WO2019205573A1 - 陀螺组件 - Google Patents

陀螺组件 Download PDF

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Publication number
WO2019205573A1
WO2019205573A1 PCT/CN2018/114653 CN2018114653W WO2019205573A1 WO 2019205573 A1 WO2019205573 A1 WO 2019205573A1 CN 2018114653 W CN2018114653 W CN 2018114653W WO 2019205573 A1 WO2019205573 A1 WO 2019205573A1
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WO
WIPO (PCT)
Prior art keywords
gyro
transmitter
head
transmitting head
connection
Prior art date
Application number
PCT/CN2018/114653
Other languages
English (en)
French (fr)
Inventor
梁文建
Original Assignee
奥飞娱乐股份有限公司
广州奥飞文化传播有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 奥飞娱乐股份有限公司, 广州奥飞文化传播有限公司 filed Critical 奥飞娱乐股份有限公司
Publication of WO2019205573A1 publication Critical patent/WO2019205573A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H1/00Tops
    • A63H1/02Tops with detachable winding devices
    • A63H1/04Tops with detachable winding devices with string or band winding devices
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H31/00Gearing for toys
    • A63H31/08Gear-control mechanisms; Gears for imparting a reciprocating motion

Definitions

  • the present invention relates to the field of toy technology, and in particular to a gyro assembly.
  • the gyro in the related art uses a bottom to be connected to the transmitter and emits less.
  • the smart gyro accelerator is designed in the shape of a clip, and the gyro is accelerated and emitted by clamping the gear on the lower gyro shaft of the gyro.
  • the transmitter of the mainstream gyro assembly is mainly accelerated by a manual pulling tooth or a rope to the gyro toy, and the structure thereof is relatively simple.
  • Common gyro launchers are square, gun-shaped and clip-shaped.
  • a gyro launcher of this shape is particularly inconvenient for carrying and storing, particularly for a transmitter that uses a toothed tooth. Either the transmitter is larger in size and takes up more space, or the teeth are longer and sharper, which is inconvenient to carry and not convenient to store, and sometimes the transmitter is forgotten to have a rack, which causes the gyro to play.
  • the present invention aims to solve at least one of the technical problems existing in the prior art. To this end, the present invention proposes a gyro assembly that is easy to operate by connecting the emitter to the bottom of the gyro for emission.
  • a gyro assembly includes: a transmitter, a top of the transmitter is provided with a transmitting head, the transmitter includes a driving mechanism for driving the rotating of the transmitting head; a top, the gyro can be erect On the transmitting head, a bottom portion of the top is provided with a connection position for engaging with the transmitting head, and the transmitting head drives the top to rotate by the connecting position when the driving mechanism is operated.
  • the gyro can be reliably set on the transmitter by the cooperation of the transmitting head and the connecting position, and the gyro can be rotated when the predetermined rotating speed is reached by the driving mechanism, thereby realizing the gyro Launch.
  • the gyro assembly according to the above embodiment of the present invention has the following additional technical features:
  • the transmitting head is provided with at least one of a connecting claw, a transmitting groove and a magnetic connecting member that connect the top.
  • the transmitting head includes: a transmitting disk connected to the driving mechanism; a plurality of the connecting claws, the plurality of connecting claws are disposed around a rotation axis of the transmitting disk, and a plurality of connecting claws
  • the elastic members are configured to be brought toward the rotation axis, and the top of each of the connecting claws is engaged with the connection position.
  • an elastic plate for ejecting the gyro is disposed in the transmitting slot.
  • a positioning portion for positioning the gyro is disposed on an inner wall of the emission groove.
  • the gyro includes: a gyro body and a gyro provided at a bottom of the gyro body, the connection position being disposed on the gyro.
  • a bottom surface of the connection bit and a top of the emitter are formed as undulating wave faces surrounding the gyro.
  • connection bit includes a plurality of connection bumps formed on an outer circumference of the gyro, the plurality of connection bumps are spaced apart around an axis of rotation of the gyro, and each of the connection bumps is oriented A socket is formed between the two adjacent connecting bumps, and the gyro is mated with the transmitting head through the connecting bump and the socket.
  • a plurality of the connecting protrusions are provided with a connecting inclined surface on the same side in the circumferential direction, and the transmitting head is provided with a driving inclined surface that cooperates with the connecting inclined surface.
  • a handle is provided on the bottom or side of the transmitter.
  • the driving mechanism includes: a motor and a motor switch, the motor is disposed in a casing of the transmitter, a motor shaft of the motor is connected to the transmitting head, and the motor switch is used For controlling the switch of the motor.
  • the housing of the transmitter is provided with a rack opening
  • the driving mechanism includes: a pulling gear and a rotating rack
  • the pulling gear is rotatably disposed on the The housing is coupled to the firing head, and the pulling rack extends from the rack opening into the housing and engages the pull gear.
  • the drive mechanism includes a roping portion and a rope body rotatably disposed within the housing of the transmitter and coupled to the launching head, the cord body Winding around the roping portion and connecting the roping portion at an inner end.
  • FIG. 1 is an assembled view of a gyro assembly in accordance with an embodiment of the present invention
  • FIG. 2 is an assembled view of a transmitter of one embodiment of a gyro assembly in accordance with an embodiment of the present invention
  • FIG. 3 is a partial structural schematic view of an emitter of one embodiment of a gyro assembly in accordance with an embodiment of the present invention
  • FIG. 4 is a schematic diagram showing another partial structure of a transmitter of one embodiment of a gyro assembly according to an embodiment of the present invention.
  • Figure 5 is an assembled view of a top in a gyro assembly in accordance with an embodiment of the present invention
  • FIG. 6 is a schematic diagram of a transmitter of another embodiment of a gyro assembly in which a half shell of the transmitter is in a first connection position, in accordance with an embodiment of the present invention
  • FIG. 7 is a schematic diagram of a transmitter of another embodiment of a gyro assembly in which a half shell of the emitter is in a second connection position, in accordance with an embodiment of the present invention
  • FIG. 8 is an exploded view of a transmitter of another embodiment of a gyro assembly in which a half shell of the transmitter is in a first connection position, in accordance with an embodiment of the present invention
  • FIG. 9 is an exploded view of a transmitter of another embodiment of a gyro assembly in which a half shell of the emitter is in a second connection position, in accordance with an embodiment of the present invention
  • FIG. 10 is a schematic structural view of a driving mechanism of a transmitter according to an embodiment of the present invention.
  • FIG. 11 is a schematic structural view of a driving mechanism of a transmitter according to still another embodiment of the present invention.
  • Figure 12 is a schematic structural view of a transmitter according to still another embodiment of the present invention.
  • Figure 13 is a schematic view showing the structure of the driving mechanism of the transmitter shown in Figure 12;
  • connection position 21 connection bump 211, connection slope 2111, socket 212, gyro body 22, gyro 23,
  • the bottom case 10 The bottom case 10, the top case 20, the first connecting component 101, the first screwing rib 110, the first limiting groove 102, the first screwing groove 120, the first limiting rib 103, the second connecting component 200, the second Rotating rib 210, second limiting rib 213, second screwing groove 220, second limiting groove 221,
  • One-way actuator 310 drive end gear 311, passive end gear 312, swing tooth 313, intermediate tooth 314, ratchet 315, pawl 316, roping portion 330, accumulator 340, planetary gear train 350, ring gear 351, Sun gear 352, planet wheel 353, planet carrier 354,
  • the firing groove 410, the matching rib 411, cooperates with the inclined surface S.
  • connection In the description of the present invention, it should be noted that the terms “installation”, “connected”, and “connected” are to be understood broadly, and may be fixed or detachable, for example, unless otherwise explicitly defined and defined. Connected, or integrally connected; can be mechanical or electrical; can be directly connected, or indirectly connected through an intermediate medium, can be the internal communication of the two components.
  • Connected, or integrally connected can be mechanical or electrical; can be directly connected, or indirectly connected through an intermediate medium, can be the internal communication of the two components.
  • the specific meaning of the above terms in the present invention can be understood in a specific case by those skilled in the art.
  • a gyro assembly 100 in accordance with an embodiment of the present invention will now be described with reference to the drawings.
  • a gyro assembly 100 includes a transmitter 1 and a gyro 2.
  • the top of the transmitter 1 is provided with a transmitting head 11, and the transmitter 1 includes a driving mechanism 12, and the driving mechanism 12 can be used to drive the rotating head 11 to rotate.
  • the gyro 2 can stand on the launching head 11, for example, the bottom of the gyro 2 can be disposed on the transmitting head 11. Specifically, the bottom of the gyro 2 is provided with a connection position 21, and the connection position 21 cooperates with the transmitting head 11.
  • the transmitting head 11 is connected to the gyro 2 through the connecting position 21, and the bottom of the gyro 2 can be securely placed. The top of the head 11 is driven so that the gyro 2 can be rotated by the drive mechanism 12.
