WO2020034767A1 - 多向发射器 - Google Patents

多向发射器 Download PDF

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Publication number
WO2020034767A1
WO2020034767A1 PCT/CN2019/092933 CN2019092933W WO2020034767A1 WO 2020034767 A1 WO2020034767 A1 WO 2020034767A1 CN 2019092933 W CN2019092933 W CN 2019092933W WO 2020034767 A1 WO2020034767 A1 WO 2020034767A1
Authority
WO
WIPO (PCT)
Prior art keywords
transmitter
gyro
launcher
end gear
elastic member
Prior art date
Application number
PCT/CN2019/092933
Other languages
English (en)
French (fr)
Inventor
李德铭
梁国创
Original Assignee
广州奥飞文化传播有限公司
奥飞娱乐股份有限公司
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 广州奥飞文化传播有限公司, 奥飞娱乐股份有限公司 filed Critical 广州奥飞文化传播有限公司
Priority to EP19849931.1A priority Critical patent/EP3838358B1/en
Priority to RU2021105344A priority patent/RU2757700C1/ru
Priority to KR1020217007981A priority patent/KR102290196B1/ko
Priority to ES19849931T priority patent/ES2962690T3/es
Priority to BR112021002837-4A priority patent/BR112021002837B1/pt
Priority to HRP20231393TT priority patent/HRP20231393T1/hr
Publication of WO2020034767A1 publication Critical patent/WO2020034767A1/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
    • 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
    • A63H29/00Drive mechanisms for toys in general
    • A63H29/02Clockwork mechanisms
    • A63H29/04Helical-spring driving mechanisms
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H29/00Drive mechanisms for toys in general
    • A63H29/20Flywheel driving mechanisms
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H29/00Drive mechanisms for toys in general
    • A63H29/24Details or accessories for drive mechanisms, e.g. means for winding-up or starting toy engines
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H31/00Gearing for toys
    • A63H31/06Belt or string gear
    • 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 mainstream gyro toy launchers are mainly used to manually pull the rack or the rope to accelerate the gyro toy, and then launch the gyro.
  • the high-speed launcher requires a large amount of pull force, it is difficult for children to pull it up.
  • a transmitter cannot be compatible with multiple transmission speeds and cannot transmit in the reverse direction.
  • the present invention aims to solve at least one of the technical problems existing in the prior art.
  • the transmitter body is rotatably provided on the hand-held portion, and the holder is located in the multiple positions of the first launch position and the second launch position.
  • the holder is located at the upper part of the multi-directional launcher at the other of the first launch position and the second launch position.
  • faces of the mating flange and the retarder facing each other are toothed faces.
  • FIG. 4 is a schematic diagram of an internal structure of a transmitter according to an embodiment of the present invention.
  • FIG. 6 is a schematic diagram of a transmitter body of a transmitter according to an embodiment of the present invention.
  • FIG. 7 is a schematic structural diagram of a part of a transmitter according to another embodiment of the present invention.
  • FIG. 10 is a cross-sectional view of a launcher and a target being launched according to an embodiment of the present invention
  • FIG. 12 is a partial structural diagram of a transmitter according to an embodiment of the present invention.
  • FIG. 15 is a schematic diagram of a transmit button of a transmitter according to another embodiment of the present invention.
  • FIG. 19 is an exploded view of a sucker module of a transmitter according to an embodiment of the present invention.
  • FIG. 20 is a perspective view of a launched part of a transmitter according to an embodiment of the present invention.
  • FIG. 23 is a perspective view of a pointed conjoined body of an object to be launched according to an embodiment of the present invention.
  • 200 launcher body; 210: convex shaft; 211: mating flange; 220: slow disk; 230: slow elastic member; 240: limit block;
  • 510 one-way actuator; 511: driving end gear; 512: passive end gear; 513: pendulum teeth; 5131: shaft; 520: rope winding part; 530: rope body; 531: pull ring; 540: accumulator;
  • 610 thimble; 612: top sleeve; 6121: terminal tapered surface; 620: retracted elastic member; 630: launch button; 631: convex block; 632: pendulum rod; 640: transmission rod; 641: crossbar segment; 642: Vertical rod segment; 650: bearing;
  • 700 suction cup module; 710: suction cup shell; 710a: buckle groove; 710b: mating mouth; 711: suction cup cover; 7111: half cover; 712: liner; 712a: liner mouth; 7121: liner flanging ; 720: magnetic component; 721: suction cup magnetic piece; 722: magnetic shield; 730: fastener; 730a: buckle groove; 731: buckle; 732: buckle shaft; 733: buckle elastic piece; 734: buckle lock Raised; 735: extended foot; 7351: extended surface;
  • the transmitter body 200 is movably disposed on the hand-held part 100, that is, the transmitter body 200 can be moved (for example, can be relatively slid or rotated) relative to the hand-held part 100.
  • the transmitter body 200 has at least a first transmitting position, a second The launching position, that is, the launcher body 200 has at least two launching positions, a first launching position and a second launching position.
  • the first launching position is a downward launching position and the second launching position is an upward launching position.
  • the transmitter body 200 may also have other launch positions (which may be launch positions in other directions, such as forward launch positions, etc.), which is not specifically limited in the present invention. There are multiple launch positions on the launcher body 200. Can increase the fun of the player, and avoid too single play.
  • the transmitting head assembly includes a rotating body and a holder, and the rotating body is rotatably provided on the transmitter body 200, and the holder is provided on the rotating body. It can be understood that the rotating body can be free relative to the transmitter body 200. Rotating, when the launcher body 200 is in the second launching position (for example, the upward launching position), the turning body and the holder are also facing upward.
  • the turning body When playing, the turning body is free to rotate in the upward direction, and the launching body 200 is in a first launching position (for example, a downward launching position), the rotating body and the holder are facing downward, the rotating body is free to rotate in a downward direction, and the rotating body is used to freely rotate on the launcher body 200,
  • the holding member is used for fixing and releasing the fired member.
  • the reversing driver 400 is connected between the handheld portion 100 and the transmitter body 200. After the reversing driver 400 is triggered, the reversing driver 400 can drive the transmitter body 200 from the first transmitting position to the second transmitting position, for example, the first transmitting The position is a downward firing position, and the second firing position is an upward firing position, that is, in a normal state, the transmitter body 200 is in an upward firing state.
  • the reversing driver 400 is triggered, the transmitter body 200 The two launch positions are switched to the first launch position, that is, the transmitter body 200 is switched from the upward launch position to the downward launch position.
  • the reversing driver 400 has the function of driving the launcher body 200 to switch the launch position.
  • the launching position of the transmitter body 200 can be switched to the driver, which makes the operation easier and easier for children to play alone.
  • the rotating body of the transmitting head assembly can be freely rotated on the transmitting body 200, so that the transmitting head assembly is relatively opposed
  • the handheld part 100 can be flipped up and down to realize two kinds of flipping methods.
  • the reversing driver 400 drives the transmitter body 200 to switch between the first launching position and the second launching position to realize the operation of connecting and launching the launched part.
  • the head assembly cooperates with the reversing driver 400, which can realize the launching of the launched part in the up and down directions, which brings a surprising experience to the player and improves the fun of the toy.
  • the transmitter body 200 is rotatably disposed on the hand-held portion 100. It can be understood that the transmitter body 200 can be rotated around the hand-held portion 100 and at a first transmitting position and One of the holders at the second launch position is located at the lower part of the multi-directional launcher 1000. For example, when the first launch position is a downward launch position, the retainer is also facing downward at this time. The other holder in the two launch positions is located on the upper part of the multidirectional launcher 1000. For example, when the second launch position is an upward launch position, the retainer is also facing upward at this time, that is, the position of the retainer and the launcher The positions of the main body 200 are the same.
  • the launcher body 200 is in the first launch position, at this time, the fixed part being fixed on the holder is also facing downward and held. After the released part is released, the launched part is launched downward. If the launcher body 200 is in the second launch position, the fixed launched part on the holder also faces upward at this time. After the released part is released by the holder, it is launched. The component is emitted upward, so that the holder can release the component to be launched in different directions, which enhances the fun of the multidirectional launcher 1000.
  • the transmitter body 200 is rotatably disposed on the hand-held portion 100, the hand-held portion 100 is a handle shape, and the horizontal sides of the hand-held portion 100 are the thumb-holding side 110 and The four-finger holding side 120, for example, holds the handheld part 100 in FIG. 1 with the left hand, the thumb holding side 110 faces the player's side, the four-finger holding side 120 faces away from the player, and the palm and thumb face the thumb.
  • the side 110 and the four fingers fit the four-finger holding side 120, which makes the player's holding action more comfortable.
  • the reversing driver 400 includes a flip button 410, and the flip button 410 is provided on the thumb holding side 110.
  • the thumb is directly opposite the flip button 410, and the thumb can By flipping the flip button 410, when the flip button 410 is triggered, the transmitting head assembly is turned from the first transmitting position in a direction toward the four-finger holding side 120 to the second transmitting position, and the first transmitting position is a downward transmitting.
  • the second launch position is the upward launch position as an example.
  • the flip button 410 When the player triggers the flip button 410, for example, when the flip button 410 is flipped backward with the thumb, the flip button 410 is triggered, and the launching head assembly moves away from the player along the upward position.
  • One side that is, the launching head assembly rotates outward relative to the player
  • the direction of the holding side 120 is rotated to an upward position.
  • the direction is reversed, so that the direction of the launching head assembly ’s turning force is directed toward the front of the child, so as to prevent the launched part on the launcher assembly from leaving the multidirectional launcher 1000 suddenly.
  • the children's body, face and other parts ensure children's safety and reliability when playing.
  • the transmitter body 200 is rotatably disposed on the hand-held portion 100.
  • the reversing driver 400 includes a flip elastic member 420 and a flip button 410, where the flip elastic member 420 is connected to Between the handheld part 100 and the transmitter body 200, the flip elastic member 420 is configured to store energy when the transmitter body 200 rotates toward the first launch position, and release energy when the transmitter body 200 rotates toward the second launch position, for example, the first The second firing position is an upward firing position, and the first firing position is a downward firing position.
  • the firing head assembly is in an upward firing state, it is a non-charged state in which the elastic member 420 is flipped. In the launching position, the flip elastic member 420 is charged with force. If there is no other stop structure, the launcher body 200 will automatically rotate upwards and return to the upward launch position under the driving of the flip elastic member 420.
  • the rotation direction of the transmitter body 200 is performed according to the handle state shown in FIG. 1.
  • the player holds the multidirectional transmitter 1000 shown in FIG. 1 with his left hand, and rotates the transmitter body 200 clockwise with his right hand, so that the transmitter body 200 is rotated 180 ° from the upward firing position to the downward firing position (the second firing position to the first firing position).
  • the elastic member 420 is turned to store energy; the transmitter body 200 is rotated in a counterclockwise direction, and can be turned from downward
  • the launch position is rotated 180 ° to return to the upward launch position. During this process, the elastic member 420 is turned to release energy.
  • a convex shaft 210 is provided on the transmitter body 200.
  • the convex shaft 210 extends into the handheld portion 100, and the convex shaft 210 is connected to the transmitter body 200 and the handheld portion.
  • the flip elastic member 420 is sheathed or wrapped around the convex shaft 210, and the flip elastic member 420 is located in the handheld portion 100.
  • the flip elastic member 420 may be a torsion spring, and the flip elastic member 420 is flipped when the transmitter body 200 faces upward. It is a natural state (non-charged state).
  • the flip elastic member 420 twists and stores the force until the transmitter body 200 is in a downward state, and the flip elastic member 420 has the largest energy storage. At this time, the flip elastic member 420 has a tendency to return to a natural state, and further has a tendency to drive the transmitter body 200 to rotate upward.
  • the transmitter body 200 When playing, first manually rotate the transmitter body 200.
  • the rotation direction of the transmitter body 200 is according to the state of the handheld portion 100 in FIG. 1, and the transmitter body 200 is rotated clockwise (counterclockwise rotation is subject to the limit block 240 and the limit plate).
  • the limit of 130 cannot be rotated).
  • the torsion spring 52 is charged.
  • the flip button 410 When the transmitter body 200 rotates 180 ° downward, the flip button 410 is extended into the transmitter body 200 to hold the transmitter body 200. It is positioned facing down.
  • the launcher body 200 drives the launched part to turn 180 ° counterclockwise (to prevent the launched part from suddenly breaking away from the launcher 1000 and hitting the child's body), so that the launched part becomes a state of launching upward.
  • the reversing driver 400 includes a mating flange 211, a retard plate 220, and a retard elastic member 230.
  • the mating flange 211 is provided on the outer periphery of the convex shaft 210.
  • the faces of the mating flange 211 and the retard plate 220 facing each other are toothed surfaces, that is, the side of the mating flange 211 facing the retard plate 220 is formed into a toothed surface, and the retard plate 220 faces the mating flange 211.
  • One side is formed into a toothed surface, and the toothed surfaces of the two mesh with each other. In this way, when the mating flange 211 and the retarder 220 move relative to each other, a rotating sound effect is generated.
  • the toothed surface of the mating flange 211 and The meshing effect between the toothed surfaces of the retarder disc 220 slows down the turning speed of the launcher body 200 to a certain extent so as to reduce the probability of throwing out the launched part, and ensures that the multi-directional launcher 1000 is more reliable when playing.
  • the multi-directional transmitter 1000 further includes a transmitting driver 500.
  • the transmitting driver 500 is disposed on the transmitter body 200.
  • the transmitting driver 500 is configured to cooperate with the rotating body and drive the rotating body to rotate when triggered, and
  • the launch driver 500 is disengaged from the rotating body when released.
  • the launch driver 500 when the launch driver 500 is released, the launch driver 500 is disengaged from the rotating body.
  • the launch driver 500 When the launch driver 500 is triggered, the launch driver 500 will be cooperatively connected with the rotating body.
  • the launch driver 500 can mesh with each other while the launch driver 500 rotates and The rotation body is driven to rotate, so that the rotation body rotates at a certain speed.
  • the transmitting driver 500 is used to provide the rotation power to the rotation body, and can make the rotation body rotate at high speed.
  • the transmitting driver 500 includes a one-way transmission 510, wherein the one-way transmission 510 includes a driving end gear 511, a passive end gear 512, and a swing tooth 513, and the driving end gear 511 and the passive The end gears 512 are spaced apart.
  • the driving end gear 511 is provided on the transmitter body 200.
  • the passive end gear 512 is connected to the rotating body.
  • the driving end gear 511 and the pendulum tooth 513 always mesh with each other.
  • the rotation axis 5131 of the pendulum tooth 513 follows a set trajectory.
  • the pendulum tooth 513 meshes with the driven end gear 512 when one end of the track is set, and the pendulum tooth 513 disengages from the driven end gear 512 when the other end of the track is set.
  • the swinging tooth 513 is located between the driving end gear 511 and the passive end gear 512.
  • the driving end gear 511 rotates clockwise
  • the swinging tooth 513 is driven counterclockwise
  • the rotating shaft 5131 of the swinging tooth 513 faces the passive end.
  • One end of the gear 512 swings and meshes with the passive end gear 512.
  • the meshing transmission of the pendulum teeth 513 and the passive end gear 512 drives the passive end gear 512 to rotate clockwise, and at the same time, the rotating body synchronously rotates with the passive end gear 512.
  • the launch driver 500 includes a rope winding part 520, a rope body 530, and an accumulator 540.
  • the rope winding part 520 is connected to the driving end gear 511.
  • the rope body 530 is wound on the rope winding part 520 and the inner end is connected to the rope winding part.
  • the accumulator 540 is connected to the driving end gear 511 and the transmitter body 200, respectively.
  • the accumulator 540 is configured to store energy during the meshing transmission between the passive end gear 512 and the swing tooth 513, and the accumulator 540 is passive when the energy is released.
  • the end gear 512 is disengaged from the swing tooth 513.
  • the rope body 530 is pulled outward to pull out the rope body 530.
  • the rope body 530 drives the driving end gear 511 to rotate clockwise (take the driving end gear 511 to rotate clockwise as an example), and then drives the pendulum tooth 513 counterclockwise.
  • the swing tooth 513 swings toward one end of the passive end gear 512.
  • the swing tooth 513 meshes with the passive end gear 512 and drives the passive end gear 512 to rotate.
  • the accumulator 540 stores energy and pulls the rope body 530.
  • the driving end gear 511 rotates counterclockwise
  • the rope body 530 retracts to the rope winding portion 520 by itself.
  • the passive end gear 512 and the swing tooth 513 are in a separated state. If the rope body 530 is pulled multiple times, the driven end driving wheel and the rotating body can be rotated at a high speed, thereby providing a higher rotation speed to the launched part.
  • a pull ring 531 can be connected to the end of the rope body 530, which is convenient for children to pull the rope body 530 when playing.
  • the multidirectional launcher 1000 When playing, first mount the launched part (such as the gyro 800) on the multidirectional launcher 1000, and pull out the rope body 530 multiple times to make the launched part rotate at high speed driven by the rotating body.
  • the release or energy release component is triggered, the launched part is launched on the combat plate, and the multidirectional launcher 1000 is moved, so that the holder of the multidirectional launcher 1000 is aligned with the launched part, and the launched part is fixed in the launching head assembly.
  • the part being launched can continue to rotate on the launching head assembly.
