Spinning top for rotator
By designing a rotator to use gyros, using the fastening structure of multiple components, the problems of traditional gyros in processing and use are solved, and the game mode is enriched and children's interest in gaming is extended.
Patent Information
- Application Number
- CN202380076014.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2022-12-23
- Filing Date
- 2023-04-28
- Publication Date
- 2025-06-10
AI Technical Summary
During the processing and use of traditional gyroscopes, there are problems such as difficult materials to process and cracks, and the game is single, which can easily lead to children losing interest.
A rotator-matched gyro is designed, and the rotation and disassembly of the gyro is realized through the fastening structure of the upper and lower grips, rotator parts, counter rings, bases and other components, and supports multiple game modes.
It realizes that gyros can be used as traditional gyros and can be played as a rotator, enriching the game mode and extending children's interest in gaming.
Smart Images

Figure CN120129564A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a gyroscope, and more particularly to a gyroscope serving as both a gyroscope and a spinner. Background Art
[0002] The conventional spinning top is formed by molding wood into a conical shape, and inserting a metal ball or pin or a screw having a hemispherical head into the lower end thereof.
[0003] Such conventional spinning tops require much effort in processing wood and inserting the ball, and have disadvantages such as being easily cracked or broken when an impact is applied from the outside, so synthetic resin spinning tops manufactured by injection molding of plastic synthetic resins are widely used.
[0004] Recently, battle Beyblades in which two or more users each spin each other's tops in a space (e.g., a Beyblade game arena) to move them, and during the movement of the tops, cause the tops to collide with each other so that the other's tops stop first or their parts disassemble, have become widely used.
[0005] As the television animation based on the Beyblade has gained whirlwind popularity, the Beyblade has become popular among many children.
[0006] However, Beyblade has the monotony of being unable to play other games besides the function of the beyblade itself, and therefore there is a problem that children are easily discouraged. Summary of the invention
[0007] Technical issues
[0008] The present invention has been made to solve the above-mentioned problems, and an object of the present invention is to provide a spinning top that can be used as a spinner so that a spinning top and a spinner game can be enjoyed at the same time.
[0009] Technical Solution
[0010] In order to achieve the above-mentioned purpose, the gyroscope serving as a spinner according to the present invention includes: an upper grip 110 and a lower grip 160, which are separated by a predetermined interval and fastened to each other; a rotator portion 130, which is fastened between the upper grip 110 and the lower grip 160 in a manner that allows it to rotate relative to the upper grip 110 and the lower grip 160; an antagonist ring 150, which is fastened to the rotator portion 130 and rotates in conjunction with the rotator portion 130; and a base 170, which is detachably fastened to the lower grip 160.
[0011] At this time, it is characterized in that a rod 111 is formed on the upper holding member 110, and the rod 111 penetrates through the rotating member 130 and is fastened to the rod 163 of the lower holding member 160.
[0012] In addition, it is characterized in that it further includes: an anti-ring fixing member 120, which is fastened to the rotating member 130 and fixes the anti-ring 150.
[0013] In addition, it is characterized in that it further includes: a tool member 200, which is composed of a first main body 210 combined with the base 170 and a second main body 220 combined with the upper holding member 110, and is configured to disassemble the base 170 from the top 100 or install the base 170 onto the top 100 by rotating the first main body 210 and the second main body 220 in opposite directions when the first main body 210 is combined with the base 170 and the second main body 220 is combined with the upper holding member 110.
[0014] At this time, it is characterized in that a rope winding groove 146 is formed in the rotating portion 130, and a rope 201 that winds around the rope winding groove 146 to rotate the top is fastened to the first main body 210 or the second main body 220.
[0015] In addition, it is characterized in that the first main body 210 and the second main body 220 are configured to be disassembled and assembled with each other by a disassembly and assembly unit.
[0016] In addition, it is characterized in that an insertion port 211 for inserting the base 170 is formed in the first main body 210, and a fixing protrusion 212 that protrudes from the insertion port 211 and is inserted into the tool member fastening groove 173 of the base 170 is formed.
[0017] In addition, an insertion port 221 formed in the shape of a polygon identical to the polygon of the upper holding member 110 is formed in the second main body 220, and is configured to fix the upper holding member 110 inserted into the insertion port 221.