  • the top of the transmitter 1 is provided with a transmitting head 11, and the driving mechanism 12 can be disposed in the housing of the transmitter 1, and the driving mechanism 12 can further drive the rotating of the transmitting head 11.
  • the specific structure of the transmitter 1 is not limited in the present invention, and is specifically configured to enable effective emission of the gyro 2 by the driving mechanism 12.
  • the gyro 2 can be reliably disposed on the transmitter 1 by the cooperation of the transmitting head 11 and the connecting position 21, and can be driven by the driving mechanism 12 when the predetermined rotational speed is reached.
  • the gyro 2 rotates to realize the launch of the gyro 2.
  • the predetermined rotational speed herein can be specifically set according to different gyro assemblies 100, as will be appreciated by those skilled in the art.
  • the transmitting head 11 is provided with at least one of a connecting claw 112 connecting the gyro 2, an emitting groove, and a magnetic connecting member.
  • a reliable connection between the gyro 2 and the transmitting head 11 can be achieved by at least one of the connecting claw 112, the transmitting groove and the magnetic connecting member, thereby facilitating the rotation of the gyro 2 by the driving mechanism 12 to ensure the gyro 2 Use reliability.
  • the transmitting head 11 is provided with a transmitting slot 410 (refer to FIG. 10); in some embodiments, the transmitting head 11 is provided with a connecting claw 112 (refer to FIG. 2); in some embodiments The transmitting head 11 is provided with a magnetic structure.
  • the transmitter 1 of the embodiment of the present invention can accommodate a variety of toy bodies, for example, the toy body can be a conventional plastic gyro, a metal gyro with metal, or the like. Thereby, the application range of the transmitter 1 is expanded, and the competitiveness of the product is improved.
  • the transmitting head 11 includes a launching disk 111 and a plurality of connecting claws 112.
  • the transmitting disk 111 is connected to the driving mechanism 12; a plurality of connecting claws 112 are disposed around the rotation axis of the transmitting disk 111, and the plurality of connecting claws 112 are configured to be close to the rotation axis by an elastic member (for example, a torsion spring or the like), each connection The top of the pawl 112 cooperates with the connection position 21.
  • an elastic member for example, a torsion spring or the like
  • an elastic plate for ejecting the gyro 2 is disposed in the transmitting slot.
  • the gyro 2 can be emitted by the elastic plate, which is beneficial to improve the fun of the gyro assembly 100.
  • an elastic plate for example, a plate having a certain elasticity
  • the spring plate can eject the rotating top 2 .
  • a positioning portion for positioning the gyro 2 is further disposed on an inner wall of the emission groove.
  • a positioning portion may be disposed on an inner wall of the emission groove, and the positioning portion may be used for positioning the gyro 2.
  • the positioning portion may be, for example, a positioning protrusion or the like, and the positioning portion may be used to prevent the gyro 2 from being ejected by the elastic plate when the gyro 2 does not rotate or the gyro 2 rotates at a low speed. In this way, the structure of the transmitter 1 is made more reasonable, and the accommodation of the gyro 2 is facilitated.
  • the gyro 2 includes a gyro body 22 and a gyro 23 which may be disposed at the bottom of the gyro body 22, wherein the connection position 21 may be provided on the apex 23.
  • the connection position 21 on the gyroscopic tip 23, it is advantageous to control the holding force of the transmitting head 11 to the connection position 21 to a certain extent, thereby facilitating the emission of the gyro 2 by the transmitter 1.
  • a undulating wave face that surrounds the gyro 2 is formed between the bottom surface of the connection bit 21 and the top of the emitter head 11.
  • a bottom surface of the connection position 21 and a top portion of the emitter head 11 may be formed as a wave surface which may be configured to undulate up and down around the rotation axis of the gyro 2 . This is advantageous in improving the connection reliability between the connection position 21 and the transmitting head 11.
  • the waveform may include a square wave, a sawtooth wave, a triangular wave, a sine wave, and the like.
  • the connection position 21 includes a plurality of connection bumps 211, and a plurality of connection protrusions 211 may be formed on the outer circumference of the gyro 23, and the plurality of connection protrusions 211 surround the rotation axis of the gyro 2
  • Each of the connecting protrusions 211 extends downwardly, and a socket 212 can be formed between the two adjacent connecting protrusions 211.
  • the gyro 2 is inserted into the transmitting head 11 through the connecting protrusion 211 and the socket 212. Thereby, the connection reliability between the connection bit 21 and the emitter head 11 can be further improved, and the use performance of the gyro assembly 100 can be improved.
  • the lowest position of the connection bit 21 (for example, the lowest position of the connection bump 211 in the up and down direction) is not at the same level as the highest position of the emitter head 11, and the lowest position of the connection bit 21 is Between the highest positions of the transmitting head 11, a wave surface undulating around the rotation axis of the gyro 2 can be formed, which can improve the holding force between the connection position 21 and the transmitting head 11 to some extent, and ensure the between Connection reliability.
  • the plurality of connecting protrusions 211 may be provided with a connecting inclined surface 2111 on the same side in the circumferential direction, and the driving head 11 is provided with a driving inclined surface 113, and the driving inclined surface 113 may cooperate with the connecting inclined surface 2111.
  • the assembly of the coupling head 11 and the gyro 2 is facilitated by providing the driving ramp 113 and the connecting ramp 2111, and the transmission of the driving force is more advantageous when the gyro 2 is emitted by the transmitter 1.
  • the handle 13 is provided at the bottom or side of the emitter 1.
  • the transmitter 1 can include a handle 13 that facilitates the player holding the transmitter 1 to further effect the launch of the gyro 2.
  • a handle 13 can be provided at the bottom of the emitter 1; in some embodiments, a handle 13 can also be provided on the side of the emitter 1.
  • the specific structure and setting position of the handle 13 are not limited in the present invention, and can be adaptively set according to needs in practical applications.
  • the drive mechanism 12 includes a motor and a motor switch, the motor being disposed within the housing 14 of the transmitter 1, the motor shaft of the motor being coupled to the transmitting head 11, the motor switch being used A switch that controls the motor (eg, the motor is turned on or off).
  • the transmitting head 11 since the transmitting head 11 is connected to the motor shaft of the motor, that is, when the player turns the motor on, the transmitting head 11 can be rotated, and when the gyro 2 inside the transmitting head 11 is rotated to a certain speed, it will automatically fly out. That is to say, the user does not need to use the pulling rope or the rack to drive the rotation of the transmitting head 11, so that the player does not need to use a large amount of force when using the transmitter 1 to launch the gyro 2, thereby improving the playability and the pair of the transmitter 1. The attraction of children.
  • the transmitter 1 (e.g., the housing) may be provided with a button that is electrically coupled to the motor that is rotatable when the player pushes the button firing head 11.
  • a button that is electrically coupled to the motor that is rotatable when the player pushes the button firing head 11.
  • the motor may be provided with a button that is electrically coupled to the motor that is rotatable when the player pushes the button firing head 11.
  • a remote control device e.g., a voice control device, and the like.
  • the housing 14 of the transmitter 1 is provided with a rack opening 141
  • the driving mechanism 12 includes: a pulling gear 121 and a rotating rack 122, and a pulling gear 121 is rotatably disposed in the housing 14, and the pulling gear 121 is coupled to the transmitting head 11, and the pulling rack 122 can be inserted into the housing 14 from the rack opening 141, and the rack 122 is rotated
  • the pull gear 121 meshes. Therefore, the rotating rack 122 can be connected to the transmitter 1 through the rack opening 141.
  • the pulling of the rotating rack 122 can drive the rotating gear 121 to rotate, thereby driving the transmitting head 11 to rotate, and then reaching a certain speed.
  • the gyro 2 connected to the transmitting head 11 is rotated to realize the emission of the gyro 2.
  • the drive mechanism 12 includes a roping portion 330 and a rope body that is rotatably disposed within the housing 14 of the transmitter 1 and that is coupled to the launching head 11 by a roping portion 330.
  • the rope body is wound around the roping portion 330, and the inner end of the rope body is coupled to the roping portion 330. Therefore, when the exposed end of the rope is pulled, the roping portion 330 can be rotated to drive the rotating head 11 to rotate, and when a certain speed (specifically configurable) is reached, the gyro connected to the transmitting head 11 is driven. 2 Rotate to realize the launch of the gyro 2.
  • the gyro assembly 100 of the embodiment of the present invention by adopting the upward emission mode, the feeling of experience when transmitting the interaction can be increased, and the entire gyro 2 can be observed while the gyro 2 is being accelerated. Further, by providing the emission position at the bottom of the gyro, various accessories (for example, functional members, decorative members, and the like) can be added to the top of the gyro 2, so that the function and effect of the gyro 2 can be improved.
  • various accessories for example, functional members, decorative members, and the like
  • the transmitter 1 can also achieve downward transmission; in some embodiments, the transmitter 1 can achieve both upward and downward transmission.
