Hard kite
By installing a buoyancy device on the main body of the rigid kite and using a gas rod to provide buoyancy, the problem of difficulty in flying rigid kites in no wind or light wind has been solved, enabling flight even in windless conditions, reducing the difficulty of flying and increasing portability and sales volume.
Patent Information
- Application Number
- CN202422958285.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-02
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-12-02
AI Technical Summary
Rigid kites are difficult to fly in calm or light wind conditions, and their structural strength makes it increasingly difficult to fly larger ones.
A buoyancy device is installed on the main body of the kite and connected to the kite body via a reel. The buoyancy device provides buoyancy to assist the kite in taking off. The buoyancy device can be detachably connected to a bag-shaped structural component, and the gas rod is filled with hydrogen or helium to provide buoyancy.
This reduces the difficulty of flying hard-body kites, enabling them to fly in light winds or no wind, reducing the amount of running around required, increasing portability and sales, and enhancing children's enjoyment of flying kites.
Smart Images

Figure CN223586555U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of toy kite, especially relates to a hard body kite. BACKGROUND
[0002] At present, the lighter soft body kite appears on the market, the appearance of soft body kite improves the manufacturing process of the kite, makes the weight of the kite reduce, but is limited by its structure, the stability of soft body kite is poor when flying, leading to that soft body kite can only be used for small size kite, the weight and volume of the decoration hung on the tail of soft body kite are strictly limited, and the hard body kite has better structural strength, can be manufactured into different sizes according to demand, and can hang any type of decoration on the tail.
[0003] However, in the windless or light wind environment, the hard body kite needs to rely on personnel running to make the air produce the buoyancy on the hard body kite, so that the hard body kite is lifted, due to the skeleton of the hard body kite itself, the weight of the skeleton leads to that the larger hard body kite is more difficult to fly. UTILITY MODEL CONTENTS
[0004] The utility model aims at overcoming the insufficient of hard body kite in prior art that is difficult to fly, and provides a hard body kite.
[0005] The utility model provides a hard body kite, which comprises
[0006] The kite main body, the line wheel and the buoyancy device, the line wheel is connected with the kite main body;
[0007] The kite main body is equipped with the bag structure spare, and the buoyancy device is nested in the bag structure spare.
[0008] The utility model relates to a hard body kite, which is connected with the kite main body through the line wheel, and the kite main body is lifted by personnel pulling the line wheel, the kite main body is provided with the buoyancy device, and the buoyancy device can provide the buoyancy for the kite main body;The buoyancy device is fixed on the kite main body through the bag structure spare, the buoyancy device compensates the buoyancy required for the kite main body to lift, so that the kite main body is more easily lifted, thereby reducing the running amount required for personnel when flying the hard body kite, and the hard body kite can be quickly flown.
[0009] Preferably, the kite main body comprises left wings and right wings, the bag structure spare comprises first bag bodies and second bag bodies, the buoyancy device comprises first buoyancy members and second buoyancy members, the first bag bodies are arranged on the left wings, the second bag bodies are arranged on the right wings, the first bag bodies and the second bag bodies are oppositely arranged, the first buoyancy members are connected with the first bag bodies, and the second buoyancy members are connected with the second bag bodies.
[0010] The first buoyancy member and the second buoyancy member are oppositely arranged to ensure the balance of the kite and avoid the kite falling due to uneven force in the air.
[0011] Preferably, the buoyancy device comprises a gas rod, and the gas rod is detachably connected with the bag-shaped structure.
[0012] The gas rod is filled with hydrogen or helium, so that the gas rod can provide sufficient buoyancy; and the gas rod is detachably connected with the bag-shaped structure, so that the gas rod with different buoyancy can be replaced according to the requirement.
[0013] Preferably, the bag-shaped structure has a columnar accommodating space, and the gas rod is adaptively connected with the bag-shaped structure.
