WO2019105197A1 - Jouet combiné à liaison par serrage-aspiration - Google Patents

Jouet combiné à liaison par serrage-aspiration Download PDF

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Publication number
WO2019105197A1
WO2019105197A1 PCT/CN2018/114647 CN2018114647W WO2019105197A1 WO 2019105197 A1 WO2019105197 A1 WO 2019105197A1 CN 2018114647 W CN2018114647 W CN 2018114647W WO 2019105197 A1 WO2019105197 A1 WO 2019105197A1
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WO
WIPO (PCT)
Prior art keywords
toy
linkage
unlocking
toys
unitary
Prior art date
Legal status (The legal status 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 status listed.)
Ceased
Application number
PCT/CN2018/114647
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English (en)
Chinese (zh)
Inventor
蔡东青
曹永强
吴晨
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Alpha Group Co Ltd
Guangzhou Alpha Culture Co Ltd
Original Assignee
Alpha Group Co Ltd
Guangzhou Alpha Culture Co Ltd
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 Alpha Group Co Ltd, Guangzhou Alpha Culture Co Ltd filed Critical Alpha Group Co Ltd
Publication of WO2019105197A1 publication Critical patent/WO2019105197A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H17/00Toy vehicles, e.g. with self-drive; ; Cranes, winches or the like; Accessories therefor
    • A63H17/26Details; Accessories
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H33/00Other toys

Definitions

  • the invention relates to the field of toys, in particular to a pinch linkage combined body toy.
  • the existing touch-changing toys are all played by a single toy, and the two toys cannot be combined to play together.
  • the existing combination toy can realize the combination of two toys, the combination is generally: comprising a first toy and a second toy, wherein the first toy is rotatable and the second toy is detachable, and then the first The two components disassembled by the toy are assembled on the first toy to form a combination and a deformation.
  • the combined deformation process is manual operation, and there is no linkage relationship between the two assemblies, and the combination can be operated less, and the fun is interesting. not tall.
  • the present invention aims to solve at least one of the technical problems existing in the prior art.
  • the present invention proposes a pinch-coupled combination toy, and there is a linkage relationship between the pinch-coupled and combined toy, and the combination is good after completion, and the triggering mode is relatively simple.
  • a pinch linkage combined toy includes a plurality of unitary toys, each of which is provided with a clamping member, an unlocking member and an actuating member, and the unlocking member extends to the sucking And the action member is matched with the unlocking member; a docking device and a linkage device are disposed between any two of the single toys, and the docking device is connected between two adjacent single toys So that the two single toys are detachably connected into a combination toy, and the linkage is disposed on the unlocking member so that two adjacent unlocking members can be triggered by linkage; when the composite toy is When the sucking member of any of the unitary toys sucks into the toy piece, the corresponding unlocking member is triggered to be triggered, and at the same time, all the unlocking members on the combined toy are interlocked by the linkage device The interlocking is triggered to cause the action members on the combined toy to perform an action in conjunction.
  • the docking operation between the plurality of single toys is simplified, and multiple singles are realized.
  • all the action pieces can perform the action synchronously, including but not limited to: moving, rotating, deforming, flipping, or a combination thereof, so that the pinch-coupled combination toy produces a play that is superior to the single toy, and is played by the player. Said to be magical and unpredictable, to meet the children's hunting.
  • this method is very simple and very convenient for children to play.
  • each of the unitary toys is provided with only one gripping member, and the interlocking member located in the gripping member is provided with the linkage.
  • all of the clamping members on the combined toy are integrated side by side into a single clamping assembly such that the clamping assembly can collectively suck a plurality of the toy members.
  • each of the unitary toys is provided with a plurality of clamping members, and the interlocking member is disposed on the unlocking member in at least one of the clamping members.
  • all the clamping members on the combined toy corresponding to the linkage device are integrated side by side into one clamping assembly, so that the clamping unit can collectively suck a plurality of the toy members.
  • each of the unitary toys includes a fixing member
  • the acting member includes at least a deforming member and a turning member
  • the deforming member and the turning member are respectively movably mounted on the fixing member
  • the docking device is disposed between the fixing members of two adjacent single toys.
  • the unlocking member includes a first unlocking member and a second unlocking member, the first unlocking member is snap-connected with the flipping member, and the flipping member pivots after the first unlocking member is triggered to The single toy is undocked; the second unlocking member is snap-connected with the deforming member, and the deforming member is unfolded and deformed after the second unlocking member is triggered.
  • the front end of the fixing member is provided with a first triggering position
  • one end of the first unlocking member extends to the first triggering position
  • the deforming member or the inverting member is provided with a second triggering position.
  • One end of the second unlocking member extends to the second triggering position; wherein, when the second triggering bit is disposed on the deforming member, when the second triggering bit is not triggered, the first a second trigger bit is located on a front side of the first trigger bit, after the second trigger bit triggers the second unlocking piece, the deforming member is deformed and exposes the first trigger bit; when the second triggering Positioned on the flip member, after the first trigger bit is triggered, the flip member is flipped such that the second trigger bit triggers the second unlocking member, and the second unlocking member is triggered The deformation member is unfolded and deformed.
  • the first unlocking member includes: a first lock member and a first return spring, the first lock member being movably disposed on the single toy between an unlocked position and a locked position
  • the first return spring is configured to constantly drive the first lock member to move toward the latching position
  • the linkage device is disposed between the first lock members of two adjacent single toy toys, When any one of the plurality of connected single toys moves, the remaining first locks move simultaneously.
  • the linkage device includes a first linkage group, and the first linkage group includes a linkage protrusion and a linkage concave block, and the linkage protrusion and the linkage concave block are disposed in a direction of movement of the first lock member
  • the two ends of the unitary toy are adapted to be engaged with the associated concave block of the adjacent unitary toy.
  • the linkage includes a second linkage set
  • the second linkage set includes a linkage sleeve and a linkage sleeve disposed at opposite ends of the rotating shaft of the flip member, the The linkage sleeve is adapted to be mated with the associated sleeve of the adjacent unitary toy.