  • Embodiment 1 is a diagrammatic representation of Embodiment 1:
  • the handle 13 of the transmitter 1 is located on the side of the transmitter 1, and the emitter 11 of the transmitter 1 is designed as a resilient clip which is disposed on the top surface of the transmitter 1.
  • the elastic clip is facing upward, and the bottom connecting position 21 of the top 2 is designed as a latching position for the elastic clip to be clamped.
  • the bottom of the top 2 is placed on the elastic clip, and then driven by pulling the rope or pulling the rack.
  • the elastic clamp is rotated to accelerate the gyro 2 .
  • the connector of the transmitter 1 includes a seat body, a driving member (for example, one of the aforementioned driving mechanisms 12, the same applies hereinafter), and a resilient clip member.
  • the seat body comprises an upper seat and a lower seat, the upper seat is integrally connected with the handle 13, the upper part of the upper seat is provided with a cavity for the elastic clip member; the lower seat is provided with a cavity, and the driving member is installed in the cavity;
  • the upper and lower seats are connected by screws.
  • the rotating gear 121 extends upwardly with a rotating column 1211.
  • the rotating column 1211 protrudes above the upper seat and is connected with the elastic clip to drive the elastic clamp to rotate.
  • the driving member of the embodiment may be a simple single gear structure, and the base body is provided with a rack opening 141 through which the pulling rack 122 is inserted beside the pulling gear 121, and the rack is rotated by the rack
  • the meshing member 122 is engaged with the pulling gear 121 to realize the pulling of the rotating rack 122 to drive the pulling gear 121 to rotate.
  • the pulling gear 121 can drive the rotating head 11 to rotate by rotating the column 1211.
  • the gyro 2 is disengaged from the transmitting head 11 to complete the launch of the gyro 2.
  • the driving member can also be designed to include the roping portion 330 and the rope body. The one end of the rope body drives the roping portion 330 to rotate, so as to further rotate the transmitting head 11 through the transmission gear or the like to realize the rope emission.
  • the elastic clip member includes a launching disc 111 and a connecting claw 112.
  • the connecting claw 112 can be a resilient clip.
  • the transmitting disc 111 is provided with a hole matching the rotating column 1211.
  • the rotating post 1211 passes through the hole and passes through the end.
  • the cover and the screw are connected.
  • the connecting claw 112, for example, the elastic clip includes at least two pieces, and the bottom of the elastic clip is connected to the launching disc 111 through the rotating shaft 15, so that the elastic clip can be rotated about the rotating shaft 15, and a torsion spring is arranged at the rotating shaft 15
  • the elastic clip is always in a collapsed state. There is a gap between two adjacent elastic clips for further assembly with the gyro assembly 100.
  • the gyro 2 is provided with a connection position 21 at the upper portion of the shaft body of the gyro 23, which is a concave position which can be engaged by the elastic clip.
  • a connecting bump 211 is protruded from the periphery of the shaft body, and a concave position (ie, the socket 212) is formed between the two adjacent connecting bumps 211.
  • the connecting bump 211 is located at the phase. Adjacent to the gap between the two pieces of the elastic clips.
  • the embodiment in order to further improve the fit of the elastic clip to the gyro 2, avoiding the occurrence of tripping during the acceleration of the gyro 2, the embodiment is provided with a fit in the middle of the top of each elastic clip.
  • the recessed position 1121 is correspondingly provided with a mating protrusion on the shaft body of the gyro 2 that can cooperate with the mating recessed position 1121.
  • the connecting bump 211 of the embodiment can be designed in the same shape as the mating bump, thereby further improving the convenience of connection, without distinguishing the connecting bump 211 and the mating bump, and greatly improving the transmitter 1 and the gyro 2 the speed of the connection.
  • the playing method of the transmitter 1 of the embodiment is that the launching head 11 can drive the gyro 2 to rotate by pulling the rotating rack 122 or pulling the rope body. After pulling to a certain rotating speed, the transmitting head 11 is disconnected from the gyro 2, Thereby the gyro 2 is emitted from the transmitter 1.
  • Embodiment 2 is a diagrammatic representation of Embodiment 1:
  • the second embodiment is substantially the same as the structure of the first embodiment, except that the transmitting head 11 is matched with the top 2 through a launching groove, and the firing slot is provided with an elastic plate for ejecting the top 2.
  • a positioning portion may be disposed on an inner wall of the emission groove, and the positioning portion may be used for positioning the gyro 2.
  • the positioning portion may be, for example, a positioning bump or the like for preventing the gyro 2 from being ejected by the elastic plate when the gyro 2 does not rotate or the gyro 2 rotates at a low speed. In this way, the structure of the transmitter 1 is made more reasonable.
  • the playing method of the transmitter 1 of this embodiment is substantially the same as that of the transmitter 1 of the first embodiment, and details are not described herein again.
  • Embodiment 3 is a diagrammatic representation of Embodiment 3
  • the emitter 1 in this embodiment can be formed, for example, as an egg-shaped emitter or the like.
  • the handle 13 of the transmitter 1 can be located at the lower end of the transmitter 1, for example, the handle 13 can be formed by a portion of the housing of the transmitter 1 to facilitate the player holding the transmitter 1 to effect the launch of the gyro 2.
  • the upper end of the transmitter 1 is provided with a concave position for the lower portion of the top 2 to be placed, and the connecting members and the connecting positions of the two can be mutually engaged ratchets.
  • the handle 13 of this embodiment is disposed at the lower end of the transmitter 1, and the emitter 11 of the transmitter 1 is designed to be recessed, which is disposed on the top surface of the connector 1, and will be emitted when With the concave position facing up, the bottom of the gyro 2 is placed in the concave position, and then the gyro 2 is accelerated by pulling the concave position by pulling the rope or pulling the rack.
  • the gyro 2 of another specific embodiment is shown in FIG. 7. It can be understood that the gyro 2 herein can also be the gyro 2 shown in FIG.
  • the connector of the transmitter 1 includes a housing, a driving member and a recess.
  • the upper end of the housing is provided with a cover body, and the upper end portion of the recess protrudes from the opening in the middle of the cover body, and the driving member is located in a space between the housing and the cover body.
  • the housing and the cover are connected by screws.
  • the driving component comprises a handle 16, a rope body, a roping portion 330, a gear, a transmission gear set, wherein the handle 16 is connected with one end of the rope body, and the handle 16 is disposed on the outer casing wall of the casing for pulling the rope body by hand; The other end of the body is wound around the roping portion 330.
  • the upper end of the roping portion 330 is coaxially coupled with a gear that meshes with one end of the transmission gear set; the lower end of the recess is also provided with a lower gear, the lower gear and the transmission The other end of the gear set is engaged. Therefore, the pulling of the rope body can drive the concave position to rotate.
  • the inner wall of the concave position is further provided with a convex spine, and the lower end shaft body of the corresponding gyro 2 is provided with a matching ratchet position.
  • the spine is matched with the convex spine. And the cooperation is realized, and the gyro 2 can be rotated synchronously when the concave position is rotated.
  • the spine on the gyro 2-axis body is formed by the spaced bumps. Further, in order to achieve a smoother fit between the spine and the spurs, the concave ridges and the gyro 2 bumps are One side is designed as a bevel, so when the gyro 2 is placed in the concave position, the convex spine can be smoothly moved to the spine position with the aid of the inclined surface.
  • the egg-shaped emitter of the present embodiment includes a top case 20, a bottom case 10, and a drive mechanism 12.
  • the bottom case 10 and the top case 20 have a first connection position and a second connection position, in which the bottom case 10 and the top case 20 are oppositely disposed and fastened to form an egg shape, and in the second connection position,
  • the bottom case 10 and the top case 20 are disposed opposite to each other, wherein in the second connection position, the top case 20 is disposed opposite to the bottom case 10, and the top case 20 is located at the bottom of the bottom case 10, using an egg-shaped emitter
  • the top case 20 may be formed as a handle 13 for the player to hold.
  • the bottom case 10 is provided with an emitting head 11 and a driving mechanism 12, and the transmitting head 11 is rotatably disposed in the corresponding bottom case 10, and the driving mechanism 12 is connected to the transmitting head 11.
  • the launching head 11 is provided with an emission groove 410.
  • the inner wall of the emission groove 410 is provided with a plurality of matching ribs 411 extending along the axial direction of the emitter head 11.
  • the end of the ribs 411 away from the bottom case 10 is provided with a matching slope S.
  • the two half-shells are detachably connected by the first connection assembly 101; in the second connection position, the two half-shells pass The second connection assembly 200 is detachably connected.
  • the first connection component 101 and/or the second connection component 200 are connected in at least one of a screw connection, a snap connection, a plug connection, and a pull-in connection.
