CN210251180U - Counterattack top - Google Patents

Counterattack top Download PDF

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Publication number
CN210251180U
CN210251180U CN201920837311.1U CN201920837311U CN210251180U CN 210251180 U CN210251180 U CN 210251180U CN 201920837311 U CN201920837311 U CN 201920837311U CN 210251180 U CN210251180 U CN 210251180U
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China
Prior art keywords
gyroscope
movable
needle
piece
shell
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CN201920837311.1U
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Chinese (zh)
Inventor
凌赞
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Alpha Group Co Ltd
Guangzhou Alpha Culture Co Ltd
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Alpha Group Co Ltd
Guangzhou Alpha Culture Co Ltd
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Priority to CN201920837311.1U priority Critical patent/CN210251180U/en
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Publication of CN210251180U publication Critical patent/CN210251180U/en
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Abstract

The utility model discloses a counterattack top, include: an upper top cover; the gyroscope base body is provided with a gyroscope point which can be supported on the ground to rotate at the bottom; the sliding piece is arranged on the top base in a telescopic mode; the attacking piece is detachably arranged on the gyroscope base body, and when the top gyroscope cover strikes the top of the gyroscope base body, the sliding piece is triggered to extend downwards, and the attacking piece is ejected out. According to the utility model discloses a counterattack top can be when the top of top lid hitting top base member, goes up top lid cooperation promptly and triggers the slider at top of top base member for the slider stretches out downwards, and attack the piece and outwards pop out simultaneously, can transfer the participation of player, makes the player have the experience of surprise more and feels, promotes the interest when playing.

Description

Counterattack top
Technical Field
The utility model belongs to the technical field of the toy technique and specifically relates to a counterattack top is related to.
Background
Generally, in the gyro toy in the related art, the movement track of the gyro is changed by a mode that the gyro is touched with a touch switch or a gyro tip is transformed by centrifugal force, so that the participation degree of players is insufficient, the experience feeling is not strong, and the playing interest is insufficient.
SUMMERY OF THE UTILITY MODEL
The utility model discloses aim at solving one of the technical problem that exists among the prior art at least.
Therefore, the utility model provides a counterattack top, this counterattack top's experience is felt amazing, the interest of playing is strong.
According to the utility model discloses a counterattack top, include: an upper top cover; the gyroscope base body is provided with a gyroscope point which can be supported on the ground to rotate at the bottom; the sliding piece is arranged on the top base in a telescopic mode; the attacking piece is detachably arranged on the gyroscope base body, and when the top gyroscope cover strikes the top of the gyroscope base body, the sliding piece is triggered to extend downwards, and the attacking piece is ejected out.
According to the utility model discloses a counterattack top can be when the top of top lid hitting top base member, goes up top lid cooperation promptly and triggers the slider at top of top base member for the slider stretches out downwards, and attack the piece and outwards pop out simultaneously, can transfer the participation of player, makes the player have the experience of surprise more and feels, promotes the interest when playing.
According to an embodiment of the utility model, the top base member includes: the gyroscope comprises a gyroscope shell, wherein a movable cavity is arranged in the gyroscope shell, and a telescopic hole is formed in the bottom of the movable cavity; the gyroscope needle is arranged in the movable cavity, and the part of the gyroscope needle extending out of the telescopic hole forms the gyroscope tip.
According to an optional example of the present invention, the peg-top needle comprises a fixed peg-top needle and a movable peg-top needle, said movable peg-top needle being housed outside said fixed peg-top needle and being movable up and down with respect to said fixed peg-top needle.
According to another optional example of the present invention, the top base further includes a locking device for driving the movable peg-top needle to extend and retract up and down, and a trigger for triggering the locking device is disposed at the top of the top base.
Further, the top case includes: the gyroscope needle, the locking device and the trigger piece are all arranged on the top shell; the collet, the collet is movably established top shell below works as the collet with the time limit is matched with the top shell goes out the activity chamber, the telescopic hole is established on the collet.
Furthermore, the attacking piece can be separately arranged on the gyroscope shell, the attacking piece is clamped between the top shell and the bottom shell when the bottom shell is matched with the top shell, and the attacking piece is separated from the gyroscope shell under the action of centrifugal force when the bottom shell is separated from the top shell.