[0014] The gas rod is a cylindrical rod, so that the shape of the gas rod is adapted to the shape of the columnar accommodating space; and the gas rod is fixed in the bag-shaped structure by adaptively embedding the gas rod in the columnar accommodating space of the bag-shaped structure.
[0015] Preferably, the bag-shaped structure comprises a first cladding and a second cladding, the first cladding and the second cladding are respectively connected with the kite body, the first cladding is detachably connected with the second cladding, and the first cladding and the second cladding respectively abut the outer wall of the gas rod.
[0016] To facilitate the installation and dismounting of the gas rod, the first cladding and the second cladding are detachably connected, and the first cladding and the second cladding form the columnar accommodating space after being connected.
[0017] Preferably, the bag-shaped structure is detachably connected with the kite body.
[0018] The kite can become a common hard kite after the bag-shaped structure is dismounted, the buoyancy device can be dismounted in an environment with relatively large wind force, and the bag-shaped structure can be detachably connected with the kite body by means of glue joint, rope joint or magic tape, so as to improve the portability of the hard kite.
[0019] Preferably, the buoyancy device comprises a plurality of buoyancy segments, and at least one of the buoyancy segments is connected with the bag-shaped structure.
[0020] The bag-shaped structure can be filled with a required number of buoyancy segments, so as to adjust the buoyancy of the hard kite.
[0021] Preferably, the buoyancy provided by the buoyancy device is greater than the gravity of the kite body.
[0022] The buoyancy device provides buoyancy greater than the gravity of the kite body, so that the kite can be lifted into the air without running.
[0023] Preferably, the kite body comprises a framework and a cover, the cover is arranged on the framework, and the framework and / or the cover is provided with the bag-shaped structure, and the line wheel is connected to the framework.
[0024] The cover of the kite can lift the kite body into the air under the influence of air flow, so that the kite can fly in the air, the framework of the kite can provide support for the cover, so that the cover can be wrapped on the framework in a specific shape, the bag-shaped structure can be arranged on the framework or the cover at a position convenient for the person to operate, and the line wheel is connected to the framework, so that the line wheel can be prevented from damaging the cover of the kite when force is applied.
[0025] Preferably, the line wheel comprises a handle, a kite line and a rotating wheel, the rotating wheel is rotatably connected to the handle, the kite line is wound around the rotating wheel, and the kite line is connected to the kite body.
[0026] The person can control the flight height of the kite body by controlling the length of the kite line on the ground.
[0027] Compared with the prior art, the present application has the following beneficial effects:
[0028] 1. The hard kite of the present application is connected to the kite body through a line wheel, and the person can pull the line wheel to lift the kite body into the air, the kite body is provided with a buoyancy device, the buoyancy device can provide buoyancy for the kite body, the buoyancy device compensates for the buoyancy required for the kite body to be lifted into the air, so that the kite body is more easily lifted into the air, thereby reducing the amount of running required by the person when releasing the hard kite, and the hard kite can be quickly released.
[0029] 2. The hard kite of the present application is assisted by the buoyancy device to be lifted into the air, so that the hard kite can fly even in a slight wind or no wind, the structure strength of the hard kite is considered, and the difficulty of releasing the hard kite is reduced, the buoyancy device provides buoyancy, reduces the overall weight of the hard kite, is convenient to carry, helps to improve the sales volume of the hard kite, allows children to experience the fun of releasing the kite by themselves, and has good economic value and practical value. BRIEF DESCRIPTION OF DRAWINGS
[0030] Figure 1 FIG. 1 is a structural schematic view of the hard kite of the present application;
[0031] Figure 2 FIG. 2 is a bottom view of the hard kite of the present application;
[0032] Figure 3A structure schematic view of the bag-shaped structural member of the present application;
[0033] Figure 4 A structure schematic view of the hard kite of example 1 from the bottom;
[0034] Figure 5 A structure schematic view of the hard kite of example 2;
[0035] Figure 6 A structure schematic view of the buoyancy device of example 2.