  • connection manner of the first connection component 101 and the second connection component 200 may be the same or different, that is, in some embodiments, the first connection component 101 and The second connection assembly 200 is each formed as any one of a screw connection, a snap connection, a plug connection, and a pull-in connection.
  • the first connection component 101 or the second connection component 200 is formed as one of a screw connection, a snap connection, a plug connection, and a pull-in connection.
  • the first The connection assembly 101 is formed as a screw connection
  • the second connection assembly 200 is formed as any one of a snap connection, a plug connection, and a pull-in connection.
  • a variety of connection methods allow the manufacturer to select a suitable connection structure according to the material shape of the half-shell, so that the half-shell is more practical and looks better.
  • suction structure may be a magnetic structure or a gas suction structure.
  • the top shell 20 is provided with a second screwing groove 220 and a first screwing rib 110
  • the bottom shell 10 is provided with a second screw rib 210 that cooperates with the second screwing groove 220 .
  • a first screwing groove 120 that cooperates with the first screwing rib 110.
  • the first limiting rib 110 is provided with a first limiting groove 102.
  • the inner wall of the first rotating groove 120 is provided with a first limiting rib 103 that cooperates with the first limiting groove 102.
  • a second limiting rib 213 is disposed on the second fastening rib 210.
  • the second limiting groove 221 is matched with the second limiting rib 213 on the inner wall of the second fastening groove 220.
  • the drive mechanism 12 includes a one-way actuator 310, a pull handle 16, a roping portion 330, a rope body (not shown), and an accumulator 340.
  • the one-way transmission 310 includes a driving end gear 311, a driven end gear 312, a swinging tooth 313 and an intermediate tooth 314.
  • the driving end gear 311 is coaxially and spaced apart from the passive end gear 312, and the passive end gear 312 is connected to the transmitting head 11.
  • the swinging teeth 313 are formed as double gears, the intermediate teeth 314 are also formed as double gears, the lower gears of the swinging teeth 313 are meshed with the driving end gears 311, and the upper gears of the intermediate teeth 314 are meshed with the passive end gears 312.
  • the roping portion 330 is coupled to the drive end gear 311, and the cord body is wound around the roping portion 330 and the inner end of the roping portion 330 is coupled to the handle 16 at its outer end.
  • the accumulators 340 are connected to the roping portion 330 and the bottom case 10, respectively.
  • the accumulator 340 is configured to store energy during engagement of the driven end gear 312 with the swing teeth 313, and the passive end gear 312 is disengaged from the swing teeth 313 when the accumulator 340 is released.
  • the egg-shaped launcher of this embodiment is played by: when the player pulls the rope body to make the drive end gear 311 rotate forward, the swing tooth 313 is driven by the drive end gear 311 toward the direction close to the passive end gear 312, so that the pendulum The tooth 313 meshes with the passive end gear 312 such that the drive end gear 311 can drive the passive end gear 312 to rotate while the accumulator 340 stores energy; when the rope is pulled to a certain distance or end, the accumulator 340 will save energy. Release, the rope is wound back to the winding portion 330 and drives the driving end gear 311 to reverse.
  • the swinging tooth 313 is rotated in the direction away from the driven end gear 312 by the driving end gear 311, so that the swinging tooth 313 and the passive end gear 312 are disengaged. Therefore, the driving end gear 311 cannot drive the driven end gear 312 to rotate, that is, the rotating body does not cause the transmitting head 11 to decelerate when the rope body is automatically retracted.
  • the egg-shaped transmitter of the embodiment has the advantages that the user can pull the rope body multiple times to accelerate the launching head 11 multiple times, thereby improving the initial rotation speed of the toy body in the launching head 11 after flying out, and improving the winning of the toy body. rate.
  • Embodiment 4 is a diagrammatic representation of Embodiment 4:
  • the egg-shaped emitter 1 of the present embodiment includes a top case 20, a bottom case 10, and a drive mechanism 12.
  • the bottom case 10 and the top case 20 have a first connection position and a second connection position, in which the bottom case 10 and the top case 20 are oppositely disposed and fastened to form an egg shape, and the bottom case is in the second connection position 10 and the top case 20 are disposed opposite to each other and connected.
  • the bottom case 10 is provided with an emitting head 11 and a driving mechanism 12, and the transmitting head 11 is rotatably disposed in the corresponding bottom case 10, and the driving mechanism 12 is connected to the transmitting head 11.
  • the structures of the bottom case 10, the top case 20, and the emitter head 11 are substantially the same as those in the third embodiment, and are not described herein.
  • the drive mechanism 12 includes a planetary gear train 350, a one-way actuator 310, a roping portion 330, a rope body, and an accumulator 340.
  • the planetary gear train 350 includes a ring gear 351, a sun gear 352, three planetary gears 353, and a planet carrier 354.
  • the one-way rotator includes a pawl 316 disposed on the sun gear 352 and a ratchet wheel 315 disposed on the launching head 11.
  • the roping portions 330 are connected to the carrier 354 and the accumulator 340, respectively.
  • the rope body is wound around the roping portion 330 and the inner end is connected to the roping portion 330, and the outer end is connected to the handle 16.
  • Three planet wheels 353 are disposed around the axis of the sun gear 352, each of which meshes with the sun gear 352 and the ring gear 351, and the ring gear 351 is fixed to the bottom case 10.
  • the pawl 316 is engaged with the ratchet wheel 315 such that the sun gear 352 drives the launching head 11 to rotate while the accumulator 340 is capable of accumulating;
  • the accumulator 340 releases the stored energy, the rope is wound back into the roping portion 330 and urges the planet carrier 354 to reverse, thereby causing the sun gear 352 to reverse, while the pawl 316 and the ratchet 315 are disengaged so that The passive portion is disengaged from the launching head 11.
  • the specific playing method of the egg-shaped emitter of the present invention is that the player can drive the roping portion 330 to rotate by pulling the rope body, while the accumulator 340 stores energy, and the rotation of the roping portion 330 can drive the carrier 354 to rotate so that three
  • the planetary wheel 353 rotates to drive the sun gear 352 to rotate, and the pawl 316 disposed on the sun gear 352 while the sun gear 352 rotates engages with the ratchet wheel 315 disposed on the transmitting head 11 to drive the rotating head 11 to rotate.
  • the toy body can be rotated synchronously. Since the driving head 11 is rotated by the planetary gear train 350, the toy body can have a higher rotational speed when the player pulls the rope.
  • the egg-shaped transmitter of the embodiment has the advantages that the user can pull the rope body multiple times to accelerate the launching head 11 multiple times, thereby improving the initial rotation speed of the toy body in the launching head 11 after flying out, and improving the winning of the toy body. rate.
  • Embodiment 5 is a diagrammatic representation of Embodiment 5:
  • the egg-shaped emitter 1 of the present embodiment includes a top case 20, a bottom case 10, and a drive mechanism 12.
  • the bottom case 10 and the top case 20 have a first connection position and a second connection position, in which the bottom case 10 and the top case 20 are oppositely disposed and fastened to form an egg shape, and the bottom case is in the second connection position 10 and the top case 20 are disposed opposite to each other and connected.
  • the bottom case 10 is provided with an emitting head 11 and a driving mechanism 12, and the transmitting head 11 is rotatably disposed in the corresponding bottom case 10, and the driving mechanism 12 is connected to the transmitting head 11.
  • the structures of the bottom case 10, the top case 20, and the emitter head 11 are substantially the same as those in the third embodiment, and are not described herein.
  • the driving mechanism 12 includes a pulling gear 121 and a rotating rack 122.
  • the pulling gear 121 is rotatably disposed in the bottom casing 10 and connected to the transmitting head 11, and the rotating rack 122 can be From the rack opening, it projects into the bottom case 10 and meshes with the pulling gear 121.
  • the egg-shaped launcher of this embodiment is played by: the pull-tooth rack 122 extends from the rack opening into the bottom case 10 and engages with the pull-back gear 121, and the player pulls the pull-tooth rack 122 to drive the pull-back gear 121.
  • the rotation causes the emitter head 11 to rotate relative to the bottom case 10, thereby realizing the emission of the toy body placed inside the emitter head 11.
  • the unidirectional actuator 310 of the third embodiment and the fourth embodiment can also be used in the egg-shaped transmitter of the embodiment to enable the pulling rack 122 to be pulled back and forth multiple times to achieve multiple accelerations of the transmitting head 11.
  • gyros 2 of different configurations can be used in conjunction with the same transmitter 1 to effect the launch of the gyro 2.
  • the gyro 2 of the same structure can be used in conjunction with the transmitter 1 of a different embodiment to effect the launch of the gyro 2.
  • corresponding components between the transmitters 1 of different configurations can be combined to effect the launch of the gyro 2 (same or different structure) and the like.

