined, all technical and scientific terms used in this specification have the same meanings as those commonly understood by those skilled in the art to which this utility model belongs. The terms used in this specification and in the description of this utility model are only for the purpose of describing specific embodiments and are not intended to limit the utility model. The term "and / or" used in this specification includes any and all combinations of one or more of the relevant listed items.

[0026] The existing multifunctional cushion body only has a heating function. When there is a need for vibration massage, the technical solution usually adopted is to add a vibration component on the basis of the multifunctional cushion body with heating function. In order to realize the control of the vibration component, a separate control mechanism needs to be added. The wiring layout of this technical solution is complicated and the cost of subsequent installation is high.

[0027] The multifunctional cushion body can be applied to technical fields such as seats and mattresses. In the embodiment of the present utility model, the multifunctional cushion body is preferably applied to car seats.

[0028] The utility model provides a multifunctional pad 1000, please refer to Figure 1 and Figure 2 The multifunctional pad 1000 includes a flexible pad body 1, a heating component 2, a vibration component 3 and a control component 4. The heating component 2 and the vibration component 3 are both fixed to the flexible pad body 1. The heating component 2 is used to heat the flexible pad body 1 so that the flexible pad body 1 can provide a suitable temperature when the user has a heating demand. The vibration component 3 is used to generate vibration when it is in direct or indirect contact with the human body, thereby generating a vibration massage effect on the part of the human body in contact with it. The control component 4 is arranged on the flexible pad body 1, and the control component 4 is electrically connected to the heating component 2, and the control component 4 is electrically connected to the vibration component 3. The control component 4 is used to control the operation of the heating component 2 and the vibration component 3 and is electrically connected to an external power supply, specifically including but not limited to controlling the heating power, heating time, heating area, power on and off, etc. of the heating component 2, and controlling the vibration frequency, vibration time, vibration area, power on and off, etc. of the vibration component 3. Through the above structure, the vibration component 3 that was originally independent of the multifunctional pad body 1000 can be directly set on the flexible pad body 1, and the heating component 2 and the vibration component 3 based on this structure share a set of control components 4, thereby improving the integration of the multifunctional pad body 1000 and reducing the manufacturing cost of the multifunctional pad body 1000.

[0029] It is understandable that the flexible pad body 1 is the part that comes into direct contact with the human body, and the frequency and duration of use should be taken into consideration. The flexible pad body 1 needs to have wear-resistant properties to increase the service life of the multifunctional pad body 1000.

[0030] It is worth noting that the shape of the flexible pad 1 is not limited to a rectangle, a circle, a polygon or any irregular shape. This embodiment is only used as an example reference and is not limited to the following. Figure 1 The shape shown.

[0031] In some embodiments, please refer to Figure 1 The multifunctional mat body 1000 includes a first connecting line 5 and a second connecting line 6. The heating component 2 is connected to the control component 4 via the first connecting line 5, and the vibration component 3 is connected to the control component 4 via the second connecting line 6. The vibration component 3 and the control component 4 can be connected and integrated into the multifunctional mat body 1000 solely through the second connecting line 6. This is more convenient and less costly than the prior art solution that requires adding a separate control component 4 and laying related wiring to the outside of the multifunctional mat body 1000 to add the vibration component 3.

[0032] It is worth noting that the design layout of the first connecting line 5 and the second connecting line 6 can be the same, thereby improving the versatility of the internal components of the multifunctional pad 1000, reducing related mold customization costs, and lowering manufacturing costs.

[0033] For the flexible pad 1, please refer to Figure 1 The flexible pad body 1 includes a first surface 11 and a second surface 12 .

[0034] It is understandable that any one of the first surface 11 or the second surface 12 may be provided with a decorative surface or pattern to enhance the aesthetics of the flexible pad 1 .

[0035] In some embodiments, see Figure 3 The heating component 2 and the vibration component 3 are arranged on the same surface of the flexible pad body 1. Specifically, the heating component 2 and the vibration component 3 are both arranged on the first surface 11 or the second surface 12 of the flexible pad body 1.

[0036] In some embodiments, see Figure 4 The heating component 2 and the vibration component 3 are arranged on different surfaces of the flexible pad body 1. Specifically, the heating component 2 is arranged on the first surface 11 of the flexible pad body 1, and the vibration component 3 is arranged on the second surface 12 of the flexible pad body 1.

[0037] Alternatively, the heating component 2 is disposed on the second surface 12 of the flexible pad 1 , and the vibration component 3 is disposed on the first surface 11 of the flexible pad 1 .

[0038] It is worth noting that the flexible pad body 1 is usually a single-layer pad body, but the flexible pad body 1 can also be provided with multiple layers of pad bodies, and the above-mentioned heating component 2 and vibration component 3 can be fixed between the layers of the multi-layer pad body.