Further, the attacking pieces comprise a plurality of attacking pieces which are arranged at intervals along the circumferential direction of the outer periphery of the bottom support, a plurality of mounting grooves are formed in the outer side of the bottom support, and each attacking piece is matched in the corresponding mounting groove.
According to the utility model discloses optional example, attack a orientation one side of collet is equipped with the trip, be equipped with the through-hole in the mounting groove, keeping away from at the through-hole edge one side of attacking the piece is equipped with joint portion, the trip can pass the through-hole with joint portion joint cooperation.
According to a further optional example of the present invention, the movable peg-top needle is configured as the slider, the movable peg-top needle is movable between a top position and a lowermost position, the base is connected to the movable peg-top needle, and the base can move up and down synchronously with the movable peg-top needle.
According to yet another optional example of the present invention, the locking device comprises: a first elastic member for driving the movable peg-top to move towards one of the uppermost position and the lowermost position; a transfer member, which is positionable in the other of the uppermost position and the lowermost position when the transfer member is engaged with the movable peg-pin; wherein the conversion element is disengaged from the movable peg-top needle when triggered, or the conversion element is engaged with the movable peg-top needle when triggered.
According to yet another optional example of the present invention, the conversion member comprises: a retaining lock slidably disposed within the movable cavity, the gyroscope body further comprising: a second elastic element for driving the retaining lock to slide towards the direction of the axis of the movable peg-pin, the retaining lock sliding away from the direction of the axis of the movable peg-pin when triggered.
According to yet another optional example of the present invention, the conversion member comprises: the reset piece is rotatably arranged in the movable cavity, and when the reset piece is triggered to rotate, one end of the reset piece is in contact with the movable gyro needle to push the movable gyro needle to move upwards.
Additional aspects and advantages of the invention will be set forth in part in the description which follows and, in part, will be obvious from the description, or may be learned by practice of the invention.
Drawings
The above and/or additional aspects and advantages of the present invention will become apparent and readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings of which:
FIG. 1 is an exploded view of one state of a reaction top according to an embodiment of the present invention;
FIG. 2 is a cross-sectional view of one state of a reaction top according to an embodiment of the present invention;
FIG. 3 is an exploded view of another state of a reaction top according to an embodiment of the present invention;
FIG. 4 is a cross-sectional view of another state of a reaction top according to an embodiment of the present invention;
FIG. 5 is a schematic view of a perspective of a reaction top according to an embodiment of the present invention;
fig. 6 is a schematic view of another perspective of a reaction top according to an embodiment of the present invention.
Reference numerals:
the counter-attack of the top 100 is performed,
an upper top cover 10, a first magnetic attraction piece 20,
the gyroscope base body 30, the gyroscope tip 31, the gyroscope shell body 32, the movable cavity 32a, the top shell 321, the inner bottom wall 3211, the bottom support 322, the gyroscope needle 33, the fixed gyroscope needle 331, the movable gyroscope needle 332, the limiting part 3321, the annular groove 3322, the locking device 34, the first elastic element 341, the switching element 342, the retaining lock 3421, the resetting element 3422, the triggering element 35, the second elastic element 36, the triggering button 37, the resetting button 38, the hook 39 and the guide surface 391,
a second magnetic attraction piece 40, an attack piece 50, a mounting groove 50a, a through hole 50b, a clamping hook 51, a clamping part 52,
a gland 60.
Detailed Description
Reference will now be made in detail to embodiments of the present invention, examples of which are illustrated in the accompanying drawings, wherein like reference numerals refer to the same or similar elements or elements having the same or similar function throughout. The embodiments described below with reference to the drawings are exemplary only for the purpose of explaining the present invention, and should not be construed as limiting the present invention.
A reaction top 100 according to an embodiment of the present invention is described below with reference to fig. 1 to 6.
As shown in fig. 1 and 2, the reaction top 100 according to the embodiment of the present invention includes an upper top cover 10, a top base 30, a slider, and an attacking piece 50.
Specifically, the top base 30 has a top tip 31 at the bottom, the top tip 31 can be supported on the ground and rotate, and the sliding member is telescopically arranged on the top base 30, i.e. the sliding member can extend downwards or retract upwards relative to the top base 30.
Further, when the top lid 10 hits the top of the top base 30, i.e. the top lid 10 fits on the top of the top base 30, the top lid 10 can trigger the slider to extend downward, and the attacking element 50 is ejected outward away from the bottom support 322, as shown in fig. 1 and 2 when the attacking element 50 is ejected.