  • the second unlocking member includes: a second lock member and a second return spring, the second lock member being movably disposed on the unitary toy between an unlocked position and a latched position
  • the second lock member locks the deformation member on the fixing member when the locking position is in the unlocking position, and the second locking member releases the deformation member to expand and deform the deformation member;
  • a second return spring is used to constantly drive the second lock member to move toward the latch position.
  • each of the unitary toys further includes a delimiting device having at least a first action position and a second action position for the action member to switch execution, the clamping a trigger member is disposed in the piece; the unlocking member includes at least a first unlocking member and a second unlocking member, and the releasing device is configured to interlock the triggering member and the first unlocking member when the first action gear position is The delimiting device is configured to interlock the trigger member and the second unlocking member when in the second action position.
  • FIG. 1 is a schematic view showing the structure of a single toy in a normal state according to an embodiment of the present invention.
  • FIG. 2 is a schematic view showing the structure of a single toy in a deformed state according to an embodiment of the present invention.
  • FIG. 3 is an exploded view of the overall structure of a unitary toy according to an embodiment of the present invention.
  • FIG. 4 is an exploded perspective view of a fixing member of a single toy according to an embodiment of the present invention.
  • Figure 5 is a schematic vertical cross-sectional view of a single toy in a normal state in accordance with an embodiment of the present invention.
  • Figure 6 is a partial structural view of a fixing member of a unitary toy according to an embodiment of the present invention.
  • Fig. 7 is a partial structural exploded view of the fixing member shown in Fig. 6.
  • Figure 8 is a schematic view showing the overall structure of a flip member of a single toy according to an embodiment of the present invention.
  • FIG. 9 is a schematic view showing the structure of a pinch-coupled joint toy in a normal state according to an embodiment of the present invention.
  • Fig. 10 is a structural schematic view showing the pinch-coupled joint toy in a deformed state according to an embodiment of the present invention.
  • Figure 11 is a schematic view showing the structure of a single toy in a normal state according to another embodiment of the present invention.
  • Figure 12 is a schematic view showing the structure of a single toy in a deformed state according to another embodiment of the present invention.
  • Figure 13 is a schematic view showing the structure of a pinch-coupled toy in a normal state according to another embodiment of the present invention.
  • Fig. 14 is a structural schematic view showing the pinch-coupled joint toy in a deformed state according to another embodiment of the present invention.
  • Figure 15 is an exploded view of the single toy shown in Figure 11;
  • Figure 16 is a partial structural schematic view of the single toy shown in Figure 11.
  • Figure 17 is an exploded perspective view of Figure 16.
  • Figure 18 is a partial structural view showing the fixing member of the single toy in a normal state.
  • Figure 19 is a vertical cross-sectional view of the single toy in a normal state.
  • Fig. 20 is a partial structural view showing the fixing member of the pinch-coupled joint toy in a normal state.
  • Figure 21 is a vertical cross-sectional view showing the pinch-coupled toy in a normal state.
  • Figure 22 is a perspective view of the fixing member of the single toy shown in Figure 11 .
  • Figure 23 is a perspective view showing the other direction of the fixing member of the unitary toy shown in Figure 11 .
  • the first unlocking member 400 is the first unlocking member 400
  • a second unlocking member 600 a second locking member 610, a second locking member 611, a second return spring 620,
  • first deforming member 710 a first deforming member 710, a first coin pocket 711, a second deforming member 720, a second coin pocket 721,
  • the rotating column 910, the linkage stud 911, the release lever 920, the movable sleeve 930, and the movable plate 940 are coupled.
  • first and second may include one or more of the features, either explicitly or implicitly.
  • a plurality means two or more unless otherwise stated.
  • connection In the description of the present invention, it should be noted that the terms “installation”, “connected”, and “connected” are to be understood broadly, and may be fixed or detachable, for example, unless otherwise explicitly defined and defined. Connected, or integrally connected; can be mechanical or electrical; can be directly connected, or indirectly connected through an intermediate medium, can be the internal communication of the two components.
  • Connected, or integrally connected can be mechanical or electrical; can be directly connected, or indirectly connected through an intermediate medium, can be the internal communication of the two components.
  • the specific meaning of the above terms in the present invention can be understood in a specific case by those skilled in the art.
  • a pinch-coupled joint toy 10000 includes a plurality of unitary toys 1000, and each of the unitary toys 1000 is provided with a gripping member 200.
  • the unlocking member and the actuating member extend to the gripping member 200, and the actuating member cooperates with the unlocking member.
  • a docking device 300 and a linkage device are disposed between any two single toy toys 1000.
  • the docking device 300 is connected between two adjacent single toy toys 1000 to detachably connect the two single toy 1000s into a combined toy, the linkage device. It is disposed on the unlocking member so that two adjacent unlocking members can be triggered by linkage.
  • the pinch-linking combined toy 10000 can realize the detachable connection between any two single toys 1000 through the docking device 300.
  • the connection mode is very simple, and the toy is easy to dock multiple orders.
  • the single toy 1000 can perform a single movement or a combined movement of various set actions, enriching the playing method of the single toy 1000, and enhancing the single toy 1000.
  • any two unitary toys 1000 are further provided with a linkage device, and the linkage device is configured such that the suction member 200 of any single toy 1000 is sucked to the toy member 2000 to drive the corresponding unlocking member to unlock, the lower joint toy All the unlocking members are triggered by linkage, so that the action members on the combination toy perform the action in conjunction.
  • the combination of the plurality of single toy 1000s can be performed synchronously, so that the pinch-coupled combination toy 10000 produces a play that is better than the single toy 1000, which is magical and unpredictable to the player, and satisfies the small The child's hunting heart.
  • the pinch-coupled toy 10000 is spliced by the docking device 300 between the plurality of single toys 1000, and the linkage between the plurality of single toys 1000 is simplified by the linkage of the linkage device.
