WO2019128490A1 - 翻转组合玩具 - Google Patents

翻转组合玩具 Download PDF

Info

Publication number
WO2019128490A1
WO2019128490A1 PCT/CN2018/114652 CN2018114652W WO2019128490A1 WO 2019128490 A1 WO2019128490 A1 WO 2019128490A1 CN 2018114652 W CN2018114652 W CN 2018114652W WO 2019128490 A1 WO2019128490 A1 WO 2019128490A1
Authority
WO
WIPO (PCT)
Prior art keywords
toy body
toy
flip
locking
trigger
Prior art date
Application number
PCT/CN2018/114652
Other languages
English (en)
French (fr)
Inventor
蔡东青
曹永强
吴晨
Original Assignee
奥飞娱乐股份有限公司
广州奥飞文化传播有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 奥飞娱乐股份有限公司, 广州奥飞文化传播有限公司 filed Critical 奥飞娱乐股份有限公司
Publication of WO2019128490A1 publication Critical patent/WO2019128490A1/zh

Links

Images

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
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H33/00Other toys
    • A63H33/003Convertible toys, e.g. robots convertible into rockets or vehicles convertible into planes

Definitions

  • the invention relates to the field of toys, and in particular to a flip combination toy.
  • Toys have become one of the indispensable toys for children in their childhood.
  • the existing toys have more and more shapes, styles and functions.
  • reversible toys are loved by many children, but the reversible toys in related art. Only the flip function can be realized, the gameplay is single, and the fun is not strong.
  • the present invention aims to solve at least one of the technical problems in the related art to some extent. To this end, the present invention provides a flip combination toy, which has a novel and interesting gameplay.
  • the flip combination toy includes: a first toy body, the first toy body is provided with a first triggering member, a plugging position and a function member, and the first triggering member is movably disposed on the
  • the first toy body is fixed on the first toy body
  • the functional component is matched with the first triggering member, and the functional component can trigger the second toy body to perform a corresponding a second toy body
  • the second toy body is provided with a second triggering member and a connector
  • the second triggering member is movably disposed on the second toy body
  • the connector member is rotatable Positioned on the second toy body; when the connector is mated with the plug position, the second toy body and the first toy body are integrally connected and in a side-by-side state;
  • the second trigger member is triggered, the second toy body is inverted with respect to the connector to the upper end of the first toy body in a superimposed state; when the first trigger member is triggered,
  • the second toy body after the second toy body is flipped onto the first toy body, the second toy body can be triggered to perform the corresponding function, the action feeling is strong, the play method is novel, and the fun is strong.
  • the flip combination toy according to an embodiment of the present invention may further have the following additional technical features:
  • the functional component is a deformation triggering member
  • the second toy body is correspondingly provided with a second unfolding component, and when the first triggering component is triggered, the deformation triggering component is driven The second deployment component is deployed.
  • the functional component is a projectile
  • the projectile is disposed on the first toy body or in the insertion position, and when the first trigger is triggered, the ejection The piece is driven to bounce the second toy body away from the first toy body.
  • the projecting member includes a locking member and an elastic member
  • the locking member is movably disposed on the first toy body, and one end of the locking member cooperates with the first triggering member.
  • the other end of the locking member extends into the insertion position, and the elastic member is disposed in the insertion position.
  • the elasticity is elastically deformed to accumulate energy, and the connector and the locking member cooperate to lock the connector in the insertion position, and when the first trigger member is triggered, the lock a connector is actuated to move to disengage the connector and the latch, the connector being unlocked and driven by the resilient member to cause the second toy body to spring away from the first Toy body.
  • the locking member is rotatably disposed on the first toy body, the first triggering member has a sloped portion, and the inclined surface portion abuts the locking member, at the first When the trigger member is triggered, the ramp portion drives the lock member to rotate to separate the lock member from the connector member.
  • the connector comprises: a pivoting portion, the pivoting portion is pivotally connected with the second toy body; a torsion spring, the torsion spring is disposed at the pivoting portion and Between the second toy bodies; the insertion portion, the insertion portion is disposed at one side of the pivoting portion, the insertion portion is adapted to be mated with the insertion position; the locking portion The locking portion is disposed on the other side of the pivoting portion, and the second triggering member is provided with a locking portion that cooperates with the locking portion, when the locking portion cooperates with the locking portion, The second toy body is locked in the juxtaposed state and the torsion spring is elastically deformed to store energy, and when the second trigger member is triggered, the locking portion is separated from the locking portion, the torsion spring The release energy drives the second toy body to flip to the superimposed state.
  • the second toy body is provided with a second inverting member
  • the second inverting member is pivotally connected to the second toy body, and the second inverting member is located in the juxtaposed state a position facing the support surface, and the second flip member is engageable with the second trigger member to cause the second flip member to be in a locked state, when the second trigger member is triggered, the first The two flip members are separated from the second trigger member to rotate the second flip member and drive the second toy body to vacate to the superimposed state.
  • the connector and the second toy body are detachably connected by a socket
  • the socket is pivotally disposed on the second toy body
  • the insertion One of the socket and the connector is provided with a plug post and the other is provided with a plug slot adapted to the plug post
  • the plug and the socket are One is provided with an identification hook and the other is provided with an identification buckle.
  • the first toy body is provided with a first inverting member, the first inverting member is pivotally connected to the first toy body, and the first inverting member is located at a position facing the supporting surface
  • the first flip member is engageable with the first trigger member to cause the first flip member to be in a locked state, and when the first trigger member is triggered, the first trigger member and the first trigger member A flipper is separated to cause the first flipper to be unlocked and rotated to drive the first toy body to vacate.
  • the first toy body is provided with a delay device, and the delay device cooperates with the first flip member to delay the flipping of the first flip member after the first trigger member is triggered.
  • the delay device includes: a damping gear rotatably disposed on the first toy body; a linkage plate, the linkage plate being movably movable between the first position and the second position Provided on the first toy body, the linkage plate is provided with a rack portion, the damping gear and the rack portion are engaged; a locking member, the locking member is movably disposed on the first a toy body and associated with the linkage plate, the locking member can cooperate with the first inverting member to lock the first inverting member; delay the elastic member, the two ends of the retarding elastic member respectively Abutting the first toy body and the linkage plate, the linkage plate being driven by the retarding elastic member from the first position toward the second position after the first trigger member is triggered Moving, when the linkage plate is in the first position, the locking member is engaged with the first inverting member and the retarding elastic member is elastically deformed to store energy, when the linkage plate is located in the second In position, the locking member is separated from the first flip member to unlock
  • the first toy body includes a first fixing member and a first unfolding assembly, and a front end of the first fixing member is formed with a top open receiving position to accommodate the second playing in the superimposed state
  • the insertion position includes two and are respectively disposed on two sides of the receiving position
  • the first deployment component is retractably disposed at a rear end of the first fixing component
  • the first flipping member Provided at a bottom of the first fixing member, the first triggering member is movably disposed on a front side of the first fixing member, and when the first flipping member is turned over, the first unfolding component is triggered to be unfolded .
  • the second toy body includes a third flip member and a third trigger member
  • the third trigger member is movably disposed on the second toy body
  • the third flip member and the third flip member The second toy body is pivotally connected, and the third flip member is engageable with the third trigger member to cause the third flip member to be in a locked state, after the second toy body is ejected, the third The flip member is located at a position facing the support surface, and the third flip member is separated from the third trigger member after the second toy body is ejected and the third trigger member is triggered to make the third The flip member is unlocked and rotated to drive the second toy body to vacate.
  • the second toy body further includes a second unfolding component, the second unfolding component being retractably disposed on the second toy body, and the third flipping member triggering the first Second, expand the component deployment.
  • FIG. 1 is a schematic structural view of a flip combination toy in a side-by-side state according to an embodiment of the present invention
  • FIG. 2 is a schematic structural view of a flip combination toy in a superimposed state according to an embodiment of the present invention
  • FIG. 3 is a schematic structural view of a flipping combination toy when the second toy body is slid away from the first toy body according to an embodiment of the present invention
  • FIG. 4 is a schematic structural view of a flip combination toy when the second toy body is detached from the first toy body, and both the first deployment component and the second deployment component are unfolded according to an embodiment of the present invention
  • FIG. 5 is a schematic structural view of a first toy body according to an embodiment of the present invention.
  • Figure 6 is a partial structural view of a first toy body in accordance with an embodiment of the present invention.
  • Figure 7 is an exploded view of the flip combination toy in a side-by-side state in accordance with an embodiment of the present invention
  • FIG. 8 is a schematic structural view of a first toy body in which a first trigger member is triggered, according to an embodiment of the present invention
  • Figure 9 is a structural schematic view of another angle of the structure shown in Figure 8.
  • Figure 10 is a partial structural view of the structure shown in Figure 9;
  • FIG. 11 is a partial structural view of a first toy body according to an embodiment of the present invention, wherein the first deployment component is not deployed;
  • FIG. 12 is a schematic structural view of a first toy body in which a first deployment component is deployed, in accordance with an embodiment of the present invention
  • Figure 13 is a structural schematic view of another angle of the structure shown in Figure 12;
  • Figure 14 is a schematic structural view of a second toy body according to an embodiment of the present invention.
  • Figure 15 is a partial structural view of the structure shown in Figure 14;
  • Figure 16 is a partial structural view of the structure shown in Figure 15;
  • Figure 17 is an exploded view of a second toy body in accordance with an embodiment of the present invention.
  • Figure 18 is a partial structural view of a second toy body in accordance with an embodiment of the present invention.
  • 19 is a partial structural view of a second toy body in which a second trigger member is not triggered, according to an embodiment of the present invention.
  • Figure 20 is a schematic illustration of another angle of the structure shown in Figure 19;
  • 21 is a schematic structural view of a second triggering member according to an embodiment of the present invention.
  • a first fixing member 11 a first frame 111; a receiving position 1111; a first clamping position 1112; a locking member 1113;
  • Functional member 14 locking member 141; elastic member 142;
  • a first flip member 15 a first flip member 15; a first latching position 151; a second latching position 152; a dial 153;
  • Delay device 16 damping gear 161;
  • Linkage plate 162 rack portion 1621; extension rod 1622;
  • First unfolding assembly 19 styling head 191; locking button hole 1911; pushing foot 1912;
  • a second fixing member 21 a second frame 211; a second clamping position 2111; a third clamping position 2112; a pivoting shaft 2113;
  • a second triggering member 22 a first moving member 221;
  • 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; may be mechanically connected or electrically connected; may be directly connected, or may be indirectly connected through an intermediate medium, may be internal communication of two elements or an interaction relationship of two elements. For those skilled in the art, the specific meanings of the above terms in the present invention can be understood on a case-by-case basis.
  • a flip combination toy 100 includes a first toy body 10 and a second toy body 20.
  • the first toy body 10 is provided with a first triggering member 12, a plugging position 13 and a functional component 14.
  • the first triggering member 12 is movably disposed on the first toy body 10, and the plugging position 13 is fixed.