  • High-speed rotation triggers the energy release component to launch the launched part upwards, the launched part is launched in the combat disc, and the flip head assembly is manually turned to reset to complete a round.
  • the impact launcher 1000 includes a launcher body 200, a launching head assembly, and a release assembly.
  • the transmitting head assembly includes a rotating body and a holder.
  • the rotating body is rotatably provided on the transmitter body 200, and the holder is provided on the rotating body. It can be understood that the rotating body can rotate freely relative to the transmitter body 200.
  • the fired part is connected to the holder, and the holder is connected to the rotating body and can rotate synchronously with the rotating body.
  • the release assembly includes an ejector pin 610 and a retracted elastic member 620, and the ejector pin 610 is slidably disposed on the transmitter body 200 between the ejection position and the retracted position, and the retractable elastic member is retracted.
  • 620 is set on the ejector pin 610.
  • the retracting elastic member 620 is used to drive the ejector pin 610 to slide toward the retracted position. After the trigger, the ejector pin 610 slides toward the ejection position.
  • the launched part can cooperate to hold On the part, when the ejector pin 610 slides toward the ejection position, the ejected part is knocked off the holder.
  • the ejector pin 610 when the projected part is fitted on the holding part, the ejector pin 610 is located in the retracted position under the elasticity of the retracting elastic member 620, and as the rotating body rotates to drive the projected part to rotate, the rotation speed of the projected part is increased, and the ejector pin After being triggered, 610 slides toward the ejection position. At this time, the retracting elastic member 620 is compressed, and the ejected member on the holder is knocked off by the ejector pin 610, and the ejected member is separated from the holder. The retracted elastic member 620 has the original state. The action trend of the thimble 610 is to slide to the retracted position under the action of the retracting elastic member 620.
  • the retracting elastic member 620 is sleeved on the upper part of the ejector pin 610.
  • the ejector pin 610 In a normal state, the ejector pin 610 is located in a retracted position under the action of the retracting elastic member 620.
  • the ejected member is fitted on the retaining member. After the 610 is triggered, the ejector pin 610 slides downward (the ejection position is below the retracted position), and knocks off the projected part from the holder, so that the projected part is launched downward.
  • the structure of the toy is simple, the control operation is simple, and it is easy to realize the launching effect of the launched part.
  • the release assembly includes a launch button 630 and a transmission lever 640.
  • the launch button 630 is movably disposed on the transmitter body 200, and the transmission lever 640 is connected to the launch button 630 and the thimble 610.
  • a launch button 630 is provided on the side of the transmitter body 200, one end (for example, the left end) of the transmission lever 640 is connected to the launch button 630, and the other end (for example, the right end) of the transmission lever 640 is connected to the head of the thimble 610.
  • the launch button 630 can manually press the launch button 630, the launch button 630 moves inward, and the transmission lever 640 is driven to trigger the ejector pin 610 to slide from the retracted position to the ejection position.
  • the launch button 630 and the transmission lever 640 act as triggers of the ejector 610, which can play
  • the ejector pin 610 is triggered to slide from the retracted position to the ejected position.
  • each launch button 630 is connected to the ejector pin 610 through a transmission lever 640
  • a transmission lever 640 For example, two launch buttons 630 are provided on both sides of the transmitter body 200. When two launch buttons 630 are pressed at the same time, the two launch buttons 630 are moved from the two sides of the transmitter body 200 from the outside to the inside, which can jointly drive the transmission. The movement of the lever 640 triggers the ejection of the ejector pin 610 from the retracted position to the ejection position.
  • the launch button 630 in the present invention is not limited to two, and may be four or the like.
  • the launch button 630 is slidably connected to the transmitter body 200.
  • the launch button 630 includes a pressing portion and a projection 631, and the projection 631 is connected to the pressing portion, and The projection 631 is located in the transmitter body 200.
  • the two launch buttons 630 are oppositely arranged on both sides of the launcher body 200, and a pressing elastic member is connected between the two launch buttons 630.
  • the pressing elastic member in a normal state, the pressing elastic member is located at In a natural state, when the launch button 630 is pressed, the push section moves toward the inside of the launcher 1000, the pressing elastic member is compressed, the bumps 631 move toward each other, and the push rod (may be pushed upward or pushed in the direction of the ejector pin 610, etc.) 640 further triggers the ejection pin 610 to slide.
  • the launch button 630 is swingably connected to the transmitter body 200.
  • the launch button 630 includes a pressing portion and a swing lever 632.
  • the transmitter body 200 is provided with a rotating shaft, and the swing shaft 632 is connected to the rotating shaft.
  • the pressing part is provided at the end of the swing lever 632, and two launch buttons 630 are respectively provided on both sides of the transmitter body 200.
  • the launch button 630 is pressed, the pressing part moves toward the inside of the transmitter body 200, and the swing lever 632 rotates around The shafts swing toward each other, which can push the transmission lever 640 and trigger the ejection pin 610 to slide.
  • the transmission lever 640 is slidably connected to the transmitter body 200. After the transmission button 630 is pressed, the transmission button 630 pushes the transmission lever 640 toward the ejector pin 610. The transmission rod 640 triggers the ejector pin 610 to slide to dislodge the launched member from the holder.
  • the transmission lever 640 is swingably connected to the transmitter body 200, that is, a rotation axis is provided on the transmitter body 200.
  • the rotation axis can be placed on the transmitter body 200 horizontally, and the transmission lever 640 can swing around the rotation axis.
  • the launch button 630 pushes one end of the transmission lever 640 upward, and the other end of the transmission lever 640 swings downward around the rotation axis, thereby triggering the ejector pin 610, that is, pressing the ejector pin 610 to slide downward.
  • the transmission rod 640 includes a cross rod section 641 and a vertical rod section 642.
  • the cross rod section 641 is rotatably connected to the transmitter body 200, that is, the cross rod section 641 and the rotating shaft. 5131 is connected, the vertical rod segment 642 is connected to one end of the horizontal rod segment 641 and cooperates with the launch button 630, and the other end of the vertical rod segment 642 is matched with the ejector pin 610.
  • both ends of the vertical rod section 642 can swing on both sides of the horizontal rod section 641.
  • the thimble 610 is controlled to move downward by using the principle of lever rotation.
  • the launch button 630 Push one end of the vertical rod segment 642 upward (the left end of the vertical rod segment 642 in FIG. 16), while the other end of the vertical rod segment 642 (the right end of the vertical rod segment 642 in FIG. 16) swings downward, because the thimble 610 is connected to the vertical rod On the lower surface of the other end of the segment 642, the ejector pin 610 is further triggered to slide down, and the ejected part on the holder is knocked off.
  • the transmission rod 640 is slidably disposed on the transmitter body 200, and one end of the thimble 610 is provided with a starting end fitting.
  • the end surface of the starting end fitting forms a starting end tapered surface.
  • the transmission lever 640 is fitted on the starting end tapered surface.
  • the launch button 630 is toggled to the right, the transmission lever 640 is moved to the right.
  • the component is pushed down and detached from the launching head assembly, which is about to be launched by the launching component.
  • the rotating body is ring-shaped, the rotating body is sheathed on the thimble 610, and the rotating body and the thimble 610 are radially spaced apart.
  • the rotating body rotates around the thimble 610 to drive the launched part to rotate synchronously. After being triggered, it will be knocked off by the launcher and fall freely.
  • a top sleeve 612 is sleeved on the thimble 610, and the top sleeve 612 is provided at the lower end of the thimble 610.
  • the end surface of the top sleeve 612 is formed as a terminal tapered surface 6121, a terminal tapered surface 6121 and a holder The upper end surface of the upper part is matched.
  • the terminal tapered surface 6121 pushes the part on the holder to fix the launched part outward, thereby releasing the launched part and launching the launched part.
  • the sucker module 700 of the transmitter 1000 according to another embodiment of the present invention is described below with reference to FIG. 17 to FIG. 19, that is, the launcher assembly is described by taking the sucker module 700 as an example. Examples will be described.
  • the chuck module 700 of the transmitter 1000 includes a chuck housing 710, a magnetic assembly 720, and a fastener 730.
  • the chuck housing 710 can be used as a rotating body, and the magnetic component 720 can be used as a holder.
  • the magnetic component 720 can hold the launched component (such as the gyro 800) on the rotating body, that is, the magnetic component 720 can be magnetically connected to the launched component.
  • the driven part will be rotated to increase the rotation speed of the launched part.
  • the transmission head assembly is aligned with the gyro 800, and the magnetic assembly 720 attracts the gyro 800 to the transmission head assembly.
  • the chuck housing 710 is rotated at a high speed by the driving of the launch driver 500, which can further drive the gyro 800 to rotate at a high speed.
  • the fastener 730 is connected with the gyro 800 at the same time, so the connection firmness of the gyro 800 and the transmitting head assembly can be further improved, and the gyro 800 can be rotated at a high speed under the driving of the transmitting driver 500.
  • the gyro 800 is flipped with the flip of the transmitter body 200, for example, the transmitter body 200 is turned downward, and the gyro 800 is flipped from above the transmitter body 200 to Below the transmitter body 200, during the turning process of the transmitter body, the gyro 800 has a large inertial force that can be easily thrown out.
  • the fastener 730 is further reliably connected to the gyro 800, which can effectively avoid the transmitter body When the 200 is flipped, the gyro 800 is thrown out due to the inertia of the flip, ensuring that children are safe and reliable when playing.
  • the buckle foot 731 In the normal state, the buckle foot 731 is located in the buckle lock position, and the buckle foot 731 locks the gyro 800.
  • the buckle foot 731 When the buckle 730 is triggered, the buckle foot 731 is switched from the buckle lock position to the unlocked position, and the gyro 800 is released.
  • the feet 731 are disengaged and fall freely.
  • the top 731 can be locked or released by moving the feet 731 between the locked position and the unlocked position.
  • a magnetic component 720 is provided in the sucker shell 710, and a movable fastener 730 is provided on the sucker shell 710, so that the gyro 800 is held by the magnetic attraction effect.
  • the gyro 800 is further locked by the fastener 730 to avoid the phenomenon that the gyro 800 will be thrown out due to the inertia effect when the transmitter body 200 is flipped, that is, the fastener 730 can lock and release the gyro 800
  • the chuck module 700 magnetically attracts the gyro 800
  • the gyro 800 is locked by the buckle 731, and when the transmitter body 200 is turned over, the connection between the gyro 800 and the transmitter head component is reliable, and it is not easy to throw out.
  • the fastener 730 releases the gyro 800 and falls freely.
  • the suction cup housing 710 includes a suction cup housing 711 and an inner liner 712, a magnetic assembly 720 and a fastener 730 are disposed outside the suction cup housing 710, and an inner liner 712 is disposed inside the suction cup housing 711.
  • the outer cover 711 has a protective effect on the inner liner 712.
  • the suction cup cover 711 is located at the outermost side of the suction cup module 700. On the one hand, it has a protective function for the internal components.
  • the suction cup module 700 forms a whole, and the suction cup shell 710 is launched. Driven by the driver 500, the gyro 800 can be rotated to increase the rotation speed of the gyro 800.
  • the suction cup cover 711 and the inner liner 712 are arranged at intervals, and the fastener 730 is rotatably provided between the suction cup outer cover 711 and the inner liner 712.
  • the fastener 730 has Buckle shaft 732, buckle shaft 732 is connected to inner sleeve 712, buckle foot 731 is located at one end of buckle shaft 732, and buckle foot 731 is retractable when rotating around buckle shaft 732, for example, inner sleeve 712 and suction cup cover 711
  • Three fasteners 730 are arranged between the three fasteners 730 at intervals around the inner sleeve 712.
  • the buckle feet 731 are located at the upstream end of the fastener 730 in a clockwise direction around the inner sleeve 712.
  • the buckle foot 731 retracts into the inner sleeve 712.
  • the buckle foot 731 rotates counterclockwise around the buckle shaft 732, the buckle foot 731 protrudes out of the inner sleeve 712.
  • the buckle foot 731 is retracted in the inner liner 712, and the gyro 800 can be locked.
  • the buckle foot 731 rotates counterclockwise around the buckle shaft 732, that is, the buckle foot 731 faces inward.
  • the gall 712 is rotated outside, thereby releasing the gyro 800.
  • the sucker module 700 further includes a buckle elastic member 733, which is connected between the buckle 730 and the sucker shell 710, the buckle elastic member 733 is in a constant compression state, the buckle elastic member 733 and the buckle foot 731 are respectively located on both sides of the buckle shaft 732, and the buckle elastic member 733 is used to drive the buckle foot 731 to rotate toward the buckle position.
  • the buckle 730 surrounds the buckle
  • the shaft 732 has a tendency to rotate clockwise.
  • One end of the buckle shaft 732 provided with the buckle elastic member 733 rotates outward, so that the buckle foot 731 is turned toward the buckle position. In this way, the buckle foot 731 can be made by the buckle elastic member 733. Keep it in the locked position.
  • the buckle elastic member 733 is fitted on the buckle 730, and the buckle elastic member 733 and the buckle foot 731 are located at both ends of the buckle shaft 732 on the buckle 730 A buckle groove 730a is provided.
  • the buckle groove 730a is used to cooperate with the buckle elastic member 733, that is, one end of the buckle elastic member 733 is connected to the outer wall of the inner liner 712, and the other end of the buckle elastic member 733 is connected to the buckle groove 730a. Therefore, the buckle elastic member 733 can be fixed in the buckle groove 730a, and the connection between the inner liner 712 and the buckle 730 is reliable, so that the buckle foot 731 can always be maintained in the buckle position.
  • a latching protrusion 734 is provided on the fastener 730, a latching groove 710a is provided on the suction cup cover 711 or the inner sleeve 712, and the latching groove 710a and the latching protrusion 734 are provided.
  • the buckle projection 734 is fitted in the buckle groove 710a, and the buckle projection 631 and the buckle foot 731 are located at both ends of the buckle shaft 732.
  • the locking protrusion 734 is fitted in the locking groove 710a, that is, the locking protrusion 734 at one end of the locking shaft 732 is caught in the locking groove 710a, so that the buckle foot 731 at the other end of the locking shaft 732 can fasten the gyro 800. Prevent the gyro 800 from falling off.
  • the centrifugal force causes the buckle projection 631 on the buckle 730 to be locked in the buckle groove 710a to prevent one end of the buckle shaft 732 from continuing to rotate outward, and further
  • the buckle 731 at the other end of the buckle shaft 732 can firmly clamp the gyro 800.
  • a liner port 712a is provided on a peripheral wall of the liner 712, and the buckle 731 can extend into or out of the liner 712 from the liner port 712a during rotation,
  • One end of the inner liner 712 (such as the upper end of the inner liner 712 shown in FIG. 19) is provided with an inner liner flanging 7121, and one end of the button shaft 732 (such as the upper end of the button shaft 732) is fitted on the inner tube flange 7121, increasing The surface area of the upper end of the large liner 712 can be used to connect with the inner wall of the suction cup cover 711 at the same time.
  • the buckle 731 extends from the bladder mouth 712a into the bladder 712, that is, the buckle 731 is located at the buckle position at this time for the buckle gyro 800.
  • the buckle 731 starts from The bladder port 712a exits the bladder 712, the clasp 731 rotates outward relative to the bladder 712, releases the gyro 800, and the gyro 800 leaves the sucker module 700 and falls freely.
  • an extension leg 735 is provided on the fastener 730, the extension leg 735 and the fastening leg 731 are located at the same end of the fastening shaft 732, and the end portion of the extension leg 735 is inclined.
  • the buckle foot 731 moves toward the unlocked position.
  • the fastener 730 on the inner liner 712 extends from the inner mouth 712a into the inner liner 712.
  • the end of the extension leg 735 of the piece 730 is located at the center of the liner 712.
  • extension leg 735 When a downward force is applied to the extension surface 7351, the extension leg 735 is pushed to rotate from the liner mouth 712a to the outside of the liner 712. Exit the liner 712 from the liner port 712a, move toward the unlocked position, and then release the gyro 800. In this way, by applying an action on the extension surface 7351 of the extension foot 735, the button 731 releases the gyro 800 function.
  • the suction cup cover 711 includes two detachable half covers 7111, and the two half covers 7111 surround the outer side of the inner liner 712.
  • the structure of the two half hoods 7111 is easy to remove, which facilitates the maintenance and replacement of the suction cup module 700 in the later stage. That is, when maintenance and replacement is needed, the two half hoods 7111 can be disassembled directly. After completion, the two half hoods can be directly replaced.
  • the cover 7111 can be installed and fitted.
  • the suction cup housing 710 has a fitting opening 710b, the fitting opening 710b is suitable for the gyro 800 to extend into, and the magnetic component 720 is provided in the suction cup housing 710.
  • the magnetic component 720 is located in FIG.
  • the magnetic component 720 includes a chuck magnet 721 and a magnetic isolation sleeve 722.
  • the magnetic isolation sleeve 722 is outsourced on the chuck magnetic attraction 721, and the magnetic isolation sleeve 722 is opened on a side facing the fitting port 710b.
  • the chuck magnetic member 721 includes a first magnetic member and a second magnetic member, the first magnetic member is located above the second magnetic member, and the first magnetic member cooperates with the magnetic isolation sleeve 722 to provide isolation.
  • the magnetic effect prevents the bearing 650 provided above the chuck module 700 from being magnetized.
  • the second magnetic member can magnetically attract the gyro 800 to keep the gyro 800 on the transmitting head assembly.
  • the gyro 800 when the rotation speed of the gyro 800 is slowed down or stopped, when the sucker module 700 of the transmitter 1000 is close to the gyro 800, the gyro 800 can be magnetically connected to the sucker module 700 through the second magnetic member. .
  • the chuck housing 710 is formed in a cylindrical shape with open ends.
  • the magnetic assembly 720 and the fasteners 730 are both disposed in the chuck housing 710.
  • the fasteners 730 are spaced apart along the peripheral wall of the suction cup shell 710.
  • three fasteners 730 are provided in the circumferential direction on the suction cup shell 710, and the extension legs 735 of the three fasteners 730 are arranged facing each other (for example, all are concentrated in the inner liner 712).