  • the deformation or the inversion can be synchronously performed, so that the pinch-coupled combination toy 10000 produces a play that is superior to the single toy 1000, and has a sense of magic and unpredictability for the player to satisfy the child. Hunting hearts.
  • the manner of triggering the action of the single toy 1000 is the suction of the toy piece 2000, such a method is very simple and very convenient for children to play.
  • the shape of the single toy 1000 may be the same or may not be used, thereby making the plurality of single toy 1000s have various forms of phases after docking, and increasing the clamping linkage.
  • the fun of the Toy 10000 may be the same or may not be used, thereby making the plurality of single toy 1000s have various forms of phases after docking, and increasing the clamping linkage. The fun of the Toy 10000.
  • each of the unitary toys 1000 is provided with only one clamping member 200, and the unlocking member located in the clamping member 200 is provided with a linkage device. Therefore, when the absorbing member 200 sucks the toy member 2000, the action member of the single toy 1000 can be actuated.
  • the plurality of single toy 1000s are docked to form a pinch-coupled joint toy 10000, the pinch-linking combined body The toy 10000 can suck and hold a plurality of toy pieces 2000, which increases the number of toys of the 10000 suction clips of the pinch-coupled combination toy 10,000, which improves the interest.
  • all of the gripping members 200 on the pinch-coupled toy 10000 are integrated side by side into a single gripping assembly such that the gripping assembly can collectively suck the plurality of toy members 2000.
  • the gripping assembly can collectively suck the plurality of toy members 2000.
  • each of the unitary toys 1000 is provided with a plurality of gripping members 200, and the unlocking members in the at least one gripping member 200 are provided with linkages.
  • the single toy 1000 has a plurality of clamping members 200, and the unlocking members in the at least one clamping member 200 are provided with linkage devices. That is to say, the unlocking member in the clamping member 200 of the single toy 1000 is not provided with a linkage device, and when a plurality of single toy 1000s are docked as a pinch-coupled combination toy 10000, a single single toy can still be realized. 1000 separate actions. Thereby, the action form of the pinch-coupled joint toy 10000 is enhanced, and the interest is improved.
  • the clips 200 corresponding to the unlocking members of the combination toy provided with the interlocking devices are integrated side by side into a single sucking assembly so that the sucking members can collectively suck the plurality of toy members 2000.
  • the sucking members can collectively suck the plurality of toy members 2000.
  • each of the unitary toys 1000 includes a fixing member 100.
  • the actuating member includes at least a deforming member 700 and a flip member 500.
  • the deforming member 700 and the flip member 500 are respectively movably mounted.
  • the docking device 300 is disposed between the fixtures 100 of adjacent two unitary toys 1000.
  • the pinch-coupled joint toy 10000 has various action modes such as deformation, flipping or deformation+flip, enriching the action mode of the toy and improving the fun of the toy.
  • each of the unitary toys 1000 are provided with docking devices 300.
  • the plurality of unitary toys 1000 can be arranged side by side, and the adjacent two unitary toys 1000 in the same row pass through the docking device 300. Connected.
  • the plurality of unitary toys 1000 can be docked in multiple ways.
  • the docking device 300 is disposed on the top and bottom of the fixture 100 such that the plurality of unitary toys 1000 can be stacked up and down.
  • the docking device 300 is disposed at the front and rear ends of the fixture 100 such that the plurality of unitary toys 1000 can be docked in the front-rear direction.
  • the plurality of single toys 1000 can realize the docking of the up, down, left and right and front and back directions, enriching the docking manner of the single toy 1000, so that the single toy 1000 has more forms after docking, and the single toy 1000 is added. interesting.
  • the docking device 300 includes a docking male terminal 310 and a docking female terminal 320, and each adjacent two single toys 1000 can pass through the male terminal 310 and The mating female terminal 320 is snap-fitted.
  • the docking male terminal 310 on one of the unitary toys 1000 is coupled to the butting female terminal 320 of the other unitary toy 1000 to complete two single toys 1000.
  • the docking method is very simple and convenient for the toy docking single toy 1000.
  • the docking device 300 on each of the unitary toys 1000 may be plural.
  • the docking device 300 may further include other structures.
  • two single toys 1000 are provided with hooks, and the hooking of the two single toys 1000 can also be completed by using the hooks. .
  • the butt male terminal 310 and the butt female terminal 320 are detachably provided on the fixing member 100.
  • the docking device 300 is inadvertently broken, such as broken, etc. during the player's play, and the player can replace the docking device 300, thereby avoiding the single toy 1000 caused by the damage of the docking device 300.
  • the phenomenon that the docking cannot occur can extend the play life of the single toy 1000.
  • the unlocking member includes a first unlocking member 400 and a second unlocking member 600.
  • the first unlocking member 400 is snap-connected with the flipping member 500, and the first unlocking member 400 is triggered.
  • the flip member 500 pivots to cause the single toy 1000 to vacate.
  • the second unlocking member 600 is snap-connected with the deforming member 700, and the second unlocking member 600 triggers the deformation of the deforming member 700.
  • the single toy 1000 can be flipped and deformed first, or can be reversed after being deformed, and can also be flipped, reversed, and deformed in the process of deformation, depending on the first unlocking member 400. And the triggering order of the second unlocking member 600.
  • the front end of the fixing member 100 is provided with a first triggering position 110, one end of the first unlocking member 400 extends to the first triggering position 110, and the second triggering position is provided on the deforming member 700 or the flipping member 500.
  • One end of 600 extends to the second trigger position.
  • the flip member 500 When the second trigger position is set on the flip member 500, after the first trigger bit 110 is triggered, the flip member 500 is flipped so that the second trigger bit triggers the second unlocking member 600, and after the second unlocking member 600 is triggered, the deforming member 700 is unfolded. Deformation.
