An inflatable paddleboard

CN224810873UActive Publication Date: 2026-09-29NINGBO WAVEDREAM OUTDOOR PROD CO LTD
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Patent Information

Application Number
CN202522089584.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-28
Publication Date
2026-09-29
Estimated Expiration
2035-09-28

AI Technical Summary

Technical Problem

[0002]充气水上桨板是一种水上运动器具,该器具一般适合水上专业运动员使用,从而在充气状态下在水上滑行,但是目前充气水上桨板的外观较为单一,缺乏观赏性,因此人们想到了在充气水的外表面安装供电使用的发光装置,但是经常在水上滑行时发光装置受海水侵蚀而损坏,使用较为不便,而且外置安装对于水上桨板的美观性也不尽如人意,同时在充气后需要做灯具的安装使得使用也较为繁琐,所以急需改进

Benefits of technology

1、本实用新型的充气水上桨板中的透光侧布片、透光上布片和透光下布片均为具有颜色(如蓝色、绿色或多种颜色混合搭配)的,所以发光装置发光后使得光从透光侧布片、透光上布片和透光下布片映出,使得充气水上桨板呈现灯光展示效果,尤其是在夜间时。

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Abstract

The utility model discloses an inflatable water paddle, including paddle body, the paddle body is at least partly side wall and is set up, paddle body is provided with inflatable inner chamber and is supplied with the inflation mouth of inflatable inner chamber, the light -emitting device is arranged in the inflatable inner chamber, the light -emitting device emits the light by the light -transmitting side wall on the paddle body, the side wall of paddle body forms the perforation, the power cord of light -emitting device passes the perforation and makes it at least partly expose to the outside, and the power cord of light -emitting device peripheral wall and the inner wall between the perforation seal installation. It makes the inflatable water paddle have the light display effect, especially at night.
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Description

Technical Field

[0001] This utility model relates to the technical field of water sports equipment, and in particular to an inflatable paddleboard. Background Technology

[0002] Inflatable paddleboards are a type of water sports equipment generally suitable for professional water athletes, allowing them to glide on water while inflated. However, the current appearance of inflatable paddleboards is rather monotonous and lacks visual appeal. Therefore, people have considered installing power-powered lighting devices on the outer surface of the inflatable paddleboard. However, these devices are often damaged by seawater corrosion during gliding, making them inconvenient to use. Moreover, external installation does not enhance the aesthetics of the paddleboard, and the need to install lights after inflation makes them cumbersome to use. Therefore, improvements are urgently needed. Utility Model Content

[0003] The purpose of this invention is to design an inflatable paddleboard to overcome the shortcomings of the above-mentioned technologies.

[0004] This utility model discloses an inflatable paddleboard, comprising a paddleboard body, at least a portion of which has a light-transmitting sidewall. The paddleboard body has an inflatable inner cavity and an inflation nozzle for inflating the inner cavity. A light-emitting device is disposed in the inflatable inner cavity, and the light emitted by the light-emitting device is reflected through the light-transmitting sidewall of the paddleboard body. A perforation is formed on the sidewall of the paddleboard body, through which the power cord of the light-emitting device passes, at least partially exposing it to the outside. The outer peripheral wall of the power cord of the light-emitting device is sealed to the inner wall of the perforation.

[0005] According to the above-described inflatable paddleboard, the outer peripheral wall of the power cord of the light-emitting device is sealed with a sealant between it and the inner peripheral wall of the perforation on the side wall of the paddleboard body.

[0006] According to the above-described inflatable paddleboard, the paddleboard body includes a space body and a light-transmitting side cloth sheet arranged around the periphery of the space body. The two sides of the light-transmitting side cloth sheet in the length direction are respectively stacked and sealed to the edge portions of the light-transmitting upper cloth sheet and the light-transmitting lower cloth sheet of the space body. The inflation nozzle is sealed and installed at the mounting hole on the light-transmitting side cloth sheet, or the light-transmitting upper cloth sheet or the light-transmitting lower cloth sheet of the space body. The light-transmitting side fabric is an integral structure, and the two ends of the light-transmitting side fabric are stacked and sealed together, or the light-transmitting side fabric is a multi-segment structure, with the ends of each two adjacent segments stacked and bonded together. The light-transmitting side fabric, the light-transmitting upper fabric, and the light-transmitting lower fabric of the space body are arranged to form an inflatable inner cavity.

