A flying rope toy
By designing the line-reeling and line-out mechanism of the flying rope toy and using a lightweight fluorescent or LED rope loop to form a floating rotating rope loop, the problem of the existing toys lacking playability and ornamental value is solved, and the effect of high playability and convenient storage is achieved.
Patent Information
- Application Number
- CN202111061966.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-09-10
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2041-09-10
Smart Images

Figure CN113797561B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of toys, in particular to a flying rope toy. Background Art
[0002] Most existing toys, such as toy swords and toy cars, are made using simulation techniques. While the general shapes of these toys resemble their real-life counterparts, they are not very playable or visually appealing, making them boring and lacking in fun. Consequently, players lose interest after a while. Therefore, it is necessary to propose a new type of toy to address these issues. Summary of the Invention
[0003] The purpose of the present invention is to address the above-mentioned shortcomings and provide a novel flying rope toy with high playability and ornamental value.
[0004] The present invention is achieved through the following technical solutions:
[0005] The present invention proposes a flying rope toy, comprising a main body and a luminous wire body, wherein the main body comprises a wire-reeling mechanism and a wire-out mechanism, the luminous wire body passes through the wire-reeling mechanism and the wire-out mechanism, and the luminous wire body is a closed rope loop; when the wire-out mechanism launches the luminous wire body out of the main body, the luminous wire body will form a loop that rotates all the time; the wire-reeling mechanism is used to reel in the luminous wire body outside the main body, so that the length of the luminous wire body outside the main body is reduced.
[0006] Furthermore, the main body is provided with a light-emitting portion, and the light-emitting portion is used to illuminate the light-emitting wire body emitted by the wire-emitting mechanism to the outside of the main body.
[0007] Furthermore, the main body is provided with a wire inlet hole and a wire outlet hole, and the light-emitting wire passes through the wire inlet hole and the wire outlet hole.
[0008] Furthermore, the hole wall of the wire outlet hole is inclined outward, and the light-emitting portion is arranged on the hole wall of the wire outlet hole.
[0009] Furthermore, the wire-out mechanism is provided with an emission channel, an input wire area and an output wire area. The emission channel is located between the input wire area and the output wire area, and the emission channel is used to emit the light-emitting wire from the input wire area to the output wire area.
[0010] Furthermore, the wire outlet mechanism is provided with a first output shaft and a second output shaft, and the axial surfaces of the first output shaft and the second output shaft are close to each other and rotate in different directions.
[0011] Furthermore, the axial surface of the first output shaft is provided with a first groove, and the axial surface of the second output shaft is provided with a second groove. The proximity of the first groove and the second groove forms the emission channel, and the input line area and the output line area are respectively formed on both sides of the emission channel; when the first output shaft and the second output shaft rotate in different directions, the emission channel emits the light-emitting wire from the input line area to the output line area.
[0012] Furthermore, the wire-reeling mechanism is provided with a third output shaft, and the third output shaft is provided with a wire winding groove, through which the light-emitting wire passes. When the third output shaft rotates, the axial surface of the third output shaft reels the light-emitting wire outside the main body.
[0013] Furthermore, side blocks are provided on both sides of the third output shaft. When the third output shaft rotates, the side blocks confine the light-emitting wire to the axial surface of the third output shaft.
[0014] Furthermore, the main body is provided with a limiting mechanism, which is located between the wire-out mechanism and the wire-reeling mechanism. The limiting mechanism is composed of a fixing part and a wire spring. The fixing part is fixedly connected to the wire spring, and the fixing part is fixedly connected to the main body. The light-emitting wire passes through the wire spring.
[0015] The present invention provides the following beneficial effects: The luminous wire is a closed loop, made of a relatively lightweight fluorescent or LED luminous wire. When the wire-ejecting mechanism emits the luminous wire outside the main body, the luminous wire outside the main body floats in the air, forming a rotating, luminous loop, which is highly playable and visually appealing. When the flying rope toy is no longer in use, the winding mechanism retracts most of the luminous wire outside the main body into the main body, reducing its length and making it easier for the user to store the flying rope toy. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is an overall schematic diagram of the flying rope toy of the present invention;
[0017] Figure 2 This is a schematic diagram of the light-emitting wire body in the retracted state in Figure 1;
[0018] Figure 3 1 is a schematic diagram of the internal structure of the main body;
[0019] Figure 4 This is a schematic diagram of the luminous wire in Figure 1 passing through the wire taking-up mechanism, the limiting mechanism and the wire outlet mechanism. DETAILED DESCRIPTION
[0020] In order to more clearly and completely illustrate the technical solution of the present invention, the present invention will be further described below with reference to the accompanying drawings.