  • the functional component 14 cooperates with the first triggering member 12, and the functional component 14 can trigger the second toy body 20 to perform a corresponding function, and the second toy body 20
  • a second triggering member 22 is provided, and the second triggering member 22 is movably disposed on the second toy body 20, and the connector member 24 is rotatably disposed on the second playing device. Specific 20 on.
  • the second toy body 20 When the connector 24 is mated with the insertion position 13, the second toy body 20 is integrally connected with the first toy body 10 and is in a side-by-side state (as shown in FIG. 1). When the second triggering member 22 is triggered, the second toy body 20 is flipped relative to the connector member 24 to the upper end of the first toy body 10 in a superimposed state (as shown in FIG. 2). When the first triggering member 12 is triggered, the function member 14 is caused to trigger the second toy body 20 to perform a corresponding function.
  • the connector 24 of the second toy body 20 is first inserted into the insertion position 13 of the first toy body 10, so that the second toy body 20 and the first toy body 10 are The connection is integrated (as shown in FIG. 1 ), and then the second triggering member 22 is triggered, and the second toy body 20 is inverted relative to the connector 24 to the upper end of the first toy body 10 in a superimposed state ( FIG. 2 ). The first trigger 12 is then triggered again, and the second toy body 20 is triggered to perform the corresponding function.
  • the second toy body 20 after the second toy body 20 is flipped over the first toy body 10, the second toy body 20 can be triggered to perform the corresponding function, and the action feeling is strong, and the gameplay is novel and interesting. Strong.
  • the functional component 14 is a deformation triggering member (not shown), and the second toy body 20 is correspondingly provided with a second deployment component 28, and the first triggering component 12 is Upon triggering, the deformation trigger is actuated to cause the second deployment assembly 28 to deploy. That is, after the first toy body 20 is flipped onto the first toy body 10, when the first trigger member 12 is triggered, the second deployment assembly 28 on the second toy body 20 is deployed, and the second toy body 20 is in the first toy body.
  • the deformation occurs on the 10, and the toy 100 assumes another form. That is to say, after the second toy body 20 performs the turning operation, the deformation action can also be performed on the first toy body 10, and the toy 100 is highly interesting.
  • the functional member 14 is an ejection member, and the ejection member is disposed on the first toy body 10 or in the insertion position 13.
  • the projecting member is driven to bounce the second toy body 20 away from the first toy body 10 (as shown in FIG. 3). That is, after the second toy body 20 performs the flipping operation, the ejection action can also be performed, and the toy 100 is highly interesting.
  • the ejection member includes a locking member 141 and an elastic member 142, and the locking member 141 is movably disposed on the first toy body 10, the lock One end of the connector 141 (the lower end as shown in FIGS. 6-8) is engaged with the first triggering member 12, and the other end of the locking member 141 (the upper end as shown in FIGS.
  • the elastic member 142 is disposed in the insertion position 13 , and the connector is inserted and mated with the insertion position 13 when the connector 24 is inserted into the insertion position 13 24 and the locking member 141 cooperate to lock the connector 24 in the insertion position 13 and the elastic member 142 is elastically deformed to store energy, when the first trigger member 12 is triggered, The locking member 141 is driven to move to separate the connector 24 from the locking member 141, the connector 24 is unlocked and the second member is driven by the elastic member 142 After the toy body 20 is bounced off the first toy body 10, that is, after the connector 24 is unlocked, the elastic member 142 is released to drive the second toy body 20 to eject.
  • the insertion member 24 is formed with a locking groove 2431 , and one end of the locking member 141 extending into the insertion position 13 (the upper end as shown in FIG. 7 ) is engaged with the locking groove 2431 .
  • the locking member 141 is locked in the insertion position 13, and when the first triggering member 12 triggers the movement of the locking member 141, the locking member 141 is separated from the locking groove 2431, and the connector 24 is unlocked.
  • the connector member 24 is formed with a stopper portion 2432.
  • the insertion portion 13 is provided with an annular stopper 132.
  • the elastic member 142 is located in the insertion position 13 and has one end thereof (such as The rear end shown in FIG. 7 abuts against the stopper 132.
  • the end of the connector 24 provided with the locking groove 2431 passes through the elastic member.
  • the stopper 132 cooperate with the locking member 141, and the stopper portion 2432 of the connector member 24 abuts against the other end of the elastic member 142 (the front end as shown in FIG. 7), and the elastic member 142 is compressed. Energy storage.
  • the stopping portion 2432 is a rib formed on the outer peripheral wall of the connector 24, and the stopping portion 2432 may include a plurality of intervals distributed along the circumferential direction of the connector 24, as shown in 7, for example,
  • the outer peripheral wall of the connector 24 is provided with two oppositely disposed ribs.
  • the locking member 141 is rotatably disposed on the first toy body 10, and the first triggering member 12 has a slope portion 1213.
  • the inclined surface portion 1213 abuts the locking member 141.
  • the inclined surface portion 1213 drives the locking member 141 to rotate to cause the locking member 141 and the The connectors 24 are separated.
  • the first trigger member 12 pushes the lock member 141 to rotate, thereby unlocking the connector member 24, the unlocking mechanism is simple, and the unlocking process is stable and reliable.
  • the connector 24 includes a pivot portion 241, a torsion spring 242, a plug portion 243, and a locking portion 244, the pivot portion
  • the 241 is pivotally connected to the second toy body 20
  • the torsion spring 242 is disposed between the pivoting portion 241 and the second toy body 20
  • the insertion portion 243 is disposed at the pivoting portion 241 .
  • One side (the front side shown in FIG. 14 - FIG. 20 )
  • the insertion portion 243 is adapted to be mated with the insertion position 13
  • the locking portion 244 is disposed at the pivot portion 241 .
  • On the other side the rear side shown in FIG. 14 to FIG.
  • the second triggering member 22 is provided with a locking portion 2221 that cooperates with the locking portion 244, when the locking portion 244 is When the locking portion 2221 is engaged, the second toy body 20 is locked in the juxtaposed state and the torsion spring 242 is elastically deformed to store energy. When the second triggering member 22 is triggered, the locking portion is locked.
  • the second portion of the second toy body 20 is simple.
  • the locking portion 2221 is formed as a bump structure
  • the locking portion 244 is formed as a hook structure.
  • the second toy body 20 is provided with a second inverting member 25, and the second inverting member 25 and the second toy body 20
  • the second inverting member 25 In the parallel state, the second inverting member 25 is located at a position facing the supporting surface, and the second inverting member 25 is engageable with the second triggering member 22 to make the second inverting member 25 is in a locked state, when the second triggering member 22 is triggered, the second inverting member 25 is separated from the second triggering member 22 to rotate the second inverting member 25 and drive the second The toy body 20 is vacated to the superimposed state.
  • the second flip member 25 is provided with a latching portion 251
  • the second triggering member 22 is provided with a joint portion 2231 that cooperates with the latching portion 251, and the latching portion
  • the engaging portion 2231 cooperates with the engaging portion 2231 to lock the second inverting member 25, and when the second triggering member 22 is triggered, the engaging portion 251 and the engaging portion 2231 are separated to unlock the second inverting member 25.
  • the connector 24 and the second toy body 20 are detachably connected by a socket 23 that is pivotable
  • the second toy body 20 is disposed on the second toy body 20, and one of the sockets 23 and the connector member 24 is provided with a plug post 231 and the other is provided with the plug post 231
  • the insertion slot 2411 that is, in some examples, as shown in FIGS. 14-18, the socket 23 is provided with the insertion post 231, and the connector 24 is provided with a insertion slot 2411; In the example, the socket 24 is provided with the insertion slot 2411 , and the connector 24 is provided on the connector 24 .
  • the detachable connection between the connector 24 and the socket 23 is achieved by the cooperation between the plug post 231 and the insertion slot 2411, thereby achieving a detachable connection between the connector 24 and the second toy body 20.
  • the second toy body 20 is provided with a pivot shaft 2113
  • the socket seat 23 is provided with a pivot hole 2311
  • the socket seat 23 is jacketed on the pivot shaft through the pivot hole 2311.
  • the outer side of 2113 is fixed to the pivot shaft 2113 by a fixing member 2312 (for example, a screw or the like).
  • the connector 24 can be realized by correspondingly positioning the plug post 231 and the insertion slot 2411, and then pressing or pushing the connector 24 to insert the plug post 231 into the insertion slot 2411.
  • the pivoting between the second toy body 20 and the second toy body 20 can be achieved by removing the connector 24 and pulling the connector 24 outward to separate the plug post 231 and the insertion slot 2411. Disassembly. Thereby, the disassembly and assembly operation of the connector 24 is convenient.
  • one of the connector 24 and the socket 23 is provided with an identification hook 2412 and the other is provided with an identification buckle 232, that is, in some examples, as shown in FIGS. 14-18
  • the identification member 24 is provided with the identification buckle 2412.
  • the identification seat 32 is provided with the identification buckle slot 232.
  • the identification member is provided with the identification buckle slot 232.
  • the identification hook 2412 is provided on the socket 23 .
  • the identification clasp 2412 and the identification buckle groove 232 serve as a marking function during installation to facilitate judging the installation direction of the connector 24 and improve the installation efficiency.
  • the connection between the connector 24 and the socket 232 is made more stable and reliable by the cooperation between the identification hook 2412 and the identification buckle 232, and between the connector 24 and the socket 23 No relative rotation will occur.
  • the identification buckle groove 232 includes a buckle groove portion 2321 and a first boss portion 2322 and a second boss portion 2323 which are disposed on both sides of the buckle groove portion 2321.
  • the identification hook 2412 includes a hook portion 24121 and a third boss portion 24122 and a fourth boss portion 24123 disposed on two sides of the hook portion 24121.
  • the hook portion 24121 fits in the buckle groove portion 2321, and the third portion
  • the boss portion 24122 is engaged with the first boss portion 2322, and the fourth boss portion 24123 and the second boss portion 2323 are fitted.
  • the end faces of the first boss portion 2322 and the second boss portion 2323 are not flush, and it is understood that the third bosses respectively engaged with the first boss portion 2322 and the second boss portion 2323
  • the end faces of the portion 24122 and the fourth boss portion 24123 are also not flush.
  • the upper end surface of the first boss portion 2322 is higher than the upper end surface of the second boss portion 2323
  • the lower end surface of the third boss portion 24122 is higher than the lower end surface of the fourth boss portion 24123.
  • the lower end surface of the fourth boss portion 24123 abuts on the upper end surface of the second boss portion 2323.
  • the first toy body 10 is provided with a first inverting member 15, and the first inverting member 15 and the first toy body 10
  • the first inverting member 15 is located at a position facing the supporting surface, and the first inverting member 15 is engageable with the first triggering member 12 to cause the first inverting member 15 to be in a locked state.
  • the first triggering member 12 is triggered, the first triggering member 12 is separated from the first flipping member 15 so that the first flipping member 15 is unlocked and rotated to drive the first toy body 10 to vacate.