  • the three buckle feet 731 fasten the gyro 800.
  • the three extension feet 735 rotate toward the outside of the inner liner 712 at the same time.
  • three The buckle 731 also rotates outward of the inner liner 712, thereby releasing the gyro 800.
  • the transmitter 1000 according to the embodiment of the second aspect of the present invention includes the suction cup module 700 of the transmitter 1000 described in the above embodiment.
  • a magnetic component 720 is provided in the suction cup shell 710 and a movable fastener 730 is provided on the suction cup shell 710, so that the gyro 800 is held in the suction cup shell 710 by magnetic attraction.
  • the fastening effect of the fastener 730 on the gyro 800 is used to avoid the phenomenon that the gyro 800 may be thrown out due to the inertia effect when the transmitter body 200 is flipped, that is, the fastener 730 can lock and release the gyro 800.
  • the 700 magnetically attracts the gyro 800
  • the gyro 800 is locked by the buckle 731.
  • the connection between the gyro 800 and the transmitter head component is reliable and difficult to throw out.
  • the fastener 730 will Release the gyro 800 and fall free.
  • the following describes a gyro 800 of a transmitter 1000 according to another embodiment of the present invention with reference to FIGS. 1, 2, and 20 to 23.
  • a gyro 800 includes a gyro body 810 and two gyro-tip structures 820. Two of the gyro-tip structures 820 are respectively provided at the upper and lower ends of the gyro body 810. In this way, no matter which end of the gyro 800 falls on the ground, the gyro 800 can rotate at high speed.
  • At least one top structure 820 is a magnetic top 821 provided with a top magnetic piece 821.
  • one of the top structures 820 is a magnetic top 821, and both top and bottom top structures 820 may be
  • the magnetic top 821 can be magnetically attracted to the transmitter 1000 through the magnetic top 821. Children do not need to manually install the top 800 on the transmitter 1000 when they are playing. The rotation speed of the top 800 is slowed down or stopped. When going down, aligning the transmitter 1000 with the magnetic top 821 of the gyro 800 can magnetically attract the gyro 800 to the transmitter 1000, which improves the fun of playing.
  • the transmitter 1000 can be aligned with the magnetic gyro of the gyro 800 when the speed of the gyro 800 is slowed down or stopped.
  • the tip 821 can magnetically attract the gyro 800 to the transmitter 1000, which makes it more convenient for children to play and enhances the sense of fun and surprise.
  • the magnetic top 821 is detachably connected to the gyro body 810.
  • the magnetic top 821 is connected to the gyro body 810 through a buckle, and the magnetic top 821 is also detachable. It can be connected to the gyro body 810 through a connector, as long as the magnetic gyro tip 821 can be detachably connected to the gyro body 810, which is not specifically limited in the present invention.
  • the magnetic gyro tip 821 can be connected to the gyro body 810.
  • the detachable connection makes the disassembly and assembly of the magnetic top 821 and the gyro body 810 very convenient, and it is also convenient to replace the magnetic top 821.
  • a slot 8211 is provided on an outer peripheral wall of the magnetic suction top 821.
  • the slot 8211 is used to cooperate with the transmitter 1000.
  • the slot 8211 is provided around the rotation axis. Ring-shaped, by providing a card slot 8211 on the outer peripheral wall of the magnetic top 821, the transmitter 1000 can be snapped into the card slot 8211, and the cooperation between the transmitter 1000 and the magnetic top 821 can be realized, and the magnetic top 821 When fitted on the launcher 1000, the rotation speed of the magnetic top 821 is increased.
  • the launcher 1000 and the magnetic top 821 cooperate reliably.
  • the magnetic top 821 is not easy to slide off the launcher 1000, and it can also prevent The children were injured due to the falling of the gyro 800 during play.
  • the tip of the magnetic top 821 is formed as a frustum, and the cross section of the frustum gradually decreases in a direction away from the gyro body 810, that is, the magnetic top 821 faces the transmitter 1000.
  • the cross section of the end is gradually reduced. In this way, the end of the magnetic top 821 easily extends into the launcher 1000 and is connected to the launcher 1000 in cooperation. Especially when the spinning top 800 rotates, the launcher 1000 can be aligned.
  • the magnetic top 821 can fit in the transmitter 1000.
  • a plurality of projections 8212 are provided on the outer peripheral wall of the magnetic suction top 821.
  • the projections 8212 are used to cooperate with the transmitter 1000, and the plurality of projections 8212 surround The rotation axis is arranged at intervals.
  • a convex projection 8212 on the outer wall of the magnetic suction top 821, it can be matched with the corresponding position on the rotating body (the lower end of the suction cup shell 710) to achieve the corresponding response of the rotating body when the rotating body is rotating.
  • the position can drive the convex cam 8212 to rotate with it, so that the gyro 800 can rotate synchronously with the rotating body, so as to avoid the rotating body and the gyro 800 from idling due to relative sliding.
  • a plurality of card protrusions 8212 extend vertically in the same direction in the axial direction.
  • the card protrusions 8212 are provided on the stepped surface of the magnetic suction top 821, and each card protrusion 8212 extends in a vertical direction relative to the magnetic attraction.
  • the frustum structure of the tip of the top 821 increases the contact area of the magnetic top 821 and the rotating body, and the convex projection 8212 on the magnetic top 821 can be fitted to the corresponding position of the rotating body.
  • the rotating body drives the card by
  • the convex 8212 realizes the synchronous rotation of the gyro 800 and the rotating body, prevents the magnetic attraction gyro tip 821 from sliding relative to the rotating body and causes the rotating body to idle, and improves the reliability of the synchronous rotation of the rotating body and the gyro 800.
  • the magnetic suction top 821 includes a pointed housing 822, a pointed conjoined body 823, and a pointed hat body 824.
  • the pointed housing 822 is suitable for connecting to the transmitter 1000, and one end of the pointed housing 822 (Such as the lower end of the spire housing 822) is open, and the gyromagnetic magnet 8221 is disposed in the spire housing 822.
  • the transmitter 1000 and the gyro 800 magnetic gyro 821 approach, the magnetic gyro 821 and the transmitter There is mutual attraction between 1000s.
  • the magnetic top 821 and the transmitter 1000 can attract each other tightly.
  • the pointed conjoined body 823 is connected to the open end of the pointed housing 822 (such as the lower end of the pointed housing 822).
  • the pointed conjoined body 823 is provided with a connecting portion 8231.
  • the connecting portion 8231 is used to connect the gyro body 810, that is, connected to the gyro body 810 and the spire.
  • the pointed cap body 824 is stuck between the pointed shell 822 and the pointed conjoined body 823.
  • the outer peripheral wall of the pointed cap body 824 is provided with a radially outwardly extending brim 8241.
  • the lower end of the launcher 1000 stops on the brim 8241 of the pointed cap body 824, so as to prevent the magnetic top 821 from penetrating into the launcher 1000 too much due to magnetic attraction, so that the launcher 1000 and The cooperation of the gyro 800 is more reliable and stable.
  • the pointed cap body 824 includes a pointed cylinder body 8242 and a clamping block 8243.
  • the clamping block 8243 is provided on the inner wall of the pointed cylinder body 8242, and the brim 8241 is provided on the pointed cylinder.
  • the pointed cylinder 8242 is sheathed on the pointed housing 822, and the clamping block 8243 is sandwiched between the pointed housing 822 and the pointed conjoined body 823.
  • the clamping block 8243 has a fixed function between the pointed housing 822 and the pointed conjoined body 823, so that the pointed The cooperation between the shell 822 and the pointed conjoined body 823 is reliable and stable.
  • connection hole 811 is provided on the gyro body 810.
  • a plurality of spaced-apart connection grooves 812 are provided on the inner wall of the connection hole 811, and the connection portion 8231 is along the circumference.
  • the plurality of pointed joints 823 are spaced apart. After the pointed joints 823 are inserted into the connection holes 811, the plurality of connection portions 8231 are rotated and inserted into the plurality of connection grooves 812, that is, the connection grooves 812 correspond to the connection portions 8231 one by one.
  • the arrangement is such that, through the cooperation of the connecting groove 812 and the corresponding connecting portion 8231, the connection between the magnetic suction top 821 and the gyro body 810 is very reliable, and the two will not be easily separated to form an integrated structure.
  • the magnetic top 821 of the gyro 800 includes a pointed housing 822, a top magnetic piece 821, a pointed conjoined body 823, and a pointed cap body 824.
  • the pointed housing 822 is adapted to be connected to the transmitter 1000, One end of the spire housing 822 is open, and the gyro-point magnetic attraction piece 8221 is provided in the spire 822. By setting the gyro-point magnetic attraction piece 8221 in the spire 822, the magnetic attraction gyro 821 and the transmitter 1000 are attracted to each other.
  • the conjoined body 823 is connected to the open end of the spire housing 822, and the conjoined body 823 is provided with a connecting portion 8231 suitable for connecting the gyro body 810.
  • the conjoined body 823 is used to connect the gyro body 810 and the spire housing 822, and the cusp body 824 is stuck on the spire
  • a rim 8241 extending radially outward is provided on the outer peripheral wall of the pointed cap body 824.
  • the transmitter 1000 when the rotation speed of the gyro 800 is slowed or stopped, the transmitter 1000 can be aligned with the magnetic gyro tip 821 of the gyro 800 to magnetically suck the gyro 800 On the launcher 1000, children can play more conveniently, which enhances the sense of fun and surprise.
  • the transmitter 1000 and the playing process according to the embodiment of the present invention will be described in detail below with reference to FIGS. 1-23, in which a part to be launched is described by using a magnetic gyro 800 as an example.
  • the transmitter 1000 includes a handheld portion 100, a transmitter body 200, a reversing driver 400, a transmitting driver 500, a release assembly, and a suction cup module 700.
  • the transmitter body 200 is movably disposed on the handheld part 100.
  • the transmitter body 200 has a first launch position and a second launch position.
  • the first launch position is a downward-facing launch position
  • the second launch position is an upward-facing position.
  • one end of the transmitter body 200 is connected to the handheld part 100.
  • the handheld part 100 is provided with a thumb grip side 110 and a four-finger grip side 120, wherein the thumb grip side 110 faces the child's side and the four-finger grip Side 120 is located on the side far away from the child.
  • thumb grip side 110 there is a flip button 410 that can slide back and forth.
  • a convex shaft 210 is provided between the transmitter body 200 and the handheld portion 100.
  • the convex shaft 210 extends into the hand
  • the part 100 can be rotated relative to the hand-held part 100.
  • a matching flange 211 is provided on the convex shaft 210.
  • a flip elastic member 420 is sleeved on the convex shaft 210. One end of the flip elastic member 420 is fixedly connected to the convex shaft 210, and the other end It is fixedly connected to the handheld part 100.
  • the flip elastic member 420 is in a natural state (non-energy storage state) when the transmitter body 200 is in the second launch position.
  • the resilient member 420 is in the state of the accumulator, provided on the stopper 240 protruding shaft 210, a stopper plate 130 provided on the handheld unit 100. Further, a retard plate 220 is sleeved on the convex shaft 210, and the retard plate 220 and the mating flange 211 cooperate with each other through a retard elastic member 230.
  • launch buttons 630 are provided on both sides of the launcher body 200, a ejector pin 610 is provided on the head of the launcher body 200, and a transmission rod 640 is connected between the launch button 630 and the ejector pin 610. Press the launch button 630 The vertical rod segment 642 of the transmission lever 640 swings around the horizontal rod segment 641, thereby triggering the ejector pin 610 to move up and down between the retracted position and the ejected position.
  • a retractable elastic member 620 and an ejector sleeve 612 are provided on the ejector pin 610.
  • a launch driver 500 is provided on the launcher body 200.
  • the launch driver 500 includes a unidirectional actuator 510, a rope winding portion 520, a rope body 530, and an accumulator 540.
  • the unidirectional driver includes a driving end gear 511, a passive end gear 512, and The pendulum teeth 513 pull the rope body 530 accumulator 540 to store energy.
  • the driving end gear 511 drives the pendulum teeth 513 to rotate, and at the same time drives the pendulum teeth 513 to move along the swing track to mesh with the passive end gear 512, and drives the passive end gear 512 to rotate.
  • the accumulator 540 releases energy, the passive gear 512 and the swing tooth 513 are disengaged.
  • the suction cup module 700 is connected to the downward or upward position of the head of the transmitter body 200.
  • the suction cup module 700 rotates synchronously with the passive end gear 512.
  • the suction cup module 700 includes a suction cup shell 710, a magnetic assembly 720, and a fastener 730.
  • the suction cup cover 711 of the suction cup shell 710 is disposed outside the inner liner 712, the magnetic component 720 is located in the inner liner 712, and a plurality of fasteners 730 are arranged in the corresponding inner mouth 712a along the circumferential interval of the inner liner 712.
  • the extension feet 735 and 731 on the fastener 730 are located on the same side of the button shaft 732.
  • the extension feet 735 of the multiple fasteners 730 extend above the inner sleeve 712 and close to the axis, on the other side of the button shaft 732.
  • a buckle groove 730a is provided.
  • the buckle elastic member 733 is connected between the buckle groove 730a and the outer wall of the inner sleeve 712, and a buckle protrusion 734 is provided on the same side as the buckle groove 730a.
  • the fastener 730 rotates under the action of centrifugal force and pressure spring, so that the lock projection 631 protrudes from the fitting opening 710b of the suction cup cover 711, so that the buckle 731 on the other end of the fastener 730 is buckled.
  • the magnetic component 720 can be used for the magnetic gyro 800.
  • the gyro 800 is held on the chuck housing 710 by the magnetic attraction force, and the gyro 800 and the chuck module 700 can be firmly connected under the fastening of the fastener 730 to avoid the existence of a launch. There is a danger that the gyroscope 800 may be thrown out when the body 200 is turned over.
  • the gyro 800 is magnetically attracted to the sucker module 700.
  • the gyro 800 includes a gyro body 810 and a gyro structure 820. At least one of the two gyro structures 820 is a magnetic gyro 821, and is located on the outer peripheral wall of the magnetic gyro 821.
  • a slot 8211 and a projection 8212 are provided. Through the combination of the slot 8211 and the projection 8212 with the transmitter 1000, the tip of the magnetic suction top 821 is formed as a frustum and the cross section gradually decreases in a direction away from the gyro body 810.
  • the gyro-tip 821 includes a spire top 822, a gyro-tip magnet 8221, a apex 823, and a bonnet 824.
  • the apex 822 is connected to the transmitter 1000. One end of the apex 822 is open. Inside the pointed housing 822, a pointed conjoined body 823 is connected between the gyro body 810 and the pointed housing 822, and the pointed cap body 824 is matched with the lower end surface of the transmitter 1000.
  • the hands are held in accordance with the state shown in FIG. 1, that is, the thumb faces the thumb holding side 110 and the four fingers face the four finger holding side 120.
  • the magnetic gyro 800 is installed on the transmitter 1000.
  • the suction cup module 700 pull out the rope body 530 multiple times (the pull ring 531 is provided on the rope body 530), so that the accumulator 540 accumulates energy many times, and drives the driving end gear 511 to drive the swing gear 513 multiple times
  • the swing meshes with the passive end gear 512 and drives the passive end gear 512 to rotate at a high speed, and at the same time, the chuck module 700 also rotates at a high speed, thereby driving the magnetic gyro 800 to rotate at a high speed.
  • the launch button 630 presses the transmission lever 640 to rotate clockwise.
  • the transmission lever 640 presses the ejector pin 610 to move downward.
  • the ejector sleeve 612 and ejector pin 610 move downward at the same time, and the ejector sleeve 612 presses.
  • the gyro 800 is released from the sucker module 700 and falls freely.
  • the ejector pin 610 is moved from the retracted position to the ejected position under pressure, and then exerts a force on the extension leg 735 on the suction cup module 700, pushing the extension leg 735 and the clasp 731 to rotate outside the liner 712, so that the clasp The 731 releases the magnetic gyro 800 and launches the magnetic gyro 800 on the combat disc.
  • the thumb flips the flip button 410 backward, and the flip button 410 releases the locking position of the transmitter body 200, so that the transmitter body 200 is turned 180 degrees under the action of the flip elastic member 420, that is, the flip elastic member 420 is In the state of charge, the transmitter body 200 can flip up counterclockwise on its own (that is, turn away from the child's body, and the rotation of the direction can only be achieved through the cooperation of the limit block 240 and the limit plate 130). Pull out the rope body 530 to rotate the gyro 800 at high speed. Then, press the launch button 630 to push the magnetic gyro 800 upward. Finally, the magnetic gyro 800 was launched in the combat disc.
  • the transmitter body 200 Manually flip the transmitter body 200 to reset, for example, when the flip elastic member 420 is in a non-charged state, the transmitter body 200 is in the upward firing state, and the transmitter body 200 is rotated clockwise (that is, turned away from the child's body).
  • the flip elastic member 420 is stored in force when the launcher body 200 is turned 180 ° downward, and the flip button 410 is inserted into the launcher body 200 to hold the launcher body 200 to position it downward. To complete a round.
  • the surfaces of the mating flange 211 and the retard plate 220 facing each other are toothed surfaces.
  • the retard plate 220 is always engaged with the mating flange 211 by the action of the retard elastic member 230, and the retard plate 220 is fixed at the hand-held portion. 100, when the transmitter body 200 rotates, the flange 211 and the retarder 220 move relative to each other, thereby emitting a sound effect. At the same time, due to the engagement of the two, the turning acceleration of the transmitter body 200 is slowed down to reduce the gyro 800. Chance of throwing out.
  • the ejector pin 610 when the ejector pin 610 is pressed downward, the ejector sleeve 612 and the ejector pin 610 are simultaneously pressed downward. At this time, the ejector sleeve 612 presses the extension feet 735 of the three fasteners 730 to rotate outward, that is, the fastener feet 731 are outward. Rotate to unlock the gyro 800 and trip it.
  • the thimble 610 and the top sleeve 612 are reset upward by the force of the retracting elastic member 620, and the three fasteners 730 are rotated and reset by the action of the locking elastic member 733, so that The next time the gyro 800 can be assembled.
  • first feature "above” or “below” the second feature may include the first and second features in direct contact, or the first and second features may not be in direct contact but through them Additional characteristic contact between.
  • the first feature is “above”, “above”, and “above” the second feature, including the first feature is directly above and obliquely above the second feature, or merely indicates that the first feature is higher in level and height than The second feature.