[0021] Please refer to Figure 1 To 4, the present invention proposes a flying rope toy, including a main body 100 and a luminous wire body 200, the main body 100 includes a wire-reeling mechanism and a wire-out mechanism, the luminous wire body 200 passes through the wire-reeling mechanism and the wire-out mechanism, and the luminous wire body 200 is a closed rope loop; when the wire-out mechanism launches the luminous wire body out of the main body, the luminous wire body will form a circle that always rotates; the wire-reeling mechanism is used to reel in the luminous wire body outside the main body, so that the length of the luminous wire body outside the main body is reduced.
[0022] In this embodiment, the luminous wire 200 is a closed loop, made of a lightweight fluorescent or LED light-emitting material. Because the luminous wire 200 is closed, when the wire outlet mechanism launches the luminous wire 200 out of the main body 100, the relatively lightweight material allows the luminous wire 200 to float in the air outside the main body 100, forming a rotating, luminous loop. This makes the toy highly playable and visually appealing. This flying rope toy is particularly effective when played at night or in dark environments.
[0023] In this embodiment, when the flying rope toy is not needed, most of the luminous wire 200 outside the main body 100 can be reeled into the main body 100 through the reeling mechanism, so that the length of the luminous wire 200 outside the main body 100 is reduced, making it easier for players to store the flying rope toy.
[0024] In this embodiment, the optimal solution for the take-up mechanism to reel in the light-emitting wire 200 outside the main body 100 is to reel in most of the light-emitting wire 200 outside the main body 100 into the main body 100 through the take-up mechanism until the light-emitting wire 200 outside the main body 100 is attached to the surface of the main body 100, effectively avoiding the light-emitting wire 200 outside the main body 100 from being entangled or knotted.
[0025] Furthermore, the main body 100 is provided with a light-emitting portion 130 , which is used to illuminate the light-emitting wire 200 emitted by the wire-emitting mechanism to the outside of the main body 100 .
[0026] In this embodiment, when the wire-out mechanism emits the luminous wire 200 out of the main body 100, the luminous wire 200 floats in the air to form a rotating and luminous rope loop. At this time, the light-emitting part 130 emits one side of the luminous wire 200 from the wire-out mechanism to illuminate the luminous wire 200 outward, which can increase the playability and viewing experience of the flying rope toy.
[0027] In this embodiment, the light emitting unit 130 is an RGB-LED lamp.
[0028] Furthermore, the main body 100 is provided with a wire inlet hole 140 and a wire outlet hole 150 , and the light-emitting wire 200 passes through the wire inlet hole 140 and the wire outlet hole 150 .
[0029] In this embodiment, the wire inlet hole 140 is used to provide a space for the light-emitting wire 200 to be retracted into the main body 100, and the wire outlet hole 150 is used to provide a space for the light-emitting wire 200 to be emitted from the main body 100. Specifically, the wire outlet mechanism emits the light-emitting wire 200 out of the main body 100 through the wire outlet hole 150, and the light-emitting wire 200 outside the main body 100 returns to the main body 100 through the wire inlet hole 140.
[0030] Furthermore, the hole wall of the wire outlet hole 150 is inclined outward, and the light emitting portion 130 is disposed on the hole wall of the wire outlet hole 150 .
[0031] In this embodiment, the hole wall of the wire outlet hole 150 is inclined outward, so that the light emitting portion 130 fixed on the hole wall of the wire outlet hole 150 can illuminate the outside of the main body 100 .
[0032] Furthermore, the wire-out mechanism is provided with an emission channel, an input wire area 122 and an output wire area 123 . The emission channel is located between the input wire area 122 and the output wire area 123 , and is used to emit the light-emitting wire 200 from the input wire area 122 to the output wire area 123 .
[0033] Furthermore, the wire outlet mechanism is provided with a first output shaft 124 and a second output shaft 125 , and the axial surfaces of the first output shaft 124 and the second output shaft 125 are close to each other and rotate in different directions.
[0034] Furthermore, the wire output mechanism is provided with a first motor 126 and a second motor 127. The main shafts of the first motor 126 and the second motor 127 rotate in different directions. The main shaft of the first motor 126 is inserted on the first output shaft 124, and the main shaft of the second motor 127 is inserted on the second output shaft 125.
[0035] In this embodiment, the main shaft of the first motor 126 is inserted into the first output shaft 124, and the first output shaft 124 is driven to rotate by the first motor 126; the main shaft of the second motor 127 is inserted into the second output shaft 125, and the second output shaft 125 is driven to rotate by the second motor 127.