  • Flip Therefore, when the first trigger member 12 is triggered, not only the second toy body 20 performs a corresponding function, but also the first toy body 10 performs a flipping motion, and the toy 100 has a strong sense of action and is more interesting.
  • the first flipping member 15 is provided with a first latching portion 151
  • the first latching member 12 is provided with a first latching portion 1221, when the first latching portion 1221 is When engaged with the first locking position 151, the first inverting member 15 is locked, and when the first locking portion 1221 and the first locking position 151 are separated, the first inverting member 15 is unlocked.
  • the first locking position 151 may be formed as a through hole structure penetrating the thickness of the first inverting member 15, and the first locking portion 1221 may be formed as a hook structure.
  • the first toy body 10 is provided with a delay device 16, and the delay device 16 cooperates with the first flip member 15 to make the first
  • the flipper 15 is delayed in flipping after the first trigger 12 is triggered. That is, after the first triggering member 12 is triggered, the first triggering member 12 is separated from the first flipping member 15, and when the locking action of the first flipping member 12 on the first flipping member 15 is released, the first flipping is performed at this time.
  • the member 15 is still mated with the delay device 16, and the first flip member 15 is constrained by the delay device 16 such that it cannot be flipped immediately when the first trigger member 12 is triggered, thereby causing the second toy body 20 to be in the first trigger member 12
  • the first flip member 15 is unlocked to cause the first toy body 10 to perform a flipping motion, thereby making the toy 100 novel and interesting.
  • the delay device 16 includes a damper gear 161, a linkage plate 162, a lock member 163, and a retardation elastic member (not shown), and the damper gear 161 is rotatable.
  • the first toy body 10 is disposed on the first toy body 10
  • the linkage plate 162 is movably disposed on the first toy body 10 between the first position and the second position, and the linkage plate 162 is provided with teeth.
  • the damper gear 161 is engaged with the rack portion 1621, and the latching member 163 is movably disposed on the first toy body 10 and interlocked with the linkage plate 162, that is, in linkage
  • the locking member 163 will be moved, and the locking member 163 can cooperate with the first inverting member 15 to lock the first inverting member 15, and the two ends of the retarding elastic member respectively abut Connected to the first toy body 10 and the linkage plate 162, the linkage plate 162 is driven by the retarding elastic member from the first position toward the The second position moves, and when the linkage plate 162 is in the first position, the locking member 163 cooperates with the first flip member 15
  • the interlocking plate 162 is locked in the first position, at which time the delaying elastic member is compressed and stored, and the locking member 163 is engaged with the first inverting member 15, that is, at this time
  • a flip member 15 is not only locked by the first trigger member 12, but also locked by the latch member 163, the first trigger member 12 is double locked; when the first trigger member 12 is triggered, the first trigger member 12 and the first flip member 15 is separated, that is, the locking of the first flip member 15 by the first trigger member 12 is released, but at this time, the first flip member 15 and the latch member 163 are also in the mating device, and the first flip member 15 cannot be in the first trigger member 12.
  • the linkage plate 162 is unlocked, delaying the release of the elastic member to drive the linkage plate 162 to move from the first position toward the second position due to the linkage plate 162 and the damping gear 161
  • the interlocking plate 162 will move slowly from the first position toward the second position, and the locking member 163 is interlocked with the linkage plate 162.
  • the locking member 163 also moves along the movement, and moves on the linkage plate 162.
  • the locking member 163 and the first flip The member 15 is always in the engaged state.
  • the locking member 163 is separated from the first inverting member 15, that is, the locking of the first inverting member 15 by the delay device 16 is also released.
  • the flip member 15 rotates to drive the first toy body 10 to vacate.
  • the first flip member 15 is provided with a second latching position 152
  • the latching member 163 is provided with a second latching portion 1631 that cooperates with the second latching position 152.
  • the locking portion 1631 is engaged in the second locking position 152
  • the first turning member 15 is locked by the locking member 163.
  • the second locking portion 1631 is separated from the second locking position 152
  • the locking member 163 is The locking of a flip member 15 is released.
  • the second locking portion 1631 may be formed as a hook structure
  • the second locking position 152 is formed as a through hole structure penetrating the thickness of the first inverting member 15.
  • the first locking position 151 and the second locking position 152 are both formed into a through-hole structure, and the first locking position 151 and the second locking position 152 are adjacently disposed and The first lock position 151 and the second lock position 152 can be integrally formed at this time, whereby the manufacturing process can be simplified.
  • the present application is not limited thereto, and the first lock position 151 and the second lock position 152 may also be spaced apart (not shown).
  • the linkage plate 162 may lock the linkage plate 162 in the first position by the first triggering member 12, a locking member (not shown) associated with the first triggering member 12, or the second toy body 20 or the like.
  • the linkage plate 162 is engaged with the connector 24 of the second toy body 20 to lock it in the first position.
  • the linkage plate 162 includes an extension rod 1622, and one end of the extension rod 1622 (the upper end as shown in FIGS. 6-8) projects into the insertion position 13, when the connector When the 24 is mated in the insertion position 13, the connector 24 abuts the extension rod 1622 and pushes the linkage plate 162 to move backward to lock the linkage plate 162 in the first position, when the first trigger 12 is triggered.
  • the first triggering member 12 drives the function member 14 to trigger the second toy body 20 to be detached from the first toy body 10.
  • the connector member 24 is disengaged from the insertion position 13, and the connector member 24 is separated from the extension rod 1622, thereby making the linkage plate
  • the 162 is unlocked, and the linkage plate 162 is moved from the first position toward the second position by the delay elastic member.
  • the first toy body 10 includes a first fixing member 11 and a first unfolding assembly 19, and a front end of the first fixing member 11 is formed with
  • the top open receiving position 1111 accommodates the second toy body 20 in the superimposed state
  • the insertion position 13 includes two and is respectively disposed on both sides of the receiving position 1111 (see FIGS. 5-13).
  • the first unfolding assembly 19 is retractably disposed at a rear end of the first fixing member 11
  • the first inverting member 15 is disposed at a bottom of the first fixing member 11 .
  • the first triggering member 12 is movably disposed on the front side of the first fixing member 11, and when the first flipping member 15 is turned over, the first unfolding assembly 19 is triggered to be deployed, thereby making the first
  • the toy body 10 can also be deformed during the turning process, thereby improving the fun of the toy 100.
  • the second toy body 20 includes a third flip member 26 and a third trigger member 27, the third trigger member 27 being movable
  • the third flip member 26 is pivotally connected to the second toy body 20, and the third flip member 26 is engageable with the third trigger member 27 to
  • the third flip member 26 is in a locked state, and after the second toy body 20 is ejected, the third flip member 26 is located at a position facing the support surface, after the second toy body 20 is ejected and the
  • the third triggering member 27 is triggered, the third inverting member 26 is separated from the third triggering member 27, so that the third inverting member 26 is unlocked and rotated to drive the second toy body 20 to vacate. Therefore, after the second toy body 20 is bounced off the first toy body 10, it can also be vacated and flipped, and the toy 100 has a strong sense of action and high interest.
  • the second toy body 20 further includes a second unfolding assembly 28, and the second unfolding assembly 28 is retractably disposed on the second toy body 20, When the third flip member 26 is turned over, the second unfolding assembly 28 is triggered to be unfolded, thereby causing the second toy body 20 to be deformed during the tumbling overturn, thereby further enhancing the fun of the toy 100.
  • the flip combination toy 100 includes a first toy body 10, a second toy body 20, and a toy coin 30, wherein the first toy body 10 and the second toy body 20 are both toy vehicles.
  • the first toy body 10 includes a first fixing member 11, a first triggering member 12, a plugging position 13, a function member 14, a first inverting member 15, a delay device 16, a movable member 17, a return elastic member 18, and a first unfolding assembly. 19.
  • the first fixing member 11 includes a first frame 111 and a first wheel 112 disposed on the first frame 111.
  • the front end of the first frame 111 is formed with a top open receiving position 1111, and the first fixing member
  • the front end of the recess 11 is recessed inwardly to form two first clamping positions 1112 spaced apart in the left-right direction, and a first magnet is disposed in each of the first clamping positions 1112.
  • the first triggering member 12 includes a pushing member 121, a locking member 122 and a first elastic member (not shown).
  • the pushing member 121 and the locking member 122 are both movably disposed at the front end of the first frame 111 in the front-rear direction. And the pushing member 121 and the locking member 122 are coupled to each other, and the left and right ends of the front end of the pushing member 121 respectively form a first triggered end 1211 and a second triggered end 1212, and the first triggered end 1211 extends into the first side of the left side.
  • the second triggered end 1212 extends into the first clamping position 1112 on the right side, and any one of the first triggered end 1211 and the second triggered end 1212 is triggered (eg, left and right two first Any one of the clamping positions 1112 is clamped to the toy coin 30), and the pusher 121 can be pushed to move.
  • the first triggering member 12 is more easily triggered.
  • the first clamping position 1112 can be set only one, and three or more can also be set.
  • the left and right sides of the rear end of the pushing member 121 are respectively formed with a sloped portion 1213.
  • the lower surface of the locking member 122 protrudes downward to form a first locking portion 1221.
  • the two ends of the first elastic member abut against the locking member 122 respectively.
  • the first frame 111 is provided in the two first clamping position 1112 on the right side, and any one of the first triggered end 1211 and the second triggered end 1212 is triggered (eg, left and right two first Any
  • the insertion position 13 includes two and is respectively disposed on the left and right sides of the receiving position 1111.
  • the insertion position 13 extends in the front-rear direction and the front end thereof forms an insertion opening 131.
  • the insertion position 13 is provided with an annular stopper 132. .
  • the function member 14 is an ejection member, and the function member 14 includes two and respectively disposed on the left and right sides of the first frame 111.
  • Each of the functional components 14 includes a locking member 141 and an elastic member 142.
  • the two locking members 141 respectively Rotatingly disposed on the left and right sides of the first frame 111, the upper end of the left locking member 141 extends into the insertion position 13 on the left side and is located at the rear side of the stopper 132, and the right locking member 141 The upper end extends into the right insertion position 13 and is located at the rear side of the stopper 132.
  • the lower end of the left locking member 141 is engaged with the inclined surface portion 1213 of the left side of the pushing member 121, and the lower end of the right locking member 141 is The inclined surface portion 1213 on the right side of the pushing member 121 is engaged.
  • the left inclined surface portion 1213 drives the upper end of the left side locking member 141 to rotate to the left, and the right inclined surface drives the right side.
  • the upper end of the locking member 141 is rotated to the right, the elastic member 142 is disposed in the insertion position 13, and the rear end of the elastic member 142 abuts against the stopper 132.
  • the first flip member 15 is disposed at the bottom of the first frame 111.
  • the rear end of the first flip member 15 is pivotally connected to the bottom wall of the first frame 111.
  • the front end of the first flip member 15 is provided with a first latching position 151.