[0018] In addition, it is characterized in that it further includes: a transmitter 300, which is fastened to the anti-ring 150 to rotate the top 100.
[0019] At this time, the transmitter 300 is composed of a rotating body 302 equipped with a coupling groove 303 and a wire 305 that rotates the rotating body 302, and a coupling protrusion 154 of the anti-ring 150 is inserted and coupled into the coupling groove 303 of the transmitter 300 to rotate the top 100 by the transmitter 300.
[0020] In addition, it is characterized in that one side surface of the coupling protrusion 154 is perpendicular, and the other side surface is inclined so as to gradually narrow toward the end.
[0021] Technical effects
[0022] The present invention configured as described above is configured to be able to further use the top as a spinner, so that the top game and the spinner game can be enjoyed simultaneously. Brief description of the drawings
[0023] Figure 1 It is a planometric view showing the top according to the present invention.
[0024] Figure 2 It is a bottom planometric view showing the top according to the present invention.
[0025] Figure 3 It is an exploded planometric view showing the entire top according to the present invention disassembled.
[0026] Figure 4 It is an exploded planometric view showing the spinner constituting the present invention disassembled.
[0027] Figure 5 It is a planometric view showing the fastening structure of the upper grip, spinner, lower grip, and base constituting the present invention.
[0028] Figure 6 It is a planometric view showing the fastening structure of the spinner, counter ring, and counter ring fixing member constituting the present invention.
[0029] Figure 7 It is a view showing the state of disassembling the base from the top according to the present invention.
[0030] Figure 8 It is a planometric view showing the tool member according to the present invention.
[0031] Figure 9 It is a planometric view showing the state of separating the tool member according to the present invention.
[0032] Figure 10 It is a view showing the part of the top according to the present invention where the rope is wound in a visible manner.
[0033] Figure 11 It is a bottom planometric view showing the launcher.
[0034] Figure 12 It is a view showing the state where the top is combined with the launcher.
[0035] Figure 13 It is a view showing an enlarged view of the coupling groove of the launcher.
[0036] Figure 14 It is a view showing an enlarged view of the coupling protrusion of the top.
[0037] <Description of the reference numerals of the main parts of the drawings>
[0038] 100: Top 110: Upper gripping part
[0039] 111: Rod 112: Fastener
[0040] 120: Opposing ring fixing part 121: Fastening groove
[0041] 130: Rotator part 131: Upper half of rotator
[0042] 132: Rod insertion port 133: First engaging protrusion
[0043] 134: Second engaging protrusion 135: Bearing
[0044] 136: Fixing part fastening protrusion 141: Lower half of rotator
[0045] 142: Rod insertion port 143: First engaging groove
[0046] 144: Second engaging groove 145: Opposing ring fastening protrusion
[0047] 146: Rope winding groove 150: Opposing ring
[0048] 151: Upper ring 152: Rotator fastening groove
[0049] 153: Lower ring 154: Engaging protrusion
[0050] 160: Lower gripping part
[0051] 161: Fastening groove 162: Fastening groove
[0052] 163: Rod 170: Base
[0053] 171: Tip 172: Fastening protrusion
[0054] 200: Tool part 201: Rope
[0055] 210: First main body 211: Insertion port
[0056] 212: Fixing protrusion 220: Second main body
[0057] 221: Insertion port
[0058] 300: Emitter 301: Main body
[0059] 302: Rotating body 303: Engaging groove
[0060] 304: Handle 305: Thread Detailed implementation mode
[0061] Hereinafter, the present invention will be described in detail with reference to the preferred embodiments and the accompanying drawings, assuming that the same reference numerals in the drawings denote the same components.
[0062] In the detailed description or claims of the invention, when a component is referred to as "including" another component, unless otherwise stated to the contrary, it should not be construed as consisting only of the corresponding component, but should be understood to also include other components.
[0063] The terms "upper", "lower", "bottom", "front", "rear", "below", etc. used in this specification are for convenience of description only and refer to the orientation of the components as shown in the drawings.
[0064] The gyro 100 according to the present invention is generally composed of a spinner part 130, a counterweight ring 150, and a base 170. In the gyro 100 in which these components are combined, as Figure 1 and Figure 2 shown, an upper grip 110 is formed on the upper part of the counterweight ring 150, and a base 170 is formed on the lower part of the counterweight ring 150.