[0007] According to the above-described inflatable water paddleboard, the perforation is formed at a location where there is no sealed connection between one side of the light-transmitting fabric in the longitudinal direction and the edge of the light-transmitting upper fabric of the space body, or The perforation is formed at a location where there is no sealed connection between the other side of the light-transmitting fabric in the longitudinal direction and the edge of the light-transmitting lower fabric of the space, or The perforations are formed on the light-transmitting side fabric, or on the light-transmitting upper or lower fabric of the space.

[0008] According to the above-described inflatable water paddleboard, the space body is composed only of a light-transmitting upper fabric sheet and a light-transmitting lower fabric sheet arranged at vertical intervals, or the space body is a space-drawn fabric.

[0009] According to the above-described inflatable paddleboard, a power supply device is also included. A connector is provided on the power supply line of the light-emitting device. The power supply end of the power supply device is plugged into the connector for electrical connection, or the connector on the cable of the power supply device is plugged into the connector for electrical connection.

[0010] According to the above-described inflatable paddleboard, a waterproof bag and a sealing sheet are also included. A through hole is provided on one side wall of the waterproof bag. The power cord of the light-emitting device, with its outer end facing outwards, passes through the through hole and is placed inside the bag cavity of the waterproof bag, so that the connector of the power cord of the light-emitting device, with its outer end facing outwards, is located inside the bag cavity of the waterproof bag. After the sealing sheet covers the through hole and the power cord of the light-emitting device, with its outer end facing outwards and outside the through hole, the side of the sealing sheet facing the waterproof bag is fitted and sealed to the outer side of the side wall of the waterproof bag with the through hole, thereby sealing the through hole. The power supply device is placed inside the waterproof bag, and the opening of the waterproof bag is sealed by at least one sealing structure.

[0011] According to the above-described inflatable paddleboard, the sealing structure includes strip-shaped protrusions and strip-shaped recesses arranged along the width direction of the waterproof bag. The strip-shaped protrusions and recesses are respectively sealed and fixed to the two opposite inner walls of the opening of the waterproof bag, so that the strip-shaped protrusions and recesses fit together to form a sealed connection. The covering sheet is fixed to one outer surface of the opening of the waterproof bag. After the opening of the waterproof bag is sealed, it is rolled up to form the opening portion. The covering sheet covers the rolled-up opening portion and is connected to the other outer surface of the opening of the waterproof bag by Velcro, buttons, or zippers.

[0012] According to the above-described inflatable paddleboard, a fixing plate is also included. The fixing plate covers the power cord of the light-emitting device located on the outside, and one side of the fixing plate facing the paddleboard body is bonded and fixed to the outer surface of the paddleboard body.

[0013] According to the above-described inflatable paddleboard, it further includes a pressing belt, the waterproof bag is placed on the upper surface of the paddleboard body, the two ends of the pressing belt are respectively connected to the surfaces of the paddleboard body located on opposite sides of the waterproof bag, and the waterproof bag is clamped between the pressing belt and the upper surface of the paddleboard body.

[0014] According to the above-described inflatable paddleboard, the outer surface of the light-transmitting upper fabric is bonded with an anti-slip layer, a camera fixing component, or a handle, and the anti-slip layer is provided with light-leaking holes.

[0015] According to the above-described inflatable paddleboard, the light-emitting device includes at least one flexible LED light strip and an adhesive layer or sleeve covering the flexible LED light strip. The flexible LED light strip extends along the length of the paddleboard body, and the LED beads on the flexible LED light strip are RGB beads. The flexible LED light strip is electrically connected to the power line through a color-changing control module.

[0016] According to the inflatable paddleboard described above, the connector on the plug and the connector on the cable of the power supply device are respectively a male connector and a female connector, and the male connector and the female connector are plugged into each other.

[0017] The inflatable paddleboard designed in this utility model has the following beneficial effects: 1. The light-transmitting side fabric, light-transmitting top fabric, and light-transmitting bottom fabric of the inflatable paddleboard of this utility model are all colored (such as blue, green, or a mixture of multiple colors). Therefore, after the light-emitting device emits light, the light is reflected from the light-transmitting side fabric, light-transmitting top fabric, and light-transmitting bottom fabric, so that the inflatable paddleboard presents a light display effect, especially at night.