  • the second locking position 152, the first locking position 151 and the second locking position 152 are both formed into a through hole structure, and the first locking position 151 and the second locking position 152 are adjacently disposed in the front-rear direction and are connected to each other.
  • the first locking portion 1221 is fitted in the first locking portion 151 to lock the first inverting member 15
  • the pivoting portion 241 of the first inverting member 15 pivotally connected to the first frame 111 is provided with a dial 153 .
  • the delay device 16 includes a damping gear 161, a linkage plate 162, a locking member 163 and a delay elastic member (not shown).
  • the damping gear 161 is rotatably disposed on the first frame 111
  • the linkage plate 162 is The first frame and the second position are movably disposed on the first frame 111.
  • the linkage plate 162 is movable in the front-rear direction, and the linkage plate 162 is moved forward from the first position to the second position.
  • the plate 162 is moved backward by the second position to move to the first position, and the linkage plate 162 is provided with a rack portion 1621 extending in the front-rear direction.
  • the damping gear 161 is engaged with the rack portion 1621, and the locking member 163 can be moved forward and backward. Movably disposed on the first toy body 10 and interlocked with the linkage plate 162. Specifically, when the linkage plate 162 moves forward, the locking member 163 also moves forward, when the linkage plate 162 is backward. The locking member 163 also moves backwards as it moves, the lower surface of the locking member 163 protrudes downward to form a second locking portion 1631, and the second locking portion 1631 fits within the second locking position 152 to A flip member 15 is locked, and both ends of the retarding elastic member abut against the linkage plate 162 and the first frame respectively 111.
  • the second locking portion 1631 fits within the second locking position 152 to lock the first inverting member 15 and delay the elastic member to be compressed to store energy, when the linkage plate 162 is When unlocking, the delay elastic member releases energy to drive the linkage plate 162 to move slowly forward from the first position.
  • the linkage plate 162 moves to the second position, the second locking portion 1631 is separated from the second locking position 152 to unlock.
  • the linkage plate 162 is provided with an upwardly extending extension rod 1622. The upper end of the extension rod 1622 extends into the insertion position 13 and is located at the rear side of the upper end of the locking member 141.
  • the movable member 17 is disposed at the rear end of the first frame 111 so as to be movable back and forth.
  • the rear end of the movable member 17 is provided with a locking hook 171.
  • the two ends of the return elastic member 18 are respectively respectively opposed to the movable member 17 and the first frame 111. Then, when the first inverting member 15 is turned over, the dial block 153 will push the movable member 17 forward and the return elastic member 18 is compressed to store energy.
  • the first unfolding assembly 19 is retractably disposed at a rear end of the first frame 111.
  • the first unfolding assembly 19 includes a styling head 191 and two barrels 192, and the styling head 191 is rotatably disposed at the first On the upper side of the rear end of the frame 111, two barrels 192 are rotatably disposed on the left and right sides of the rear end of the first frame 111, and a torsion spring is disposed between the molding head 191 and the first frame 111, and the barrel 192 is provided.
  • a torsion spring is disposed between the first frame 111 and the first frame 111.
  • the styling head 191 fits over the rear end portion of the first frame 111, and the two barrels 192 They are respectively attached to the left and right side walls of the first frame 111.
  • the modeling head 191 is turned forward and the two barrels are The 192 is rotated outward to expand.
  • the molding head 191 is provided with a locking button hole 1911 (shown in FIG. 10).
  • the locking hook 171 is fitted in the locking button hole 1911 to lock the molding head 191 in the folded state, and in the folded state.
  • the torsion spring between the styling head 191 and the first frame 111 is in an energy storage state.
  • the torsion spring between them is in an energy storage state.
  • the left and right sides of the molding head 191 are respectively provided with pushing legs 1912 protruding outward.
  • the pushing legs 1912 will push the locking member 1113 to move forward, so that the locking member 1113 Separating from the locking hook 1921 to unlock the barrel 192, the barrel 192 is rotated outwardly by the action of its own torsion spring.
  • the second toy body 20 includes a second fixing member 21, a second triggering member 22, a socket seat 23, a connector member 24, a second inverting member 25, a third inverting member 26, a third trigger member 27, and a second unfolding assembly 28.
  • the second fixing member 21 includes a second frame 211 and a second wheel 212 disposed on the second frame 211.
  • the rear end of the second frame 211 is recessed inward to form a second clamping position 2111.
  • the second frame The front end of the 211 is recessed inwardly to form a third clamping position 2112, the second clamping position 2111 is provided with a second magnet, the third clamping position 2112 is provided with a third magnet, and the front end of the second frame 211 is left and right.
  • a pivot shaft 2113 is provided on each side.
  • the second triggering member 22 includes a first moving member 221, a second moving member 222 and a third moving member 223, and a plurality of second elastic members 224 that are movable forward and backward.
  • the second moving member 222 and the third moving member 223 are in the up and down direction.
  • the first moving member 221 is disposed at the rear end of the second moving member 222 and the third moving member 223.
  • the rear end of the first moving member 221 forms a triggered end, and the rear end of the first moving member 221 extends into the first end.
  • the front end of the first moving member 221 abuts the rear ends of the second moving member 222 and the third moving member 223, respectively, and the two ends of the plurality of second elastic members 224 are respectively
  • the second moving member 222 and the second frame 211 are abutted, and the two ends of the at least one of the plurality of second elastic members 224 are respectively abutted with the third moving member 223 and the second frame 211, when the first moving member 221 is
  • the trigger moves to the front end of the second frame 211
  • the first moving member 221 pushes the second moving member 222 and the third moving member 223 toward the front end of the second frame 211, and the second elastic member 224 is compressed and stored.
  • the left and right sides of the front end of the second moving member 222 respectively form an outwardly protruding locking portion 2221
  • the third moving member 223 is provided with a joint portion 2231.
  • the insertion base 23 is provided with a plug post 231 and a recognition buckle slot 232.
  • the plug post 231 is provided with a pivot hole 2311.
  • the plug socket 23 is sleeved outside the pivot shaft 2113 through the pivot hole 2311, and passes through the fixing member 2312.
  • the insertion seat 23 is fixed on the pivot shaft 2113, and the torsion spring 242 is disposed between the pivot hole 2311 and the pivot shaft 2113.
  • the identification buckle groove 232 includes a buckle groove portion 2321 and is disposed on the buckle groove portion 2321.
  • the first boss portion 2322 and the second boss portion 2323 of the side, the upper end surface of the first boss portion 2322 is higher than the upper end surface of the second boss portion 2323.
  • the connector 24 includes a pivoting portion 241, a plug portion 243 and a locking portion 244.
  • the pivoting portion 241 is formed with a latching slot 2411 and an identification hook 2412.
  • the latching slot 2411 cooperates with the plug-in post 231.
  • the hook 2412 includes a hook portion 24121 and a third boss portion 24122 and a fourth boss portion 24123 disposed on opposite sides of the hook portion 24121.
  • the lower end surface of the third boss portion 24122 is higher than the fourth boss portion 24123.
  • the lower end surface of the third boss portion 24122 abuts against the upper end surface of the first boss portion 2322, and the lower end surface of the fourth boss portion 24123 abuts on the lower end surface of the third boss portion 24122.
  • the upper end surface of the second boss portion 2323 is on the upper end surface.
  • the insertion portion 243 is disposed at one side of the pivot portion 241 (the front side as shown in FIGS. 14-20), and the insertion portion 243 is provided with a locking groove 2431 and a stopper portion 2432.
  • the insertion portion 243 extends into the insertion position 13, and the upper end of the locking member 141 cooperates with the locking groove 2431 to lock the connector 24 and stop.
  • the portion 2432 abuts against the front end of the elastic member 142 to compress the elastic member 142.
  • the front end of the insertion portion 243 abuts against the extension rod 1622 and pushes the linkage plate 162 to move rearward to lock the linkage plate 162 in the first position.
  • the locking portion 244 is disposed on the other side of the pivoting portion 241 (the rear side as shown in FIGS. 14-20), and the locking portion 244 is engaged with the locking portion 2221 to lock the second toy body 20
  • the second toy body 20 is juxtaposed with the first toy body 10, and at this time, the torsion spring 242 between the pivot hole 2311 and the pivot shaft 2113 is elastically deformed to store energy.
  • the second inverting member 25 is pivotally connected to the top of the second toy body 20.
  • the second inverting member 25 is provided with a locking portion 251.
  • the engaging portion 251 cooperates with the engaging portion 2231 to lock the second inverting member 25.
  • the engaging portion 251 is separated from the engaging portion 2231 to unlock the second inverting member 25.
  • the third flip member 26 is pivotally connected to the bottom of the second frame 211.
  • the third triggering member 27 is disposed at the front end of the second frame 211 and can be moved back and forth.
  • the third triggering member 27 cooperates with the third flip member 26 to lock the first portion.
  • the third flip member 26, the front end of the third trigger member 27 forms a triggered end, the front end of the third trigger member 27 extends into the third clamping position 2112, and when the third trigger member 27 is triggered, the third trigger member 27 faces The rear end of the second frame 211 is moved to be separated from the third flip member 26, thereby unlocking the third flip member 26.
  • the second deployment assembly 28 is retractably disposed on top of the second toy body 20, and when the third turnover member 26 is inverted, the second deployment assembly 28 is triggered to deploy.
  • the second inverting member 25 faces the supporting surface and the second inverting member 25 is unlocked, the second inverting member 25 can drive the second toy body 20 to be turned by 180°.
  • the third flip member 26 faces the support surface and the third flip member 26 is unlocked, the third flip member 26 can drive the second toy body 20 to flip 360°.
  • the toy coin 30 is a magnetic member that can be attracted to the magnet, and the toy coin 30 is used to trigger the first triggering member 12, the second triggering member 22 and the third triggering member 27, and the toy coin is inserted in the first clamping position 1112.
  • the toy coin 30 collides with the front end of the pushing member 121 to trigger the pushing member 121 to move backward.
  • the toy coin 30 collides with the rear end of the first moving member 221 to trigger.
  • the pushing member 121 moves toward the front end of the second frame 211.
  • the toy coin 30 collides with the front end of the third triggering member 27 to trigger the third triggering member 27 to the second vehicle.
  • the rear end of the frame 211 moves.
  • the toy coin 30 enters the clamping position, and the toy coin 30 can be manually inserted into the clamping position, or the toy coin 30 can be thrown or ejected toward the clamping position, or the toy coin 30 can be placed in the clamping position.
  • the toy 100 On the support surface, the toy 100 is pushed toward the toy coin 30 to suck the toy coin 30 into the clamping position, thereby making the toy 100 have a variety of functions, and can exercise the child's hand-brain coordination ability and improve the direction of the child. Control ability such as feeling and strength.
  • the toy coin 30 is not a necessary accessory for the toy 100.
  • the player may use some household items instead, for example, by replacing the toy coin 30 with a piece of iron, and triggering the first trigger member 12 and the second trigger member by the iron piece. 22 and a third trigger member 27.