According to the utility model discloses counterattack top 100 can be when top lid 10 hits the top of hitting top base member 30, and top lid 10 cooperation triggers the slider at top of top base member 30 promptly for when the slider stretches out downwards, attack piece 50 and break away from collet 322 and outwards pop out, can transfer the participation of player, can change top base member 30's movement track, makes the player have the experience of more surprise and feels, promotes the interest when playing. Particularly, when the player plays in battle, the attacking piece 50 is triggered to pop up by overlapping the top cover 10, so that the attacking piece 50 attacks (bumps) the top of the other side, the effect of interfering the normal rotation of the top of the other side is achieved, and the winning rate of the top of the player is improved.
According to an embodiment of the present invention, the gyro base 30 includes a gyro housing 32 and a gyro needle 33, a movable cavity 32a is provided in the gyro housing 32, a telescopic hole is provided at the bottom of the movable cavity 32a, the gyro needle 33 is provided on the top housing 321, a part of the gyro needle 33 extending from the telescopic hole constitutes the gyro tip 31, as shown in fig. 2, the lower end of the gyro needle 33 extends from the telescopic hole, i.e. the lower end of the gyro needle 33 is the gyro tip 31, when the top cover 10 is matched with the gyro base 30, the gyro tip 31 can support the gyro base 30 and the top cover 10 on the ground and rotate; when the top cover 10 and the top base 30 are separated, the top tip 31 supports the top base 30 on the ground and rotates, so that the interest of the user during playing can be improved.
Further, the top case 32 includes a top case 321 and a bottom case 322, the bottom case 322 is movably disposed below the top case 321, and the retractable hole is disposed on the bottom case 322, as shown in fig. 2, the bottom case 322 can slide up and down relative to the top case 321, and when the bottom case 322 is engaged with the top case 321, a movable cavity 32a is defined. It can be understood that, the peg-top 33 and the top shell 321 are connected, and the peg-top 33 is inserted in the telescopic hole, the bottom support 322 can slide up and down relative to the top shell 321, the bottom support 322 can be separated from the top shell 321 when sliding down, and the bottom support 322 can be matched with the top shell 321 when sliding up, so that the top base 30 forms an integral structure, and good sensory experience is brought to players.
According to an alternative example of the present invention, the peg-top needle 33 comprises a fixed peg-top needle 331 and a movable peg-top needle 332, the movable peg-top needle 332 is sheathed outside the fixed peg-top needle 331, and the movable gyro needle 332 can move up and down relative to the fixed gyro needle 331, as shown in fig. 2, the upper end of the fixed gyro needle 331 is fixed on the top shell 321, the movable gyro needle 332 is fixed on the bottom support 322, the movable gyro needle 332 and the bottom support 322 can keep synchronous sliding, when the shoe 322 slides up and down with respect to the top shell 321, the movable peg-pin 332 also slides with respect to the fixed peg-pin 331, when the bottom support 322 is separated from the top shell 321 and slides downwards, the movable gyro needle 332 also slides downwards relative to the fixed gyro needle 331, the lower end of the fixed gyro needle 331 is located in the movable gyro needle 332, the gyro needle 33 is switched from the initial state to the attack state, it can be understood that in the initial state, the gyro matrix 30 is rotated by the lower end of the fixed gyro needle 331, and is in a defense state; when the bottom support 322 slides upwards and is matched with the top shell 321, the movable gyro needle 332 also slides upwards relative to the fixed gyro needle 331, the lower end of the fixed gyro needle 331 extends out of the movable gyro needle 332, and the gyro needle 33 returns to the initial state from the attack state.
It should be further noted that, when the shoe 322 and the top shell 321 are mated, the portion of the fixed gyro needle 331 extending out of the movable gyro needle 332 is the gyro tip 31.
From this, fix fixed top needle 331 on top shell 321, activity top needle 332 and collet 322 are fixed continuous, cooperation relation through activity top needle 332 and fixed top needle 331, and then realize the cooperation of collet 322 and top shell 321 and break away from, slide down for fixed top needle 331 when activity top needle 332, make the lower extreme of fixed top needle 331 be located activity top needle 332, collet 322 and top shell 321 are in the state of breaking away from each other this moment, top needle 33 is in the attack state this moment, when activity top needle 332 upwards slides, make the lower extreme of fixed top needle 331 stretch out outside the activity top needle 332, collet 322 and top shell 321 are in the state of mutually supporting this moment, top needle 33 is replied to initial state by the attack state, the player has better sense organ experience, interest when can increasing playing.