[0018] 2. Since the LED beads on the flexible LED light strip are RGB beads, the color-changing control module has a built-in color-changing control program. The color-changing control module controls the light of the flexible LED light strip to change color, thereby further enhancing the visual appeal of the inflatable paddleboard.

[0019] 3. After the inflatable water paddleboard is inflated, the connector can be connected to the power supply device to achieve the light-emitting effect, making it more convenient to use.

[0020] 4. During transportation and export trade, there is no need to carry the mandatory applicable batteries, which facilitates transportation.

[0021] 5. The LED flexible light strip has a flexible structure, which allows it to be folded and stored after the inflated water paddleboard is deflated, resulting in a smaller volume and reduced packaging size, making it easier to store. Attached Figure Description

[0022] Figure 1This is a schematic diagram of the structure of the inflatable water paddleboard in the embodiment (I).

[0023] Figure 2 This is a schematic diagram of the paddle plate body in the embodiment (I).

[0024] Figure 3 This is a schematic diagram (II) of the structure of the paddle plate body in the embodiment.

[0025] Figure 4 This is a cross-sectional view of the paddle body in the embodiment.

[0026] Figure 5 This is a schematic diagram (II) of the structure of the inflatable water paddleboard in the embodiment.

[0027] Figure 6 This is a schematic diagram of the structure of the inflatable water paddleboard in the embodiment (III).

[0028] Figure 7 This is a schematic diagram of the back structure of the waterproof bag in the embodiment.

[0029] Figure 8 This is a schematic diagram of the unfolded structure of the waterproof bag in the embodiment.

[0030] Figure 9 This is a schematic diagram of the waterproof bag sealing structure in the embodiment.

[0031] Figure 10 This is a schematic diagram of the male connector structure in the embodiment (I).

[0032] Figure 11 This is a schematic diagram (II) of the male connector structure in the embodiment.

[0033] Figure 12 This is a schematic diagram of the female connector structure in the embodiment (I). Figure 13 This is a schematic diagram of the female connector structure in the embodiment (II). In the diagram: 1. Paddleboard body; 11. Space body; 12. Light-transmitting side fabric piece; 13. Perforation; 111. Light-transmitting upper fabric piece; 112. Light-transmitting lower fabric piece; 121. First section; 122. Second section; 123. Third section; 124. Fourth section; 2. Light-emitting device; 21. Power cord; 22. Color-changing control module; 23. LED flexible light strip; 24. Rubber sleeve; 211. Connector; 3. Covering piece; 31. Velcro; 32. Sealing piece; 5. Camera mounting piece; 51. Threaded mounting hole; 6. Anti-slip layer; 61. Anti-slip texture; 62. Light leakage hole; 7. Waterproof bag; 71. Through hole; 72. Sealing structure; 8. Fixing piece; 9. Handle; 10. Power supply device; 101. Cable. Detailed Implementation

[0034] The present invention will be further described below with reference to the embodiments and accompanying drawings.

[0035] Example: like Figures 1-13 As shown in this embodiment, an inflatable paddleboard includes a paddleboard body 1. At least a portion of the sidewalls of the paddleboard body 1 are light-transmitting. The paddleboard body 1 is provided with an inflatable inner cavity and an inflation nozzle for inflating the inner cavity. The paddleboard body 1 includes a space 11 and a light-transmitting side fabric 12 arranged around the outer periphery of the space 11. The two sides of the light-transmitting side fabric 12 in the longitudinal direction are respectively stacked and sealed to the edges of the light-transmitting upper fabric 111 and the light-transmitting lower fabric 112 of the space 11. The inflation nozzle is sealed and installed at the mounting hole on the light-transmitting side fabric 12, or the light-transmitting upper fabric 111 or the light-transmitting lower fabric 112 of the space 11. The inflation nozzle generally adopts a conventional and known structure, so it will not be described in detail here.

[0036] Preferably, the space body 11 is composed only of a light-transmitting upper fabric piece 111 and a light-transmitting lower fabric piece 112 arranged at vertical intervals, or the space body 11 is a space-stretched fabric, which makes the paddle body 1 have higher support strength after inflation.