Abstract

一种陀螺组件(100),包括发射器(1),发射器(1)的顶部设有发射头(11),发射器(1)包括用于带动发射头(11)转动的驱动机构(12);陀螺(2),陀螺(2)可正立在发射头(11)上,陀螺(2)的底部设有与发射头(11)配合的连接位(21),在驱动机构(12)运转时发射头(11)通过连接位(21)带动陀螺(2)转动。

Description

陀螺组件 技术领域
本发明涉及玩具技术领域,特别是涉及一种陀螺组件。
背景技术
相关技术中的陀螺,采用底部与发射器连接后进行发射的比较少,如灵动陀螺加速器,就是设计成夹子的形状,通过夹住陀螺下部陀螺轴上的齿轮,而实现给陀螺加速并发射。
此外,主流陀螺组件的发射器主要通过手动拉齿或者绳子给陀螺玩具加速,其结构较为简单。常见陀螺发射器的是方形、枪形和夹子形状。这种形状的陀螺发射器特别是对采用拉齿的发射器,在携带和收藏时特别不方便。要么是发射器的体型较大,占用较大空间,要么是拉齿较长较尖,不方便携带也不方便存放,而且有时带了发射器却忘记带齿条,导致陀螺无法玩耍。
发明内容
本发明旨在至少解决现有技术中存在的技术问题之一。为此,本发明提出一种陀螺组件,所述陀螺组件通过使发射器与陀螺底部相连进行发射,易于操作。
根据本发明实施例的陀螺组件,包括:发射器,所述发射器的顶部设有发射头,所述发射器包括用于带动所述发射头转动的驱动机构;陀螺,所述陀螺可正立在所述发射头上,所述陀螺的底部设有与所述发射头配合的连接位,在所述驱动机构运转时所述发射头通过所述连接位带动所述陀螺转动。
根据本发明实施例的陀螺组件,通过发射头与连接位的配合,可以将陀螺可靠地设在发射器上,在驱动机构的作用下,当达到预定的转速时可带动陀螺转动,从而实现陀螺的发射。
另外,根据本发明上述实施例的陀螺组件还具有如下附加的技术特征:
根据本发明的一些实施例,所述发射头上设有连接所述陀螺的连接爪、发射槽和磁吸连接件中的至少一种。
进一步地,所述发射头包括:发射盘,所述发射盘与所述驱动机构相连;多个所述连接爪,所述多个连接爪环绕所述发射盘的旋转轴线设置,多个连接爪通过弹性件构造成朝向所述旋转轴线靠拢,每个所述连接爪的顶部与所述连接位相配合。
可选地,当所述发射头通过所述发射槽与所述陀螺配合时,所述发射槽内设有用于将所述陀螺弹出的弹板。
进一步地,所述发射槽的内壁上设有用于定位所述陀螺的定位部。
根据本发明的一些实施例,所述陀螺包括:陀螺主体和设在所述陀螺主体的底部的陀尖,所述连接位设在所述陀尖上。
根据本发明的一些实施例,所述连接位的底面与所述发射头的顶部之间,形成为环绕所述陀螺的起伏的波形面。
进一步地,所述连接位包括形成在所述陀尖的外周上的多个连接凸块,所述多个连接凸块环绕所述陀螺的旋转轴线间隔开设置,每个所述连接凸块向下延伸,相邻两个所述连接凸块之间形成插口,所述陀螺通过所述连接凸块、所述插口与所述发射头插接配合。
进一步地,多个所述连接凸块在周向上的同一侧设有连接斜面,所述发射头上设有与所述连接斜面相配合的驱动斜面。
根据本发明的一些实施例,所述发射器的底部或者侧面设置把手。
根据本发明的一些实施例,所述驱动机构包括:电机和电机开关,所述电机设在所述发射器的壳体内,所述电机的电机轴与所述发射头相连,所述电机开关用于控制所述电机的开关。
根据本发明的一些实施例,所述发射器的壳体上设有齿条开孔,所述驱动机构包括:拉转齿轮和拉转齿条,所述拉转齿轮可转动地设在所述壳体内且与所述发射头相连,所述拉转齿条可从所述齿条开孔处伸入到所述壳体内并与所述拉转齿轮啮合。
根据本发明的一些实施例,所述驱动机构包括:绕绳部和绳体,所述绕绳部可转动地设在所述发射器的壳体内且与所述发射头相连,所述绳体绕在所述绕绳部上且内端连接所述绕绳部。
本发明的附加方面和优点将在下面的描述中部分给出,部分将从下面的描述中变得明显,或通过本发明的实践了解到。
附图说明
本发明的上述和/或附加的方面和优点从结合下面附图对实施例的描述中将变得明显和容易理解,其中:
图1是根据本发明实施例的陀螺组件的一个装配图;
图2是根据本发明实施例的陀螺组件中一个实施例的发射器的装配图;
图3是根据本发明实施例的陀螺组件中一个实施例的发射器的一个部分结构示意图;
图4是根据本发明实施例的陀螺组件中一个实施例的发射器的另一个部分结构示意图;
图5是根据本发明实施例的陀螺组件中陀螺的一个装配图;
图6是根据本发明实施例的陀螺组件中另一个实施例的发射器的示意图,其中,发射器的半壳位于第一连接位置;
图7是根据本发明实施例的陀螺组件中另一个实施例的发射器的示意图,其中,发射器的半壳位于第二连接位置;
图8是根据本发明实施例的陀螺组件中另一个实施例的发射器的分解图,其中,发射器的半壳位于第一连接位置;
图9是根据本发明实施例的陀螺组件中另一个实施例的发射器的分解图,其中,发射器的半壳位于第二连接位置;
图10是根据本发明一个具体实施例的发射器的驱动机构的结构示意图;
图11是根据本发明又一个具体实施例的发射器的驱动机构的结构示意图;
图12是根据本发明再一个具体实施例的发射器的结构示意图;
图13是图12中所示的发射器的驱动机构的结构示意图。
附图标记:
陀螺组件100,
发射器1,发射头11,发射盘111,连接爪112,配合凹位1121,驱动斜面113,驱动机构12,拉转齿轮121,转动柱1211,拉转齿条122,把手13,壳体14,齿条开孔141,转轴15,拉手16,
陀螺2,连接位21,连接凸块211,连接斜面2111,插口212,陀螺主体22,陀尖23,
底壳10,顶壳20,第一连接组件101,第一旋合筋110,第一限位槽102,第一旋合槽120,第一限位筋103,第二连接组件200,第二旋合筋210,第二限位筋213,第二旋合槽220,第二限位槽221,
单向传动器310,驱动端齿轮311,被动端齿轮312,摆齿313,中间齿314,棘轮315,棘爪316,绕绳部330,蓄能器340,行星齿轮系350,齿圈351,太阳轮352,行星轮353,行星架354,
发射槽410,配合筋411,配合斜面S。
具体实施方式
下面详细描述本发明的实施例,所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施例是示例性的,旨在用于解释本发明,而不能理解为对本发明的限制。
在本发明的描述中,需要理解的是,术语“中心”、“上”、“下”、“竖直”、“水平”、“顶”、“底”“内”、“外”、“顺时针”、“逆时针”、“轴向”、“径向”、“周向”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。此外,限定有“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个该特征。在本发明的描述中,除非另有说明,“多个”的含义是两个或两个以上。
在本发明的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通。对于本领域的普通技术人员而言,可以具体情况理解上述术语在本发明中的具体含义。
下面结合附图描述根据本发明实施例的陀螺组件100。
如图1-图13所示,根据本发明实施例的陀螺组件100,包括:发射器1以及陀螺2。
具体而言,发射器1的顶部设有发射头11,发射器1包括驱动机构12,驱动机构12可以用于带动发射头11转动。
陀螺2可正立在发射头11上,例如,陀螺2的底部可以设于发射头11上。具体地,陀螺2的底部设有连接位21,连接位21与发射头11配合,在驱动机构12运转时,发射头11通过连接位21与陀螺2相连,陀螺2的底部可以稳妥地置于发射头11的顶部,从而能够通过驱动机构12带动陀螺2转动。
例如,在图1所示的陀螺组件100中,发射器1的顶部设有发射头11,驱动机构12可以设于发射器1的壳体内,通过驱动机构12可以进一步带动发射头11转动。
本发明对发射器1的具体结构形式不作限定,具体设置以能够通过驱动机构12实现陀螺2的有效发射为宜。
根据本发明实施例的陀螺组件100,通过发射头11与连接位21的配合,可以将陀螺2可靠地设在发射器1上,在驱动机构12的作用下,当达到预定的转速时可带动陀螺2转动,从而实现陀螺2的发射。