According to another optional example of the present invention, the gyro body 30 further includes a locking device 34, and the locking device 34 is used for driving the movable gyro needle 332 to extend and retract up and down, that is, the locking device 34 can drive the movable gyro needle 332 to extend downward and also can drive the movable gyro needle 332 to retract upward, and the locking device 34 provides a driving force for the up and down extension of the movable gyro needle 332. The top of the top base 30 is further provided with a trigger 35, the trigger 35 is used for triggering the locking device 34 to act, the locking device 34 can be triggered to perform corresponding actions by acting on the trigger 35, as shown in fig. 2, the movable top needle 332 can be released or locked by pressing the trigger 35 downwards, and the operation is simple and easy to operate during playing, and is suitable for children to play. Further, the locking device 34 and the trigger 35 are disposed on the top case 321.
According to another optional example of the utility model, activity top needle 332 is constructed into the slider, and collet 322 is connected on activity top needle 332, and collet 322 can be along with activity top needle 332 activity in step from top to bottom, and activity top needle 332 is mobile between the top and the bottom, and collet 322 is also mobile between the top and the bottom promptly, can drive collet 322 through activity top needle 332 and move about between the top and the bottom, and the change of top base member 30 is obvious, can bring surprise experience.
According to another optional example of the present invention, be equipped with interior diapire 3211 on top shell 321, this interior diapire 3211 is used for restricting the downward roll-off of movable peg-top needle 332, interior diapire 3211 is located movable chamber 32a, be equipped with through-hole 50b on interior diapire 3211, this through-hole 50b is coaxial with the telescopic hole, and movable peg-top needle 332 is suitable for passing this through-hole 50b, movable peg-top needle 332 passes through-hole 50b downwardly extending, be equipped with spacing portion 3321 at the top of movable peg-top needle 332, when movable peg-top needle 332 moves down to the lowest position, on diapire 3211 including through spacing portion 3321 joint, in order to restrict movable peg-top needle 332 in the lowest position, avoid movable peg-top needle 332 to continue the downward roll-off.
According to the utility model discloses a still another optional example, be equipped with annular groove 3322 in the below of top shell 321, the periphery gomphosis of collet 322 is in this annular groove 3322 when collet 322 cooperates with top shell 321, makes collet 322 and top shell 321 form an overall structure when collet 322 and top shell 321 cooperate, and the outward appearance is more integrated, can drive collet 322 and break away from top shell 321 when activity top needle 332 moves down, and amazing when promoting the player to play feels and experiences.
According to the utility model discloses an embodiment, attack the detachable of 50 and establish on top shell 32, attack 50 card when collet 322 and top shell 321 cooperate between top shell 321 and collet 322, as shown in FIG. 2, attack 50 can block in annular groove 3322, go up top lid 10 and hit when hitting top base member 30, the slider drives collet 322 lapse for collet 322 breaks away from the cooperation with top shell 321, because top base member 30 is because under the centrifugal force effect of rotatory production, attack 50 can be thrown away from and break away from top shell 32, bring surprised experience for the player.
In addition, the fighting playing can be carried out, when the upper gyroscope cover 10 is superposed on the gyroscope base body 30, the attacking piece 50 is triggered to pop out, so that the attacking piece 50 attacks (impacts) the gyroscope of the opposite side, the normal rotation of the gyroscope of the opposite side is interfered, the probability of winning in the fighting is improved, and meanwhile, the interest of the playing is enhanced.
Further, the attacking pieces 50 comprise a plurality of attacking pieces 50, the attacking pieces 50 are arranged along the periphery of the bottom support 322 in a circumferential spaced mode, a plurality of mounting grooves 50a are formed in the outer side of the bottom support 322, as shown in fig. 5, two mounting grooves 50a are formed in the outer side of the bottom support 322, two attacking pieces 50 are mounted on the bottom support 322, each attacking piece 50 is respectively matched with the corresponding mounting groove 50a, and the shapes of the mounting grooves 50a are matched with those of the attacking pieces 50, so that when the top cover 10 is overlapped on the top base body 30, the attacking pieces 50 can be triggered to pop out at the same time, the top of the other side is attacked (impacted) in multiple directions, the probability of hitting the top of the other side is increased, the probability of winning is greatly improved, and in addition, the more stimulating experience can be brought to players due to the outward popping of the attacking pieces 50.