[0037] Furthermore, the light-transmitting side fabric piece 12 is an integral structure, with its two ends overlapping and sealed together, or The light-transmitting side fabric 12 has a multi-segment structure, preferably a four-segment structure. The first segment 121 and the second segment 122 respectively enclose the two ends of the space body 11 in the length direction. The third segment 123 and the fourth segment 124 respectively cover the two sides of the space body 11 in the width direction. The two ends of the third segment 123 are stacked and bonded to one end of the first segment 121 and the second segment 122 respectively. The two ends of the fourth segment 124 are stacked and bonded to the other ends of the first segment 121 and the second segment 122 respectively. Since the two ends of the space body 11 in the length direction and the two sides in the width direction have arc structures, the multi-segment structure and the arc structure are easier to fit together when assembled.

[0038] Therefore, an inflatable inner cavity is formed by surrounding the light-transmitting side fabric 12, the light-transmitting upper fabric 111 and the light-transmitting lower fabric 112 of the space body 11.

[0039] A light-emitting device 2 is installed in the inflatable cavity. The light emitted by the light-emitting device 2 is reflected by the light-transmitting sidewall of the paddle body 1. A perforation 13 is formed on the sidewall of the paddle body 1. The power cord 21 of the light-emitting device 2 passes through the perforation 13, so that at least part of it is exposed to the outside. The outer peripheral wall of the power cord 21 of the light-emitting device 2 is sealed to the inner wall of the perforation 13. The perforation 13 is formed at a position where one side of the light-transmitting side fabric 12 in the longitudinal direction is not sealed to the edge of the light-transmitting upper fabric 111 of the space body 11, or the perforation 13 is formed at a position where the other side of the light-transmitting side fabric 12 in the longitudinal direction is not sealed to the edge of the light-transmitting lower fabric 112 of the space body 11, or The perforation 13 is formed on the light-transmitting side fabric 12, or the light-transmitting upper fabric 111 or light-transmitting lower fabric 112 of the space body 11. Its structural design makes the structure through which the power cord 21 passes simple and facilitates the sealing installation after the power cord 21 passes through. At the same time, after the light-emitting device 2 emits light, light is reflected from the light-transmitting side fabric 12, the light-transmitting upper fabric 111 and the light-transmitting lower fabric 112, making the light-transmitting side fabric 12, the light-transmitting upper fabric 111 and the light-transmitting lower fabric 112, which are all colored (such as white, blue, green or a mixture of multiple colors), more beautiful. This makes the inflatable water paddleboard present a light display effect, especially at night. The light-transmitting side fabric 12, the light-transmitting upper fabric 111 and the light-transmitting lower fabric 112 are all light-transmitting PVC mesh fabric or semi-light-transmitting PVC mesh fabric.

[0040] Preferably, the outer peripheral wall of the power cord 21 of the light-emitting device 2 is sealed with sealant between the inner peripheral wall of the perforation 13 on the side wall of the paddle body 1. This structure prevents water from entering the inflation cavity during the use of the inflatable water paddle, thus enabling the inflatable water paddle to function as a waterproof device.

[0041] In this embodiment, the light-emitting device 2 includes at least one flexible LED light strip 23 and an adhesive layer or sleeve 24 covering the flexible LED light strip 23. The flexible LED light strip 23 extends along the length of the paddleboard body 1. The LED beads on the flexible LED light strip 23 are RGB beads. The flexible LED light strip 23 is electrically connected to the power line 21 through a color-changing control module 22. The color-changing control module 22 consists of a PCB board and an MCU chip set on the PCB board. The MCU chip has a built-in color-changing control program, which controls the light of the flexible LED light strip 23 to change color, thereby further enhancing the visual appeal of the inflatable paddleboard and making the lighting effect of the inflatable paddleboard better.

[0042] In this embodiment, a power supply device 10 is also included. The power supply device 10 is a portable power source, generally a power bank. A connector 211 is provided on the power cord 21 of the light-emitting device 2. The power bank and the connector 211 can be connected in the following ways, and any one of them can be selected for power supply.