[0036] Markings in the figure:
[0037] 1-kite main body, 11-frame, 12-mask, 2-line wheel, 21-kite line, 22-grip, 23-rotary wheel, 3-bag-shaped structural member, 31-first bag body, 32-second bag body, 33-first covering member, 34-second covering member, 35-columnar containing space, 4-buoyancy device, 41-first buoyancy member, 42-second buoyancy member, 43-buoyancy segment. DETAILED DESCRIPTION
[0038] The present application will be further described in detail below with specific examples. However, it should not be understood that the above-mentioned subject matter of the present application is limited to the following examples only, and any technology realized based on the content of the present application falls within the scope of the present application.
[0039] In the description of the specific embodiments of the present application, the orientation or position relationship terms such as "up", "down", "left", "right", "center", "inner", "outer", etc. appearing in the description are based on the orientation or position relationship shown in the drawings, or the orientation or position relationship when the product / device / apparatus of the present application is normally used. These orientation or position relationship terms are only used to facilitate the description of the present application or to simplify the description of the specific embodiments, so as to facilitate the quick understanding of the scheme by the skilled person, and are not intended to indicate or imply that a specific device / component / element must have a specific orientation or be constructed and operated in a specific position relationship, and therefore cannot be understood as a limitation on the present application.
[0040] In addition, if the terms "horizontal", "vertical", "overhanging", "parallel" and the like appear, it does not mean that the corresponding device / component / element must be absolutely horizontal or vertical or overhanging or parallel, but can be slightly inclined or have a deviation. For example, "horizontal" only means that its direction is more horizontal relative to "vertical", and does not mean that the structure must be completely horizontal, but can be slightly inclined. Alternatively, it can be simplified to understand that the corresponding device / component / element is arranged in the direction of "horizontal", "vertical", "overhanging", "parallel" and the like, and can have an error / deviation of ±10% relative to the corresponding direction, more preferably an error / deviation of ±8% or less, more preferably an error / deviation of ±6% or less, more preferably an error / deviation of ±5% or less, and more preferably an error / deviation of ±4% or less. As long as the corresponding device / component / element is within the error / deviation range, it can still achieve its role in the utility model scheme.
[0041] In addition, the terms "first", "second", "third", and the like in the description of the utility model embodiments are only used to distinguish the same or similar components, and should not be understood as emphasizing or implying the relative importance of the specific components.
[0042] In addition, in the description of the embodiments of the utility model, "several", "a plurality of", "several" represent at least 2. It can be 2, 3, 4, 5, 6, 7, 8, 9, etc. Any case, or even more than 9 cases.
[0043] In addition, in the description of the technical scheme of the utility model, unless otherwise specified / limited / limited, the terms "set", "install", "connect", "connect", "set", "lay", "arrange" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected, which can be welding, riveting, bolting, screw connection and other commonly used connection means in the art. The connection can be mechanical connection, electrical connection or communication connection; it can be directly connected, or indirectly connected through an intermediate medium, or the communication between two elements.
[0044] Embodiment 1
[0045] As shown in Figures 1-4 A hard kite includes
[0046] A kite body 1, a line wheel 2 connected with the kite body 1, and a buoyancy device 4.
[0047] The kite body 1 is provided with a bag-shaped structure 3, and the buoyancy device 4 is nested in the bag-shaped structure 3.
[0048] The line wheel 2 is connected with the kite body 1, a person can pull the line wheel 2 to make the kite body 1 fly, the kite body 1 is provided with the buoyancy device 4, the buoyancy device 4 can provide the buoyancy for the kite body 1, the buoyancy device 4 compensates the buoyancy required for the kite body 1 to fly, makes the kite body 1 more easily fly, thereby reducing the running amount required for a person when flying the hard kite, makes the hard kite be able to be quickly flown, reduces the flying difficulty of the hard kite.
[0049] Specifically, the shape of the kite body 1 is triangular.