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Abstract

一种多向发射器(1000),包括:手持部(100);发射器本体(200),发射器本体(200)可活动地设在手持部(100)上,发射器本体(200)具有至少第一发射位置、第二发射位置;发射头组件,发射头组件包括转动体、保持件,转动体可自由转动地设在发射器本体(200)上,保持件设在转动体上,保持件用于固定和释放被发射件;换向驱动器(400),换向驱动器(400)连接在手持部(100)和发射器本体(200)之间,换向驱动器(400)在触发后可驱动发射器本体(200)由第一发射位置调换到第二发射位置。多向发射器(1000)的发射头组件相对于手持部(100)可以上下翻转,实现上下两种翻转方式,发射头组件与换向驱动器(400)相配合,可以实现被发射件分别在上下方向的发射,给玩家带来惊奇的体验,提升了玩具玩耍的趣味性。

Description

多向发射器 技术领域
本发明涉及陀螺玩具技术领域,尤其是涉及一种多向发射器。
背景技术
目前,主流的陀螺玩具发射器主要是通过手动拉齿条,或者绳子给陀螺玩具加速,进而将陀螺发射出去,但由于高速发射器启动所需要的拉力比较大,小朋友拉起来比较费劲,且同一个发射器不能兼容多种发射速度,并且不可以反向发射。
相关技术中,陀螺玩具发射器包括有齿条陀螺发射器、一次蓄能发射器和齿条发射器,通过齿条直接给陀螺加速,拉高速发射器很费力,单纯靠扭簧力给陀螺加速、多次蓄能发射器,陀螺速度不够快,战斗力不强,通过连续拉绳子给陀螺加速,但不能使陀螺垂直自由落下,落点不可控,装上陀螺后不可用外力去转动陀螺,使得玩具的玩耍趣味性大大降低。
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,本发明的一个多向发射器,所述多向发射器的玩耍趣味性强。
根据本发明实施例的多向发射器,包括:手持部;发射器本体,所述发射器本体可活动地设在所述手持部上,所述发射器本体具有至少第一发射位置、第二发射位置;发射头组件,所述发射头组件包括转动体、保持件,所述转动体可自由转动地设在所述发射器本体上,所述保持件设在所述转动体上,所述保持件用于固定和释放被发射件;换向驱动器,所述换向驱动器连接在所述手持部和所述发射器本体之间,所述换向驱动器在触发后可驱动所述发射器本体由所述第一发射位置调换到所述第二发射位置。
根据本发明实施例的多向发射器,通过将发射器本体可活动地设置在手持部上,发射头组件的转动体在发射器本体上可以自由转动,这样,发射头组件相对于手持部可以上下翻转,实现上下两种翻转方式,换向驱动器驱动发射器本体在第一发射位置和第二发射位置之间进行调换,实现连接和发射被发射件的操作,发射头组件与换向驱动器相配合,可以实现被发射件分别在上下方向的发射,给玩家带来惊奇的体验,提升了玩具玩耍的趣味性。
根据本发明的一个实施例,所述发射器本体可转动地设在所述手持部上,在所述第一发射位置和所述第二发射位置的其中一处所述保持件位于所述多向发射器的下部,在所述第一发射位置和所述第二发射位置中的另一处所述保持件位于所述多向发射器的上部。
根据本发明的另一个实施例,所述发射器本体可转动地设在所述手持部上,所述手持部为握柄状,所述手持部的水平两侧分别为拇指握持侧和四指握持侧,所述换向驱动器包括设在所述拇指握持侧的翻转按钮,所述翻转按钮触发后,所述发射头本体从所述第一发射位置沿着朝向所述四指握持侧的方向转动到所述第二发射位置。
根据本发明的又一个实施例,所述发射器本体可转动地设在所述手持部上,所述换向驱动器包括:翻转弹性件和翻转按钮,所述翻转弹性件连接在所述手持部和所述发射器本体之间,所述翻转弹性件构造成当所述发射器本体朝向所述第一发射位置转动时蓄能、当所述发射器本体朝向所述第二发射位置转动时释能,所述翻转按钮可活动地设在所述手持部上,且所述翻转按钮在卡锁所述发射器本体和释放所述发射器本体之间可活动。
根据本发明一个可选的示例,所述发射器本体上设有凸轴,所述凸轴伸入到所述手持部内,所述翻转弹性件外套或者缠绕在所述凸轴上。
根据本发明另一个可选的示例,所述换向驱动器包括:配合凸缘,所述配合凸缘设在所述凸轴的外周上;缓速盘,所述缓速盘可转动地外套在所述凸轴上;缓速弹性件,所述缓速弹性件用于驱动所述配合凸缘与所述缓速盘相贴合。
根据本发明又一个可选的示例,所述配合凸缘和所述缓速盘朝向彼此的面是齿形面。
根据本发明可选的实施例,所述多向发射器还包括:发射驱动器,所述发射驱动器设在所述发射器本体上,所述发射驱动器构造成在触发时与所述转动体相配合并带动所述转动体转动,且所述发射驱动器在释放时与所述转动体脱离配合。
可选地,所述发射驱动器包括:单向传动器,所述单向传动器包括:驱动端齿轮、被动端齿轮和摆齿,所述驱动端齿轮与所述被动端齿轮间隔开设置,所述驱动端齿轮设在所述发射器本体上,所述被动端齿轮与所述转动体相连,所述驱动端齿轮与所述摆齿始终相啮合,所述摆齿的转轴沿设定轨迹可摆动,所述摆齿在所述设定轨迹的一端时与所述被动端齿轮啮合传动,所述摆齿在所述设定轨迹的另一端时与所述被动端齿轮脱离啮合。
可选地,所述发射驱动器包括:绕绳部和绳体,所述绕绳部与所述驱动端齿轮相连,所述绳体绕在所述绕绳部上且内端连接所述绕绳部;蓄能器,所述蓄能器分别与所述驱动端齿轮、所述发射器本体相连,所述蓄能器构造成在所述被动端齿轮与所述摆齿啮合 传动的过程中蓄能,所述蓄能器释能时所述被动端齿轮与所述摆齿脱离。
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发射器与被发射件的一个状态图;
图2是根据本发明实施例的发射器与被发射件的分解图;
图3是根据本发明实施例的发射器的部分结构示意图;
图4是根据本发明实施例的发射器的内部结构示意图;
图5是根据本发明实施例的发射器另一个视角的内部结构示意图;
图6是根据本发明实施例的发射器的发射器本体的示意图;
图7是根据本发明另一个实施例的发射器的部分结构示意图;
图8是根据本发明实施例的发射器的单向驱动器的示意图;
图9是根据本发明实施例的发射器的发射驱动器的部分结构示意图;
图10是根据本发明实施例的发射器与被发射件的剖面图;
图11是根据本发明实施例的发射器与被发射件的部分结构示意图;
图12是根据本发明实施例的发射器的部分结构示意图;
图13是根据本发明实施例的发射器的部分结构的剖视图;
图14是根据本发明实施例的发射器的发射按钮的示意图;
图15是根据本发明另一个实施例的发射器的发射按钮的示意图;
图16是根据本发明另一个实施例的发射器的传动杆的示意图;
图17是根据本发明另一个实施例的发射器与被发射件的部分结构示意图;
图18是根据本发明实施例的发射器的吸盘模组的立体图;
图19是根据本发明实施例的发射器的吸盘模组的分解图;
图20是根据本发明实施例的发射器的被发射件的立体图;
图21是根据本发明实施例的发射器的被发射件的剖视图;
图22是根据本实用新型实施例的被发射件的本体的立体图;
图23是根据本实用新型实施例的被发射件的尖连体的立体图。
附图标记:
1000:发射器;
100:手持部;110:拇指握持侧;120:四指握持侧;130:限位板;
200:发射器本体;210:凸轴;211:配合凸缘;220:缓速盘;230:缓速弹性件;240:限位块;
400:换向驱动器;410:翻转按钮;420:翻转弹性件;
510:单向传动器;511:驱动端齿轮;512:被动端齿轮;513:摆齿;5131:转轴;520:绕绳部;530:绳体;531:拉环;540:蓄能器;
610:顶针;612:顶套;6121:终端锥面;620:回缩弹性件;630:发射按钮;631:凸块;632:摆杆;640:传动杆;641:横杆段;642:竖杆段;650:轴承;
700:吸盘模组;710:吸盘壳;710a:扣锁凹槽;710b:配合口;711:吸盘外罩;7111:半罩;712:内胆;712a:内胆口;7121:内胆翻边;720:磁组件;721:吸盘磁吸件;722:隔磁套;730:扣件;730a:扣槽;731:扣脚;732:扣轴;733:扣锁弹性件;734:扣锁凸起;735:延伸脚;7351:延伸面;
800:陀螺;810:陀螺本体;811:连接孔;812:连接槽;820:陀尖结构;821:磁吸陀尖;8211:卡槽;8212:卡凸;822:尖顶壳;8221:陀尖磁吸件;823:尖连体;8231:连接部;824:尖帽体;8241:帽沿;8242:尖筒体;8243:夹块。
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,仅用于解释本发明,而不能理解为对本发明的限制。
下面参考图1-图23描述根据本发明实施例的多向发射器1000。
如图1和图2所示,根据本发明实施例的多向发射器1000包括手持部100、发射器本体200、发射头组件和换向驱动器400。
其中发射器本体200可活动地设在手持部100上,即发射器本体200相对于手持部100可以活动(例如可以相对滑动或者转动等),发射器本体200具有至少第一发射位置、第二发射位置,也就是说,发射器本体200至少具有第一发射位置、第二发射位置的两个发射位置,例如第一发射位置为向下的发射位置,第二发射位置为向上的发射位置,发射器本体200还可以具有其他的发射位置(可以是其他方向的发射位置,例如向前的发射位置等),本发明对此不做具体限定,发射器本体200上具有的多个发射位置,可以增加玩家的趣味性,避免玩法过于单一。
具体地,发射头组件包括转动体、保持件,转动体可自由转动地设在发射器本体200上,保持件设在转动体上,可以理解的是,转动体相对于发射器本体200可以自由转动, 在发射器本体200处于第二发射位置(例如为向上发射的位置),转动体和保持件也为朝向上方的状态,玩耍时,转动体在朝向上方的方向自由转动,在发射器本体200处于第一发射位置(例如为向下发射的位置),转动体和保持件为朝向下方的状态,转动体在朝向下方的方向自由转动,转动体用于在发射器本体200上自由转动,保持件用于固定和释放被发射件。
在保持件固定被发射件时转动体可以带动被发射件转动,当被发射件的转速到达预定的转速时,被发射件可以为由于高速离心力的作用自行脱离保持件,当然被发射件也可以是通过释放组件触发后脱离保持件,即当转动体处于向上的状态时,保持件固定被发射件,转动体带动被发射件转动,使得被发射件具有一定的转速,之后发射头组件向上发射被发射件,同样,在发射器本体200由第二发射位置切换至第一发射位置后,当转动体在朝向下方的方向上自由转动,发射头组件向下发射被发射件,这样,被发射件既可以向上方发射出去,被发射件也可以向下方发射出去,即被发射件可以从多向发射器1000的多个方向上被发射出去,给玩家带来惊奇的玩耍体验。
进一步地,换向驱动器400连接在手持部100和发射器本体200之间,换向驱动器400在触发后可驱动发射器本体200由第一发射位置调换到第二发射位置,例如,第一发射位置为向下的发射位置,第二发射位置为向上的发射位置,即在通常状态下时,发射器本体200为向上发射的状态,当换向驱动器400被触发后,发射器本体200由第二发射位置切换至第一发射位置,即发射器本体200由向上的发射位置切换至向下的发射位置,由此,换向驱动器400具有驱动发射器本体200切换发射位置的作用,通过控制换向驱动器即可切换发射器本体200的发射位置,使得玩耍操作更加简单易行,便于小孩儿独自把玩。
根据本发明实施例的多向发射器1000,通过将发射器本体200可活动地设置在手持部100上,发射头组件的转动体在发射器本体200上可以自由转动,这样,发射头组件相对于手持部100可以上下翻转,实现上下两种翻转方式,换向驱动器400驱动发射器本体200在第一发射位置和第二发射位置之间进行调换,实现连接和发射被发射件的操作,发射头组件与换向驱动器400相配合,可以实现被发射件分别在上下方向的发射,给玩家带来惊奇的体验,提升了玩具玩耍的趣味性。
如图1所示,根据本发明的一个实施例,发射器本体200可转动地设在手持部100上,可以理解的是,发射器本体200可以围绕手持部100转动,在第一发射位置和第二发射位置的其中一处保持件位于多向发射器1000的下部,例如第一发射位置为向下的发射位置时,此时保持件也为朝向下方的状态,在第一发射位置和第二发射位置中的另一处保持件位于多向发射器1000的上部,例如第二发射位置为向上的发射位置时,此 时保持件也为朝向上方的状态,即保持件的位置与发射器本体200所处的位置一致。
以第一发射位置为向下的发射位置,第二发射位置为向上的发射位置为例,若发射器本体200处于第一发射位置,此时保持件上固定的被发射件也朝向下方,保持件释放被发射件后,被发射件向下方发射出去,若发射器本体200处于第二发射位置,此时保持件上固定的被发射件也朝向上方,保持件释放被发射件后,被发射件向上方发射出去,由此,保持件可以在不同的方向上释放被发射件,增强多向发射器1000玩耍的趣味性。
参照图1,根据本发明的另一个实施例,发射器本体200可转动地设在手持部100上,手持部100为握柄状,手持部100的水平两侧分别为拇指握持侧110和四指握持侧120,例如左手握住图1中的手持部100,拇指握持侧110朝向玩家的一侧,四指握持侧120远离玩家的一侧,手掌以及大拇指朝向拇指握持侧110,四指贴合四指握持侧120,使得玩家的握持动作更加舒服。