[0043] The first method is as follows: the power supply end of the power supply device 10 is plugged into the connector 211 for electrical connection. The power supply end is a Type-C interface or a USB interface, and the connector 211 is a Type-C connector adapted to the Type-C interface or a USB connector adapted to the USB interface.

[0044] The second method: The connector on the cable 101 of the power supply device 10 is plugged into the plug 211 for electrical connection. The cable 101 is a cable with a Type-C connector, a cable with a USB connector, a cable with an XT60 connector, a cable with an XT30 connector, a cable with an XT90 connector, a cable with a DC power connector, or a cable with a JST connector. The plug 211 is provided with a Type-C interface, a USB interface, an XT60 interface, an XT30 interface, or an XT90 interface. When plugged in, the cable 101's Type-C connector can be electrically connected to the Type-C interface on the connector 211, or the cable 101's USB connector can be electrically connected to the USB interface on the connector 211, or the cable 101's USB connector can be electrically connected to the USB interface on the connector 211, or the cable 101's XT60 connector can be electrically connected to the XT60 interface on the connector 211, or the cable 101's XT30 connector can be electrically connected to the XT30 interface on the connector 211, or the cable 101's XT90 connector can be electrically connected to the XT90 interface on the connector 211, or the cable 101's DC power connector can be electrically connected to the DC power interface on the connector 211, or the cable 101's JST connector can be electrically connected to the JST interface on the connector 211.

[0045] The interfaces and connectors mentioned above all adopt existing and well-known standard parts structures, so the specific structures will not be described in detail here.

[0046] The third method: The connector on the cable 101 of the power supply device 10 is plugged into the plug 211 for electrical connection. The cable 101 is a cable 101 with a male connector 104 and the plug is a female connector 102. Alternatively, the cable 101 is a cable 101 with a female connector 102 and the plug 211 is a male connector 104. The female connector 102 is fitted with a rotatable threaded sleeve 103. The male connector 104 is provided with an external thread. When the male connector 104 and the female connector 102 are mated, the female connector 102 is inserted into the slot 105 of the male connector 104 so that the end face of the male connector 104 abuts against the rubber sealing ring 106 in the threaded sleeve 103. The threaded sleeve 103 is threadedly connected to the external thread, so that the rubber sealing ring 106 is in a compressed state to achieve a waterproof connection. The conductive socket 108 on the female connector and the conductive post 109 on the male connector are mutually inserted and make conductive contact.

[0047] In this embodiment, a waterproof bag 7 and a sealing sheet 32 ​​are also included. Both the waterproof bag 7 and the sealing sheet 32 ​​are made of flexible plastic or flexible adhesive material. A through hole 71 is provided on one side wall of the waterproof bag 7. The power cord 21 of the light-emitting device 2, with its outer end facing outwards, passes through the through hole 71 and is placed in the bag cavity inside the waterproof bag 7, so that the connector 211 of the power cord 21 facing outwards is located in the bag cavity inside the waterproof bag 7. After the sealing sheet 32 ​​covers the through hole 71 and the power cord 21 of the light-emitting device 2, which is outside the through hole 71, the side of the sealing sheet 32 ​​facing the waterproof bag 7 is attached to and sealed to the outer side of the side wall of the waterproof bag 7 with the through hole 71, thereby blocking the through hole 71. The power supply device 10 is placed inside the waterproof bag 7. The opening of the waterproof bag 7 is sealed by at least one sealing structure 72. The setting of the rubber sealing ring of the structure enables the power supply device 10 to be waterproofed, preventing water from entering the power supply device 10 during water sports.

[0048] Preferably, the sealing structure 72 includes a strip-shaped protrusion and a strip-shaped recess arranged along the width direction of the waterproof bag 7. The strip-shaped protrusion and the strip-shaped recess are respectively sealed and fixed on the two opposite inner walls of the opening of the waterproof bag 7, so that the strip-shaped protrusion and the strip-shaped recess cooperate with each other to form a sealed connection. The covering piece 3 is fixed to one outer surface of the opening of the waterproof bag 7. After the opening of the waterproof bag 7 is sealed, it is rolled up to form the opening part. The covering piece 3 covers the rolled-up opening part and is connected to the other outer surface of the opening of the waterproof bag 7 by Velcro 31, buttons or zippers. Its structural design makes the sealing performance of sealing the opening better.