[0050] In one or more embodiments, the kite body 1 has left and right wings, the bag-shaped structure 3 includes a first bag body 31 and a second bag body 32, the buoyancy device 4 includes a first buoyancy member 41 and a second buoyancy member 42, the first bag body 31 is arranged on the left wing of the kite body 1, the second bag body 32 is arranged on the right wing of the kite body 1, the first bag body 31 and the second bag body 32 are oppositely arranged, the first buoyancy member 41 is connected with the first bag body 31 to fix the first buoyancy member 41 on the kite body 1, the second buoyancy member 42 is connected with the second bag body 32 to fix the second buoyancy member 42 on the kite body 1, the first bag body 31 and the second bag body 32 ensure that the first buoyancy member 41 and the second buoyancy member 42 are firmly fixed on the kite, avoiding the first buoyancy member 41 and the second buoyancy member 42 from being separated from the kite body 1.
[0051] In one or more embodiments, the buoyancy device 4 is a gas rod, light gas such as hydrogen or helium is filled in the gas rod, the gas rod has a chamber and a gas filling port, the gas filling port communicates with the chamber, after the gas filling is completed, the gas filling port is closed to make the chamber airtight to avoid the gas in the chamber from leaking; the gas rod is detachably connected with the bag-shaped structure 3, a person can replace different gas rods to adjust the buoyancy; the buoyancy adjustment of the gas rod is realized by controlling the weight and the chamber volume of the gas rod.
[0052] In an optional embodiment, the bag-shaped structure 3 has a columnar accommodating space 35, the gas rod is a cylindrical structure, and the gas rod is adaptively connected with the bag-shaped structure 3 to be firmly fixed in the columnar accommodating space 35.
[0053] In an optional embodiment, the first bag body 31 and the second bag body 32 each include a first cladding member 33 and a second cladding member 34, the first cladding member 33 and the second cladding member 34 are respectively connected with the kite body 1 to be detachably connected with each other, when the first cladding member 33 and the second cladding member 34 are detached, the gas rod is easily installed and detached from the first bag body 31 or the second bag body 32, the first cladding member 33 and the second cladding member 34 respectively abut the outer wall of the gas rod to fix the gas rod; the first cladding member 33 and the second cladding member 34 are each a flexible material member.
[0054] In one or more embodiments, the bag-shaped structural member 3 is detachably connected to the kite body 1, and after the bag-shaped structural member 3 is detached, the kite body 1 can be used as an ordinary rigid kite.
[0055] In optional embodiments, the bag-shaped structural member 3 is provided with a reverse hook and loop fastener, and the kite body 1 is provided with a forward hook and loop fastener. The reverse hook and loop fastener can be attached to the forward hook and loop fastener. The bag-shaped structural member 3 is easy to install and remove by the detachable connection of the forward hook and loop fastener and the reverse hook and loop fastener. In some embodiments, the bag-shaped structural member 3 is detachably connected to the kite body 1 by means of rope, buckle or glue. By detaching the kite body 1 and the bag-shaped structural member 3, it is easier to carry the rigid kite 1.
[0056] In one or more embodiments, the buoyancy provided by the buoyancy device 4 is greater than the weight of the kite body 1, enabling the kite body 1 to take off even in the absence of wind.
[0057] In one or more embodiments, the kite body 1 includes a frame 11 and a cover 12. The cover 12 is tied to the frame 11. The frame 11 and / or the cover 12 are provided with bag-shaped structural members 3. The reel 2 is connected to the frame 11. The kite cover 12 enables the kite body 1 to take off. The kite frame 11 provides support for the cover 12, allowing the cover 12 to unfold into a specific shape. The bag-shaped structural members 3 can be placed on the frame 11 or the cover 12 at a position convenient for personnel to operate. The reel 2 is connected to the frame 11 to prevent damage to the kite body 1 when the reel 2 applies force.