[0039] For the heating element 2 mentioned above, please refer to Figure 1 The heating component 2 includes a heating wire, which is S-shaped or sinusoidally arranged on the flexible pad 1 or any other shape. It is sufficient to ensure that the number of heating wires per unit area is sufficient to meet the heating needs of the area. The S-shaped or sinusoidal distribution method allows a single heating wire to complete the laying of the heating component 2, reducing the cost of customized frame-type or grid-shaped heating wire layout, and also improving the operability of heating wire laying, thereby enhancing the adaptability of the heating component 2 in a specific laying environment.

[0040] It can be understood that the heating wire includes but is not limited to being set on the flexible pad body 1 by knitting, bonding, etc. In this embodiment, the heating wire is preferably sewn on the flexible pad body 1 by knitting and sewing, thereby reducing the foreign body sensation caused by the addition of the heating wire.

[0041] It is worth noting that the materials of the heating wire include, but are not limited to, carbon fiber, composite fiber flexible material, nickel-chromium alloy flexible material, etc. In this embodiment, the heating wire is preferably made of carbon fiber. Furthermore, the outer layer of the heating wire should be provided with a flame-retardant heat-conductive layer to prevent the heating component 2 from igniting the flexible pad 1 and causing a safety hazard.

[0042] For the vibration component 3 above, see Figure 1 The vibration assembly 3 includes a plurality of vibration parts (not shown), which are distributed on the surface of the flexible pad 1 in a manner of series connection, parallel connection, or a combination of series connection and parallel connection.

[0043] Specifically, when several vibration units are connected in series, the connection structure between the vibration units is simple, making the vibration assembly 3 easier to manufacture and later maintain and replace. When several vibration units are connected in parallel, the vibration units operate independently of each other. The vibration assembly 3 in parallel mode has high reliability and stability, and the control component 4 can independently control each vibration unit, thereby achieving personalized control of the vibration start and stop, vibration frequency, and vibration intensity of the vibration units in different positions, improving the user experience of the flexible pad 1 and enriching the massage modes of the vibration assembly 3. When a combination distribution method is adopted in which some vibration units are connected in series and others are connected in parallel, the partitioning of the vibration units can be rationally arranged, reducing the manufacturing cost of the vibration assembly 3 while minimizing the impact on the vibration experience. For example, the central area of ​​the multifunctional flexible pad 1 is the area with the highest probability of human contact. The vibration units in this area are connected in parallel to ensure the user experience of the multifunctional flexible pad 1. In other areas, the probability of human contact is relatively low and high-precision control is not required. Therefore, the vibration units in this area are connected in series.

[0044] Regarding the above-mentioned control component 4, the control component 4 includes a shell (not marked) and a circuit board (not shown in the figure). The circuit board is electrically connected to the heating component 2 and the vibration component 3, that is, the circuit board is connected to the heating component 2 through a first connecting line 5, and the circuit board is connected to the vibration component 3 through a second connecting line 6.

[0045] In an embodiment of the present invention, a multifunctional pad 1000 includes a flexible pad 1, a heating component 2, a vibration component 3, a control component 4, a first connecting line 5, and a second connecting line 6. The heating component 2, the vibration component 3, and the control component 4 are all fixed to the flexible pad 1, and the heating component 2 and the vibration component 3 are electrically connected to the control component 4 via the first connecting line 5 and the second connecting line 6, respectively. The heating component 2 is used to heat the flexible pad 1 so that the user can promptly provide corresponding heat when heating is needed. The vibration component 3 is used to generate vibration, thereby achieving a technical effect similar to massage. Through the above structure, the vibration component 3, which originally existed independently of the multifunctional pad 1000, is more reasonably integrated into the multifunctional pad 1000, and the vibration component 3 and the heating component 2 share a set of control components 4, which reduces the number of parts of the multifunctional pad 1000 with heating and vibration functions, reduces manufacturing costs, and improves the integration of the multifunctional pad 1000 with heating and vibration functions, which is conducive to its large-scale industrial production.

[0046] It is worth noting that in the field of automobile seat technology, an automobile seat includes two parts: a seat and a backrest. The multifunctional cushion 1000 is applied to at least one of the seat and the backrest. In this embodiment, preferably, the multifunctional cushion is applied to both the seat and the backrest.

[0047] This utility model provides an embodiment of the seat 2000, please refer to Figure 5 The seat 2000 includes a pneumatic massage system and the multifunctional cushion 1000. The structure and function of the multifunctional cushion 1000 can be found in the above embodiments and will not be described in detail here.

[0048] The pneumatic massage system includes multiple airbags, air sources and distribution components. The airbags correspond to the vibration components 3. One end of the distribution component is connected to the air source, and the other end of the distribution component is connected to the airbags. The air source is used to supply air to the airbags. When the amount of air in the airbag reaches the preset amount, the airbag abuts against the vibration component 3 and lifts it up so that the vibration component 3 fits the curve of the human body, enhancing the vibration massage experience of the vibration component 3.