Optionally, one side of the attacking element 50 facing the bottom bracket 322 (the inner side of the attacking element 50 shown in fig. 2) is provided with a hook 51, a through hole 50b is formed in the mounting groove 50a, the through hole 50b is suitable for the hook 51 to pass through, one side of the edge of the through hole 50b far away from the attacking element 50 is provided with a clamping portion 52, the hook 51 can be in clamping fit with the clamping portion 52 after passing through the through hole 50b, so that the attacking element 50 is matched in the mounting groove 50a, further, the edge of the attacking element 50 is clamped in the annular groove 3322, when the bottom bracket 322 and the top shell 321 are matched and connected, the attacking element 50 is reliably connected on the gyroscope base body 30, and simultaneously, the attacking element 50 can be ejected outwards under the action of the rotating centrifugal force after triggering.
Further, the attacking piece 50 is formed into an arc-shaped structure matched with the outer side wall of the bottom support 322, when the attacking piece 50 is matched on the bottom support 322, the attacking piece 50 and the outer side wall of the bottom support 322 form a smooth transition outer peripheral side wall, and the attacking piece 50 has better appearance experience.
Optionally, the first magnetic attraction piece 20 is disposed on the top lid 10, the second magnetic attraction piece 40 is disposed on the top base 30, further, the second magnetic attraction piece 40 may be located at the top of the top base 30, or the second magnetic attraction piece 40 may also be located at a position close to the top, and the first magnetic attraction piece 20 and the second magnetic attraction piece 40 may interact with each other to enable the top lid 10 to be fitted on the top base 30.
From this, first magnetism is inhaled piece 20 and second magnetism and is inhaled the cooperation of principle utilization magnetism, inhales through first magnetism between piece 20 and the second magnetism and inhale the piece 40 between upper top lid 10 and the top base member 30 like this and inhale the effect and cooperate continuously, and cooperation connected mode is simple, utilizes magnetism to inhale the effect two and can automatic cooperation for upper top lid 10 can superpose easily on top base member 30, has strengthened the interest of toy.
According to a further alternative example of the present invention, the locking device 34 includes a first elastic member 341 and a converting member 342, as shown in fig. 2, a cavity is defined in the movable peg-top 332, the fixed peg-top 331 can extend out of the movable peg-top 332 through the cavity, the first elastic member 341 is sleeved outside the fixed peg-top 331, the first elastic member 341 is located in the cavity in the movable peg-top 332, the upper end of the first elastic member 341 abuts against the top shell 321, and the lower end of the first elastic member 341 abuts against the inner bottom wall 3211 of the cavity. The first elastic member 341 is configured to drive the movable gyro needle 332 to move towards one of the uppermost position and the lowermost position, for example, after the switching member 342 releases the movable gyro needle 332, the first elastic member 341 may drive the movable gyro needle 332 to move towards the lowermost position, so as to provide power for the downward movement of the movable gyro needle 332.
When the conversion member 342 is engaged with the movable peg-top 332, the movable peg-top 332 may be located at another position of the top position and the bottom position, for example, when the conversion member 342 is engaged with the movable peg-top 332, the movable peg-top 332 is locked at the top position, wherein when the conversion member 342 is triggered, the conversion member 342 may be disengaged from the movable peg-top 332 to release the movable peg-top 332, or when the conversion member 342 is triggered, the conversion member 342 may be engaged with the movable peg-top 332 to reset the movable peg-top 332, so that the release and the reset of the movable peg-top 332 may be realized by triggering the conversion member 342, which not only improves the operational feeling of the player, but also enhances the interest during playing, and the operation is simple and feasible, and is suitable for children to play.
Further, the switching member 342 includes a holding lock 3421, the holding lock 3421 is slidably disposed in the movable cavity 32a, the gyro base 30 further includes a second elastic member 36, the second elastic member 36 is connected between the holding lock 3421 and the top shell 321 in a radial direction, the second elastic member 36 is used for driving the holding lock 3421 to slide toward an axial direction of the movable gyro needle 332 (in the radial direction and toward the center as shown in fig. 2) to lock the movable gyro needle 332, when the holding lock 3421 is triggered, the holding lock 3421 slides toward the axial direction away from the movable gyro needle 332 (in the radial direction and toward the center as shown in fig. 2) to release the movable gyro needle 332, and the movable gyro needle 332 is locked or released by sliding the holding lock 3421 in the radial direction to switch between the initial state and the attack state.