  • the unitary toy 1000 of the embodiments of the present invention has multiple modes. Specifically, in some embodiments, as shown in FIG. 15, FIG. 19, FIG. 21, the second trigger position of the single toy 1000 is set on the deforming member 700 (the second coin pocket 721 on the deforming member). Since the second trigger bit is disposed on the front side of the first trigger bit 110, that is, the pinch member 200 of the single toy 1000 sucks the toy piece 2000, the toy piece 2000 triggers the second trigger bit to cause the deformed piece 700 to occur. The first deformation, while exposing the first trigger bit 110, at this time, triggering the first trigger bit 110 may cause the first unlocking member 400 to be triggered, thereby causing the single toy 1000 to flip.
  • the second trigger position of the unitary toy 1000 is disposed on the flip member 500 (the flip block 510 on the flip member 500 is formed as a second trigger position), when the single toy 1000
  • the toy piece 2000 triggers the first trigger bit 110 so that the flipper 500 is turned over. Since the second trigger bit is disposed on the flipper 500, the flipper 500 flips when triggered.
  • the unlocking member 600 causes the deforming member 700 to expand and deform.
  • the setting position of the second trigger bit can make the single toy 1000 realize various actions such as first deforming, then flipping or first flipping and deforming, thereby realizing the single toy 1000 having various playing methods, which greatly enriches the game.
  • the play of the single toy 1000 increases the interest of the single toy 1000.
  • the first unlocking member 400 includes a first lock member 410 and a first return spring 420, the first lock member 410 being between the unlocked position and the latched position
  • the first return spring 420 is movably disposed on the single lock member 420 for moving the first lock member 410 toward the lock position
  • the linkage device is disposed on the first lock member 410 of the adjacent two unitary toys 1000.
  • the toy piece 2000 when the gripper 200 sucks the toy piece 2000, the toy piece 2000 will push the first lock piece 410 to move, so that the first lock piece 410 moves to the unlocked position, thereby releasing the flip piece 500, so that the flip piece 500 Pivot to allow the single toy 1000 to vacate.
  • the first unlocking member 400 further includes the first return spring 420, when the gripping member 200 sucks the toy piece 2000, the toy piece 2000 pushes the first lock piece 410 to move, so that the first lock piece 410 moves to The position is unlocked while causing the first return spring 420 to deform and store the elastic potential energy.
  • the first return spring 420 releases the stored elastic potential energy, so that the first lock member 410 returns to the lock position, thereby facilitating the user to lock the action member.
  • the linkage device is disposed between the first lock members 410 of the two unitary toys 1000, the first lock is ensured when any one of the plurality of connected unitary toys 1000 moves.
  • the piece 410 moves at the same time.
  • the plurality of pinch-coupled combination toys 10000 are simultaneously turned over or deformed, thereby ensuring the stability of the pinch-coupled combination toy 10000, and enhancing the interest of the pinch-coupled combination toy 10000.
  • the linkage device includes a first linkage assembly 430.
  • the first linkage assembly 430 includes a linkage protrusion 432 and a linkage concave block 431.
  • the linkage protrusion 432 and the linkage concave block 431 are disposed on the first lock member.
  • the both ends of the 410 in the direction perpendicular to the moving direction thereof, the interlocking projections 432 of the single toy 1000 are adapted to be engaged with the interlocking concave blocks 431 of the adjacent single toy 1000.
  • the linkage concave block 431 of one of the single toy 1000s is inserted into the linkage projection 432 of the other single toy 1000, so that the two monomers are
  • the first locks 410 of the toy 1000 are connected such that the first locks 410 of the two unitary toys 1000 can be triggered simultaneously.
  • the two action members can be unlocked at the same time, so that the two single toy 1000s are simultaneously flipped.
  • the simultaneous flipping of the two single toy 1000s can be completed. Thereby, the difficulty of triggering the flipping of the two single toys 1000 is reduced, and the playing experience of the player is improved.
  • the linkage device includes a second linkage group 520
  • the second linkage group 520 includes a linkage sleeve 521 and a linkage sleeve disposed at both ends of the rotating shaft of the flip member 500.
  • the barrel 522, the interlocking sleeve 521 of the unitary toy 1000 is adapted to be mated with the interlocking sleeve 522 of the adjacent unitary toy 1000.
  • the interlocking sleeve 521 of one of the single toy 1000s is inserted into the linkage sleeve 522 of the other single toy 1000, so that the two monomers are
  • the flip members 500 of the toy 1000 are connected to ensure that when the first lock member 410 releases the flip member 500, the flip members 500 of the two unitary toys 1000 can move synchronously, and since the flip members 500 of the two unitary toys 1000 are connected, The movement of the two single toy 1000 is more stable when flipped.
  • the linkage sleeve 521 is formed in an oblong shape
  • the linkage sleeve 522 is formed in a shape corresponding to the linkage sleeve 521, whereby when the adjacent two single toys 1000 are docked, the two monomers are The relative rotation between the flip members 500 of the toy 1000 cannot occur, further ensuring that the movement of the two single toy 1000s is more stable when flipping.
  • the linkage sleeve 521 and the linkage sleeve 522 can also be formed into other non-circular shapes.
  • the second unlocking member 600 includes a second lock member 610 and a second return spring 620 that is movably movable between an unlocked position and a latched position.
  • the second lock member 610 locks the deforming member 700 on the fixing member 100 in the latching position, and the second lock member 610 releases the deforming member 700 to expand and deform the deforming member 700 in the unlocked position.
  • the second return spring 620 is used to constantly drive the second lock member 610 to move toward the latch position.
  • the second lock member 610 is moved to the unlocked position, so that the deforming member 700 is disengaged from the second lock member 610 to complete the deformation.
  • Such a structure is very simple, and the deformation of the single toy 1000 is very convenient.
  • the second unlocking member 600 further includes a second returning spring 620, when the second unlocking member 600 is triggered, the second locking member 610 is moved to the unlocking position, and the second returning spring 620 is deformed to store the elastic potential energy. After the component that triggers the second unlocking member 600 is removed, the elastic potential energy stored by the second return spring 620 is released to move the second locking member 610 toward the latching position, thereby facilitating the user to restore the deforming member 700.
  • each of the unitary toys 1000 further includes a delimiting device 900 having at least a first action position and an action for switching the action member to perform.