[0065] Each component constituting the gyro 100 of the present invention will be described in more detail.
[0066] As Figure 4 shown, in the spinner part 130, the upper spinner half 131 is combined with the lower spinner half 141, and a bearing 135 is inserted therein.
[0067] The upper spinner half 131 has first coupling protrusions 133 protruding downward on both sides of the cylindrical body having a rod insertion port 132, and second coupling protrusions 134 protruding toward the body side in a direction perpendicular to the first coupling protrusions 133.
[0068] The lower spinner half 141 has first coupling grooves 143 formed on both sides of the body having a rod insertion port 142, counterweight ring fastening protrusions 145 formed in a direction perpendicular to the first coupling grooves 143, and second coupling grooves 144 formed in a groove shape in the counterweight ring fastening protrusions 145.
[0069] As Figure 4 shown, the upper spinner half 131 and the lower spinner half 141 are combined with a bearing 135 accommodated therein, and the first coupling protrusions 133 of the upper spinner half 131 are inserted into the first coupling grooves 143 of the lower spinner half 141, and the second coupling protrusions 134 of the upper spinner half 131 are inserted into the second coupling grooves 144 of the lower spinner half 141.
[0070] When the first engaging protrusion 133 of the upper spinner part 131 formed in a hook shape is inserted into the first engaging groove 143 of the lower spinner part 141, it engages with the hook-shaped fixing protrusion 147 formed in the first engaging groove 143, so that the upper spinner part 131 and the lower spinner part 141 are kept in a fastened state without separation.
[0071] And, as Figure 3 shown, the rod 111 of the upper grip 110 is inserted into the rod insertion port 132 of the upper spinner part 131, and the rod 163 of the lower grip 160 is inserted into the rod insertion port 142 of the lower spinner part 141.
[0072] The cross-section of the lower end of the rod 111 of the upper grip 110 is formed into a polygon, and the cross-section of the fastening groove 162 of the rod 163 of the lower grip 160 is formed to have the same shape as the cross-section of the rod 111. Therefore, the rod 111 of the upper grip 110 is inserted into the fastening groove 162 of the lower grip 160 and fastened so as not to rotate relative to each other.
[0073] After fastening the upper grip 110 and the lower grip 160 to the spinner part 130, the base 170 is fastened to the lower grip 160.
[0074] As Figure 5 shown, "┐"-shaped fastening grooves 161 are formed on both sides of the lower grip 160, fastening protrusions 172 are formed on both inner sides of the conical base 170, and after the fastening protrusions 172 are inserted into the fastening grooves 161 in the vertical direction, the base 170 is rotated horizontally and fastened and fixed to the lower grip 160.
[0075] An apex 171 for the top 100 to contact the ground is formed at the lower part of the base 170.
[0076] And, as Figure 6 shown, the counterweight ring 150 is coupled to the spinner part 130 and the counterweight ring fixing member 120 is fastened to the spinner part 130 to fix the counterweight ring 150.
[0077] A vertical spinner fastening groove 152 is formed inside the counterweight ring 150. The counterweight ring fastening protrusion 145 of the spinner part 130 is inserted into the spinner fastening groove 152, and the counterweight ring 150 is fixed to the spinner part 130 by using the counterweight ring fixing member 120.
[0078] The ring-shaped counter-ring fixing part 120 has a fastening groove 121 formed in a "┐" shape on its inner surface. If the fixing part fastening protrusion 136 of the rotator part 130 is vertically inserted into the fastening groove 121 and then rotated horizontally, the counter-ring fixing part 120 is fastened to the rotator part 130 and fixed in a state where the counter-ring 150 is fastened to the rotator part 130.
[0079] The rotator part 130 rotates around the rod 111 of the upper grip 110 as a central axis, and the rotator part 130 and the counter ring 150 rotate in conjunction with the rotation of the rotator part 130 by means of the projection-slot fastening.
[0080] like Figure 3 and Figure 10 As shown, a rope winding groove 146 is formed in the rotator lower half 141 of the gyroscope 100, and the gyroscope 100 is rotated by winding a rope around the rope winding groove 146 and pulling it.