Alternatively, a hook portion 39 is provided on the holding lock 3421, and the hook portion 39 may hook the lower surface of the stopper portion 3321 of the movable peg-top 332, and at this time, the holding lock 3421 locks the movable peg-top 332 so that the movable peg-top 332 is held at the uppermost position. Further, the lower surface of the hook 39 is formed as a guide surface 391 inclined inward and upward, where the inward direction is toward the axis of the movable peg 332, so that when the restoring member 3422 pushes the movable peg 332 to slide upward, the movable peg 332 can slide into the holding lock 3421 through the guide surface 391, thereby re-locking the movable peg 332 at the uppermost position.
Further, the holding lock 3421 includes a first latch and a second latch, the first latch and the second latch face each other and are disposed around the periphery of the peg-top 33, specifically, the second elastic member 36 is connected between the first latch and the second latch, the elastic action of the second elastic member 36 can drive the first latch and the second latch to slide toward the axis of the movable peg-top 332, so as to lock the movable peg-top 332 at the top position, and the first latch and the second latch can be clamped on the lower surface of the limiting portion 3321 of the movable peg-top 332; when triggered simultaneously, the first latch and the second latch respectively slide in the axial direction away from the movable peg-top needle 332 to overcome the elastic force of the second elastic member 36, so as to release the movable peg-top needle 332, and the movable peg-top needle 332 slides towards the lowest position after being released.
According to still another alternative example of the present invention, the switching element 342 includes a resetting element 3422, the resetting element 3422 is rotatably disposed in the movable cavity 32a, when the resetting element 3422 is triggered to rotate, one end of the resetting element 3422 contacts with the movable peg 332 to push the movable peg 332 to move upward, the inner end of the resetting element 3422 shown in fig. 3 and 4 can contact with the movable peg 332, and the outer end of the resetting element 3422 can contact with the triggering element 35, the so-called inner end refers to the end of the resetting element 3422 facing the axis of the movable peg 332, the outer end refers to the end of the resetting element 3422 away from the axis of the movable peg 332, and the resetting element 3422 can be triggered to reset the movable peg 332, so that the movable peg 332 can be re-locked at the retaining lock 3421.
As shown in fig. 4, two opposite reset members 3422 are disposed in the movable cavity 32a, the two reset members 3422 are disposed around the axis of the movable peg 332, when the reset members 3422 are not triggered, both reset members 3422 contact the inner bottom wall 3211, after the holding lock 3421 releases the movable peg 332, the movable peg 332 moves downward to the lowest position, at this time, the reset members 3422 contact the movable peg 332, when the reset members 3422 are triggered, the reset members 3422 rotate in the movable cavity 32a, the inner ends of the two reset members 3422 respectively abut against the lower surface of the position-limiting portion 3321 of the movable peg 332, and at the same time, the movable peg 332 is pushed to slide upward, so that the holding lock 3421 re-catches the position-limiting portion 3321 of the movable peg 332.
Optionally, the triggering member 35 includes a triggering button 37 and a reset button 38, the triggering button 37 is disposed above the holding lock 3421, in the initial state, the movable gyro needle 332 is locked at the uppermost position by the holding lock 3421, and when the upper gyro cover 10 and the gyro base 30 are mated, the triggering button 37 is pressed by the upper gyro cover 10 to move downward, so as to push the holding lock 3421 to move in a direction away from the axis of the movable gyro needle 332, thereby releasing the movable gyro needle 332 to slide toward the lowermost position.
The two reset keys 38 are arranged on the gyro base body 30, the two reset keys 38 and the two reset pieces 3422 are respectively and correspondingly arranged, the reset keys 38 can be directly pressed by hands, the reset pieces 3422 are triggered to rotate around the rotating shaft in the movable cavity 32a, and then the movable gyro needle 332 is pushed to reset upwards, so that the movable gyro needle 332 can be restored to an initial state from an attack state, and the bottom support 322 can be re-matched with the top shell 321.