[0049] In this embodiment, a fixing piece 8 is also included. The fixing piece 8 covers the power line 21 of the light-emitting device 2 located on the outside, and the side of the fixing piece 8 facing the paddle body 1 is bonded and fixed to the outer surface of the paddle body 1. Its structure fixes the power line 21 and prevents the sealant at the perforation 13 from being damaged by pulling during use, thereby enhancing the structural stability.

[0050] In this embodiment, a pressing belt is also included. The waterproof bag 7 is placed on the upper surface of the paddleboard body 1. The two ends of the pressing belt are respectively connected to the surfaces of the paddleboard body 1 located on opposite sides of the waterproof bag 7. The waterproof bag 7 is clamped between the pressing belt and the upper surface of the paddleboard body 1. The pressing belt is generally a woven belt. Its structure is designed to fix the waterproof bag 7 containing the power supply device 10, prevent displacement during movement and pulling of the power cord 21, and avoid damage to the sealant.

[0051] In this embodiment, an anti-slip layer 6, a camera fixing component 5, or a handle 9 is bonded to the outer surface of the light-transmitting upper fabric 111. The anti-slip layer 6 has light-leaking holes 62. The camera fixing component 5 is a plastic part and is fixed by adhesive. The camera fixing component 5 has threaded mounting holes 51. The two ends of the handle 9 are fixed to the upper surface of the paddle body 1 by mounting pieces. The anti-slip layer 6 is fixed to the outer surface of the light-transmitting upper fabric 111 by adhesive and is an EVA anti-slip pad. The outer surface of the anti-slip layer 6 has concave and convex anti-slip textures 61. The light reflected from the light-transmitting upper fabric 111 can be observed through the light-leaking holes 62.

[0052] Of course, the above are just typical examples of this utility model. In addition, this utility model may have many other specific implementation methods. All technical solutions formed by equivalent substitution or equivalent transformation fall within the scope of protection claimed by this utility model.

Claims

1. An inflatable paddleboard, characterized in that, The device includes a paddleboard body (1), at least part of which has a light-transmitting sidewall. The paddleboard body (1) has an inflation cavity and an inflation nozzle for inflating the inflation cavity. A light-emitting device (2) is provided in the inflation cavity. The light emitted by the light-emitting device (2) is reflected from the light-transmitting sidewall of the paddleboard body (1). A perforation (13) is formed on the sidewall of the paddleboard body (1). The power cord (21) of the light-emitting device (2) passes through the perforation (13) and is at least partially exposed to the outside. The outer peripheral wall of the power cord (21) of the light-emitting device (2) is sealed to the inner wall of the perforation (13).

2. The inflatable paddleboard according to claim 1, characterized in that, The outer peripheral wall of the power line (21) of the light-emitting device (2) is sealed with sealant between the inner peripheral wall of the perforation (13) on the side wall of the paddle body (1).

3. An inflatable paddleboard according to claim 1 or 2, characterized in that, The paddle body (1) includes a space (11) and a light-transmitting side cloth (12) arranged around the outer periphery of the space (11). The two sides of the light-transmitting side cloth (12) in the length direction are respectively stacked and sealed to the edges of the light-transmitting upper cloth (111) and the light-transmitting lower cloth (112) of the space (11), so that the light-transmitting side cloth (12), the light-transmitting upper cloth (111) and the light-transmitting lower cloth (112) of the space (11) form an inflatable inner cavity. The light-transmitting side fabric piece (12) is an integral structure, with the two ends of the light-transmitting side fabric piece (12) stacked and sealed together, or the light-transmitting side fabric piece (12) is a multi-segment structure, with the ends of each two adjacent segments stacked and bonded together. The air inlet is sealed at the mounting hole on the light-transmitting side fabric piece (12) or the light-transmitting upper fabric piece (111) or light-transmitting lower fabric piece (112) of the space body (11).

4. An inflatable paddleboard according to claim 3, characterized in that, The perforation (13) is formed at a location where there is no sealed connection between one side of the light-transmitting fabric piece (12) in the longitudinal direction and the edge of the light-transmitting upper fabric piece (111) of the space body (11), or The perforation (13) is formed at a location where the light-transmitting side of the fabric (12) is not sealed to the edge of the light-transmitting lower fabric (112) of the space (11), or The perforation (13) is formed on the light-transmitting upper fabric (111) or light-transmitting lower fabric (112) of the light-transmitting side fabric (12) or the space body (11).