  • the trigger member 800 is correspondingly disposed in the clamping member 200.
  • the unlocking member includes at least a first unlocking member 400 and a second unlocking member 600.
  • the releasing device 900 is configured to interlock the triggering member 800 and the first unlocking member 400, and the second unlocking device is configured to release the limiting device.
  • the 900 is configured as a linkage trigger 800 and a second unlocking member 600.
  • the trigger member 800 is triggered by the toy member 2000.
  • the trigger member 800 when the unlocking device 900 is in the first action position, the trigger member 800 is interlocked with the first unlocking member 400, that is, the toy member. 2000 will trigger the first unlocking member 400 so that the single toy 1000 is turned over, but is not deformed.
  • the triggering member 800 when the unclamping device 900 is located in the second action position, since the triggering member 800 is interlocked with the second unlocking member 600, that is, the toy piece 2000 triggers the second unlocking member 600, so that the single toy 1000 Deformation occurs, but does not flip.
  • the single toy 1000 has a plurality of deforming members 700, and the first unlocking member 400 and the second unlocking member 600 are both used to lock the deforming member 700, so that different ones can be secured.
  • the deformation order of the deforming member 700 on the sports gear unitary toy 1000 is different, greatly enriching the fun of the single toy 1000.
  • the delimiting device 900 includes a linkage rotating column 910 and a delimiting lever 920 .
  • the interlocking rotating column 910 is rotatably disposed on the fixing member 100 , and the disengaging rod 920 is movably fixed.
  • On the member 100 one end of the release lever 920 is rotatably connected with the linkage rotating column 910, the connection point of the release lever 920 and the linkage rotating column 910 is offset from the rotation axis of the interlocking rotating column 910, and the other end of the releasing lever 920 is extended from the fixing member. 100.
  • the second unlocking member 600 is movably coupled to the unlocking lever 920.
  • the moving direction of the second unlocking member 600 is perpendicular to the moving direction of the unlocking lever 920.
  • the interlocking rotating column 910 is rotated to the linkage between the cutting trigger 800 and the first unlocking member 400, the releasing lever 920 drives the second unlocking member 600 to be connected with the triggering member 800, and the releasing device 900 is in the second operating position.
  • the interlocking rotating column 910 is rotated to interlock with the triggering member 800 and the first unlocking member 400 respectively, and the releasing lever 920 drives the second unlocking member 600 to be disengaged from the triggering member 800, and the releasing device 900 is in the first operating position.
  • the function of the limiting device 900 is to adjust the order of the flipping and deformation of the single toy 1000. That is to say, when the unlocking lever 920 drives the second unlocking member 600 to be connected with the triggering member 800, the toy member 2000 The second unlocking member 600 is triggered to deform the unitary toy 1000. When the release lever 920 drives the second unlocking member 600 to disengage from the triggering member 800, the toy member 2000 triggers the first unlocking member 400, so that the single toy 1000 is reversed.
  • the movement of the release lever 920 can be driven by another single toy 1000. Specifically, as shown in FIG. 18, when there is only one single toy 1000, the solution limiting device 900 is in the first action position.
  • the single toy 1000 When the trigger member 800 is triggered, the single toy 1000 will be flipped; 20, when there are two single toys 1000, since one end of the release lever 920 protrudes from the fixing member 100, when the two single toys 1000 are docked, the release lever 920 on one of the single toy 1000s will Interacting with the side wall of the fixing member 100 of the other unitary toy 1000, so that the release lever 920 is moved, so that the interlocking rotating column 910 is rotated, so that the unlocking device 900 is switched from the first operating position to the second action.
  • the trigger 800 When the trigger 800 is triggered, the two single toys 1000 will be deformed at the same time.
  • the present invention realizes that the single toy 1000 and the pinch-coupled joint toy 10000 generate different movements when triggered by the toy piece 2000, which is magical and unpredictable to the player, and satisfies the children's hunting wonders. .
  • the limiting device 900 is in the second action position.
  • the trigger member 800 is triggered, the single toy 1000 will be deformed.
  • the side walls of the fixing member 100 of the body toy 1000 interact to cause the release lever 920 to move, so that the interlocking rotating column 910 is rotated, so that the unlocking device 900 is switched from the second operating position to the first operating position.
  • the trigger member 800 is triggered, the two single toy 1000s will simultaneously flip.
  • the interlocking column 910 is provided with a linkage stud 911
  • the limiting device 900 further includes a movable sleeve 930 and a movable panel 940 movably disposed on the fixing member 100, and a movable sleeve 930 sleeve It is arranged on the linkage stud 911.
  • the movable plate 940 is disposed between the trigger member 800 and the movable sleeve 930.
  • the movable sleeve 930 is separated from at least one of the movable plate 940 and the first unlocking member 400.
  • the releasing device 900 is in the first operating position, the movable sleeve 930 is stopped. Between the movable panel 940 and the first unlocking member 400.
  • the trigger member 800 pushes the movable plate 940, and the movable plate 940 cannot push the movable sleeve 930 or the first unlocking member 400, thereby ensuring the second In the action gear position, the first unlocking member 400 is not triggered. Similarly, in the first action position, it is ensured that the second unlocking member 600 is not triggered.
  • the unitary toy 1000 of the present embodiment has a normal form (as shown in FIG. 1) and a deformed form (as shown in FIG. 2).
  • the unitary toy 1000 of the present embodiment includes a fixing member 100, a clamping member 200 and a docking device 300.
  • the clamping member 200 is disposed on the fixing member 100, and the fixing member 100 is provided with a first At the trigger position 110, the clip 200 can suck the toy piece 2000 to the first trigger position 110.
  • the docking device 300 is disposed on the fixing member 100, and any two of the unitary toys 1000 are detachably connected by the docking device 300.
  • the docking device 300 and the clamping member 200 are located at the left and right sides of the fixing member 100, so that any two of the single toy toys 1000 can be sucked by the clamping member 200 to suck the toy member 2000.