[0081] like Figure 10 As shown, preferably, protrusions (no mark) are formed at predetermined intervals on the inner surface of the rope winding groove 146 so that when the rope is wound and pulled, the rope does not slip and the rotational force is accurately transmitted to the gyroscope.
[0082] The present invention is constituted by making the rope that makes the gyroscope 100 rotate like Figure 8 As shown, it is bundled with the tool 200.
[0083] The tool member 200 is configured to be used as a handle when the rope 201 is wound around the top 100 and pulled, or to be used as a tool when the base 170 of the top 100 is separated to use the top 100 as a spinner.
[0084] In the tool part 200 , the first body 210 and the second body 220 are fastened using a fastening unit.
[0085] The first body 210 is formed with an insertion opening 211 , and a pair of fixing protrusions 212 protrude inwardly from the insertion opening 211 . Also, the second body 220 is formed with a polygonal insertion opening 221 .
[0086] like Figure 1 and Figure 6 As shown, the upper gripping member 110 is formed into a polygonal plate shape, and the insertion port 221 formed in the second body 220 of the tool member 200 is formed into a shape corresponding to the polygon of the upper gripping member 110 so that the upper gripping member 110 can be inserted therein and fixed.
[0087] And, if Figure 2 and Figure 10As shown, a pair of tool fastening grooves 173 are formed in the base 170, and a fixing protrusion 212 formed at the insertion port 211 of the first main body 210 of the tool 200 is configured to be inserted into the tool fastening groove 173 of the base 170.
[0088] When disassembling the gyro 100, as Figure 9 shown, the first main body 210 and the second main body 220 fastened by the fastening unit are separated, and the upper gripping member 110 of the gyro 100 is inserted into the insertion port 221 of the second main body 220.
[0089] Moreover, if the base 170 is inserted into the insertion port 211 of the first main body 210, the fixing protrusion 212 of the first main body 210 is inserted into the tool fastening groove 173 of the base 170.
[0090] In this state, if the user rotates the first main body 210 and the second main body 220 of the tool 200 in opposite directions to each other, the base 170 is separated from the lower gripping member 160 of the spinner unit 130.
[0091] As Figure 7 shown, the gyro 100 from which the base 170 is separated has an upper gripping member 110 and a lower gripping member 160 formed respectively at the upper and lower parts of the opposing ring 150, so that it can be used as a spinner for the user to enjoy the game by gripping the upper gripping member 110 and the lower gripping member 160 and rotating the opposing ring 150.
[0092] During the process of being used as a spinner, if the base 170 is fastened to the lower gripping member 160 by the tool 200, it can be used as the gyro 100 again.
[0093] The present invention configured as described above configures the gyro to be also capable of being used as a spinner, so that the gyro game and the spinner game can be enjoyed simultaneously.
[0094] As described above, the gyro 100 of the present invention can rotate the gyro 100 by winding the rope 201 of the tool 200 around the rope winding groove 146 of the gyro 100, but it can also use Figure 11 the spinner 300 shown to rotate the gyro 100.
[0095] The spinner 300 is composed of a main body 301 and a line 305. A coupling groove 303 is formed in the rotating body 302 formed at the lower part of the main body 301, and teeth in a protruding shape are provided at predetermined intervals on the outer surface of the line 305 equipped with a handle 304.
[0096] As Figure 1As shown, engaging protrusions 154 are formed on the opposing ring 150 of the top 100. When the engaging protrusions 154 of the top 100 are inserted into the engaging grooves 303 formed in the rotating body 302 of the launcher 300, if the user pulls the handle 304 of the launcher 300, the wire 305 disengages from the main body 301 and rotates the rotating body 302, thereby rotating the top 100.
[0097] At this time, as Figure 13 shown, one side of the engaging protrusion 154 protruding from the opposing ring 150 is formed vertically, and the other side is formed obliquely such that the width of the engaging protrusion 154 gradually narrows upward. Also, both sides of the engaging groove 303 of the launcher 300 are formed vertically as Figure 14 shown, and among them, the inclined surface formed at the lower end of the engaging groove 303 in Figure 14 is a guiding surface for guiding the insertion of the engaging protrusion 154.