进一步地,换向驱动器400包括翻转按钮410,翻转按钮410设在拇指握持侧110,如图1所示,玩家用左手握住手持部100时,大拇指正对翻转按钮410,大拇指可以通过拨动翻转按钮410,当翻转按钮410触发后,发射头组件从第一发射位置沿着朝向四指握持侧120的方向转动到第二发射位置,以第一发射位置为向下的发射位置,第二发射位置为向上的发射位置为例,当玩家触发翻转按钮410,如采用大拇指向后拨动翻转按钮410时,翻转按钮410触发,发射头组件从向上位置沿着远离玩家的一侧(即发射头组件相对于玩家向外转动)转动至向下位置,不仅如此,在发射头组件从第一发射位置回到第二发射位置时,也是从向下位置沿着朝向四指握持侧120的方向转动至向上位置。
这样,在玩家手握多向发射器1000时,采用该方向翻转,使发射头组件转动甩力的方向朝向小朋友的前方,避免发射头组件上的被发射件突然脱离多向发射器1000打到小朋友的身体以及面部等部位,保证小朋友在玩耍时安全可靠。
如图3所示,根据本发明的又一个实施例,发射器本体200可转动地设在手持部100上,换向驱动器400包括翻转弹性件420和翻转按钮410,其中翻转弹性件420连接在手持部100和发射器本体200之间,翻转弹性件420构造成当发射器本体200朝向第一发射位置转动时蓄能、当发射器本体200朝向第二发射位置转动时释能,例如,第二发射位置为向上发射位置,第一发射位置为向下发射位置,在发射头组件处于向上的发射状态时为翻转弹性件420的非蓄力状态,当发射器本体200向下转动至向下发射位置时,翻转弹性件420被蓄力,如果没有其他止挡结构,则发射器本体200会在翻转弹性件420的驱动下自行向上转动回到向上发射位置处。
如下图3所示,向后拨动翻转按钮410,发射头组件在翻转弹性件420的作用力翻 转180度,此时可用手反方向拧转发射头组件复位。
在玩耍前,发射器本体200的转动方向按照图1所示的手柄状态进行,玩家用左手握住图1所示的多向发射器1000,右手顺时针转动发射器本体200,使得发射器本体200由向上发射位置转动180°至向下发射位置(第二发射位置至第一发射位置),此时翻转弹性件420蓄能;发射器本体200沿着逆时针的方向转动,可以由向下发射位置转动180°回到向上发射位置,此过程中翻转弹性件420释能。
翻转按钮410可活动地设在手持部100上,翻转按钮410在手持部100上可以前后滑动,且翻转按钮410在卡锁发射器本体200和释放发射器本体200之间可活动,具体地,当发射器本体200朝向第一发射位置转动(向下转动)时翻转弹性件420蓄能,转动至第一发射位置(发射器本体200朝向下方)时,翻转按钮410伸入发射器本体200卡锁发射器本体200,使得发射器本体200保持且定位在第一发射位置的状态,当向后拨动翻转按钮410就会释放发射器本体200,发射器本体200在翻转弹性件420的驱动下自行转动回至第二发射位置,通过翻转按钮410,可以将发射器本体200定位在预定发射位置的状态以及释放发射器本体200使其自行转动。
如图3所示,根据本发明一个可选的示例,在发射器本体200上设有凸轴210,凸轴210伸入到手持部100内,凸轴210连接在发射器本体200和手持部100之间,翻转弹性件420外套或者缠绕在凸轴210上,翻转弹性件420位于手持部100内,例如,翻转弹性件420可以为扭簧,当发射器本体200朝向上方时翻转弹性件420为自然状态(非蓄力状态),当手动向下转动发射器本体200时,翻转弹性件420扭动蓄力,直到发射器本体200处于向下的状态时,翻转弹性件420的蓄能最大,此时翻转弹性件420具有恢复到自然状态的趋势,进而具有驱动发射器本体200向上转动的趋势。
玩耍时,先手动转动发射器本体200,发射器本体200的转动方向是按照图1中的手持部100的状态,顺时针转动发射器本体200(逆时针转动受到限位块240与限位板130的限制无法转动),此时扭簧52被蓄力,当发射器本体200转动180°朝下时,此时翻转按钮410伸入到发射器本体200中卡住该发射器本体200,使其定位在朝下的状态。先采用朝下发射的方式发射被发射件后(如图2所示),在被发射件慢下来后用保持件将被发射件连接在多向发射器1000上,然后向后拨动翻转按钮410,发射器本体200带动被发射件逆时针翻转180°(避免被发射件突然脱离发射器1000打到小朋友的身体上),使被发射件变成朝上发射的状态。
如图3和图4所示,根据本发明另一个可选的示例,换向驱动器400包括配合凸缘211、缓速盘220和缓速弹性件230,配合凸缘211设在凸轴210的外周上,缓速盘220可转动地外套在凸轴210上,缓速盘220固定在手持部100内,缓速弹性件230用于驱 动配合凸缘211与缓速盘220相贴合,在发射器本体200转动时,配合凸缘211与缓速盘220相对运动,一方面可以发生声效,提高玩家的感官体验,另一方面,由于配合凸缘211与缓速盘220之间的相互配合,可以减缓发射器本体200的翻转速度。
进一步地,配合凸缘211和缓速盘220朝向彼此的面是齿形面,即配合凸缘211朝向缓速盘220上的一侧形成为齿形面,缓速盘220朝向配合凸缘211的一侧形成为齿形面,二者的齿形面相互啮合,这样在配合凸缘211与缓速盘220相对运动时,会发出转动的声效,同时,由于配合凸缘211的齿形面与缓速盘220的齿形面之间的啮合作用,一定程度上减缓了发射器本体200的翻转速度,以降低甩出被发射件的几率,保证多向发射器1000在玩耍时更加可靠。
根据本发明可选的实施例,多向发射器1000还包括发射驱动器500,发射驱动器500设在发射器本体200上,发射驱动器500构造成在触发时与转动体相配合并带动转动体转动,且发射驱动器500在释放时与转动体脱离配合。
具体地,在发射驱动器500释放时,发射驱动器500与转动体脱离配合,发射驱动器500在触发时,发射驱动器500就会与转动体配合相连,例如可以通过齿轮相互啮合,同时发射驱动器500转动并带动转动体转动,使得转动体以一定的转速旋转,发射驱动器500用于给转动体提供旋转的动力,并可以使得转动体高速旋转。
如图7和图8所示,可选地,发射驱动器500包括单向传动器510,其中单向传动器510包括驱动端齿轮511、被动端齿轮512和摆齿513,驱动端齿轮511与被动端齿轮512间隔开设置,驱动端齿轮511设在发射器本体200上,被动端齿轮512与转动体相连,驱动端齿轮511与摆齿513始终相啮合,摆齿513的转轴5131沿设定轨迹可摆动,摆齿513在设定轨迹的一端时与被动端齿轮512啮合传动,摆齿513在设定轨迹的另一端时与被动端齿轮512脱离啮合。
可以理解的是,摆齿513位于驱动端齿轮511与被动端齿轮512之间,例如驱动端齿轮511顺时针转动时,带动摆齿513逆时针转动的同时,摆齿513的转轴5131朝向被动端齿轮512的一端摆动,且与被动端齿轮512相啮合,通过摆齿513与被动端齿轮512的啮合传动,带动被动端齿轮512顺时针转动,同时转动体随着被动端齿轮512同步转动。当摆齿513的转轴5131向远离被动端齿轮512的另一端摆动时,被动端齿轮512与摆齿513相脱离,通过摆齿513的摆动轨迹实现与被动端齿轮512的啮合与脱离,进而可以驱动转动体转动。
可选地,发射驱动器500包括绕绳部520、绳体530和蓄能器540,绕绳部520与驱动端齿轮511相连,绳体530绕在绕绳部520上且内端连接绕绳部520,蓄能器540分别与驱动端齿轮511、发射器本体200相连,蓄能器540构造成在被动端齿轮512与摆 齿513啮合传动的过程中蓄能,蓄能器540释能时被动端齿轮512与摆齿513脱离。
具体地,向外拉动绳体530,将绳体530向外抽出,绳体530带动驱动端齿轮511顺时针转动(以驱动端齿轮511顺时针转动为例说明),进而带动摆齿513逆时针转动,同时使得摆齿513朝向被动端齿轮512的一端摆动,摆齿513与被动端齿轮512啮合并带动被动端齿轮512转动,在此过程中,蓄能器540蓄能,将绳体530来到头或者松开时,蓄能器540释能,驱动端齿轮511逆时针转动,绳体530自行收回至绕绳部520上,此时被动端齿轮512与摆齿513处于相分离的状态。若多次拉动绳体530,可以使得被动端驱动轮与转动体可以高速转动,进而可以给被发射件提供较高的旋转速度。
可以理解的是,可以在绳体530的末端连接拉环531,便于小朋友玩耍时拉动绳体530。
玩耍时,先将被发射件(例如陀螺800)安装在多向发射器1000上,多次向外拉出绳体530,使被发射件在转动体的带动下高速旋转,被发射件高速甩出或者释能组件触发,被发射件发射在战斗盘上,移动多向发射器1000,使多向发射器1000的保持件对准被发射件,将被发射件固定在到发射头组件内,此时被发射件在发射头组件上可继续转动,向后拨动翻转按钮410,使发射头组件翻转180度,多次向外拉出绳体530,使被发射件在转动体的带动下高速旋转,触发释能组件,使被发射件向上发射,被发射件发射在战斗盘内,手动翻转发射头组件复位,完成一个回合。
下面参考图1、图2、图10-图16描述本发明另一个实施例的撞射发射器1000。
本发明实施例的撞射发射器1000包括发射器本体200、发射头组件和释放组件。其中发射头组件包括转动体和保持件,转动体可自由转动地设在发射器本体200上,保持件设在转动体上,可以理解的是,转动体相对于发射器本体200可以自由转动,被发射件连接在保持件上,保持件连接在转动体上且可以随着转动体同步转动。
参照图10和图11,可选地,释放组件包括顶针610和回缩弹性件620,顶针610在顶出位置和回缩位置之间可滑动地设在发射器本体200上,回缩弹性件620套设在顶针610上,回缩弹性件620用于驱动顶针610朝向回缩位置滑动,顶针610在触发后朝向顶出位置滑动,当顶针610位于回缩位置时被发射件可配合在保持件上,当顶针610朝向顶出位置滑动时将被发射件从保持件上撞脱。
具体地,当被发射件配合在保持件上时,顶针610在回缩弹性件620的弹性作用下位于回缩位置,随着转动体转动带动被发射件转动,提升被发射件的转速,顶针610受到触发后朝向顶出位置滑动,此时回缩弹性件620受到压缩,保持件上的被发射件被顶针610撞脱,被发射件与保持件相脱离,回缩弹性件620具有恢复原状的作用趋势,顶 针610在回缩弹性件620的作用下向回缩位置滑动。
如图11所示,回缩弹性件620套设在顶针610的上部,通常状态下,顶针610在回缩弹性件620的作用下位于回缩位置,被发射件配合在保持件上,当顶针610受到触发后,顶针610向下滑动(顶出位置在回缩位置的下方),把被发射件从保持件上向下撞脱,使得被发射件向下发射出去。
由此,通过释放组件上的顶针610与回缩弹性件620相配合,顶针610在回缩位置和顶出位置之间滑动,可以使得保持件上的被发射件被顶针610撞脱,用于控制被发射件的发射,玩具的结构简单,控制操作简便,容易实现被发射件的发射作用。
如图11所示,根据本发明的一个实施例,释放组件包括发射按钮630和传动杆640,发射按钮630可活动地设在发射器本体200上,传动杆640连接在发射按钮630和顶针610之间,在发射器本体200的侧部设有发射按钮630,传动杆640的一端(例如左端)与发射按钮630相连,传动杆640的另一端(例如右端)与顶针610的头部相连,可以手动按下发射按钮630,发射按钮630向内移动,驱动传动杆640进而触发顶针610由回缩位置向顶出位置滑动,发射按钮630和传动杆640作为顶针610的触发件,可以起到触发顶针610由回缩位置向顶出位置滑动。
如图14和图15所示,根据本发明一个可选的示例,发射按钮630为设在发射器本体200上不同位置处的多个,每个发射按钮630均通过传动杆640与顶针610相连,例如在发射器本体200的两侧设有两个发射按钮630,同时按压两个发射按钮630时,两个发射按钮630分别从发射器本体200的两侧由外向内移动,可以共同驱动传动杆640活动,进而触发顶针610由回缩位置向顶出位置滑动,当然,本发明中的发射按钮630不限于两个,可以为四个等。
参考图14,根据本发明另一个可选的示例,发射按钮630可滑动地连接在发射器本体200上,例如发射按钮630包括按压部和凸块631,凸块631连接在按压部上,且凸块631位于发射器本体200内,两个发射按钮630在发射器本体200的两侧相对布置,且两个发射按钮630之间连接有按压弹性件,即在通常状态下,按压弹性件处于自然状态,当按压发射按钮630时,按压部向发射器1000内部移动,按压弹性件受到压缩,凸块631朝向彼此的方向移动,推动(可以是向上推动或者向顶针610方向推动等)传动杆640进而触发顶针610滑动。
如图15所示,或者发射按钮630可摆动地连接在发射器本体200上,发射按钮630包括按压部和摆杆632,发射器本体200内设有转动轴,转动轴上连接有摆杆632,按压部设在摆杆632的端部,两个发射按钮630分别设在发射器本体200的两侧,当按压发射按钮630时,按压部向发射器本体200内部移动,摆杆632围绕转动轴朝向彼此的 方向摆动,可以推动传动杆640进而触发顶针610滑动。
参考图11和图16,根据本发明又一个可选的示例,传动杆640为可滑动地连接在发射器本体200上,按压发射按钮630后,发射按钮630向顶针610方向推动传动杆640,传动杆640触发顶针610滑动从保持件上撞脱被发射件。
或者传动杆640为可摆动地连接在发射器本体200上,即在发射器本体200上设有旋转轴,例如旋转轴可以横置在发射器本体200上,传动杆640围绕旋转轴可以摆动,当按压发射按钮630时,发射按钮630将传动杆640的一端向上推动,则传动杆640的另一端围绕旋转轴向下摆动,进而触发顶针610,即按压顶针610向下滑动。
参考图16,根据本发明又一个可选的示例,传动杆640包括横杆段641和竖杆段642,横杆段641可转动地连接在发射器本体200上,即横杆段641与转轴5131相连,竖杆段642连接在横杆段641的一端且与发射按钮630相配合,竖杆段642的另一端与顶针610相配合。