[0036] Furthermore, the axial surface of the first output shaft 124 is provided with a first groove 1242, and the axial surface of the second output shaft 125 is provided with a second groove 1252. The first groove 1242 and the second groove 1252 are close to each other to form an emission channel, and the input area 122 and the output area 123 are respectively formed on both sides of the emission channel; when the first output shaft 124 and the second output shaft 125 rotate in different directions, the emission channel emits the light-emitting wire 200 from the input area 122 to the output area 123.
[0037] In this embodiment, the first groove 1242 and the second groove 1252 form an emission channel at their proximity. When the first output shaft 124 and the second output shaft 125 rotate in different directions, the first groove 1242 and the second groove 1252 form an air duct to emit the light-emitting wire 200 from the incoming wire area 122 to the outgoing wire area 123, that is, the light-emitting wire 200 is blown from the incoming wire area 122 to the outgoing wire area 123, and finally emitted from the outgoing wire hole 150 to the outside of the main body 100.
[0038] In this embodiment, the width of the emission channel is greater than or equal to the diameter of the light-emitting wire 200 .
[0039] Furthermore, the wire-reeling mechanism is provided with a third output shaft 111 , and the third output shaft 111 is provided with a wire winding groove 1112 , through which the light-emitting wire 200 passes. When the third output shaft 111 rotates, the axial surface of the third output shaft 111 winds up the light-emitting wire 200 outside the main body 100 .
[0040] Furthermore, the wire-taking mechanism is provided with a third motor 112 , a gear is inserted through the main shaft of the third motor 112 , and the gear is engaged with a gear on one side of the third output shaft 111 , thereby driving the third output shaft 111 to rotate.
[0041] In this embodiment, the axial surface of the third output shaft 111 is used to retract the light-emitting wire 200 outside the main body 100. Specifically, the light-emitting wire 200 passes through the winding groove 1112. As the third output shaft 111 rotates, the winding groove 1112 winds up the light-emitting wire 200 and winds it around the axial surface of the third output shaft 111. At this point, the light-emitting wire 200 outside the main body 100 is drawn into the winding groove 1112 and wound around the axial surface of the third output shaft 111. The winding process can stop when the light-emitting wire 200 outside the main body 100 is in contact with the surface of the main body 100.
[0042] Furthermore, side blocks 1114 are provided on both sides of the third output shaft 111 . When the third output shaft 111 rotates, the side blocks 1114 confine the light-emitting wire 200 to the axial surface of the third output shaft 111 .
[0043] In this embodiment, when the third output shaft 111 rotates, the side blocking portion 1114 stably winds the light-emitting wire 200 around the axial surface of the third output shaft 111 .
[0044] Furthermore, the main body 100 is provided with a limiting mechanism, which is located between the wire-out mechanism and the wire-reeling mechanism. The limiting mechanism is composed of a fixing part 161 and a wire spring 162. The fixing part 161 is fixedly connected to the wire spring 162. The fixing part 161 is fixedly connected to the main body 100, and the luminous wire body 200 passes through the wire spring 162.
[0045] Furthermore, the diameter of the wire spring 162 gradually decreases from one end to the other end, the end with a smaller diameter of the wire spring 162 faces the wire-out mechanism, and the end with a larger diameter of the wire spring 162 faces the wire-reeling mechanism, and the luminous wire 200 enters from the end with a larger diameter of the wire spring 162 and exits from the smaller end.
[0046] In this embodiment, the light-emitting wire 200 passes through the narrower end of the wire spring 162 from the end with a larger diameter, which is beneficial for confining the light-emitting wire 200 below the emission channel, making it easier for the emission channel to emit the light-emitting wire 200 from the input area 122 to the output area 123, and finally emit it from the output hole 150 to the outside of the main body 100.
[0047] Furthermore, the wire spring 162 is fixed inside the main body 100 with a position relative to the emission channel offset by 2 to 5 degrees toward the side of the light-emitting wire body 200 outside the main body 100 .
[0048] In this embodiment, the wire spring 162 is fixed inside the main body 100 with an offset of 2 to 5 degrees relative to the position of the emission channel toward the side of the external main body 100 where the luminous wire 200 is located. This is beneficial for the luminous wire 200 emitted from the emission channel outside the main body 100 to float in the air to form a rotating rope loop.
[0049] Furthermore, the third output shaft 111 is fixed in the main body 100 with a position relative to the emission channel offset by 4 to 7 degrees toward the side of the light-emitting wire 200 outside the main body 100 .
[0050] In this embodiment, the third output shaft 111 is fixed inside the main body 100 with an offset of 4 to 7 degrees relative to the position of the launch channel toward the side of the external main body 100 where the luminous wire 200 is located. This is beneficial for the luminous wire 200 launched from the launch channel to the outside of the main body 100 to float in the air and form a rotating rope loop.