[0098] By configuring the engaging protrusion 154 and the engaging groove 303 as described above, when the user pulls the wire 305 to transmit a rotational force to the top 100, the force is transmitted in the direction of the vertical surface of the engaging protrusion 145, so that all the force exerted by the user pulling the wire can be transmitted as the rotational force of the top 100. The inclined surface formed on one side of the engaging protrusion 154 is for ensuring the safety of the user and for guiding the smooth insertion of the engaging protrusion 154 into the engaging groove 303.
[0099] The internal configuration of the main body 301 of the launcher 300 as described above is a well-known technology, so a detailed description thereof is omitted.
[0100] Above, the technical concept of the present invention has been described through the above embodiments.
[0101] It is obvious that those with ordinary knowledge in the technical field to which the present invention pertains can make various deformations or changes to the above-described embodiments according to the descriptions of the present invention.
[0102] In addition, although not clearly shown or described, it is obvious that those with ordinary knowledge in the technical field to which the present invention pertains can make various forms of deformations including those based on the technical concept of the present invention according to the descriptions of the present invention, and this still falls within the scope of the claims of the present invention.
[0103] The above embodiments described with reference to the drawings are described for illustrating the present invention, and the scope of the claims of the present invention is not limited to such embodiments.
Claims
1. A gyroscope that can be used as a spinner. include: An upper gripping member (110) and a lower gripping member (160) are spaced apart at a predetermined interval and fastened to each other; a rotator portion (130) fastened between the upper gripping member (110) and the lower gripping member (160) in a manner capable of rotating relative to the upper gripping member (110) and the lower gripping member (160); a counter ring (150) fastened to the rotator portion (130) and rotating in conjunction with the rotator portion (130); and The base (170) is detachably fastened to the lower holding member (160).
2. The gyroscope as claimed in claim 1, It is characterized in that A rod (111) is formed on the upper grip (110), and the rod (111) passes through the rotator portion (130) and is fastened to the rod (163) of the lower grip (160).
3. The gyroscope as a spinner according to claim 1, It is characterized in that Also includes: The counter-ring fixing member (120) is fastened to the rotator portion (130) and fixes the counter-ring (150).
4. The gyroscope as a spinner according to claim 1, It is characterized in that Also includes: The tool part (200) is composed of a first body (210) combined with the base (170) and a second body (220) combined with the upper gripping part (110), and The invention is configured such that, when the first body (210) is coupled to the base (170) and the second body (220) is coupled to the upper grip (110), the base (170) can be removed from the gyroscope (100) or the base (170) can be mounted on the gyroscope (100) by rotating the first body (210) and the second body (220) in opposite directions.
5. The gyroscope used as a spinner according to claim 4, It is characterized in that A rope winding groove (146) is formed in the rotator part (130), and a rope (201) wound in the rope winding groove (146) to rotate the gyroscope is fastened to the first body (210) or the second body (220).
6. The gyroscope as a spinner according to claim 4, It is characterized in that The first body (210) and the second body (220) are configured to be detachable from each other using a detachable unit.
7. The gyroscope used as a spinner according to claim 4, It is characterized in that The first body (210) is formed with an insertion port (211) for inserting the base (170), and a fixing protrusion (212) is formed which protrudes from the insertion port (211) and is inserted into the tool fastening groove (173) of the base (170).
8. The gyroscope as a spinner according to claim 4, It is characterized in that The second body (220) is provided with an insertion port (221) formed in the same polygonal shape as the upper gripping piece (110), and is configured to fix the upper gripping piece (110) inserted into the insertion port (221).
9. The gyroscope as a spinner according to claim 1, It is characterized in that Also includes: The transmitter (300) is fastened to the counter ring (150) to rotate the gyroscope (100).
10. The spinner-cum-gyroscope according to claim 9, wherein, the transmitter (300) is composed of a rotating body (302) equipped with a coupling groove (303) and a wire (305) for rotating the rotating body (302), and a coupling protrusion (154) of the counter ring (150) is inserted and coupled into the coupling groove (303) of the transmitter (300) to rotate the gyroscope (100) by the transmitter (300).
11. The spinner-cum-gyroscope according to claim 10, wherein, one side surface of the coupling protrusion (154) is perpendicular, and the other side surface is inclined so as to gradually narrow toward the end.