具体地,竖杆段642的两端可以在横杆段641的两侧摆动,按压发射按钮630后,通过采用杠杆转动的原理控制顶针610向下移动,当按压发射按钮630时,发射按钮630向上推动竖杆段642的一端(图16中竖杆段642的左端),同时竖杆段642的另一端(图16中竖杆段642的右端)向下摆动,由于顶针610连接在竖杆段642的另一端的下表面上,进而触发顶针610向下滑动,撞脱保持件上的被发射件。
根据本发明再一个可选的示例,传动杆640可滑动地设在发射器本体200上,顶针610的一端设有始端配件,始端配件的端面形成始端锥面,传动杆640配合在始端锥面上,发射按钮630向右拨动时,带动传动杆640向右移动,传动杆640和顶针610之间设有始端锥面,故传动杆640可将顶针610向下压,顶针610将被发射件向下推动,脱离发射头组件,即将被发射件发射出去。
根据本发明另一个实施例,转动体为环形,转动体外套在顶针610上,且转动体与顶针610在径向上间隔布置,转动体围绕顶针610转动以带动被发射件同步转动,在顶针610受到触发后将被发射件撞脱,自由落下。
根据本发明又一个实施例,在顶针610上套设有顶套612,顶套612设在顶针610的下端端部,顶套612的端面形成为终端锥面6121,终端锥面6121与保持件上的部件的上端端面相配合,在顶针610向下滑动的过程中,终端锥面6121推动保持件上固定被发射件的部件向外移动,从而释放被发射件,将被发射件发射出去。
进一步地,回缩弹性件620为回缩弹簧,回缩弹簧外套在顶针610上,回缩弹簧的一端(如图11中回缩弹簧的上端)止抵在顶针610上,回缩弹簧的另一端(如图11中回缩弹簧的下端)止抵在转动体上,在顶针610向下滑动的过程中,回缩弹簧会受到压 缩,当顶针610撞脱被发射件后,回缩弹簧恢复变形,带动顶针610回到初始位置,通过回缩弹性件620可以带动顶针610滑动回到初始位置。
下面参考图17-图19描述本发明又一实施例的发射器1000的吸盘模组700,即发射头组件以吸盘模组700为例进行说明,该实施例中的被发射件以陀螺800为例进行说明。
如图18和图19所示,根据本发明实施例的发射器1000的吸盘模组700包括吸盘壳710、磁组件720和扣件730。
其中,吸盘壳710可以作为转动体,磁组件720可以作为保持件,磁组件720可以将被发射件(例如陀螺800)保持在转动体上,即磁吸件720可以通过磁吸与被发射件保持连接状态,吸盘壳710在转动时会带动被发射件转动,用以给被发射件增加转速。例如在陀螺800脱离发射器1000后自由转动,陀螺800的转速会逐渐减小甚至停止,此时将发射头组件对准陀螺800,磁组件720将陀螺800磁吸在发射头组件上,同时由于吸盘壳710通过发射驱动器500的驱动作用下高速转动,进而可以带动陀螺800高速转动。
在陀螺800保持在发射头组件上时,同时扣件730与陀螺800卡接相连,故可进一步提高陀螺800与发射头组件的连接牢固性,保证陀螺800在发射驱动器500的驱动作用下高速转动时也不易脱离发射头组件;同时,陀螺800随着发射器本体200的翻转而翻转,例如由发射器本体200朝上的状态向下翻转,陀螺800由位于发射器本体200的上方翻转至位于发射器本体200的下方,在发射器本体翻转的过程中,陀螺800具有极易被甩出的较大的惯性力,通过设置扣件730与陀螺800进一步可靠相连,可以有效地避免发射器本体200在翻转时由于翻转的惯性导致陀螺800甩出去,确保小朋友在玩耍时安全可靠。
具体地,磁组件720设在吸盘壳710上,用于磁吸陀螺800将陀螺800保持在发射头组件上,扣件730可活动地设在吸盘壳710上,例如扣件730在吸盘壳710上可以转动,在扣件730上设有扣脚731,扣脚731在扣锁位置和解锁位置之间可以活动,当扣脚731处于扣锁位置时扣脚731适于扣在陀螺800上以避免存在发射器本体200翻转时陀螺800被甩出的风险,扣脚731在解锁位置时,扣脚731适于与陀螺800脱离配合。
正常状态下,扣脚731位于扣锁位置,扣脚731锁住陀螺800,当扣件730受到触发,扣脚731由扣锁位置切换至解锁位置,并释放陀螺800,此时陀螺800与扣脚731脱离配合,自由落下,由此,通过扣脚731在扣锁位置和解锁位置之间活动,可以锁住或者释放陀螺800。
根据本发明实施例的发射器1000的吸盘模组700,通过在吸盘壳710内设置磁组件 720,且在吸盘壳710上设置可活动的扣件730,这样,将陀螺800通过磁吸作用保持在吸盘壳710内,进一步通过扣件730对陀螺800的卡接作用,以避免发射器本体200在翻转时由于惯性作用陀螺800会甩出的现象,即扣件730可以扣锁和释放陀螺800,在吸盘模组700磁吸陀螺800时,陀螺800被扣脚731锁住,发射器本体200翻转时,陀螺800与发射头组件的连接可靠,不易甩出,当扣件730受到触发后,扣件730就会释放陀螺800,自由下落。
参照图19,根据本发明的一个实施例,吸盘壳710包括吸盘外罩711和内胆712,磁组件720和扣件730设在吸盘壳710的外部,内胆712设在吸盘外罩711内,吸盘外罩711对内胆712具有保护作用,吸盘外罩711位于吸盘模组700的最外侧,一方面对内部的部件具有保护功能,另外,使得吸盘模组700形成一个整体,且在吸盘壳710在发射驱动器500的驱动下转动,进而可以带动陀螺800转动以增大陀螺800的转速。
如图19所示,根据本发明一个可选的示例,吸盘外罩711与内胆712之间间隔设置,扣件730可转动地设在吸盘外罩711和内胆712之间,扣件730上具有扣轴732,扣轴732连接在内胆712上,扣脚731位于扣轴732的一端,扣件730在绕扣轴732转动时扣脚731可伸缩,例如,在内胆712和吸盘外罩711之间设有三个扣件730,三个扣件730围绕内胆712间隔排布,扣脚731位于扣件730围绕内胆712顺时针方向上的上游端,当扣件730围绕扣轴732转动,如扣件730绕扣轴732顺时针转动时,扣脚731回缩到内胆712中,当扣脚731绕扣轴732逆时针转动时,扣脚731伸出内胆712外。
具体地,在通常状态下,扣脚731回缩在内胆712内,可以扣锁陀螺800,当扣件730被触发时,扣脚731围绕扣轴732逆时针转动,即扣脚731向内胆712外转动,从而释放陀螺800。
进一步地,吸盘模组700还包括扣锁弹性件733,扣锁弹性件733连接在扣件730和吸盘壳710之间,扣锁弹性件733处于常压缩状态,扣锁弹性件733与扣脚731分别位于扣轴732的两侧,扣锁弹性件733用于驱动扣脚731朝向扣锁位置转动,在通常状态下,由于扣锁弹性件733的弹性恢复力作用,使得扣件730围绕扣轴732具有顺时针转动的趋势,扣轴732上设有扣锁弹性件733的一端向外转动,进而实现扣脚731向扣锁位置转动,这样,通过扣锁弹性件733可以使得扣脚731保持在扣锁位置。
如图19所示,根据本发明另一个可选的示例,扣锁弹性件733配合在扣件730上,扣锁弹性件733与扣脚731位于扣轴732的两端,在扣件730上设有扣槽730a,扣槽730a用于配合扣锁弹性件733,即扣锁弹性件733一端连接在内胆712的外壁上,扣锁弹性件733的另一端连接在扣槽730a内,这样,使得扣锁弹性件733可以固定在扣槽730a内,在内胆712和扣件730之间连接可靠,可以使得扣脚731常保持在扣锁位置。
根据本发明又一个可选的示例,在扣件730上设有扣锁凸起734,吸盘外罩711或内胆712上设有扣锁凹槽710a,扣锁凹槽710a与扣锁凸起734相对应,具体地,当扣件730位于扣锁位置时,扣锁凸起734配合在扣锁凹槽710a内,扣锁凸块631与扣脚731位于扣轴732的两端,这样,扣锁凸起734通过配合在扣锁凹槽710a内,即扣轴732一端的扣锁凸起734卡在扣锁凹槽710a内,可以使得扣轴732另一端的扣脚731扣紧陀螺800,防止陀螺800脱落。
具体地,在吸盘模组700高速转动时,由于离心力的作用,使得扣件730上的扣锁凸块631卡接在扣锁凹槽710a内,避免扣轴732的一端向外继续转动,进而使得扣轴732另一端的扣脚731可以牢牢卡住陀螺800。
如图19所示,根据本发明再一个可选的示例,在内胆712的周壁上设有内胆口712a,扣脚731在转动时从内胆口712a可伸入或者退出内胆712,内胆712的一端(如图19中所示的内胆712的上端)设有内胆翻边7121,扣轴732的一端(如扣轴732的上端)配合在内胆翻边7121上,增大内胆712上端的表面积,同时可以用于与吸盘外罩711的内壁相连。
通常情况下,扣脚731从内胆口712a伸入到内胆712中,即此时扣脚731位于扣锁位置,用于扣锁陀螺800,当扣件730受到触发时,扣脚731从内胆口712a退出内胆712,扣脚731相对内胆712向外转动,释放陀螺800,陀螺800脱离吸盘模组700,自由下落。
如图19所示,根据本发明另一个实施例,在扣件730上设有延伸脚735,延伸脚735与扣脚731位于扣轴732的同一端,延伸脚735上的端部设有倾斜的延伸面7351,当作用力施加在延伸面7351上时,扣脚731朝向解锁位置活动,正常状态下,内胆712上的扣件730从内胆口712a伸入到内胆712内,扣件730的延伸脚735的端部位于内胆712的中心,当向下的作用力施加在延伸面7351上,推动延伸脚735从内胆口712a向内胆712外转动,同时扣脚731也从内胆口712a退出内胆712,朝向解锁位置活动,进而释放陀螺800,这样,通过在延伸脚735的延伸面7351上施加作用,实现扣脚731释放陀螺800的功能。
如图19所示,根据本发明再一个可选的示例,吸盘外罩711包括两个可拆卸的半罩7111,两个半罩7111合围在内胆712的外侧,通过将吸盘外罩711设置成包括两个半罩7111的结构,便于拆卸,为后期对吸盘模组700的维修更换带来方便,即需要维修更换时,直接拆开两个半罩7111即可,完成后,直接将两个半罩7111装配合上即可。
如图18所示,根据本发明又一个实施例,吸盘壳710上具有配合口710b,配合口710b适于陀螺800伸入,磁组件720设在吸盘壳710内,图19中磁组件720位于内胆 712内,磁组件720包括吸盘磁吸件721和隔磁套722,隔磁套722外包在吸盘磁吸件721上,隔磁套722在朝向配合口710b的一侧敞开。
进一步地,吸盘磁吸件721包括第一磁吸件和第二磁吸件,第一磁吸件位于第二磁吸件的上方,第一磁吸件与隔磁套722配合可以起到隔磁的作用,以避免设置在吸盘模组700上方的轴承650被磁化,第二磁吸件可以磁吸陀螺800,以将陀螺800保持在发射头组件上。
具体地,在陀螺800的转速变慢或者停下来时,将发射器1000的吸盘模组700靠近陀螺800时,通过第二磁吸件即可将陀螺800磁吸并连接在吸盘模组700上。
如图19所示,根据本发明再一个实施例,吸盘壳710形成为两端敞开的筒形,磁组件720和扣件730均设在吸盘壳710内,扣件730为多个,多个扣件730沿吸盘壳710的周壁间隔开设置,例如在吸盘壳710上的周向上设有三个扣件730,三个扣件730的延伸脚735相互朝向布置(如均集中在内胆712的中心处),此时三个扣脚731扣紧陀螺800,当向下的作用力同时施加在三个延伸面7351上时,三个延伸脚735同时朝向内胆712外转动,同时,三个扣脚731也向内胆712外转动,从而释放陀螺800。
根据本发明第二方面实施例的发射器1000,包括上述实施例中所述的发射器1000的吸盘模组700。
根据本发明实施例的发射器1000,通过在吸盘壳710内设置磁组件720,且在吸盘壳710上设置可活动的扣件730,这样,将陀螺800通过磁吸作用保持在吸盘壳710内,进一步通过扣件730对陀螺800的卡接作用,以避免发射器本体200在翻转时由于惯性作用陀螺800会甩出的现象,即扣件730可以扣锁和释放陀螺800,在吸盘模组700磁吸陀螺800时,陀螺800被扣脚731锁住,发射器本体200翻转时,陀螺800与发射头组件的连接可靠,不易甩出,当扣件730受到触发后,扣件730就会释放陀螺800,自由下落。
下面参考图1、图2、图20-图23描述本发明又一实施例的发射器1000的陀螺800。
根据本发明实施例的陀螺800包括陀螺本体810和两个陀尖结构820。其中两个陀尖结构820分别设在陀螺本体810的上下两端,这样,无论陀螺800的哪一端掉落在地面上,陀螺800均可以高速旋转。
此外,至少一个陀尖结构820为设有陀尖磁吸件8221的磁吸陀尖821,例如其中一个陀尖结构820为磁吸陀尖821,也可以是上下两个陀尖结构820均为磁吸陀尖821,由此,陀螺800可以通过磁吸陀尖821磁吸在发射器1000上,小朋友玩耍时无需手动将陀螺800安装在发射器1000上,在陀螺800的转速变慢或者停下来时,将发射器1000 对准陀螺800的磁吸陀尖821即可将陀螺800磁吸在发射器1000上,提升了玩耍趣味性。
根据本发明实施例的陀螺800,通过将至少一个陀尖结构820设为磁吸陀尖821,可以在陀螺800的转速变慢或者停下来时,将发射器1000对准陀螺800的磁吸陀尖821即可将陀螺800磁吸在发射器1000上,小朋友玩耍更加便捷,增强了趣味性和惊奇感。
如图21所示,根据本发明的一个实施例,磁吸陀尖821可拆卸地连接在陀螺本体810上,例如磁吸陀尖821通过卡扣与陀螺本体810相连,磁吸陀尖821也可以通过连接件与陀螺本体810相连,只要可以实现磁吸陀尖821与陀螺本体810可拆卸相连的方式即可,本发明对此不做具体限定,通过磁吸陀尖821与陀螺本体810可拆卸地相连,使得磁吸陀尖821与陀螺本体810的拆装十分方便,也方便更换磁吸陀尖821。