  • the clamping member has 200 magnet blocks, and the toy member 2000 is a toy coin with a core inside.
  • the docking device 300 includes two mating male terminals 310 and two mating female terminals 320.
  • the mating male terminal 310 and the mating female terminal 320 are detachably disposed on the fixing member 100, and two adjacent monomers are provided.
  • the toy 1000 is snap-fitted by the docking male terminal 310 and the docking female terminal 320.
  • the unitary toy 1000 is provided with a first unlocking member 400 and a flip member 500 that cooperates with the first unlocking member 400.
  • the first unlocking member 400 is disposed on the fixing member 100. One end of the first unlocking member 400 extends to the clamping member 200, and the inverting member 500 is disposed at the bottom of the fixing member 100.
  • the first unlocking member 400 is snap-connected with the flip member 500. .
  • the gripping member 200 sucks the toy piece 2000
  • the toy piece 2000 triggers the first unlocking piece 400
  • the first unlocking piece 400 triggers the rear flipping piece 500 to pivot to make the single toy 1000 vacate.
  • the first unlocking member 400 includes a first locking member 410 and a first returning spring 420.
  • the first locking member 410 is movably disposed on the fixing member 100 between the unlocking position and the locking position.
  • the return spring 420 is used to normally drive the first lock member 410 to move toward the lock position.
  • the first lock member 410 is provided with a first lock 411 for locking the flip member 500. One end of the first lock member 410 extends to the suction. 200 pieces.
  • the first locking member 410 is further provided with a first linkage assembly 430.
  • the first linkage assembly 430 includes a linkage protrusion 432 and a linkage concave block 431.
  • the linkage protrusion 432 and the linkage concave block 431 are disposed at the first Both ends of the lock member 410 in a direction perpendicular to the direction of movement thereof.
  • the linkage protrusion 432 of the unitary toy 1000 is adapted to be engaged with the linkage concave block 431 of the adjacent unitary toy 1000, and the linkage concave block 431 of the unitary toy 1000 is adapted to be associated with the adjacent unitary toy 1000. 432 card connection.
  • a second linkage group 520 is further disposed on the rotating shaft of the flip member 500.
  • the second linkage group 520 includes a linkage sleeve 521 and a linkage sleeve 522 disposed at two ends of the rotating shaft of the flip member 500, and a single toy.
  • the linkage sleeve 521 of the 1000 is adapted to be mated with the linkage sleeve 522 of the other unitary toy 1000.
  • the unitary toy 1000 is further provided with a second unlocking member 600 and a deforming member 700 matched with the second unlocking member 600.
  • the second unlocking member 600 is disposed on the fixing member 100.
  • the deforming member 700 is disposed on the upper portion of the fixing member 100, and the second unlocking member 600 is snap-connected with the deforming member 700.
  • the second unlocking member 600 includes a second lock member 610 and a second return spring 620.
  • the second lock member 610 is movably disposed on the fixing member 100 between the unlocked position and the latched position, and the second The return spring 620 is used to normally drive the second lock member 610 to move toward the lock position, and the second lock member 610 is provided with a second lock 611 for locking the deformation member 700.
  • the flip member 500 is provided to be pushed after being turned over.
  • the flip block 510 is moved by the second lock member 610 toward the unlock position, and the flip block 510 is formed as a second trigger position provided on the flip member 500.
  • the shape of the deforming member 700 of the present embodiment is formed into a tyrannosaurus shape.
  • the deforming member 700 may be formed into a shape of a shark, a bear, or the like.
  • the docking device 300 of the two toy deformation vehicles of the present embodiment can be coupled to obtain a pinch linkage combined toy 10000.
  • the pinch linkage combined toy 10000 also has two forms, a normal shape (as shown in FIG. 9). And deformation patterns (as shown in Figure 10).
  • the play of the single toy 1000 of this embodiment is as follows:
  • the single toy 1000 of the present embodiment is a toy vehicle having a coin-clip reverse deformation function.
  • the deformation member 700 is located above the fixing member 100.
  • the clamping member 200 is clamped to a toy member 2000
  • the toy member 2000 pushes the first
  • the first lock member 410 of the unlocking member 400 is moved backward, thereby releasing the snapping of the flip member 500, so that the flip member 500 is reversed backward, so that the single toy 1000 is emptied and turned over, and then the flipping block 510 on the flip member 500 is again
  • the second unlocking member 600 is triggered to move the second locking member 610 of the second unlocking member 600 forward, thereby releasing the clamping member 700 and deforming the deforming member 700.
  • the single toy 1000 is deformed.
  • the single toy 1000 is first adjusted back to the normal form, that is, the car form. Then, the docking devices 300 of the two single toy toys 1000 are docked and combined.
  • the two unitary toys 1000 may be toy vehicles of the same deforming member 700 shape, or may be toy vehicles with different deforming members 700.
  • the combined assembly can also have a play function, and can push the pinch-coupled toy 10000 to clamp the toy piece 2000. Since the combined first trigger position 110 is wider, and the clamping member 200 cooperates, The clamping and engaging toy 10000 can simultaneously clamp two or more toy pieces 2000, and simultaneously trigger the first unlocking piece 400 to unlock the toy piece 2000, since the first unlocking component 400 is provided with the first linkage component.
  • the flipping member 500 is provided with the second linkage group 520, so that the two flipping members 500 are simultaneously turned over, so that the pinch-coupled joint toy 10000 is turned over smoothly, and the deformation can be triggered at the same time after the flipping. It should be noted that, as long as the first lock member 410 of one of the unitary toys 1000 is pushed backward by the toy member 2000, that is, the pinch-coupled joint toy 10000 is clamped to the toy member 2000, The two first lock members 410 of the assembly are simultaneously moved back to release the flipping of the flip member 500.
  • the unitary toy 1000 of this embodiment has two forms, a normal form (as shown in FIG. 11) and a deformed form (as shown in FIG. 12).
  • the pinch linkage combined toy 10000 of the present embodiment also has two forms, a normal form (as shown in FIG. 13) and a deformed form (as shown in FIG. 14).