  • the toy coin 30 is placed on the support surface, and the toy 100 is pushed toward the toy coin 30 to clamp the toy 100 to the toy coin 30.
  • the play of the toy 100 is not limited to this.
  • the toy coin 30 in the first clamping position 1112 is removed, and the first elastic member releasing driving driving member 121 and the locking member 122 are moved forward to be reset, and the first inverting member 15 is turned over to turn the first inverting member.
  • the buckle 15 is fastened to the bottom of the first frame 111 (the first latching portion 1221 is fastened in the first latching position 151), and is disposed on the first flipping member 15 after the first flipping member 15 is flipped and fastened.
  • the dial block 153 is separated from the movable member 17, and the return elastic member 18 releases the movable member 17 to move rearward to be reset.
  • the first unfolding assembly 19 is folded, specifically, the styling head 191 is reversely turned from the position shown in FIG. 4 to fit the rear end of the first frame 111, and the styling head 191 is locked.
  • the buttonhole 1911 cooperates with the locking hook 171 on the movable member 17 to lock the modeling head 191 in the collapsed state (as shown in FIGS. 1-3), and at this time, the modeling head 191 and the first frame 111
  • the torsion spring is in an energy storage state, and then the barrel 192 on the left side of the first frame 111 is rotated to the right from the position shown in FIG. 4 to fit the left side wall of the first frame 111.
  • the locking hook 1921 on the left side barrel 192 is buckled on the lock piece 1113 on the left side of the first frame 111, and the barrel 192 on the right side of the first frame 111 is turned to the left from the position shown in FIG. Rotating to fit the right side wall of the first frame 111, and the locking hook 1921 on the right barrel 192 is snapped on the lock member 1113 on the right side of the first frame 111, thereby the barrel 192 is locked in the collapsed state (as shown in Figures 1-3).
  • the toy coin 30 in the third clamping position 2112 is removed, the third triggering member 27 is moved toward the front end of the second frame 211 to be reset, and then the third inverting member 26 is turned over to make the third inverting member 26 and the third triggering member
  • the third flip member 26 is locked to the bottom of the second frame 211 in cooperation, and then the second unfolding assembly 28 is folded and locked on the top of the second frame 211.
  • the toy coin 30 in the second clamping position 2111 is removed, and the second elastic member 224 is released to drive the first moving member 221, the second moving member 222 and the third moving member 223 to move toward the rear end of the second frame 211. And resetting, then flipping the second inverting member 25 to engage the second inverting member 25 and the third moving member 223 (the engaging portion 251 and the engaging portion 2231 are engaged), and the second inverting member 25 is locked in the second frame 211 top.
  • the connector 24 on the second toy body 20 is rotated, so that the locking portion 244 of the connector member 24 cooperates with the locking portion 2221 of the second moving member 222 (as shown in FIG. 14), and is disposed on the pivot shaft.
  • the torsion spring 242 between the 2113 and the pivot hole 2311 is in an energy storage state.
  • the bottom of the first toy body 10 is placed on the support surface, and the first inverting member 15 disposed at the bottom of the first toy body 10 faces the support surface and is disposed at the front end of the first frame 111.
  • the first clamping position 1112 faces forward; the bottom of the second toy body 20 faces upward, the top faces downward, the rear end faces forward, and the front end faces rearward on the support surface, and is disposed at the rear end of the second frame 211 at this time.
  • the second clamping position 2111 is facing forward, the third clamping position 2112 disposed at the front end of the second frame 211 is backward, and the second inverting member 25 disposed at the top of the second frame 211 is opposite to the supporting surface, and the second playing is performed.
  • the specific 20 is placed in front of the first toy body 10, that is, the front end of the second toy body 20 is opposed to the front end of the first toy body 10 (as shown in Fig. 7).
  • the locking groove 2431 and the upper end of the locking member 141 cooperate to lock the insertion portion 243 in the insertion position 13, and the stopper portion 2432 on the insertion portion 243 abuts against the front end of the elastic member 142 to place the elastic member 142 at In the compressed state, the front end of the insertion portion 243 abuts against the extension rod 1622 and pushes the linkage plate 162 to move rearward to lock the linkage plate 162 in the first position.
  • the second toy body 20 is integrally connected with the first toy body 10 and is in a parallel state (as shown in FIG. 1), and the second toy body 20 It is locked at the front end of the first toy body 10.
  • the front end of the first toy body 10 and the front end of the second toy body 20 are opposed to each other, thereby causing the first clamping provided at the front end of the first toy body 10.
  • the first position of the second toy body 20 is blocked by the first toy body 10, that is, the first clamping position 1112 and the third clamping position 2112 are concealed.
  • the state, while the second clamping position 2111 is facing forward and in the exposed state, thereby causing only the second trigger 22 to be triggered in the juxtaposed state.
  • At least three toy coins 30 are placed in front of the toy 100, and then the toy 100 in the juxtaposed state is pushed forward.
  • the second clamping position 2111 is sucked into a toy coin 30
  • the second clamping position 2111 is entered.
  • the toy coin 30 collides with the rear end of the first moving member 221 to drive the first moving member 221 to move toward the front end of the second frame 211, whereby the second moving member 222 and the third moving member 223 are in the first moving member
  • the driving of 221 is moved toward the front end of the second frame 211.
  • the second moving member 222 moves toward the front end of the second frame 211 to separate the locking portion 244 and the locking portion 2221, the second toy body 20 is unlocked, and the torsion spring 242 is disposed before the pivot shaft 2113 and the pivot hole 2311.
  • the third moving member 223 is moved toward the front end of the second frame 211 such that the engaging portion 2231 and the engaging portion 251 are separated, the second inverting member 25 is unlocked, and the second inverting member 25 is turned over.
  • the second toy body 20 is rotated relative to the connector 24 by the torsion spring 242 and the second flip member 25 is reversed to be turned into the receiving position 1111 of the upper end of the first toy body 10, and the second toy body 20 is located at the first toy body 10 Above the toy body 10, as shown in Fig. 2, the toy 100 is in a superimposed state.
  • the second moving member 222 and the third moving member 223 are triggered to move toward the front end of the second frame 211, the second elastic member 224 is compressed and stored.
  • the top of the second toy body 20 faces upward, the bottom faces downward, the front end faces forward, and the rear end faces backward.
  • the third flip member 26 disposed at the bottom of the second toy body 20 is provided. It faces the first toy body 10.
  • the third clamping position 2112 disposed at the front end of the second frame 211 and the first clamping position 1112 disposed at the front end of the first frame 111 are both forward and exposed. When it comes out, the first clamping position 1112 can clamp the toy coin 30 on the support surface.
  • the right side inclined surface portion 1213 of the rear end of the pushing member 121 is pushed to The lower end of the lock piece 141 on the right side of the first frame 111, the upper end of the right side lock piece 141 is rotated to the right so that the upper end of the lock piece 141 on the right side of the first toy body 10 and the second toy body
  • the locking groove 2431 on the connector 24 on the right side of the 20 is separated to unlock the connector 24 on the right side of the second toy body 20.
  • the elastic member 142 releases the second toy body 20 forwardly from the first toy body 10, as shown in FIG. 3, the second toy body 20 is forwarded.
  • the top of the second toy body 20 is still upward, the bottom is still facing downward, and the front end is still facing forward, that is, the second toy body 20
  • the third inverting member 26 faces the supporting surface, and the third clamping position 2112 faces the front to clamp the toy coin 30 on the supporting surface.
  • the pushing member 121 When the pushing member 121 is triggered to move backward, the pushing member 121 will move the locking member 122 backward to separate the first locking portion 1221 from the first locking portion 151, and the locking member 122 is opposite to the first turning member.
  • the locking action of 15 is released. That is, when the first triggering member 12 is triggered, not only the second toy body 20 is caused to bounce off the first toy body 10, but the locking action of the first triggering member 12 on the first flipping member 15 is released. It should be noted that, when the first locking portion 1221 and the first locking position 151 are separated (that is, when the first triggering member 12 unlocks the first inverting member 15), the first inverting member 15 does not flip. At this time, the locking action of the delay device 16 on the first flip member 15 has not been released. In addition, when the pusher 121 and the lock member 122 are triggered to move rearward, the first elastic member is compressed and stored.
  • the insertion portion 243 is separated from the extending rod 1622 of the linkage plate 162, the linkage plate 162 is unlocked, and the linkage plate 162 is After the delaying elastic member moves forward to the second position, the linkage plate 162 moves slowly forward due to the cooperation between the damping gear 161 and the linkage plate 162, because the locking member 163 is interlocked with the linkage plate 162. The locking member 163 also moves forward slowly.
  • the linkage plate 162 is moved to the second position, the second locking portion 1631 is separated from the second locking position 152, thereby causing the delay device 16 to be opposite to the first inverting member 15.
  • the unlocking action is released, the first inverting member 15 is rotatable to drive the first toy body 10 to flip, and when the first inverting member 15 is rotated, the dial block 153 pushes the movable member 17 to move forward and the returning elastic member 18 is compressed and stored.
  • the locking clasp 171 is separated from the locking button hole 1911, and the first unfolding assembly 19 is unlocked and deployed, so that the first toy body 10 is deformed after being turned over.
  • the specific deployment process of the first deployment component 19 has been described in detail above and will not be described herein.
  • the cooperation between the delay device 16 and the first flip member 15 causes the first flip member 15 to be unlocked for a period of time after the first trigger member 12 is triggered. That is, after the second toy body 20 is bounced off the first toy body 10, the first flip member 15 can be rotated to drive the first toy body 10 to flip after a delay.
  • the second toy body 20 After the second toy body 20 is bounced off the first toy body 10, it can continue to travel forward under the action of inertia.
  • the third clamping position 2112 When the third clamping position 2112 is sucked to the toy coin 30, the third trigger member 27 is triggered. Moving toward the rear end of the second frame 211, the third triggering member 27 is separated from the third inverting member 26, and the third inverting member 26 is unlocked and rotated, thereby driving the second toy body 20 to vacate, in the third flipping member.
  • the second deployment assembly 28 When flipped 26, the second deployment assembly 28 is triggered to deploy, causing the second toy body 20 to deform after flipping.
  • the cooperation between the delay device 16 and the first flip member 15 causes the first flip member 15 to be unlocked for a period of time after the first trigger member 12 is triggered, and the second toy body 20 is at the first trigger member.
  • the first flip member 15 is completely unlocked, and the delay time is delayed.
  • a time may be reserved for the third clamping position 2112 of the second toy body 20 so that the third clamping position 2112 of the second toy body 20 and the first flipping member 15 are completely unlocked, thereby making the first A toy body 10 and the second toy body 20 can be turned over at the same time, and the toy 100 is highly interesting.
  • the second toy body 20 can be detached from the first toy body 10 after being flipped to the first toy body 10, and after the second toy body 20 is detached from the first toy body 10
  • the first toy body 10 and the second toy body 20 can also be flipped and deformed at the same time, and the toy 100 has a strong sense of action and is more interesting.