如图20所示,根据本发明的另一个实施例,磁吸陀尖821的外周壁上设有卡槽8211,卡槽8211用于与发射器1000配合,卡槽8211为环绕旋转轴线设置的环形,通过在磁吸陀尖821的外周壁上设置卡槽8211,可以使得发射器1000卡接在卡槽8211内,实现发射器1000与磁吸陀尖821的配合,且磁吸陀尖821配合在发射器1000上时,提升磁吸陀尖821的转速,在转动过程中发射器1000与磁吸陀尖821配合可靠,磁吸陀尖821不易从发射器1000上滑落,同时也可以防止在玩耍时由于陀螺800的滑落造成小朋友损伤。
参照图20,根据本发明的又一个实施例,磁吸陀尖821的尖端形成为锥台,锥台在远离陀螺本体810的方向上截面逐渐减小,即磁吸陀尖821朝向发射器1000的端部截面逐渐减小,这样,磁吸陀尖821的端部易于伸入发射器1000内,并与发射器1000相配合连接,特别是在陀螺800转动时,可将发射器1000对准磁吸陀尖821即可配合在发射器1000内。
如图20所示,根据本发明的再一个实施例,磁吸陀尖821的外周壁上设有多个卡凸8212,卡凸8212用于与发射器1000相配合,多个卡凸8212环绕旋转轴线间隔开设置,通过在磁吸陀尖821的外壁上设置卡凸8212,可以与转动体上的对应位置(吸盘壳710的下端)相配合,实现转动体在转动时,转动体的对应位置可以带动卡凸8212随之转动,进而实现陀螺800可以与转动体同步转动,以避免转动体与陀螺800由于相对滑动而造成转动体空转。
进一步地,多个卡凸8212在轴向上同向竖直延伸,卡凸8212设在磁吸陀尖821的台阶面上,且每个卡凸8212沿着竖直方向延伸,相对于磁吸陀尖821的尖端的锥台结构,增大磁吸陀尖821与转动体的接触面积,且通过磁吸陀尖821上的卡凸8212可以配合在转动体的对应位置,转动体通过带动卡凸8212实现陀螺800与转动体的同步转 动,防止磁吸陀尖821相对转动体滑动导致转动体空转,提升转动体与陀螺800同步转动的可靠性。
如图20所示,根据本发明的再一个实施例,磁吸陀尖821包括尖顶壳822、尖连体823和尖帽体824,尖顶壳822适于连接发射器1000,尖顶壳822的一端(如尖顶壳822的下端)敞开,陀尖磁吸件8221设在尖顶壳822内,这样,当发射器1000与陀螺800的磁吸陀尖821靠近时,在磁吸陀尖821和发射器1000之间具有相互的吸引力,磁吸陀尖821和发射器1000可以紧紧的互相吸引。
尖连体823连接在尖顶壳822敞开的一端(如尖顶壳822的下端),尖连体823上设有连接部8231,连接部8231用于连接陀螺本体810,即连接在陀螺本体810和尖顶壳822之间,尖帽体824卡在尖顶壳822和尖连体823之间,尖帽体824的外周壁上设有径向向外延伸的帽沿8241,当陀螺800的磁吸陀尖821配合在发射器1000上时,发射器1000的下端止抵在尖帽体824的帽沿8241上,避免磁吸陀尖821由于磁吸作用伸入发射器1000过多,使得发射器1000与陀螺800的配合更加可靠稳定。
如图21所示,根据本发明一个可选的示例,尖帽体824包括尖筒体8242和夹块8243,夹块8243设在尖筒体8242的内壁壁上,帽沿8241设在尖筒体8242的外周壁上,尖筒体8242外套在尖顶壳822上,夹块8243夹在尖顶壳822和尖连体823之间,当磁吸陀尖821伸入发射器1000内时,尖帽体824的一部分伸入发射器1000内,且发射器1000的下端面止抵在帽沿8241的上表面上,夹块8243在尖顶壳822和尖连体823之间具有固定的作用,使得尖顶壳822和尖连体823之间的配合可靠、稳定。
如图22所示,根据本发明另一个可选的示例,在陀螺本体810上设有连接孔811,连接孔811的内壁上设有多个间隔开的连接槽812,连接部8231为沿周向间隔开地设置在尖连体823上的多个,尖连体823插入连接孔811后,多个连接部8231旋转插入至多个连接槽812内,即连接槽812与连接部8231一一对应布置,这样,通过连接槽812与对应的连接部8231的配合,使得磁吸陀尖821与陀螺本体810的连接十分可靠,二者不会轻易脱离,形成一个整体结构。
根据本发明第二方面实施例的陀螺800的磁吸陀尖821包括尖顶壳822、陀尖磁吸件8221、尖连体823和尖帽体824,尖顶壳822适于与发射器1000相连,尖顶壳822的一端敞开,陀尖磁吸件8221设在尖顶壳822内,通过在尖顶壳822内设置陀尖磁吸件8221,使得磁吸陀尖821与发射器1000相互吸引,尖连体823连接在尖顶壳822敞开的一端,尖连体823上设有适于连接陀螺本体810的连接部8231,尖连体823用于连接陀螺本体810和尖顶壳822,尖帽体824卡在尖顶壳822和尖连体823之间,尖帽体824的外周壁上设有径向向外延伸的帽沿8241,发射器1000与磁吸陀尖821配合时, 发射器1000的下端面止抵在尖帽体824的帽沿8241上,使得发射器1000与磁吸陀尖821的配合可靠、稳定,连接紧密。
根据本发明实施例的陀螺800的磁吸陀尖821,可以在陀螺800的转速变慢或者停下来时,将发射器1000对准陀螺800的磁吸陀尖821即可将陀螺800磁吸在发射器1000上,小朋友玩耍更加便捷,增强了趣味性和惊奇感。
下面结合附图1-23具体描述本发明实施例的发射器1000以及玩耍过程,其中被发射件以磁吸陀螺800为例进行说明。
如图1所示,具体地,发射器1000包括手持部100、发射器本体200、换向驱动器400、发射驱动器500、释放组件和吸盘模组700。
其中发射器本体200可活动地设置在手持部100上,发射器本体200具有第一发射位置和第二发射位置,例如第一发射位置为朝向下方的发射位置,第二发射位置为朝向上方的发射位置,发射器本体200的一端与手持部100相连,手持部100上设有拇指握持侧110和四指握持侧120,其中拇指握持侧110朝向小朋友的一侧,四指握持侧120位于远离小朋友的一侧,在拇指握持侧110上设有可以前后滑动的翻转按钮410,在发射器本体200和手持部100之间设有凸轴210,凸轴210伸入到手持部100内实现可相对手持部100转动,在凸轴210上设有配合凸缘211,凸轴210上套接有翻转弹性件420,翻转弹性件420的一端与凸轴210固定连接,另一端与手持部100固接,翻转弹性件420在发射器本体200处于第二发射位置时为自然状态(非蓄能状态),当翻转弹性件420由第二发射位置翻转到第一发射位置时,翻转弹性件420处于蓄能状态,在凸轴210上设有限位块240,在手持部100上设有限位板130。进一步地,在凸轴210上套设有缓速盘220,缓速盘220与配合凸缘211通过缓速弹性件230相互配合。
可选地,在发射器本体200的两侧分别设有发射按钮630,在发射器本体200的头部设有顶针610,传动杆640连接在发射按钮630和顶针610之间,按压发射按钮630时传动杆640的竖杆段642围绕横杆段641摆动,进而触发顶针610在回缩位置和顶出位置之间上下移动,在顶针610上设有回缩弹性件620和顶套612。
在发射器本体200上设有发射驱动器500,发射驱动器500包括单向传动器510、绕绳部520、绳体530和蓄能器540,单向驱动器包括驱动端齿轮511、被动端齿轮512和摆齿513,向外拉动绳体530蓄能器540蓄能,驱动端齿轮511带动摆齿513转动,同时带动摆齿513沿摆动轨迹移动与被动端齿轮512啮合,带动被动端齿轮512转动,蓄能器540释能时被动端齿轮512和摆齿513脱离。
吸盘模组700连接在发射器本体200的头部的朝下或者朝上的位置,吸盘模组700 与被动端齿轮512同步转动,吸盘模组700包括吸盘壳710、磁组件720、扣件730,其中吸盘壳710的吸盘外罩711罩设在内胆712外,磁组件720位于内胆712内,且多个扣件730沿内胆712的周向间隔排布在对应的内胆口712a内,扣件730上的延伸脚735和扣脚731位于扣轴732的同一侧,多个扣件730的延伸脚735延伸到内胆712上方且向轴心靠拢,在扣轴732的另一侧设有扣槽730a,扣锁弹性件733连接在扣槽730a和内胆712外壁之间,在与扣槽730a同侧设有扣锁凸起734。
在本发明的描述中,“多个”的含义是两个或两个以上。
吸盘模组700在高速转动时,扣件730在离心力和压力弹簧的作用下转动使扣锁凸块631伸出吸盘外罩711的配合口710b,从而使扣件730的另一端的扣脚731扣紧陀螺800。磁组件720可用于磁吸陀螺800,在磁吸力的作用下将陀螺800保持在吸盘壳710上,在扣件730扣紧作用下可保证陀螺800和吸盘模组700牢固连接,以避免存在发射器本体200在翻转时陀螺800被甩出的危险。
陀螺800磁吸在吸盘模组700上,陀螺800包括陀螺本体810和陀尖结构820,两个陀尖结构820中的至少一个为磁吸陀尖821,在磁吸陀尖821的外周壁上设有卡槽8211和卡凸8212,通过卡槽8211、卡凸8212与发射器1000配合,磁吸陀尖821的尖端形成为锥台且在远离陀螺本体810的方向上截面逐渐减小,磁吸陀尖821包括尖顶壳822、陀尖磁吸件8221、尖连体823和尖帽体824,尖顶壳822与发射器1000相连,尖顶壳822的一端敞开,陀尖磁吸件8221设在尖顶壳822内,尖连体823连接在陀螺本体810和尖顶壳822之间,尖帽体824与发射器1000的下端面配合。
在玩耍时,按照如图1所示的状态手握手持部100,即大拇指朝向拇指握持侧110,四指朝向四指握持侧120,先将磁吸陀螺800安装在发射器1000的吸盘模组700上,然后多次向外拉出绳体530(在绳体530上设有拉环531),使得蓄能器540多次蓄能,多次驱动驱动端齿轮511带动摆齿513,摆动与被动端齿轮512啮合并带动被动端齿轮512高速转动,同时吸盘模组700也高速转动,从而驱动磁吸陀螺800高速旋转。
接着,按下发射器本体200上的发射按钮630,发射按钮630压迫传动杆640顺时针转动,传动杆640压迫顶针610向下移动,顶套612与顶针610同时向下移动,顶套612压迫陀螺800脱离吸盘模组700,自由落下。具体地,顶针610受到压迫由回缩位置向顶出位置移动,进而给吸盘模组700上的延伸脚735施加作用力,推动延伸脚735以及扣脚731向内胆712外转动,使得扣脚731释放磁吸陀螺800,将磁吸陀螺800发射在战斗盘上。
其次,移动发射器1000,使发射器1000的吸盘模组700对准磁吸陀螺800,由于吸盘模组700内的磁组件720以及陀螺800尖顶壳822内的陀尖磁吸件8221的相互吸引, 将磁吸陀螺800吸回到发射器1000的吸盘模组700内,使得陀螺800保持在吸盘模组700内,此时磁吸陀螺800在发射器1000上可继续转动。
之后,大拇指向后拨动翻转按钮410,翻转按钮410释放对发射器本体200的卡位,使发射器本体200在翻转弹性件420的作用下翻转180度,即此时翻转弹性件420为蓄力状态,发射器本体200可以自行逆时针向上翻转(即向远离小朋友的身体方向转动,通过限位块240与限位板130的配合作用只能实现该方向的转动),多次向外拉出绳体530,使陀螺800高速旋转。然后,按下发射按钮630,使磁吸陀螺800向上顶出。最后,磁吸陀螺800发射在战斗盘内。手动翻转发射器本体200复位,例如在翻转弹性件420非蓄力状态下时,发射器本体200处于朝上发射状态,顺时针转动发射器本体200(即向远离小朋友的身体方向转动),此时翻转弹性件420被蓄力,当发射器本体200转动180°朝下时,此时翻转按钮410伸入到发射器本体200中卡住该发射器本体200,使其定位在朝下的状态,完成一个回合。
进一步地,配合凸缘211和缓速盘220相互朝向的面为齿形面,通过缓速弹性件230的作用使缓速盘220始终与配合凸缘211啮合,且缓速盘220固定在手持部100上,故发射器本体200在转动时,配合凸缘211和缓速盘220相对运动,从而发出声效,同时由于两者的啮合,故减缓了发射器本体200的翻转加速度,以降低陀螺800被甩出的几率。
如图11所示,当顶针610向下压时,顶套612与顶针610同步向下压,此时顶套612压迫三个扣件730的延伸脚735向外转动,即扣脚731向外转动,从而解锁陀螺800,使陀螺800脱扣。当发射完陀螺800后,松开发射按钮630后,顶针610与顶套612在回缩弹性件620的作用力向上复位,三个扣件730在扣锁弹性件733的作用下转动复位,以便可以进行下一次组装陀螺800。
在本发明的描述中,需要理解的是,术语“中心”、“纵向”、“横向”、“长度”、“宽度”、“厚度”、“上”、“下”、“前”、“后”、“左”、“右”、“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。
在本发明的描述中,第一特征在第二特征“之上”或“之下”可以包括第一和第二特征直接接触,也可以包括第一和第二特征不是直接接触而是通过它们之间的另外的特征接触。
在本发明的描述中,第一特征在第二特征“之上”、“上方”和“上面”包括第一特征在 第二特征正上方和斜上方,或仅仅表示第一特征水平高度高于第二特征。
在本说明书的描述中,参考术语“一个实施例”、“一些实施例”、“示意性实施例”、“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一定指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何的一个或多个实施例或示例中以合适的方式结合。
尽管已经示出和描述了本发明的实施例,本领域的普通技术人员可以理解:在不脱离本发明的原理和宗旨的情况下可以对这些实施例进行多种变化、修改、替换和变型,本发明的范围由权利要求及其等同物限定。