  • the unitary toy 10001000 of the present embodiment includes a fixing member 100100 and a deforming member 700700.
  • the fixing member 100100 is provided with a first triggering position 110
  • the deforming member 700 includes a first deforming member 710 and a second deforming member 720.
  • the first deforming member 710 is provided with a first coin pocket 711
  • the second deforming member 720 is provided with a second coin pocket 721
  • the second coin slot 721 is formed as a second triggering position.
  • the first coin slot 711 is located on the front side of the second coin slot 721
  • the second coin slot 721 is located on the front side of the first trigger bit 110.
  • the first deforming member 710 is retractably disposed on the second deforming member 720.
  • the first deforming member 710 is provided with a latching member
  • the second deforming member 720 is provided with a card hole.
  • the latching member is matched with the engaging member. In the hole, the first deforming member 710 cannot be unfolded relative to the second deforming member 720.
  • each of the unitary toys 1000 are provided with a docking device 300.
  • Two unitary toys 1000 are arranged side by side, and the two single toys 1000 are connected by the docking device 300, and docked.
  • the device 300 includes a docking male terminal 310 and a docking female terminal 320.
  • the two single toys 1000 are snap-connected by the butting male terminal 310 and the mating female terminal 320.
  • the fixing member 100 is provided with a first unlocking member 400 and a flipping member 500 that cooperates with the first unlocking member 400.
  • the first unlocking member 400 triggers the rear flipping member 500 to pivot to make a single unit.
  • Toy 1000 is vacant.
  • One end of the first unlocking member 400 extends to the first triggering position 110.
  • the first unlocking member 400 includes a first lock member 410 and a first return spring 420.
  • the first lock member 410 is movably disposed on the unitary toy 1000 between the unlocked position and the latched position, and the first return spring 420 is used for
  • the first lock member 410 is often driven to move toward the lock position, and the first linkage assembly 430 is disposed between the first lock members 410 of the adjacent two unitary toys 1000, and any one of the two connected single toys 1000 is first.
  • the first linkage assembly 430 includes a linkage protrusion 432 and a linkage concave block 431 disposed on the first lock member 410.
  • the linkage protrusion 432 and the linkage concave block 431 are disposed in a direction perpendicular to the moving direction of the first lock member 410. Both ends.
  • the interlocking projections 432 of one of the single toy 1000s are mated with the interlocking concave blocks 431 of the other single toy 1000.
  • the fixing member 100 is provided with a second unlocking member 600, and the second unlocking member 600 is snap-connected with the second deforming member 720.
  • the second unlocking member 600 includes a second lock member 610 and a second return spring 620.
  • the second lock member 610 is movably disposed on the unitary toy 1000 between the unlocked position and the latched position, and the second lock member 610 is in the latched position.
  • the locking member 610 locks the second deforming member 720 on the fixing member 100.
  • the second locking member 610 releases the second deforming member 720 to expand and deform the second deforming member 720, and the second returning spring 620 is used for the constant driving.
  • the two locks 610 are moved toward the latch position.
  • the fixing member 100 further includes a delimiting device 900 and a triggering member 800.
  • the delimiting device 900 has a switchable first action position and a second action position, and the second action position is in the second action position.
  • the delimiting device 900 is configured as a linkage trigger 800 and a second unlocking member 600.
  • the delimiting device 900 is configured as a linkage trigger 800 and a first unlocking member 400.
  • the delimiting device 900 includes a linkage rotating column 910, a delimiting lever 920, a movable sleeve 930, and a movable panel 940.
  • the interlocking rotating column 910 is rotatably disposed on the fixing member 100, and the releasing rod 920 is movably disposed on the fixing member 100.
  • One end of the releasing rod 920 is rotatably connected with the interlocking rotating column 910, and the limiting rod 920 and the linked rotating column are disengaged.
  • the connecting point of the 910 is offset from the rotation axis of the interlocking rotating column 910, and the other end of the releasing lever 920 protrudes from the fixing member 100, and the second unlocking member 600 is movably coupled to the unlocking lever 920, and the moving direction of the second unlocking member 600 It is perpendicular to the moving direction of the release lever 920.
  • the interlocking column 910 is provided with a linkage protrusion 911, and the movable sleeve 930 is sleeved on the linkage protrusion 911.
  • the movable plate 940 is disposed between the trigger member 800 and the movable sleeve 930.
  • the limiting device 900 is in the deformed gear position, the movable sleeve 930 is separated from the movable plate 940 and the first unlocking member 400 is disengaged.
  • the releasing device 900 is in the reverse gear position, the movable sleeve 930 is stopped at the movable plate 940 and the first Between the unlocking members 400.
  • the unitary toy 1000 of the present embodiment is a toy vehicle having a coin-clip reverse deformation function.
  • the first deformation member 710 is located above the fixing member 100.
  • the unlocking member and the sucking member 200 in the first deforming member 710 are moved forward by the toy member 2000, so that the engaging member on the first deforming member 710 is disengaged from the engaging hole of the second deforming member 720, so that The first deformation member 710 is unfolded and deformed. Since the second coin pocket 721 is located at the rear side of the first coin pocket 711, the second coin pocket 721 is exposed when the first deforming member 710 is deformed.
  • the toy piece 2000 When the clamping member 200 sucks the toy piece 2000 to the second coin-operated port 721, the toy piece 2000 first hits the triggering member 800, as shown in FIG. 18, since the triggering member 800 is displaced from the second unlocking member 600 at this time, At this time, the trigger member 800 moves backward while not pushing the second lock member 610 of the second unlocking member 600 to move toward the unlocked position, that is, in the case of only one single toy 1000, when the sucking member 200 is sucked When the toy piece 2000 reaches the second coin pocket 721, the second deforming member 720 cannot be deformed. As shown in FIG.