这里的预定转速可以根据不同的陀螺组件100具体设置,这对所属技术领域的技术人员来说是可以理解的。
根据本发明的一些实施例,发射头11上设有连接陀螺2的连接爪112、发射槽和磁吸连接件中的至少一种。由此,通过连接爪112、发射槽和磁吸连接件中的至少一种,可以实现陀螺2与发射头11之间的可靠连接,从而便于通过驱动机构12带动陀螺2旋转,保 证陀螺2的使用可靠性。
其中,在有的实施例中发射头11上设有发射槽410(参照图10);在有的实施例中发射头11上设有连接爪112(参照图2);在有的实施例中,发射头11上设有磁吸结构。由此,本发明实施例的发射器1能够适应多种玩具体,例如,玩具体可以是普通塑料陀螺、带有金属的金属陀螺等等。由此,扩大了发射器1的适用范围,提高了产品的竞争力。
在一些实施例中,参照图2和图3,发射头11包括:发射盘111以及多个连接爪112。
具体地,发射盘111与驱动机构12相连;多个连接爪112环绕发射盘111的旋转轴线设置,多个连接爪112通过弹性件(例如扭簧等)构造成朝向旋转轴线靠拢,每个连接爪112的顶部与连接位21相配合。由此,通过多个连接爪112与连接位21的配合,易于实现陀螺2与发射头11之间的可靠连接。
可选地,当发射头11通过发射槽与陀螺2配合时,所述发射槽内设有用于将陀螺2弹出的弹板。通过弹板能够将陀螺2发射出去,有利于提高陀螺组件100的趣味性。
例如,在一些实施例中,当发射头11可以包括发射槽,并且发射头11通过所述发射槽与陀螺2配合时,所述发射槽内可以设有弹板(例如具有一定弹性的板体等),当达到一定的转速时,所述弹板可以将转动的陀螺2弹出。
进一步地,所述发射槽的内壁上还设有用于定位陀螺2的定位部。例如,所述发射槽的内壁上可以设有定位部,所述定位部可以用于定位陀螺2。这里,需要说明的是,所述定位部可以为例如定位凸块等,所述定位部可以用于在陀螺2不转,或者陀螺2低速旋转时,防止陀螺2被所述弹板弹出去。如此,使得发射器1的结构更加合理,且便于陀螺2的收纳。
根据本发明的一些实施例,参照图5,陀螺2包括:陀螺主体22和陀尖23,陀尖23可以设在陀螺主体22的底部,其中连接位21可以设在陀尖23上。由此,通过将连接位21设于陀尖23上,有利于在一定程度上控制发射头11对连接位21的抱紧力,从而便于通过发射器1将陀螺2发射出去。
根据本发明的一些实施例,连接位21的底面与发射头11的顶部之间,形成为环绕陀螺2的起伏的波形面。例如,沿平行于陀螺2的旋转轴线的方向上,连接位21的底面与发射头11的顶部之间,可以形成为波形面,所述波形面可以被构造成环绕陀螺2的旋转轴线上下起伏。这样有利于提高连接位21与发射头11之间的连接可靠性。
其中,波形可以包括方波、锯齿波、三角波、正弦波等。
进一步地,参照图5并结合图1,连接位21包括多个连接凸块211,多个连接凸块211可以形成在陀尖23的外周上,多个连接凸块211环绕陀螺2的旋转轴线间隔开设置,每个连接凸块211均向下延伸,相邻两个连接凸块211之间可以形成插口212,陀螺2通过连 接凸块211、插口212与发射头11插接配合。由此,可以进一步提高连接位21与发射头11之间的连接可靠性,提高陀螺组件100的使用性能。
例如,参照图1,在上下方向上,连接位21的最低位置(例如连接凸块211在上下方向上的最低位置)与发射头11的最高位置不在同一水平面上,连接位21的最低位置与发射头11的最高位置之间,可以形成为环绕陀螺2的旋转轴线起伏的波形面,这样能够在某种程度上提高连接位21与发射头11之间的抱紧力,保证二者之间的连接可靠性。
进一步地,结合图5,多个连接凸块211在周向上的同一侧可以设有连接斜面2111,发射头11上设有驱动斜面113,驱动斜面113可以与连接斜面2111相配合。由此,通过设置驱动斜面113以及连接斜面2111,便于连接头11与陀螺2的装配,且在通过发射器1发射陀螺2时更有利于驱动力的传递。
根据本发明的一些实施例,发射器1的底部或者侧面设置把手13。例如,发射器1可以包括把手13,这样便于玩家握持发射器1,从而进一步实现陀螺2的发射。在一些实施例中,参照图1,把手13可以设于发射器1的底部;在一些实施例中,把手13也可以设于发射器1的侧面。本发明对把手13的具体结构以及设置位置不作限定,实际应用中可以根据需要适应性设置。
根据本发明的一些实施例,驱动机构12包括:电机和电机开关,所述电机设在发射器1的壳体14内,所述电机的电机轴与发射头11相连,所述电机开关用于控制所述电机的开关(例如电机的打开或者关闭)。
可以理解的是,由于发射头11与电机的电机轴相连,也就是说当玩家将电机打开时发射头11即可旋转,当发射头11内部的陀螺2转动到一定速度中将自动飞出。也就是说,用户无需采用拉绳或者齿条的方式驱动发射头11旋转,使得玩家在采用发射器1发射陀螺2时不用耗费较大的力气,从而提高了发射器1的可玩性和对小朋友的吸引力。
在一些实施例中,发射器1(例如壳体)上可以设有与电机电连接的按钮,当玩家按动按钮发射头11即可旋转。当然触发电机旋转的模式还可以有其他方式,例如遥控装置、声控装置等等。
本发明不限于此。根据本发明的一些实施例,参照图1以及图13,发射器1的壳体14上设有齿条开孔141,驱动机构12包括:拉转齿轮121和拉转齿条122,拉转齿轮121可转动地设在壳体14内,并且拉转齿轮121与发射头11相连,拉转齿条122可从齿条开孔141处伸入到壳体14内,并且拉转齿条122与拉转齿轮121啮合。由此,拉转齿条122可以通过齿条开孔141与发射器1相连,通过拉动拉转齿条122可以带动拉转齿轮121转动,从而带动发射头11转动,当达到一定的速度后进而带动与发射头11相连的陀螺2转动,实现陀螺2的发射。
根据本发明的一些实施例,驱动机构12包括:绕绳部330和绳体,绕绳部330可转动地设在发射器1的壳体14内,并且绕绳部330与发射头11相连,所述绳体绕在所述绕绳部330上,并且所述绳体的内端连接绕绳部330。由此,当拉动所述绳体外露的一端时可以带动所述绕绳部330转动,从而带动发射头11转动,当达到一定的速度(可具体设置)后进而带动与发射头11相连的陀螺2转动,实现陀螺2的发射。
根据本发明实施例的陀螺组件100,通过采用向上发射的方式,可增加发射互动时的体验感,陀螺2在被加速的过程中整个陀螺2可被观察到。另外,通过将发射位设置在陀螺底部,故可以在陀螺2顶部增设各种配件(例如功能件或装饰件等),从而能够提高陀螺2的功能和效果。
本发明不限于此,在一些实施例中,发射器1也可以实现向下发射;在一些实施例中,发射器1既可以实现向上发射又可以实现向下发射。
下面结合附图描述根据本发明的陀螺组件100中发射器1的具体实施例。
实施例一:
如图1和图2所示,该发射器1的把手13位于发射器1的侧边,发射器1的发射头11设计成弹性夹件,该弹性夹件设置在发射器1的顶面,发射时将弹性夹件朝上,陀螺2底部连接位21设计成供弹性夹片卡抱的卡位,陀螺2的底部放置在该弹性夹件上,然后通过拉绳或拉齿条的方式带动弹性夹件转动而实现给陀螺2加速。
如图3所示,该发射器1的连接座包括有座体、驱动件(例如前述的驱动机构12的一种,下同)和弹性夹件。座体包括有上座和下座,上座与把手13连接成一体,该上座的上部设有凹腔,可供弹性夹件放置;下座内设有空腔,驱动件安装在该空腔中;上座和下座之间通过螺丝连接。
拉转齿轮121向上延伸有转动柱1211,该转动柱1211伸出到上座上方并与弹性夹件相连接,从而带动弹性夹件转动。
其中,该实施例的驱动件可以为简单的单个齿轮结构,同时座体在该拉转齿轮121的旁边设有可供拉转齿条122穿入的齿条开孔141,通过拉转齿条122与该拉转齿轮121相啮合,实现拉动拉转齿条122带动拉转齿轮121转动。拉转齿轮121可以通过转动柱1211带动发射头11转动,当达到一定的旋转速度时,使陀螺2从发射头11脱出,完成陀螺2的发射。当然,该驱动件也可以设计成包括绕绳部330与绳体的形式,通过拉动绳体的一端带动绕绳部330旋转,从而进一步通过传动齿轮等带动发射头11转动,实现拉绳发射。