[0058] In one or more embodiments, the reel 2 includes a handle 22, a kite line 21, and a spool 23. The spool 23 is rotatably connected to the handle 22, and the kite line 21 is wound around the spool 23 and connected to the kite body 1. This allows personnel on the ground to control the release length of the reel 2 to control the flight altitude of the kite body 1.
[0059] Specifically, the kite body 1 weighs 63g, and the two gas rods provide a total buoyancy of 0.62n, which makes the kite body 1 suspend after the gas rods are inserted. The gas rods use a plastic film as the shell, and gas is filled into the gas rods to make them expand and form columnar structures. The gas filled into the gas rods is helium.
[0060] Example 2
[0061] like Figures 5-6 As shown, this embodiment of a rigid kite has a structure that is largely the same as that of Embodiment 1. The difference from Embodiment 1 is that the bag-shaped structural member 3 is arranged along the edge of the kite body 1, which can improve the balance of the kite body 1.
[0062] In one or more embodiments, the buoyancy device 4 is composed of several buoyancy segments 43, at least one buoyancy segment 43 is connected with the bag-shaped structure 3, and different numbers of buoyancy segments 43 can be filled into the bag-shaped structure 3 according to the use requirement, and the buoyancy of the buoyancy device 4 to the kite body 1 is adjusted by controlling the number of the buoyancy segments 43 in the bag-shaped structure 3.
[0063] The above merely describes the preferred embodiments of the present application and is not intended to limit the present application. Any modification, equivalent replacement and improvement within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A rigid kite, characterized in that The kite body (1), the line wheel (2) and the buoyancy device (4), the line wheel (2) is connected with the kite body (1); The kite body (1) is provided with a bag-shaped structure (3), and the buoyancy device (4) is nested in the bag-shaped structure (3). The kite body (1) includes left and right wings, the bag-shaped structure (3) includes a first bag body (31) and a second bag body (32), the buoyancy device (4) includes a first buoyancy member (41) and a second buoyancy member (42), the first bag body (31) is arranged on the left wing, the second bag body (32) is arranged on the right wing, the first bag body (31) and the second bag body (32) are oppositely arranged, the first buoyancy member (41) is connected with the first bag body (31), and the second buoyancy member (42) is connected with the second bag body (32).
2. A rigid kite according to claim 1, characterised in that The buoyancy device (4) includes a gas rod, and the gas rod is detachably connected with the bag-shaped structure (3).
3. A rigid kite according to claim 1, wherein The bag-shaped structure (3) has a columnar containing space (35), and the gas rod is adaptively connected with the bag-shaped structure (3).
4. A rigid kite according to claim 3, wherein The bag-shaped structure (3) includes a first cladding member (33) and a second cladding member (34), the first cladding member (33) and the second cladding member (34) are respectively connected with the kite body (1), the first cladding member (33) and the second cladding member (34) are detachably connected, and the first cladding member (33) and the second cladding member (34) respectively abut against the outer wall of the gas rod.
5. A rigid kite according to claim 4, wherein The bag-shaped structure (3) is detachably connected with the kite body (1).
6. A rigid kite according to claim 1, wherein The buoyancy device (4) includes a plurality of buoyancy segments (43), and at least one buoyancy segment (43) is connected with the bag-shaped structure (3).
7. A rigid kite according to claim 1, wherein The buoyancy device (4) provides buoyancy greater than the gravity of the kite body (1).
8. A rigid kite according to claim 1, wherein The kite body (1) includes a framework (11) and a mask (12), the mask (12) is tied and arranged on the framework (11), and the framework (11) and / or the mask (12) are provided with the bag-shaped structure (3).
9. A rigid kite according to claim 1, wherein The line wheel (2) includes a handle (22), a kite line (21) and a rotating wheel (23), the rotating wheel (23) is rotationally connected with the handle (22), the kite line (21) is wound on the rotating wheel (23), and the kite line (21) is connected with the kite body (1).
10. A rigid kite according to claim 1, characterized in that