[0049] Specifically, such as Figure 5 As shown, the seat 2000 includes a seat body 2001 and a backrest 2002 , wherein the seat body 2001 and the backrest 2002 are connected, and the seat body 2001 and the backrest 2002 can rotate relative to each other to adjust the sitting posture.

[0050] like Figure 5As shown, the seat body 2001 includes a flexible pad 1a, a heating component 2a, a vibration component 3a and an airbag 7a, and the backrest 2002 includes a flexible pad 1b, a heating component 2b, a vibration component 3b and an airbag 7b. It can be understood that the seat body 2001 and the backrest 2002 can share a set of control components 4 or the seat body 2001 and the backrest 2002 can be provided with control components 4 respectively. When the seat body 2001 and the backrest 2002 share a set of control components 4, the control of each component of the seat body 2001 and the backrest 2002 is realized. By utilizing the reasonable distribution of the control devices inside the control component 4 and the cooperation of the control circuits, diversified control of the massage and heating functions of the seat body 2001 and the backrest 2002 is realized, further reducing the number of control components 4 and improving the integration.

[0051] For ease of description, this embodiment only provides examples for the multifunctional cushion 1000 and the pneumatic massage system of the seat 2001. The structures and functions of the multifunctional cushion 1000 and the pneumatic massage system of the backrest 2002 are similar to those of the seat 2001, and thus are not further described one by one in this embodiment.

[0052] Regarding the above-mentioned vibration component 3a, the vibration component 3a includes a plurality of vibration parts (not marked), and the plurality of vibration parts are arranged on a surface of the flexible pad body 1a according to certain preset rules; the number of airbags 7a is multiple, and the number of airbags 7a corresponds to the number of vibration parts.

[0053] It is worth noting that the distribution component can adjust the gas filling level within the airbag 7a, allowing the airbag 7a within the multifunctional cushion body 1000 to provide a variety of support forces for different parts of the human body as needed, achieving different support sensations and providing a personalized user experience for different users. When the relevant parameters of the vibration unit are fixed, the vibration intensity felt by the human body will also be significantly different when the filling level of the vibration unit corresponding to the airbag 7a is different. The more filled the airbag 7a is, the more obvious the vibration generated by the corresponding vibration unit is transmitted to the human body; the less filled the airbag 7a is, the weaker the vibration generated by the corresponding vibration unit is, thus creating different massage effects for different parts of the human body and enriching the massage experience. When the relevant parameters of the vibration unit are adjusted, the filling level of the airbag 7a can also be adjusted synchronously, thereby significantly increasing the richness of the control modes of the chair 2000.

[0054] It is understandable that, considering the usage scenario of the multifunctional pad 1000 and the relatively fixed area of ​​the contact area between the human body and the multifunctional pad 1000, the layout of the multiple vibration parts and the airbags 7a in the multifunctional pad 1000 can be customized, for example, the layout from the central area of ​​the multifunctional pad 1000 to the edge of the multifunctional pad 1000 is dense to sparse, or the area with the highest probability of contact with the human body is densely distributed, and the remaining areas are relatively loosely distributed, thereby forming a targeted massage design layout for the human body and improving the user experience.

[0055] In the case where the heating component 2a and the vibration component 3a are arranged on different surfaces or the same surface of the flexible pad 1a, the layout of the heating component 2a, the vibration component 3a and the airbag 7a is described as follows:

[0056] When the heating component 2a and the vibration component 3a are arranged on the same surface of the flexible pad 1a, as shown in FIG. Figure 6 As shown, when the airbag 7a is in the filled state, the airbag 7a abuts the vibration component 3a, and the vibration component 3a abuts the flexible pad body 1a. The airbag 7a and the flexible pad body 1a jointly clamp the vibration component 3a. When the airbag 7a is in the filled state, the flexible pad body 1a fits the human body curve better, so that the vibration generated by the vibration component 3a is transmitted to the human body through the flexible pad body 1a, and the vibration feedback is obvious. In addition, since the heating component 2a is on the same surface of the flexible pad body 1a as the vibration component 3a and the airbag 7a, the flexible pad body 1a is lifted and deformed by the airbag 7a in the filled state. The surface deformation without the heating component 2a and the vibration component 3a is large, and the surface deformation with the heating component 2a and the vibration component 3a is small. The deformation degree of the heating component 2a is small, which is beneficial to extending the service life of the heating component 2a.