Claims (10)

  1. 一种多向发射器,其特征在于,包括:
    手持部;
    发射器本体,所述发射器本体可活动地设在所述手持部上,所述发射器本体具有至少第一发射位置、第二发射位置;
    发射头组件,所述发射头组件包括转动体、保持件,所述转动体可自由转动地设在所述发射器本体上,所述保持件设在所述转动体上,所述保持件用于固定和释放被发射件;
    换向驱动器,所述换向驱动器连接在所述手持部和所述发射器本体之间,所述换向驱动器在触发后可驱动所述发射器本体由所述第一发射位置调换到所述第二发射位置。
  2. 根据权利要求1所述的多向发射器,其特征在于,所述发射器本体可转动地设在所述手持部上,在所述第一发射位置和所述第二发射位置的其中一处所述保持件位于所述多向发射器的下部,在所述第一发射位置和所述第二发射位置中的另一处所述保持件位于所述多向发射器的上部。
  3. 根据权利要求1所述的多向发射器,其特征在于,所述发射器本体可转动地设在所述手持部上,所述手持部为握柄状,所述手持部的水平两侧分别为拇指握持侧和四指握持侧,所述换向驱动器包括设在所述拇指握持侧的翻转按钮,所述翻转按钮触发后,所述发射头本体从所述第一发射位置沿着朝向所述四指握持侧的方向转动到所述第二发射位置。
  4. 根据权利要求1所述的多向发射器,其特征在于,所述发射器本体可转动地设在所述手持部上,
    所述换向驱动器包括:翻转弹性件和翻转按钮,所述翻转弹性件连接在所述手持部和所述发射器本体之间,所述翻转弹性件构造成当所述发射器本体朝向所述第一发射位置转动时蓄能、当所述发射器本体朝向所述第二发射位置转动时释能,所述翻转按钮可活动地设在所述手持部上,且所述翻转按钮在卡锁所述发射器本体和释放所述发射器本体之间可活动。
  5. 根据权利要求4所述的多向发射器,其特征在于,所述发射器本体上设有凸轴,所述凸轴伸入到所述手持部内,所述翻转弹性件外套或者缠绕在所述凸轴上。
  6. 根据权利要求5所述的多向发射器,其特征在于,所述换向驱动器包括:
    配合凸缘,所述配合凸缘设在所述凸轴的外周上;
    缓速盘,所述缓速盘可转动地外套在所述凸轴上;
    缓速弹性件,所述缓速弹性件用于驱动所述配合凸缘与所述缓速盘相贴合。
  7. 根据权利要求6所述的多向发射器,其特征在于,所述配合凸缘和所述缓速盘朝向彼此的面是齿形面。
  8. 根据权利要求1-7中任一项所述的多向发射器,其特征在于,还包括:发射驱动器,所述发射驱动器设在所述发射器本体上,所述发射驱动器构造成在触发时与所述转动体相配合并带动所述转动体转动,且所述发射驱动器在释放时与所述转动体脱离配合。
  9. 根据权利要求8所述的多向发射器,其特征在于,所述发射驱动器包括:
    单向传动器,所述单向传动器包括:驱动端齿轮、被动端齿轮和摆齿,所述驱动端齿轮与所述被动端齿轮间隔开设置,所述驱动端齿轮设在所述发射器本体上,所述被动端齿轮与所述转动体相连,所述驱动端齿轮与所述摆齿始终相啮合,所述摆齿的转轴沿设定轨迹可摆动,所述摆齿在所述设定轨迹的一端时与所述被动端齿轮啮合传动,所述摆齿在所述设定轨迹的另一端时与所述被动端齿轮脱离啮合。
  10. 根据权利要求9所述的多向发射器,其特征在于,所述发射驱动器包括:
    绕绳部和绳体,所述绕绳部与所述驱动端齿轮相连,所述绳体绕在所述绕绳部上且内端连接所述绕绳部;
    蓄能器,所述蓄能器分别与所述驱动端齿轮、所述发射器本体相连,所述蓄能器构造成在所述被动端齿轮与所述摆齿啮合传动的过程中蓄能,所述蓄能器释能时所述被动端齿轮与所述摆齿脱离。
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2024001270A1 (zh) * 2022-06-30 2024-01-04 广州灵动创想文化科技有限公司 一种驱动装置及陀螺加速器

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110711391B (zh) * 2019-10-31 2022-07-29 奥飞娱乐股份有限公司 加速玩具系统
CN113413621B (zh) * 2021-06-30 2022-10-11 奥飞娱乐股份有限公司 一种弹链式发射器玩具
CN117357910A (zh) * 2022-06-30 2024-01-09 广州灵动创想文化科技有限公司 一种陀螺玩具

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3701216A (en) * 1971-12-22 1972-10-31 California R & D Center Wheel apparatus and rack and pinion launcher enabling repeated strokes and having automatic ejector
CN2569859Y (zh) * 2002-09-24 2003-09-03 杨水源 拉绳式陀螺发射器
CN201279388Y (zh) * 2008-04-04 2009-07-29 株式会社多美 陀螺玩具发射装置
CN202410138U (zh) * 2012-01-20 2012-09-05 武汉漫迪动漫文化传播有限公司 一种陀螺玩具发射器
JP2014090952A (ja) * 2012-11-06 2014-05-19 Tokyo Unique:Kk コマ玩具セット
CN208809446U (zh) * 2018-08-17 2019-05-03 广州奥飞文化传播有限公司 多向发射器

Family Cites Families (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6089946A (en) * 1999-02-22 2000-07-18 Yang; Chin-Long Top launcher with positive top engagement
CN2642381Y (zh) * 2003-09-16 2004-09-22 蔡东青 一种玩具飞盘发射器
JP4442865B2 (ja) * 2004-03-04 2010-03-31 徳仁 金井 自動投球装置
US20060121820A1 (en) * 2004-08-25 2006-06-08 Jakks Pacific, Inc. Toy for rotating and aerially launching an object
US8128454B2 (en) * 2005-07-14 2012-03-06 Jakks Pacific, Inc. Toy for rotating and launching an object
US8118637B2 (en) * 2008-08-17 2012-02-21 Mattel Inc. Toy
KR101051847B1 (ko) * 2009-06-22 2011-07-25 최신규 완구용 팽이
KR20110007319U (ko) * 2010-01-15 2011-07-21 가부시키가이샤 다까라토미 팽이 완구 발사 장치
RU125870U1 (ru) * 2012-04-04 2013-03-20 Мартин Саркисович Мартиросян Левушкин волчок
CN105473198B (zh) * 2013-08-22 2017-11-17 崔锺一 陀螺玩具
KR20150120162A (ko) * 2014-04-17 2015-10-27 박노봉 학습용 로켓발사대
CN205832604U (zh) * 2016-06-27 2016-12-28 奥飞娱乐股份有限公司 可向前弹射配件的玩具车
JP6240350B1 (ja) * 2017-02-01 2017-11-29 株式会社タカラトミー コマ発射装置

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3701216A (en) * 1971-12-22 1972-10-31 California R & D Center Wheel apparatus and rack and pinion launcher enabling repeated strokes and having automatic ejector
CN2569859Y (zh) * 2002-09-24 2003-09-03 杨水源 拉绳式陀螺发射器
CN201279388Y (zh) * 2008-04-04 2009-07-29 株式会社多美 陀螺玩具发射装置
CN202410138U (zh) * 2012-01-20 2012-09-05 武汉漫迪动漫文化传播有限公司 一种陀螺玩具发射器
JP2014090952A (ja) * 2012-11-06 2014-05-19 Tokyo Unique:Kk コマ玩具セット
CN208809446U (zh) * 2018-08-17 2019-05-03 广州奥飞文化传播有限公司 多向发射器

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2024001270A1 (zh) * 2022-06-30 2024-01-04 广州灵动创想文化科技有限公司 一种驱动装置及陀螺加速器

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EP3838358A4 (en) 2022-05-25
EP3838358B1 (en) 2023-09-06
HRP20231393T1 (hr) 2024-02-16
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EP3838358A1 (en) 2021-06-23
KR102290196B1 (ko) 2021-08-17

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