  • FIGS. 1 to 13 respectively point to the top, bottom, front end and rear end of the first toy body 10.

Landscapes

  • Toys (AREA)

Abstract

一种翻转组合玩具(100),包括第一玩具体(10)和第二玩具体(20),第一玩具体(10)设有第一触发件(12)、插接位(13)和功能件(14),第一触发件(12)可活动地设于第一玩具体(10)上,插接位(13)固定在第一玩具体(10)上,功能件(14)与第一触发件(12)相配合,功能件(14)可触发第二玩具体(20)执行相应功能;第二玩具体(20)设有第二触发件(22)和插接件(24),第二触发件(22)可活动地设于第二玩具体(20)上,插接件(24)可转动地设于第二玩具体(20)上;插接件(24)与插接位(13)相插接配合时,第二玩具体(20)与第一玩具体(10)连接成一体且呈并列状态;当第二触发件(22)被触发时,第二玩具体(20)相对插接件(24)翻转至第一玩具体(10)上端呈叠加状态;当第一触发件(12)被触发时,带动功能件(14)触发第二玩具体(20)执行相应功能。翻转组合玩具(100)的玩法新颖、趣味性强。

Description

翻转组合玩具 技术领域
本发明涉及玩具领域,尤其是涉及一种翻转组合玩具。
背景技术
玩具已经成为了小朋友童年时代必不可少的玩具之一,现有玩具的造型、款式、功能也越来越多,其中可翻转的玩具受到很多小朋友的喜爱,但相关技术中的可翻转的玩具仅仅可实现翻转功能,玩法单一、趣味性不强。
发明内容
本发明旨在至少在一定程度上解决相关技术中的技术问题之一。为此,本发明提出一种翻转组合玩具,所述翻转组合玩具玩法新颖、趣味性强。
根据本发明实施例的翻转组合玩具,包括:第一玩具体,所述第一玩具体设有第一触发件、插接位和功能件,所述第一触发件可活动地设于所述第一玩具体上,所述插接位固定在所述第一玩具体上,所述功能件与所述第一触发件相配合,所述功能件可触发所述第二玩具体执行相应的功能;第二玩具体,所述第二玩具体设有第二触发件和插接件,所述第二触发件可活动地设于所述第二玩具体上,所述插接件可转动地设于所述第二玩具体上;所述插接件与所述插接位相插接配合时,所述第二玩具体与所述第一玩具体连接成一体且呈并列状态;当所述第二触发件被触发时,所述第二玩具体相对所述插接件翻转至所述第一玩具体的上端呈叠加状态;当所述第一触发件被触发时,带动所述功能件触发所述第二玩具体执行相应的功能。
根据本发明实施例的翻转组合玩具,在第二玩具体翻转至第一玩具体上之后,第二玩具体还可以再被触发执行相应的功能,动作感强,玩法新颖、趣味性强。
另外,根据本发明实施例的翻转组合玩具还可以具有如下附加技术特征:
根据本发明的一个实施例,所述功能件为变形触发件,所述第二玩具体上相应设有第二展开组件,所述第一触发件被触发时,所述变形触发件被带动而使所述第二展开组件展开。
根据本发明的一个实施例,所述功能件为弹射件,所述弹射件设置于所述第一玩具体 上或所述插接位中,所述第一触发件被触发时,所述弹射件被带动而将所述第二玩具体弹离所述第一玩具体。
可选地,所述弹射件包括锁接件和弹性件,所述锁接件可活动地设于所述第一玩具体上,所述锁接件的一端与所述第一触发件配合,所述锁接件的另一端伸入所述插接位内,所述弹性件设于所述插接位内,当所述插接件与所述插接位相插接配合时,所述弹性件弹性变形而蓄能,且所述插接件和所述锁接件配合以将所述插接件锁定在所述插接位内,当所述第一触发件被触发时,所述锁接件被带动而活动以使所述插接件和所述锁接件分离,所述插接件被解锁且在所述弹性件的驱动下使得所述第二玩具体弹离所述第一玩具体。
可选地,所述锁接件可转动地设于所述第一玩具体上,所述第一触发件具有斜面部,所述斜面部与所述锁接件抵接,在所述第一触发件被触发时,所述斜面部驱动所述锁接件转动而使所述锁接件和所述插接件分离。
根据本发明的一个实施例,所述插接件包括:枢接部,所述枢接部与所述第二玩具体枢转连接;扭簧,所述扭簧设于所述枢接部和所述第二玩具体之间;插接部,所述插接部设于所述枢接部的一侧,所述插接部适于与所述插接位插接配合;锁定部,所述锁定部设于所述枢接部的另一侧,所述第二触发件上设有与所述锁定部配合的锁接部,当所述锁定部与所述锁接部配合时,所述第二玩具体被锁定在所述并列状态且所述扭簧弹性变形而蓄能,当所述第二触发件被触发时,所述锁接部和所述锁定部分离,所述扭簧释能带动所述第二玩具体翻转至所述叠加状态。
根据本发明的一个实施例,所述第二玩具体设有第二翻转件,所述第二翻转件与所述第二玩具体枢接,在所述并列状态时所述第二翻转件位于与支撑面相向的位置,且所述第二翻转件可与所述第二触发件相配合以使所述第二翻转件处于锁定状态,当所述第二触发件被触发时,所述第二翻转件与所述第二触发件分离,以使所述第二翻转件转动并带动所述第二玩具体腾空翻转至所述叠加状态。
根据本发明的一个实施例,所述插接件和所述第二玩具体通过插接座可拆卸相连,所述插接座可枢转地设于所述第二玩具体上,所述插接座和所述插接件的其中一个上设有插接柱且另一个上设有与所述插接柱适配的插接槽,且所述插接件和所述插接座的其中一个上设有识别扣钩且另一个上设有识别扣槽。
根据本发明的一个实施例,所述第一玩具体设有第一翻转件,所述第一翻转件与所述第一玩具体枢接,所述第一翻转件位于与支撑面相向的位置,且所述第一翻转件可与所述第一触发件配合以使所述第一翻转件处于锁定状态,当所述第一触发件被触发时,所述第一触发件与所述第一翻转件分离,以使所述第一翻转件被解锁而转动以带动所述第一玩具 体腾空翻转。
可选地,所述第一玩具体设有延迟装置,所述延迟装置与所述第一翻转件配合,以使所述第一翻转件在所述第一触发件被触发后延迟翻转。
可选地,所述延迟装置包括:阻尼齿轮,所述阻尼齿轮可转动地设于所述第一玩具体上;联动板,所述联动板在第一位置和第二位置之间可移动地设于所述第一玩具体上,所述联动板上设有齿条部,所述阻尼齿轮和所述齿条部啮合;锁扣件,所述锁扣件可活动地设于所述第一玩具体上且与所述联动板相联动,所述锁扣件可与所述第一翻转件配合以将所述第一翻转件锁定;延迟弹性件,所述延迟弹性件的两端分别抵接于所述第一玩具体和所述联动板,所述联动板在所述第一触发件被触发后在所述延迟弹性件的驱动下由所述第一位置朝向所述第二位置移动,当所述联动板位于所述第一位置时,所述锁扣件与所述第一翻转件配合且所述延迟弹性件弹性变形而储能,当所述联动板位于所述第二位置时,所述锁扣件与所述第一翻转件分离以解锁所述第一翻转件。
可选地,所述第一玩具体包括有第一固定件和第一展开组件,所述第一固定件的前端形成有顶部敞开的容纳位以在所述叠加状态时容纳所述第二玩具体,所述插接位包括两个且分别设于所述容纳位的两侧,所述第一展开组件可收展地设于所述第一固定件的后端,所述第一翻转件设于所述第一固定件的底部,所述第一触发件可活动地设于所述第一固定件的前侧上,所述第一翻转件翻转时将触发所述第一展开组件展开。
可选地,所述第二玩具体包括有第三翻转件和第三触发件,所述第三触发件可活动地设于所述第二玩具体上,所述第三翻转件与所述第二玩具体枢接,且所述第三翻转件可与所述第三触发件配合以使所述第三翻转件处于锁定状态,在所述第二玩具体被弹出后,所述第三翻转件位于与支撑面相向的位置,在所述第二玩具体弹出后且所述第三触发件被触发时所述第三翻转件与所述第三触发件分离,以使所述第三翻转件被解锁而转动以带动所述第二玩具体腾空翻转。
可选地,所述第二玩具体还包括第二展开组件,所述第二展开组件可收展地设于所述第二玩具体上,所述第三翻转件翻转时将触发所述第二展开组件展开。
本发明的附加方面和优点将在下面的描述中部分给出,部分将从下面的描述中变得明显,或通过本发明的实践了解到。
附图说明
本发明的上述和/或附加的方面和优点从结合下面附图对实施例的描述中将变得明显和容易理解,其中:
图1是根据本发明实施例的翻转组合玩具在并列状态时的结构示意图;
图2是根据本发明实施例的翻转组合玩具在叠加状态时的结构示意图;
图3是根据本发明实施例的翻转组合玩具在第二玩具体弹离第一玩具体时的结构示意图;
图4是根据本发明实施例的翻转组合玩具在第二玩具体弹离第一玩具体,且第一展开组件和第二展开组件均展开时的结构示意图;
图5是根据本发明实施例的第一玩具体的结构示意图;
图6是根据本发明实施例的第一玩具体的部分结构示意图;
图7是根据本发明实施例的翻转组合玩具在并列状态时的爆炸图;
图8是根据本发明实施例的第一玩具体的结构示意图,其中第一触发件被触发;
图9是图8中所示结构的另一个角度的结构示意图;
图10是图9中所示结构的部分结构示意图;
图11是根据本发明实施例的第一玩具体的部分结构示意图,其中第一展开组件未展开;
图12是根据本发明实施例的第一玩具体的结构示意图,其中第一展开组件展开;
图13是图12中所示结构的另一个角度的结构示意图;
图14是根据本发明实施例的第二玩具体的结构示意图;
图15是图14中所示结构的部分结构示意图;
图16是图15中所示结构的部分结构示意图;
图17是根据本发明实施例的第二玩具体的爆炸图;
图18是根据本发明实施例的第二玩具体的部分结构示意图;
图19是根据本发明实施例的第二玩具体的部分结构示意图,其中第二触发件未被触发;
图20是图19中所示结构的另一个角度的示意图;
图21是根据本发明实施例的第二触发件的结构示意图。
附图标记:
玩具100;
第一玩具体10;
第一固定件11;第一车架111;容纳位1111;第一夹持位1112;锁件1113;
第一车轮112;
第一触发件12;推动件121;第一被触发端1211;第二被触发端1212;斜面部1213;
锁止件122;第一锁扣部1221;
插接位13;插入口131;止挡件132;
功能件14;锁接件141;弹性件142;
第一翻转件15;第一锁扣位151;第二锁扣位152;拨块153;
延迟装置16;阻尼齿轮161;
联动板162;齿条部1621;延伸杆1622;
锁扣件163;第二锁扣部1631;
活动件17;锁定扣钩171;
复位弹性件18;
第一展开组件19;造型头部191;锁定扣孔1911;推脚1912;
炮筒192;锁钩1921;
第二玩具体20;
第二固定件21;第二车架211;第二夹持位2111;第三夹持位2112;枢转轴2113;
第二车轮212;
第二触发件22;第一移动件221;
第二移动件222;锁接部2221;
第三移动件223;接合部2231;
第二弹性件224;
插接座23;插接柱231;枢转孔2311;固定件2312;
识别扣槽232;扣槽部2321;第一凸台部2322;第二凸台部2323;