[0057] When the heating component 2a and the vibration component 3a are arranged on different surfaces of the flexible pad 1a, as shown in FIG. Figure 7 As shown, when the airbag 7a is inflated, the airbag 7a abuts one surface of the vibration component 3a, and the other opposite surface of the vibration component 3 abuts the flexible pad body 1a, and the airbag 7a and the vibration component 3a are both located on one surface of the flexible pad body 1a, and the heating component 2a is arranged on the other opposite surface. When the airbag 7a is inflated, the flexible pad body 1a fits the curve of the human body, so that the heating component 2a fits the curve of the human body, and then the heat generated by the heating component 2a is quickly transferred to the human body, reducing the process of transfer through the flexible pad body 1a, saving heating time, and improving the heating efficiency of the heating component 2a.

[0058] In some embodiments, the seat 2000 is provided with a plurality of receiving grooves (not shown), and a vibration part is at least partially received in a receiving groove. When the vibration part is not in a working state, each vibration part is received in each receiving groove respectively, thereby reducing the foreign body sensation caused by the presence of the vibration part after the human body contacts the seat 2000.

[0059] In some embodiments, the vibration assembly 3a further includes a plurality of cushioning members (not shown), one cushioning member being disposed between a vibration portion and the inner surface of the airbag 7a, wherein the cushioning member wraps the surface of the vibration portion close to the airbag 7a and the edges and corners around the surface, or the cushioning member only wraps the edges and corners of the vibration portion close to the airbag 7a. Due to the presence of the cushioning member, the edges and corners of the vibration portion no longer directly contact the airbag 7a, thereby preventing the edges and corners of the vibration portion from puncturing the airbag 7a when the airbag 7a is inflated, reducing the cost of individually customizing a vibration portion without sharp edges and corners. In addition, the cushioning member also protects the wear areas between the airbag 7a and the vibration portion, thereby extending the service life of the airbag 7a.

[0060] It is worth noting that in order to minimize the impact of the pad protector on the vibration transmission of the vibrating part, the material of the pad protector should have good impact resistance and wear resistance to ensure the vibration transmission effect, a certain softness and elasticity to protect the airbag 7a, and excellent stability to make it less likely to age. For example, it can be hard rubber and special polymer composite materials.

[0061] It should be noted that the preferred embodiments of the present invention are given in the specification and drawings of the present invention. However, the present invention can be implemented in many different forms and is not limited to the embodiments described in this specification. These embodiments do not serve as additional limitations on the content of the present invention. The purpose of providing these embodiments is to make the understanding of the disclosure of the present invention more thorough and comprehensive. In addition, the above-mentioned technical features continue to be combined with each other to form various embodiments not listed above, which are all considered to be within the scope of the description of the present invention; further, it is obvious to those skilled in the art that improvements or changes can be made based on the above description, and all such improvements and changes should fall within the scope of protection of the claims attached to the present invention.

Claims

1. A multifunctional pad, characterized in that: include Flexible pad; a control assembly fixed to the flexible pad; a heating component fixed to the flexible pad, and the heating component is electrically connected to the control component; The vibration component is fixed to the flexible pad, the vibration component is electrically connected to the control component, and the control component is used to be electrically connected to an external power supply.

2. The multifunctional pad according to claim 1, characterized in that: The multifunctional pad includes a first connecting line and a second connecting line, and the heating component is connected to the control component via the first connecting line; The vibration component is connected to the control component via the second connecting line.

3. The multifunctional pad according to claim 1, characterized in that: The heating component and the vibration component are arranged on the same surface of the flexible pad.

4. The multifunctional pad according to claim 1, characterized in that: The heating component and the vibration component are arranged on different surfaces of the flexible pad.

5. The multifunctional pad according to claim 3 or 4, characterized in that: The heating assembly further includes heating wires, which are distributed on the surface of the flexible pad in an S-shaped or sinusoidal shape.

6. The multifunctional pad according to claim 5, characterized in that: The heating wire is made of carbon fiber.

7. A seat, characterized in that: A pneumatic massage system and a multifunctional cushion according to any one of claims 1 to 6, wherein the pneumatic massage system comprises an airbag, an air source, and a distribution component, wherein the airbag corresponds to the vibration component, one end of the distribution component is connected to the air source, and the other end of the distribution component is connected to the airbag, and the air source is used to supply air to the airbag; When the air volume in the airbag reaches a preset air volume, the airbag abuts against the vibration component.

8. The seat according to claim 7, characterized in that The vibration assembly includes a plurality of vibration parts, and the plurality of vibration parts are evenly distributed on the surface of the flexible pad; There are multiple airbags, and the number of the airbags corresponds to the number of the vibration parts.

9. The seat according to claim 8, characterized in that The multifunctional pad body is provided with a plurality of receiving grooves, and one of the vibration parts is at least partially received in one of the receiving grooves.

10. The seat according to any one of claims 8 to 9, characterized in that: The vibration assembly further includes a plurality of cushioning members, wherein one cushioning member is arranged between the vibration part and the inner surface of the airbag.