Optionally, the reaction top 100 further comprises a pressing cover 60, the pressing cover 60 is arranged at the bottom of the bottom support 322, the pressing cover 60 is fixed at the bottom of the bottom support 322, the pressing cover 60 and the bottom support 322 can be integrally formed, and the pressing cover 60 and the bottom support 322 jointly define a telescopic hole, so that the lower surface of the top base body 30 is more flat and smooth, and the appearance experience of the toy is improved.
From this, through the magnetic attraction effect that utilizes first magnetic attraction piece 20 and second magnetic attraction piece 40, make upper peg-top lid 10 can cooperate on top base member 30, thus, also be in high-speed rotation state when upper peg-top lid 10 is launched, when upper peg-top lid 10 coincide is on top base member 30, can accelerate top base member 30, simultaneously because activity top needle 332 and collet 322 stretch out downwards, can also change top base member 30's movement track, attack piece 50 outwards to pop out under the effect of rotatory centrifugal force, switch to attack the state by initial state, attack the top of opposite side, disturb the normal rotation of opposite side top, experience the enjoyment of playing to the battle, bring multiple amazing experience for the player, promote this interest of counterattack top 100.
The operation of the reaction top 100 according to the embodiment of the present invention will be described in detail with reference to fig. 1 to 6.
The reaction top 100 comprises an upper top cover 10, a top base 30, a slider and an attacking piece 50, wherein the top base 30 comprises a top shell 321, a bottom support 322 and a top pin 33. In the initial state of the gyro body 30, the movable gyro needle 332 is locked at the uppermost position by the first and second latches of the holding lock 3421, and the bottom base 322 and the attacking element 50 are fitted into the annular groove 3322 of the top case 321, and the attacking element 50 is fitted into the mounting groove 50a, and the bottom base 322 and the top case 321 form a complete gyro housing 32.
The upper gyroscope cover 10 is provided with a first magnetic attraction piece 20, the gyroscope base body 30 is provided with a second magnetic attraction piece 40, when the upper gyroscope cover 10 is matched on the gyroscope base body 30 through the magnetic attraction effect, the upper gyroscope cover 10 presses the trigger button 37 downwards, the trigger button 37 moves downwards and simultaneously pushes the first latch and the second latch to slide towards the direction far away from the axis of the movable gyroscope needle 332, so that the movable gyroscope needle 332 is released, the movable gyroscope needle 332 slides downwards, the bottom support 322 is separated from the top shell 321 and synchronously slides downwards along with the movable gyroscope needle 332 until the limiting part 3321 of the movable gyroscope needle 332 is stopped against the inner bottom wall 3211 of the top shell 321, the movable gyroscope needle 332 and the bottom support 322 are both positioned at the lowest position, the gyroscope tip 31 of the fixed gyroscope needle 331 is positioned in the movable gyroscope needle 332, the attacking piece 50 is also separated from the annular groove 3322 when the bottom support 322 slides downwards, the attacking piece 50 is thrown outwards under the action of the centrifugal force of the gyroscope rotation, that is, the attacking piece 50 is popped out outwards, so that the attacking piece can attack (bump) the opposite side gyro to interfere the normal rotation of the opposite side gyro, and the playing interest is improved.
The reset button 38 is pressed downward by hand, the outer end of the reset member 3422 is pushed downward, so that the reset member 3422 rotates around the rotating shaft, the inner end of the reset member 3422 contacts with the movable peg-top needle 332 (abuts against the lower surface of the position-limiting portion 3321 of the movable peg-top needle 332), and the inner end of the reset member 3422 tilts the movable peg-top needle 332 upward, so that the movable peg-top needle 332 is locked at the uppermost position again.
In the description of the present invention, it is to be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "vertical", "horizontal", "top", "bottom", "inner", "outer", "axial", "radial", "circumferential", and the like, indicate orientations or positional relationships based on those shown in the drawings, and are used merely for convenience of description and to simplify the description, but do not indicate or imply that the device or element so referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore should not be construed as limiting the present invention.
Other constructions and operations of the reaction top 100 according to embodiments of the present invention are known to those of ordinary skill in the art and will not be described in detail herein.
In the description herein, references to the description of the term "one embodiment," "some embodiments," "an illustrative embodiment," "an example," "a specific example," or "some examples" or the like mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the terms used above do not necessarily refer to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
While embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that: various changes, modifications, substitutions and alterations can be made to the embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the claims and their equivalents.