插接件24;枢接部241;插接槽2411;
识别扣钩2412;扣钩部24121;第三凸台部24122;第四凸台部24123;
扭簧242;
插接部243;锁定槽2431;止挡部2432;
锁定部244;
第二翻转件25;卡接部251;
第三翻转件26;第三触发件27;第二展开组件28;
玩具币30。
具体实施方式
下面详细描述本发明的实施例,所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施例是示例性的,仅用于解释本发明,而不能理解为对本发明的限制。
在本发明的描述中,需要理解的是,术语“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”“内”、“外”、“顺时针”、“逆时针”、“轴向”、“周向”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。在本发明的描述中,“多个”的含义是两个或两个以上,除非另有明确具体的限定。
在本发明的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通或两个元件的相互作用关系。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本发明中的具体含义。
下面参考图1-图21描述根据本发明实施例的翻转组合玩具100。
如图1-图21所示,根据本发明实施例的翻转组合玩具100包括:第一玩具体10和第二玩具体20。
第一玩具体10设有第一触发件12、插接位13和功能件14,所述第一触发件12可活动地设于所述第一玩具体10上,所述插接位13固定在所述第一玩具体10上,所述功能件14与所述第一触发件12相配合,所述功能件14可触发所述第二玩具体20执行相应的功能,第二玩具体20设有第二触发件22和插接件24,所述第二触发件22可活动地设于所述第二玩具体20上,所述插接件24可转动地设于所述第二玩具体20上。
所述插接件24与所述插接位13相插接配合时,所述第二玩具体20与所述第一玩具体10连接成一体且呈并列状态(如图1中所示),当所述第二触发件22被触发时,所述第二玩具体20相对所述插接件24翻转至所述第一玩具体10的上端呈叠加状态(如图2中所示),当所述第一触发件12被触发时,带动所述功能件14触发所述第二玩具体20执行相应的功能。
具体地,在玩家把玩该玩具100时,首先将第二玩具体20的插接件24插设在第一玩具体10的插接位13内,使得第二玩具体20与第一玩具体10连接成一体(如图1中所示),然后触发第二触发件22,第二玩具体20相对所述插接件24翻转至所述第一玩具体10的上端呈叠加状态(如图2中所示),接着再触发第一触发件12,所述第二玩具体20被触发执 行相应的功能。
根据本发明实施例的翻转组合玩具100,在第二玩具体20翻转至第一玩具体10上之后,第二玩具体20还可以再被触发执行相应的功能,动作感强,玩法新颖、趣味性强。
在本发明的一个实施例中,所述功能件14为变形触发件(图未示出),所述第二玩具体20上相应设有第二展开组件28,所述第一触发件12被触发时,所述变形触发件被带动而使所述第二展开组件28展开。即在第二玩具体20翻转至第一玩具体10上之后,第一触发件12被触发时,第二玩具体20上的第二展开组件28展开,第二玩具体20在第一玩具体10上发生变形,玩具100呈现另一形态。也就是说,第二玩具体20在执行翻转动作之后,还可以在第一玩具体10上执行变形动作,玩具100的趣味性强。
在本发明的一个实施例中,如图6-图8中所示,所述功能件14为弹射件,所述弹射件设置于所述第一玩具体10上或所述插接位13中,所述第一触发件12被触发时,所述弹射件被带动而将所述第二玩具体20弹离所述第一玩具体10(如图3中所示)。即在第二玩具体20执行翻转动作之后,还可以执行弹射动作,玩具100的趣味性强。
进一步地,如图6-图8中所示,所述弹射件包括锁接件141和弹性件142,所述锁接件141可活动地设于所述第一玩具体10上,所述锁接件141的一端(如图6-图8中所示的下端)与所述第一触发件12配合,所述锁接件141的另一端(如图6-图8中所示的上端)伸入所述插接位13内,所述弹性件142设于所述插接位13内,当所述插接件24与所述插接位13相插接配合时,所述插接件24和所述锁接件141配合以将所述插接件24锁定在所述插接位13内且所述弹性件142弹性变形而蓄能,当所述第一触发件12被触发时,所述锁接件141被带动而活动以使所述插接件24和所述锁接件141分离,所述插接件24被解锁且在所述弹性件142的驱动下使得所述第二玩具体20弹离所述第一玩具体10,即插接件24被解锁后,弹性件142释能以驱动第二玩具体20弹出。
进一步地,如图7中所示,插接件24上形成有锁定槽2431,锁接件141的伸入插接位13内的一端(如图7中所示的上端)配合在锁定槽2431内以将锁接件141锁定在插接位13内,当第一触发件12触发锁接件141活动时,锁接件141与锁定槽2431分离,插接件24被解锁。
进一步地,如图7中所示,插接件24上形成有止挡部2432,插接位13内设有环形的止挡件132,弹性件142位于插接位13内且其一端(如图7中所示的后端)与止挡件132抵接,当插接件24与插接位13插接配合时,插接件24的设有所述锁定槽2431的一端穿过弹性件142和止挡件132以与锁接件141配合,插接件24上的止挡部2432与弹性件142的另一端(如图7中所示的前端)抵接,弹性件142被压缩而蓄能。可选地,止挡部2432为形 成在插接件24外周壁上的凸筋,且止挡部2432可以包括沿插接件24的周向间隔分布的多个,例如7中所示,插接件24的外周壁上设有两条相对设置的凸筋。
在本发明的一个可选示例中,如图6中所示,所述锁接件141可转动地设于所述第一玩具体10上,所述第一触发件12具有斜面部1213,所述斜面部1213与所述锁接件141抵接,在所述第一触发件12被触发时,所述斜面部1213驱动所述锁接件141转动而使所述锁接件141和所述插接件24分离。通过第一触发件12推动锁接件141转动,进而实现插接件24的解锁,解锁机构简单且解锁过程稳定可靠。
在本发明的一个实施例中,如图7和图14-图20中所示,插接件24包括枢接部241、扭簧242、插接部243和锁定部244,所述枢接部241与所述第二玩具体20枢转连接,所述扭簧242设于所述枢接部241和所述第二玩具体20之间,插接部243设于所述枢接部241的一侧(如图14-图20中所示的前侧),所述插接部243适于与所述插接位13插接配合,所述锁定部244设于所述枢接部241的另一侧(如图14-图20中所示的后侧),所述第二触发件22上设有与所述锁定部244配合的锁接部2221,当所述锁定部244与所述锁接部2221配合时,所述第二玩具体20被锁定在所述并列状态且所述扭簧242弹性变形而蓄能,当所述第二触发件22被触发时,所述锁接部2221和所述锁定部244分离,所述扭簧242释能带动所述第二玩具体20翻转至所述叠加状态,第二玩具体20的翻转机构简单。可选地,如图14-图20中所示,锁接部2221形成为凸块结构,锁定部244形成为卡钩结构。
在本发明的一个实施例中,如图14-图20中所示,所述第二玩具体20设有第二翻转件25,所述第二翻转件25与所述第二玩具体20枢接,在所述并列状态时所述第二翻转件25位于与支撑面相向的位置,且所述第二翻转件25可与所述第二触发件22相配合以使所述第二翻转件25处于锁定状态,当所述第二触发件22被触发时,所述第二翻转件25与所述第二触发件22分离,以使所述第二翻转件25转动并带动所述第二玩具体20腾空翻转至所述叠加状态。
具体地,如图19-图20中所示,第二翻转件25上设有卡接部251,第二触发件22上设有与所述卡接部251配合的接合部2231,卡接部251和接合部2231配合以将第二翻转件25锁定,当第二触发件22被触发时,卡接部251和接合部2231分离以解锁所述第二翻转件25。
在本发明的一个实施例中,如图14-图18中所示,所述插接件24和所述第二玩具体20通过插接座23可拆卸相连,所述插接座23可枢转地设于所述第二玩具体20上,所述插接座23和所述插接件24的其中一个上设有插接柱231且另一个上设有与所述插接柱231适配的插接槽2411,即一些示例中,如图14-图18中所示,插接座23上设有所述插接柱231, 插接件24上设有插接槽2411;在一些示例中,插接座23上设有所述插接槽2411,插接件24上设有所述插接柱231。通过插接柱231和插接槽2411之间的配合实现插接件24和插接座23之间的可拆卸相连,进而实现插接件24与第二玩具体20之间的可拆卸连接。
具体地,如在图17所示的示例中,第二玩具体20上设有枢转轴2113,插接座23上设有枢转孔2311,插接座23通过枢转孔2311外套在枢转轴2113外侧,并通过固定件2312(例如螺钉等)将插接座23固定在枢转轴2113上。在安装插接件24时,通过使插接柱231和插接槽2411位置相对应,然后按压或推动插接件24使得插接柱231插入插接槽2411内,即可实现插接件24和第二玩具体20之间的枢接,在拆卸插接件24件时,通过向外拔动插接件24,使得插接柱231和插接槽2411分离,即可实现插接件24的拆卸。由此使得插接件24的拆装操作方便。
进一步地,所述插接件24和所述插接座23的其中一个上设有识别扣钩2412且另一个上设有识别扣槽232,即在一些示例中,如图14-图18中所示,插接件24上设有所述识别扣钩2412,插接座23上设有所述识别扣槽232;在一些示例中,插接件24上设有所述识别扣槽232,插接座23上设有所述识别扣钩2412。所述识别扣钩2412和所述识别扣槽232在安装时起到标识作用,以方便判断插接件24的安装方向,提高安装效率。另外,通过所述识别扣钩2412和所述识别扣槽232之间的配合使得插接件24和插接座23之间的连接更加稳定、可靠,插接件24和插接座23之间不会发生相对转动。
具体地,如图14-图18中所示,所述识别扣槽232包括扣槽部2321和设于扣槽部2321两侧的第一凸台部2322和第二凸台部2323,所述识别扣钩2412包括扣钩部24121和设于所述扣钩部24121两侧的第三凸台部24122和第四凸台部24123,扣钩部24121配合在扣槽部2321内,且第三凸台部24122与第一凸台部2322配合,第四凸台部24123和第二凸台部2323配合。