[0051] Furthermore, the main body 100 further includes a grip groove 171 , a line-out switch 173 and a line-reeling switch 172 . The line-out switch 173 is disposed on the groove wall of the grip groove 171 , and the line-reeling switch 172 is disposed on the outer wall of the main body 100 .
[0052] Furthermore, the main body 100 also includes a circuit board 174 and a battery 175 , and the outgoing line switch 173 , the rewinding line switch 172 , the battery 175 , the first motor 126 , the second motor 127 , the third motor 112 and the light-emitting unit 130 are electrically connected to the circuit board 174 .
[0053] In this embodiment, the battery 175 is used to power the circuit board 174, and the line output switch 173 is used to control the first motor 126 and the second motor 127 to drive the first output shaft 124 and the second output shaft 125 to rotate in different directions to emit the light-emitting wire 200 to the outside of the main body 100, and at the same time control the brightness of the light-emitting part 130; the line reeling switch 172 is used to control the third motor 112 to drive the third output shaft 111 to reel in the light-emitting wire outside the main body 100, so that the length of the light-emitting wire 200 outside the main body 100 is reduced.
[0054] In this embodiment, when playing with the flying rope toy, the user can press the outlet switch 173 to emit the luminous wire 200 outside the main body 100. Simultaneously, the light-emitting unit 130 illuminates the luminous wire 200, and the luminous wire 200 emitted from the main body 100 floats in the air, forming a rotating, luminous loop, which is highly playable and visually appealing. This flying rope toy is particularly effective when played at night or in darker environments. When the flying rope toy is no longer needed, the reel switch 172 can be pressed to reel the luminous wire 200 outside the main body 100 onto the axial surface of the third output shaft 111 inside the main body 100. The reel stops when the luminous wire 200 outside the main body 100 touches the surface of the main body 100 between the outlet hole 150 and the inlet hole 140, making it easier for the user to store the flying rope toy.
[0055] Of course, the present invention may have many other implementations. Based on this implementation, other implementations obtained by ordinary technicians in this field without any creative work are all within the scope of protection of the present invention.
Claims
1. A flying rope toy, characterized in that: The device comprises a main body and a light-emitting wire. The main body includes a wire-reeling mechanism and a wire-discharging mechanism. The light-emitting wire passes through the wire-reeling mechanism and the wire-discharging mechanism, and the light-emitting wire forms a closed loop. When the wire-discharging mechanism launches the light-emitting wire out of the main body, the light-emitting wire forms a loop that rotates continuously. The wire-reeling mechanism is used to reel in the light-emitting wire outside the main body, thereby reducing the length of the light-emitting wire outside the main body. The outlet mechanism is provided with an emission channel, an inlet area and an outlet area. The emission channel is located between the inlet area and the outlet area, and is used to emit the light-emitting wire from the inlet area to the outlet area. The outlet mechanism is provided with a first output shaft and a second output shaft, wherein the axial surfaces of the first output shaft and the second output shaft are close to each other and rotate in different directions; The axial surface of the first output shaft is provided with a first groove, and the axial surface of the second output shaft is provided with a second groove. The first groove and the second groove are adjacent to each other to form the emission channel, and the two sides of the emission channel respectively form the input area and the output area. When the first output shaft and the second output shaft rotate in different directions, the emission channel emits the light-emitting wire from the input area to the output area. The wire-reeling mechanism is provided with a third output shaft, and the third output shaft is provided with a wire winding groove, through which the light-emitting wire passes. When the third output shaft rotates, the axial surface of the third output shaft winds up the light-emitting wire outside the main body.
2. The flying rope toy according to claim 1, characterized in that: The main body is provided with a light-emitting portion, and the light-emitting portion is used to illuminate the light-emitting wire body emitted by the wire-emitting mechanism to the outside of the main body.
3. The flying rope toy according to claim 2, characterized in that: The main body is provided with a wire inlet hole and a wire outlet hole, and the light-emitting wire passes through the wire inlet hole and the wire outlet hole.
4. The flying rope toy according to claim 3, characterized in that: The hole wall of the wire outlet hole is inclined outward, and the light-emitting portion is arranged on the hole wall of the wire outlet hole.
5. The flying rope toy according to claim 1, characterized in that: Side blocks are provided on both sides of the third output shaft. When the third output shaft rotates, the side blocks limit the light-emitting wire to the axial surface of the third output shaft.
6. The flying rope toy according to claim 1, characterized in that: The main body is provided with a limiting mechanism, which is located between the wire-out mechanism and the wire-reeling mechanism. The limiting mechanism is composed of a fixing part and a wire spring. The fixing part is fixedly connected to the wire spring, and the fixing part is fixedly connected to the main body. The luminous wire passes through the wire spring.
Citation Information
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