其中,所述弹性夹件包括发射盘111和连接爪112,连接爪112可以为弹性夹片,发射盘111上设有与转动柱1211相匹配的孔,转动柱1211穿过该孔后通过端盖和螺丝实现连 接。当然也可以采用其他的连接方式。连接爪112例如弹性夹片包括至少两片,所述弹性夹片的底部通过转轴15与发射盘111连接而实现所述弹性夹片可绕转轴15转动,并在转轴15处设有扭簧而实现所述弹性夹片始终处于收拢状态。其中相邻两片弹性夹片之间存有间隙,便于进一步与陀螺组件100的装配。
如图5所示,该陀螺2在陀尖23的轴体上部设有连接位21,该连接位21为可供所述弹性夹片卡抱的凹位。例如,在轴体的外围凸设有连接凸块211,相邻两个连接凸块211之间形成凹位(即插口212),插口212与发射器1配合时,连接凸块211则位于相邻两片所述弹性夹片之间的间隙处。
如图3所示,为了进一步提高所述弹性夹片与陀螺2的配合度,避免在给陀螺2加速过程中出现脱扣的情况,该实施例在每一片弹性夹片的顶部中间设有配合凹位1121,对应的在陀螺2的轴体上设有可与该配合凹位1121相配合的配合凸块。该实施例的连接凸块211可以和所述配合凸块设计成相同的形状,由此可进一步提高连接的便捷性,无需去区分连接凸块211和配合凸块,大大提高发射器1与陀螺2连接的快捷性。
本实施例的发射器1的玩法为:通过拉动拉转齿条122或拉动绳体可使发射头11带动陀螺2转动,当拉动到一定旋转速度后,发射头11脱离对陀螺2的连接,从而使陀螺2从发射器1上发射出去。
实施例二:
实施例二与实施例一的结构大体相同,不同之处在于:发射头11通过发射槽与陀螺2配合,所述发射槽内设有用于将陀螺2弹出的弹板。所述发射槽的内壁上可以设有定位部,所述定位部可以用于定位陀螺2。其中,所述定位部可以为例如定位凸块等,用于在陀螺2不转,或者陀螺2低速旋转时,防止陀螺2被所述弹板弹出去。如此,使得发射器1的结构更加合理。
该实施例的发射器1的玩法与实施例一中发射器1的玩法大致相同,在此不再赘述。
实施例三:
本实施例中的发射器1可以形成为例如蛋形发射器等。
发射器1的把手13可以位于发射器1的下端,例如,所述把手13可以由发射器1壳体的一部分构成,以方便玩家握持发射器1实现陀螺2的发射。发射器1上端设有凹位可供陀螺2的下部放入,两者的连接件和连接位可以为相互配合的棘位。
如图7和图10所示,该实施例的把手13设置在发射器1的下端,发射器1的发射头11设计成凹位,该凹位设置在连接器1的顶面,发射时将凹位朝上,陀螺2的底部 放置在该凹位中,然后通过拉绳或拉齿条的方式带动凹位转动而实现给陀螺2加速。其中,图7中示出了另一种具体实施例的陀螺2,可以理解的是,这里的陀螺2也可以为图5中所示的陀螺2。
如图10所示,该发射器1的连接座包括有壳体、驱动件和凹位。壳体的上端设有盖体,凹位的上端部分从盖体中间的通口伸出,驱动件位于壳体和盖体之间的空间内。壳体和盖体之间通过螺丝连接。
驱动件包括有拉手16、绳体、绕绳部330、齿轮、传动齿轮组,其中拉手16与绳体的一端连接,且拉手16设在壳体的外壳壁上,供手持拉动绳体;绳体的另一端绕在绕绳部330上,绕绳部330的上端同轴连接有齿轮,该齿轮与传动齿轮组的一端相啮合;凹位的下端也设有下齿轮,该下齿轮与传动齿轮组的另一端相啮合。故实现拉动绳体可带动凹位转动。
凹位的内壁还设有凸棘,对应的陀螺2的下端轴体上设有与其相匹配的棘位,当陀螺2的下端放入到该凹位中时,使棘位与凸棘相配合而实现配合,实现凹位转动时陀螺2能更好的同步转动。
陀螺2轴体上的棘位是通过间隔的凸块之间形成的,进一步地,为了实现棘位和凸棘在配合时更为顺畅,将凹位的凸棘和陀螺2的凸块的其中一侧设计成斜面,故陀螺2在放入凹位时,凸棘能在斜面的辅助下,更顺畅的移到棘位处。
具体地,如图6-图10所示,本实施例的蛋形发射器包括顶壳20、底壳10和驱动机构12。底壳10和顶壳20具有第一连接位置和第二连接位置,在所述第一连接位置,底壳10和顶壳20相对设置并扣合形成蛋形,在所述第二连接位置,底壳10和顶壳20相背设置并连接,其中在所述第二连接位置,顶壳20与底壳10相背设置,并且顶壳20位于底壳10的底部,在使用蛋形发射器1发射陀螺2时,顶壳20可以形成为供玩家握持的把手13。底壳10上设有发射头11和驱动机构12,发射头11可转动地设置在对应的底壳10内,驱动机构12与发射头11相连。发射头11上设有发射槽410,发射槽410的内壁上设有多个沿发射头11的轴向延伸的配合筋411,配合筋411的远离底壳10的一端设有配合斜面S。
在一些实施例中,如图8-图9所示,在所述第一连接位置,两个半壳通过第一连接组件101可拆卸连接;在所述第二连接位置,两个半壳通过第二连接组件200可拆卸连接。第一连接组件101和/或第二连接组件200的连接方式为旋合连接、卡扣连接、插接连接、吸合连接中的至少一种。
可以理解的是,在本发明的实施例中,第一连接组件101和第二连接组件200的连接方式可以相同也可以不同,也就是说,在有的实施例中,第一连接组件101和第 二连接组件200均形成为旋合连接、卡扣连接、插接连接和吸合连接中的任何一种。而在有的实施例中,第一连接组件101或第二连接组件200形成为旋合连接、卡扣连接、插接连接和吸合连接中的一种,在此种情况下,如果第一连接组件101形成为旋合连接,那么第二连接组件200就形成为卡扣连接、插接连接和吸合连接中的任何一种。多种连接方式可以使得制造商根据半壳的材料形状不同选择相应合适的连接结构,使得半壳的实用性更高,外观更加好看。
需要补充说明的是,吸合结构可以是磁吸结构也可以是气吸结构。
如图8-图9所示,顶壳20上设有第二旋合槽220和第一旋合筋110,底壳10上设有与第二旋合槽220配合的第二旋合筋210及与第一旋合筋110配合的第一旋合槽120。第一旋合筋110上设有第一限位槽102,第一旋合槽120的内壁上设有与第一限位槽102配合的第一限位筋103。第二旋合筋210上设有第二限位筋213,第二旋合槽220的内壁上设有与第二限位筋213配合的第二限位槽221。
如图10所示,驱动机构12包括单向传动器310、拉手16、绕绳部330、绳体(图未示出)和蓄能器340。单向传动器310包括驱动端齿轮311、被动端齿轮312、摆齿313和中间齿314,驱动端齿轮311与被动端齿轮312同轴且间隔开设置,被动端齿轮312与发射头11相连,摆齿313形成为双齿轮,中间齿314也形成为双齿轮,摆齿313的下齿轮与驱动端齿轮311啮合,中间齿314的上齿轮与被动端齿轮312啮合。驱动端齿轮311正转时,摆齿313朝向靠近中间齿314方向旋转,且摆齿313的上齿轮与中间齿314下齿轮啮合传动,从而使得被动端齿轮312及发射头11旋转;驱动端齿轮311反转时,摆齿313朝向远离中间齿314方向旋转,且摆齿313的上齿轮与中间齿314下齿轮脱离啮合,从而使得被动端齿轮312及发射头11不受到驱动端齿轮311反转的影响减速。绕绳部330与驱动端齿轮311相连,绳体绕在绕绳部330上且内端连接绕绳部330外端连接在拉手16上。蓄能器340分别与绕绳部330、底壳10相连。蓄能器340构造成在被动端齿轮312与摆齿313啮合传动的过程中蓄能,蓄能器340释能时被动端齿轮312与摆齿313脱离。
本实施例的蛋形发射器的玩法为:当玩家拉动绳体以使驱动端齿轮311正转时,摆齿313在驱动端齿轮311的驱动下朝向靠近被动端齿轮312的方向转动,使得摆齿313与被动端齿轮312啮合,从而使得驱动端齿轮311可以带动被动端齿轮312转动,同时蓄能器340蓄能;当绳体拉到一定距离或者尽头时,蓄能器340将储蓄的能量放出,绳体卷回绕绳部330并驱使驱动端齿轮311反转,摆齿313在驱动端齿轮311的驱动下朝向远离被动端齿轮312的方向转动,使得摆齿313和被动端齿轮312脱离,从而使得驱动端齿轮311不能带动被动端齿轮312转动,也就是说绳体自动卷回时不 会使得发射头11减速。
本实施例的蛋形发射器的优点为:用户可以拉动多次绳体使得发射头11进行多次加速,从而提高了发射头11中玩具体飞出后的初始转速,提高了玩具体的获胜率。
实施例四:
如图6-图10所示,本实施例的蛋形发射器1包括顶壳20、底壳10和驱动机构12。底壳10和顶壳20具有第一连接位置和第二连接位置,在所述第一连接位置底壳10和顶壳20相对设置并扣合形成蛋形,在所述第二连接位置底壳10和顶壳20相背设置并连接。底壳10上设有发射头11和驱动机构12,发射头11可转动地设置在对应的底壳10内,驱动机构12与发射头11相连。
底壳10、顶壳20及发射头11的结构与实施例三中的结构大体相同在此不做赘述。
如图11所示,驱动机构12包括行星齿轮系350、单向传动器310、绕绳部330、绳体和蓄能器340。行星齿轮系350包括齿圈351、太阳轮352、三个行星轮353和行星架354,单向转动器包括设在太阳轮352上的棘爪316和设在发射头11上的棘轮315。绕绳部330分别与行星架354、蓄能器340相连。绳体绕在绕绳部330上且内端连接绕绳部330,外端连接在拉手16上。三个行星轮353环绕太阳轮352的轴线设置,每个行星轮353均与太阳轮352及齿圈351啮合,齿圈351固定在底壳10上。
当绳体伸长以使行星架354正转从而带动太阳轮352正转时,棘爪316与棘轮315啮合使得太阳轮352带动发射头11旋转,同时蓄能器340蓄能;当绳体拉到一定距离或者尽头时,蓄能器340将储蓄的能量放出,绳体卷回绕绳部330并驱使行星架354反转,从而使得太阳轮352反转,同时棘爪316和棘轮315脱离以使被动部与发射头11脱离配合。
本发明的蛋形发射器的具体玩法为:玩家可以通过拉动绳体带动绕绳部330旋转,同时使得蓄能器340储存能量,绕绳部330的转动可带动行星架354旋转从而使得三个行星轮353转动从而带动太阳轮352转动,太阳轮352转动的同时设在太阳轮352上的棘爪316与设在发射头11上的棘轮315啮合从而带动发射头11转动,此时发射槽中的玩具体可以同步转动,由于驱动发射头11转的是行星齿轮系350,因此玩家拉动绳子时玩具体可具有较高的转速。当绳体拉动到尽头并松开绳体时,蓄能器340储存的能量释放,带动绕绳部330将绳体卷回的同时带动行星架354反转,从而使得太阳轮352反转,由于棘轮315和棘爪316的单向传动特性此时太阳轮352反转时并不会带动发射头11旋转,也就是说当绳体在蓄能器340的作用下缩回时,发射头11并不会反转。由此,玩家不断拉动绳子可使得发射头11的转速越来越快直至将玩具体发 射出去。
本实施例的蛋形发射器的优点为:用户可以拉动多次绳体使得发射头11进行多次加速,从而提高了发射头11中玩具体飞出后的初始转速,提高了玩具体的获胜率。
实施例五:
如图6-图9所示,本实施例的蛋形发射器1包括顶壳20、底壳10和驱动机构12。底壳10和顶壳20具有第一连接位置和第二连接位置,在所述第一连接位置底壳10和顶壳20相对设置并扣合形成蛋形,在所述第二连接位置底壳10和顶壳20相背设置并连接。底壳10上设有发射头11和驱动机构12,发射头11可转动地设置在对应的底壳10内,驱动机构12与发射头11相连。
底壳10、顶壳20及发射头11的结构与实施例三中的结构大体相同在此不做赘述。
如图12-图13所示,驱动机构12包括拉转齿轮121和拉转齿条122,拉转齿轮121可转动地设在底壳10内且与发射头11相连,拉转齿条122可从齿条开孔处伸入到底壳10内并与拉转齿轮121啮合。
本实施例的蛋形发射器的玩法为:拉转齿条122从齿条开孔处伸入底壳10内与拉转齿轮121啮合后,玩家拉动拉转齿条122能够驱动拉转齿轮121旋转,从而使得发射头11相对底壳10发生旋转,从而实现发射放置在发射头11内部的玩具体。
本实施例的蛋形发射器中也可以配合实施例三及实施例四中的单向传动器310使得拉转齿条122可以来回多次拉动以实现发射头11多次加速。
这里,需要说明的是,在合理的情况下,本申请中描述的上述不同实施例之间是可以结合或相互组合的。
例如,不同结构的陀螺2可以与同一发射器1配合使用,从而实现陀螺2的发射。或者同一结构的陀螺2可以与不同实施例的发射器1配合使用,从而实现陀螺2的发射。还可以是不同结构的发射器1之间的相应部件可以组合实现陀螺2(相同或不同结构)的发射等。
根据本发明实施例的陀螺组件100的其他构成以及操作对于本领域普通技术人员而言都是已知的,这里不再详细描述。
在本说明书的描述中,参考术语“一个实施例”、“一些实施例”、“示例”、“具体示例”或“一些示例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或者特点包含于本发明的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述 不必须针对的是相同的实施例或示例。而且,描述的具体特征、结构、材料或者特点可以在任一个或多个实施例或示例中以合适的方式结合。此外,在不相互矛盾的情况下,本领域的技术人员可以将本说明书中描述的不同实施例或示例以及不同实施例或示例的特征进行结合和组合。
尽管上面已经示出和描述了本发明的实施例,可以理解的是,上述实施例是示例性的,不能理解为对本发明的限制,本领域的普通技术人员在本发明的范围内可以对上述实施例进行变化、修改、替换和变型。

Claims (13)

  1. 一种陀螺组件,其特征在于,包括:
    发射器,所述发射器的顶部设有发射头,所述发射器包括用于带动所述发射头转动的驱动机构;
    陀螺,所述陀螺可正立在所述发射头上,所述陀螺的底部设有与所述发射头配合的连接位,在所述驱动机构运转时所述发射头通过所述连接位带动所述陀螺转动。
  2. 根据权利要求1所述的陀螺组件,其特征在于,所述发射头上设有连接所述陀螺的连接爪、发射槽和磁吸连接件中的至少一种。
  3. 根据权利要求2所述的陀螺组件,其特征在于,所述发射头包括:
    发射盘,所述发射盘与所述驱动机构相连;
    多个所述连接爪,所述多个连接爪环绕所述发射盘的旋转轴线设置,多个连接爪通过弹性件构造成朝向所述旋转轴线靠拢,每个所述连接爪的顶部与所述连接位相配合。
  4. 根据权利要求2所述的陀螺组件,其特征在于,当所述发射头通过所述发射槽与所述陀螺配合时,所述发射槽内设有用于将所述陀螺弹出的弹板。
  5. 根据权利要求4所述的陀螺组件,其特征在于,所述发射槽的内壁上设有用于定位所述陀螺的定位部。
  6. 根据权利要求1所述的陀螺组件,其特征在于,所述陀螺包括:陀螺主体和设在所述陀螺主体的底部的陀尖,所述连接位设在所述陀尖上。
  7. 根据权利要求1所述的陀螺组件,其特征在于,所述连接位的底面与所述发射头的顶部之间,形成为环绕所述陀螺的起伏的波形面。
  8. 根据权利要求7所述的陀螺组件,其特征在于,所述连接位包括形成在所述陀尖的外周上的多个连接凸块,所述多个连接凸块环绕所述陀螺的旋转轴线间隔开设置,每个所述连接凸块向下延伸,相邻两个所述连接凸块之间形成插口,所述陀螺通过所述连接凸块、所述插口与所述发射头插接配合。
  9. 根据权利要求8所述的陀螺组件,其特征在于,多个所述连接凸块在周向上的同一侧设有连接斜面,所述发射头上设有与所述连接斜面相配合的驱动斜面。
  10. 根据权利要求1所述的陀螺组件,其特征在于,所述发射器的底部或者侧面设置把手。
  11. 根据权利要求1-10中任一项所述的陀螺组件,其特征在于,所述驱动机构包括:
    电机和电机开关,所述电机设在所述发射器的壳体内,所述电机的电机轴与所述发射头相连,所述电机开关用于控制所述电机的开关。
  12. 根据权利要求1-10中任一项所述的陀螺组件,其特征在于,所述发射器的壳体上设有齿条开孔,所述驱动机构包括:拉转齿轮和拉转齿条,所述拉转齿轮可转动地设在所述壳体内且与所述发射头相连,所述拉转齿条可从所述齿条开孔处伸入到所述壳体内并与所述拉转齿轮啮合。
  13. 根据权利要求1-10中任一项所述的陀螺组件,其特征在于,所述驱动机构包括:绕绳部和绳体,所述绕绳部可转动地设在所述发射器的壳体内且与所述发射头相连,所述绳体绕在所述绕绳部上且内端连接所述绕绳部。
PCT/CN2018/114653 2018-04-28 2018-11-08 陀螺组件 WO2019205573A1 (zh)

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