Claims (12)

1. An impact top, comprising:
an upper top cover;
the gyroscope base body is provided with a gyroscope point which can be supported on the ground to rotate at the bottom;
the sliding piece is arranged on the top base in a telescopic mode;
the attacking piece is detachably arranged on the gyroscope base body, and when the top gyroscope cover strikes the top of the gyroscope base body, the sliding piece is triggered to extend downwards, and the attacking piece is ejected out.
2. The reaction top of claim 1 wherein the top base comprises:
the gyroscope comprises a gyroscope shell, wherein a movable cavity is arranged in the gyroscope shell, and a telescopic hole is formed in the bottom of the movable cavity;
the gyroscope needle is arranged in the movable cavity, and the part of the gyroscope needle extending out of the telescopic hole forms the gyroscope tip.
3. The reaction gyroscope of claim 2, wherein the gyroscope needle comprises a fixed gyroscope needle and a movable gyroscope needle, the movable gyroscope needle is sleeved outside the fixed gyroscope needle and can move up and down relative to the fixed gyroscope needle.
4. The reaction top according to claim 3, wherein the top base further comprises a locking device for driving the movable top needle to extend and retract up and down, and a trigger piece for triggering the locking device to act is arranged at the top of the top base.
5. The reaction top of claim 4 wherein the top housing comprises:
the gyroscope needle, the locking device and the trigger piece are all arranged on the top shell;
the collet, the collet is movably established top shell below works as the collet with the time limit is matched with the top shell goes out the activity chamber, the telescopic hole is established on the collet.
6. The reaction top of claim 5 wherein the attacking element is detachably disposed on the top shell, the attacking element being captured between the top shell and the bottom shell when the bottom shell is mated with the top shell, the attacking element being disengaged from the top shell by centrifugal force when the bottom shell is unmated from the top shell.
7. The reaction top of claim 6, wherein the attacking member comprises a plurality of pieces arranged at intervals along a circumference of the bottom base, the outer side of the bottom base is provided with a plurality of mounting grooves, and each of the attacking members is respectively fitted in the corresponding mounting groove.
8. The reaction top of claim 7, wherein a hook is provided on a side of the attacking element facing the bottom support, a through hole is provided in the mounting groove, a clamping portion is provided on a side of an edge of the through hole away from the attacking element, and the hook can pass through the through hole to be in clamping fit with the clamping portion.
9. The reaction gyroscope of claim 5, wherein the movable gyroscope pin is configured as the slider, the movable gyroscope pin is movable between an uppermost position and a lowermost position, the shoe is connected to the movable gyroscope pin, and the shoe is movable up and down synchronously with the movable gyroscope pin.
10. An impact top according to claim 4, wherein said locking means comprises:
a first elastic member for driving the movable peg-top to move towards one of the uppermost position and the lowermost position;
a transfer member, which is positionable in the other of the uppermost position and the lowermost position when the transfer member is engaged with the movable peg-pin; wherein the content of the first and second substances,
the conversion piece is disengaged from the movable gyro needle when triggered, or the conversion piece is matched with the movable gyro needle when triggered.
11. The reaction top of claim 10 wherein the conversion member comprises: a retaining lock slidably disposed within the movable cavity, the gyroscope body further comprising: a second elastic element for driving the retaining lock to slide towards the direction of the axis of the movable peg-pin, the retaining lock sliding away from the direction of the axis of the movable peg-pin when triggered.
12. The reaction top of claim 10 wherein the conversion member comprises: the reset piece is rotatably arranged in the movable cavity, and when the reset piece is triggered to rotate, one end of the reset piece is in contact with the movable gyro needle to push the movable gyro needle to move upwards.
CN201920837311.1U 2019-05-31 2019-05-31 Counterattack top Active CN210251180U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920837311.1U CN210251180U (en) 2019-05-31 2019-05-31 Counterattack top

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920837311.1U CN210251180U (en) 2019-05-31 2019-05-31 Counterattack top

Publications (1)

Publication Number Publication Date
CN210251180U true CN210251180U (en) 2020-04-07

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920837311.1U Active CN210251180U (en) 2019-05-31 2019-05-31 Counterattack top

Country Status (1)

Country Link
CN (1) CN210251180U (en)

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