5. An inflatable paddleboard according to claim 3, characterized in that, The space body (11) consists only of a light-transmitting upper fabric piece (111) and a light-transmitting lower fabric piece (112) arranged at an upper and lower interval, or the space body (11) is a space-drawn fabric.

6. An inflatable paddleboard according to claim 3, characterized in that, It also includes a power supply device (10), on which a plug (211) is provided on the power line (21) of the light-emitting device (2), and the power supply end of the power supply device (10) is plugged into the plug (211) for electrical connection, or the connector on the cable of the power supply device (10) is plugged into the plug (211) for electrical connection.

7. An inflatable paddleboard according to claim 6, characterized in that, It also includes a waterproof bag (7) and a sealing sheet (32). A through hole (71) is provided on one side wall of the waterproof bag (7). The power cord (21) of the light-emitting device (2) is placed in the bag cavity inside the waterproof bag (7) after passing through the through hole (71) so that the connector (211) of the power cord (21) of the light-emitting device (2) is located in the bag cavity inside the waterproof bag (7). After the sealing sheet (32) covers the through hole (71) and the power cord (21) of the light-emitting device (2) is located outside and outside the through hole (71), the side of the sealing sheet (32) facing the waterproof bag (7) is attached to and sealed to the outer side of the side wall of the waterproof bag (7) with the through hole (71) to block the through hole (71). The power supply device (10) is placed inside the waterproof bag (7). The bag opening of the waterproof bag (7) is sealed by at least one sealing structure (72).

8. An inflatable paddleboard according to claim 7, characterized in that, The sealing structure (72) includes a strip-shaped protrusion and a strip-shaped concave buckle arranged along the width direction of the waterproof bag (7). The strip-shaped protrusion and the strip-shaped concave buckle are respectively sealed and fixed on the two opposite inner walls of the opening of the waterproof bag (7) so that the strip-shaped protrusion and the strip-shaped concave buckle fit together to seal and connect. A cover piece (3) is fixed on one side of the outer surface of the opening of the waterproof bag (7). After the opening of the waterproof bag (7) is sealed, it is rolled up to form the opening. The cover piece (3) covers the rolled-up opening and is connected to the other side of the opening of the waterproof bag (7) by Velcro (31), buttons or zippers.

9. An inflatable paddleboard according to claim 7, characterized in that, It also includes a fixing piece (8), which covers the power line (21) of the light-emitting device (2) located outside the wire, and the side of the fixing piece (8) facing the paddle body (1) is bonded and fixed to the outer surface of the paddle body (1).

10. An inflatable paddleboard according to claim 7, characterized in that, It also includes a pressing belt, the waterproof bag (7) is placed on the upper surface of the paddleboard body (1), the two ends of the pressing belt are respectively connected to the surfaces of the paddleboard body (1) located on opposite sides of the waterproof bag (7), and the waterproof bag (7) is clamped between the pressing belt and the upper surface of the paddleboard body (1).

11. An inflatable paddleboard according to claim 7, characterized in that, The outer surface of the light-transmitting upper cloth sheet (111) of the space body (11) is bonded with an anti-slip layer (6), a camera fixing part (5), or a handle (9). The anti-slip layer (6) is provided with light-leaking holes (62) and anti-slip texture.

12. An inflatable paddleboard according to claim 1, 6, or 7, characterized in that, The light-emitting device (2) includes at least one LED flexible light strip (23), which extends along the length of the paddle body (1). The LED beads on the LED flexible light strip (23) are RGB beads, and the LED flexible light strip (23) is electrically connected to the power line (21) through the color-changing control module (22).

13. An inflatable paddleboard according to claim 12, characterized in that, The LED flexible light strip (23) is wrapped with an adhesive layer or a sleeve (24).

14. An inflatable paddleboard according to claim 6, characterized in that, The connectors on the cables of the plug (211) and the power supply device (10) are male and female connectors, respectively, and the male connector and the female connector are plugged into each other.