  • the trigger member 800 is stopped against the movable panel 940, and the movable sleeve 930 is stopped between the movable panel 940 and the first unlocking member 400. That is to say, at this time, the backward movement of the triggering member 800 pushes the movable plate 940 to move backward, so that the movable plate 940 pushes the movable sleeve 930 to move backward, so that the first unlocking member 400 moves backward, that is, the first lock member 410. Moving toward the unlocked position causes the first lock 410 to release the flipper 500, causing the single toy 1000 to flip.
  • the pinch-linking combined toy 10000 of the present embodiment is formed by docking two identical single toys 1000 through the docking device 300.
  • the first deforming member 710 of each of the unitary toys 1000 is located above the fixing member 100, when the sucking member 200 When the toy piece 2000 is sucked into the first coin holder 711, the unlocking member and the sucking member 200 in the first deforming member 710 are moved forward by the toy member 2000, so that the engaging member on the first deforming member 710 It is disengaged from the hole of the second deforming member 720, so that the first deforming member 710 is unfolded and deformed.
  • the second coin pocket 721 is located at the rear side of the first coin pocket 711, the second coin pocket 721 is exposed when the first deforming member 710 is deformed.
  • the gripper 200 sucks the toy piece 2000 to the second coin pocket 721, the toy piece 2000 first hits the trigger piece 800.
  • one end of the release lever 920 of each of the unitary toys 1000 protrudes from the fixing member 100. Therefore, when docked, the unlocking lever 920 of one single toy 1000 may be due to the other single toy 1000 fixing member 100. The obstruction of the side walls is retracted into the fixture 100. As shown in FIG. 20 to FIG.
  • the movement of the release lever 920 drives the interlocking rotating column 910 and the movable sleeve 930 connected to the interlocking rotating column 910 to rotate, so that the movable sleeve 930 is stopped from the movable plate 940 and the first unlocking member.
  • the position between 400 is rotated to a position disengaged from the movable panel 940 and the first unlocking member 400.
  • the movable sleeve 930 cannot push the first unlocking member 400 to move backward. That is to say, at this time, each of the unitary toys 1000 cannot be turned over. Further, as shown in FIG.
  • the deblocking lever 920 of one of the unitary toys 1000 is obstructed by the side wall of the other unitary toy 1000 fixing member 100.
  • the second unlocking member 600 also moves and moves to the position of the alignment trigger 800.
  • the absorbing member 200 sucks the toy piece 2000 to the second crochet opening 721
  • the toy piece 2000 first hits the triggering member 800
  • the triggering member 800 pushes the second unlocking piece 600 to move backward, so that the second deformation
  • the member 720 is disengaged from the second lock member 610 and rotated counterclockwise. That is, when the absorbing member 200 sucks the toy piece 2000 to the second grommets 721, the second deforming member 720 is deformed.
  • the first trigger bit 110 is located at the rear side of the second coin pocket 721, so when the second deforming member 720 is deformed, the first triggering position 110 is exposed, and when the gripping member 200 sucks the toy piece 2000 Upon reaching the first trigger position 110, the toy piece 2000 triggers the first unlocking member 400 such that the first lock member 410 moves rearwardly, thereby releasing the flip member 500 such that the two unitary toys 1000 are simultaneously flipped.
  • the clip member 200 is a magnet block
  • the toy piece 2000 is a toy coin having a core inside.
  • the player can push the single toy 1000 forward, sucking the toy piece 2000 in the forward direction, so that the first deforming member 710 of the single toy 1000 is deformed first. Then, under the action of inertia, the single toy 1000 will continue to move forward, thereby sucking the second toy piece 2000, and the whole single toy 1000 is turned over.
  • the inertia wheel can be provided in the single toy 1000, so that the long distance of the single toy 1000 can be extended forward, so that the single toy 1000 can be sucked in one implementation.
  • the toy piece 2000 is used twice, so that the first deforming member 710 is unfolded and the single toy 1000 is turned over, or the toy toy can be sucked three times after the first pushing, so that the first deforming member 710 and the second deforming member 720 are 720. Deformation occurs in turn and the toy is flipped.
  • the unitary toy 1000 of the embodiment 1 and the embodiment 2 has operability after being combined, such as realizing the play of the sucking toy piece 2000, flipping, deformation, etc., and is more playable and interesting than the existing combination toy. More sexual.
  • the single toy 1000 itself is also operable, and when combined, can produce a play that is better than the single toy 1000, which is magical and unpredictable to the player, and satisfies the children's hunch.

Landscapes

  • Toys (AREA)

Abstract

L'invention concerne un jouet combiné à liaison par serrage-aspiration (10000), comprenant une pluralité de jouets individuels (1000) ; un élément de serrage-aspiration (200), un élément de déverrouillage et un élément d'action sont disposés sur chacun des jouets individuels (1000) ; l'élément de déverrouillage s'étend jusqu'à la position de l'élément de serrage-aspiration (200), et l'élément d'action est mis en correspondance avec l'élément de déverrouillage. Un dispositif d'assemblage par aboutement (300) et un dispositif de liaison sont disposés entre deux jouets individuels quelconques (1000) ; le dispositif d'assemblage par aboutement (300) est relié entre deux jouets individuels adjacents (1000) de sorte que les deux jouets individuels (1000) peuvent être reliés amovibles en un jouet combiné (10000) ; le dispositif de liaison est disposé sur l'élément de déverrouillage de sorte que deux éléments de déverrouillage adjacents peuvent être déclenchés de manière liée. Le jouet combiné à liaison par serrage-aspiration (10000) permet à une pluralité de jouets individuels (1000) de se transformer ou de se retourner simultanément après leur combinaison, de sorte que le jouet combiné (10000) peut procurer un plaisir de jeu supérieur à celui du jouet individuel (1000).
PCT/CN2018/114647 2017-11-30 2018-11-08 Jouet combiné à liaison par serrage-aspiration Ceased WO2019105197A1 (fr)

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CN201711243052.1 2017-11-30
CN201711243052.1A CN109847383B (zh) 2017-11-30 2017-11-30 夹吸联动合体玩具

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WO2019105197A1 true WO2019105197A1 (fr) 2019-06-06

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