进一步地,所述第一凸台部2322和所述第二凸台部2323的端面不平齐,可以理解地,与第一凸台部2322和第二凸台部2323分别配合的第三凸台部24122和第四凸台部24123的端面也不平齐,例如在图14-图18所示的示例中,第一凸台部2322的上端面高于第二凸台部2323的上端面,第三凸台部24122的下端面高于第四凸台部24123的下端面,插接件24和插接座23配合时,第三凸台部24122的下端面抵接在第一凸台部2322的上端面上,第四凸台部24123的下端面抵接在第二凸台部2323的上端面上。通过使第一凸台部2322和第二凸台部2323的端面不平齐,第一凸台部2322和第二凸台部2323的端面高度起到标识作用,在安装时,方便判断插接件24的安装方位,由此提高安装效率。
在本发明的一个实施例中,如图9-图10中所示,所述第一玩具体10设有第一翻转件 15,所述第一翻转件15与所述第一玩具体10枢接,所述第一翻转件15位于与支撑面相向的位置,且所述第一翻转件15可与所述第一触发件12配合以使所述第一翻转件15处于锁定状态,当所述第一触发件12被触发时,所述第一触发件12与所述第一翻转件15分离,以使所述第一翻转件15被解锁而转动以带动所述第一玩具体10腾空翻转。由此在第一触发件12被触发时,不仅第二玩具体20执行相应的功能,同时第一玩具体10执行翻转动作,玩具100的动作感强,更具有趣味性。
具体地,如图9-图10中所示,第一翻转件15上设有第一锁扣位151,第一触发件12上设有第一锁扣部1221,当第一锁扣部1221与第一锁扣位151配合时,第一翻转件15被锁定,当第一锁扣部1221和第一锁扣位151分离时,第一翻转件15被解锁。可选地,如图9-图10中所示,第一锁扣位151可以形成为贯通所述第一翻转件15厚度的通孔结构,第一锁扣部1221可以形成为卡钩结构。
进一步地,如图6和图8-图9中所示,所述第一玩具体10设有延迟装置16,所述延迟装置16与所述第一翻转件15配合,以使所述第一翻转件15在所述第一触发件12被触发后延迟翻转。也就是说,在第一触发件12被触发后,第一触发件12与第一翻转件15分离,第一触发件12对第一翻转件15的锁定作用被解除时,此时第一翻转件15仍与延迟装置16配合,第一翻转件15被延迟装置16约束,使其不能在第一触发件12被触发时立即翻转,由此使得第二玩具体20在被第一触发件12触发执行相应的功能后,延迟一段时间,第一翻转件15才被解锁而使第一玩具体10做出翻转动作,由此使得玩具100玩法新颖,趣味性强。
进一步地,如图6和图8-图9中所示,延迟装置16包括阻尼齿轮161、联动板162、锁扣件163和延迟弹性件(图未示出),所述阻尼齿轮161可转动地设于所述第一玩具体10上,所述联动板162在第一位置和第二位置之间可移动地设于所述第一玩具体10上,所述联动板162上设有齿条部1621,所述阻尼齿轮161和所述齿条部1621啮合,所述锁扣件163可活动地设于所述第一玩具体10上且与所述联动板162相联动,即在联动板162移动时将会带动锁扣件163移动,所述锁扣件163可与所述第一翻转件15配合以将所述第一翻转件15锁定,所述延迟弹性件的两端分别抵接于所述第一玩具体10和所述联动板162,所述联动板162在所述第一触发件12被触发后在所述延迟弹性件的驱动下由所述第一位置朝向所述第二位置移动,当所述联动板162位于所述第一位置时,所述锁扣件163与所述第一翻转件15配合且所述延迟弹性件弹性变形而储能,当所述联动板162位于所述第二位置时,所述锁扣件163与所述第一翻转件15分离以解锁所述第一翻转件15。
即在第一触发件12未被触发时,联动板162被锁定在第一位置,此时延迟弹性件被压缩而蓄能,且锁扣件163与第一翻转件15配合,即此时第一翻转件15不仅被第一触发件12锁定,同时被锁扣件163锁定,第一触发件12被双重锁定;当第一触发件12被触发时,第一触发件12与第一翻转件15分离,即第一触发件12对第一翻转件15的锁定被解除,但此时第一翻转件15和锁扣件163还处于配合装置,第一翻转件15不能在第一触发件12被触发时立即翻转;在第一触发件12被触发后,联动板162被解锁,延迟弹性件释能以驱动联动板162由第一位置朝向第二位置移动,由于联动板162和阻尼齿轮161之间相互啮合,联动板162将由第一位置朝向第二位置缓慢移动,锁扣件163与联动板162相联动,在联动板162移动时锁扣件163也跟随其移动,在联动板162移动至第二位置之前,锁扣件163与第一翻转件15始终处于配合状态,当联动板162运动至第二位置时,锁扣件163与第一翻转件15分离,即此时延迟装置16对第一翻转件15的锁定也被解除,第一翻转件15转动而带动第一玩具体10腾空翻转。
如图9-图10中所示,第一翻转件15设有第二锁扣位152,锁扣件163上设有与第二锁扣位152配合的第二锁扣部1631,当第二锁扣部1631配合在第二锁扣位152内时,第一翻转件15被锁扣件163锁定,当第二锁扣部1631与第二锁扣位152分离时,锁扣件163对第一翻转件15的锁定被解除。可选地,第二锁扣部1631可以形成为卡钩结构,第二锁扣位152形成为贯通第一翻转件15厚度的通孔结构。
优选地,如图9-图10中所示,第一锁扣位151和第二锁扣位152均形成为通孔结构,且第一锁扣位151和第二锁扣位152毗邻设置且彼此连通,此时第一锁扣位151和第二锁扣位152可以一体成型,由此可以简化制造工艺。当然,本申请并不限于此,第一锁扣位151和第二锁扣位152也可以间隔设置(图未示出)。
可选地,联动板162可以通过第一触发件12、与第一触发件12相联动的锁定件(图未示出)或第二玩具体20等将联动板162锁定在第一位置。
例如,在图1-图21所示的示例中,联动板162通过与第二玩具体20的插接件24配合以将其锁定在第一位置。具体地,如图6-图8所示,联动板162包括延伸杆1622,延伸杆1622的一端(如图6-图8中所示的上端)伸入插接位13内,当插接件24插配在插接位13内时,插接件24与延伸杆1622抵接并推动联动板162向后移动以将联动板162锁定在上述第一位置,当第一触发件12被触发时,第一触发件12带动功能件14触发第二玩具体20弹离第一玩具体10,插接件24由插接位13中脱出,插接件24与延伸杆1622分离,从而使得联动板162被解锁,联动板162在延迟弹性件的驱动下由第一位置朝向第二位置移动。
在本发明的一个实施例中,如图5-图13所示,所述第一玩具体10包括有第一固定件11和第一展开组件19,所述第一固定件11的前端形成有顶部敞开的容纳位1111以在所述叠加状态时容纳所述第二玩具体20,所述插接位13包括两个且分别设于所述容纳位1111的两侧(如图5-图13所示的左右两侧),所述第一展开组件19可收展地设于所述第一固定件11的后端,所述第一翻转件15设于所述第一固定件11的底部,所述第一触发件12可活动地设于所述第一固定件11的前侧上,所述第一翻转件15翻转时将触发所述第一展开组件19展开,由此使得第一玩具体10在翻转过程中,还可以发生变形,由此提高玩具100的趣味性。
在本发明的一个实施例中,如图14-图16中所示,所述第二玩具体20包括有第三翻转件26和第三触发件27,所述第三触发件27可活动地设于所述第二玩具体20上,所述第三翻转件26与所述第二玩具体20枢接,且所述第三翻转件26可与所述第三触发件27配合以使所述第三翻转件26处于锁定状态,在所述第二玩具体20被弹出后,所述第三翻转件26位于与支撑面相向的位置,在所述第二玩具体20弹出后且所述第三触发件27被触发时所述第三翻转件26与所述第三触发件27分离,以使所述第三翻转件26被解锁而转动以带动所述第二玩具体20腾空翻转,由此使得第二玩具体20弹离第一玩具体10之后,其还可以发生腾空翻转,玩具100的动作感强、趣味性高。
进一步地,如图14-图16中所示,所述第二玩具体20还包括第二展开组件28,所述第二展开组件28可收展地设于所述第二玩具体20上,所述第三翻转件26翻转时将触发所述第二展开组件28展开,由此使得第二玩具体20在腾空翻转的过程中,还可以发生变形,由此进一步提升玩具100的趣味性。
下面参考图1-图21描述根据本发明一个具体实施例的翻转组合玩具100。
翻转组合玩具100包括第一玩具体10、第二玩具体20和玩具币30,其中第一玩具体10和第二玩具体20均为玩具车。
第一玩具体10包括第一固定件11、第一触发件12、插接位13、功能件14、第一翻转件15、延迟装置16、活动件17、复位弹性件18和第一展开组件19。
其中第一固定件11包括第一车架111和设于第一车架111上的第一车轮112,所述第一车架111的前端形成有顶部敞开的容纳位1111,且第一固定件11的前端向内凹陷形成沿左右方向间隔开的两个第一夹持位1112,且每个第一夹持位1112内分别设有第一磁石。
第一触发件12包括推动件121、锁止件122和第一弹性件(图未示出),推动件121和锁止件122均沿前后方向可移动地设于第一车架111的前端,且推动件121和锁 止件122相联动,推动件121前端的左右两端分别形成第一被触发端1211和第二被触发端1212,第一被触发端1211伸入左侧的第一夹持位1112内,第二被触发端1212伸入右侧的第一夹持位1112内,第一被触发端1211和第二被触发端1212中任一个被触发(例如左右两个第一夹持位1112中任一个夹持到玩具币30),均可推动推动件121移动。通过设置两个第一夹持位1112,使得第一触发件12更容易被触发。当然可以理解地,第一夹持位1112可以仅设置一个,还可以设置三个、或更多个。推动件121的后端的左右两侧分别形成有斜面部1213,锁止件122的下表面向下凸出形成第一锁扣部1221,第一弹性件的两端分别抵接于锁止件122和第一车架111。
插接位13包括两个且分别设于所述容纳位1111的左右两侧,插接位13沿前后方向延伸且其前端形成插入口131,插接位13内设有环形的止挡件132。
功能件14为弹射件,功能件14包括两个且分别设于第一车架111的左右两侧,每个功能件14均包括锁接件141和弹性件142,两个锁接件141分别可转动地设于第一车架111的左右两侧,左侧锁接件141的上端伸入左侧的插接位13内且位于止挡件132的后侧,右侧锁接件141的上端伸入右侧的插接位13内且位于止挡件132的后侧,左侧锁接件141的下端与推动件121左侧的斜面部1213配合,右侧锁接件141的下端与推动件121右侧的斜面部1213配合,当推动件121被触发向后移动时,左侧的斜面部1213驱动左侧锁接件141的上端向左转动,右侧的倾斜面驱动右侧锁接件141的上端向右转动,弹性件142设于插接位13内,且弹性件142的后端与止挡件132抵接。
第一翻转件15设于第一车架111的底部,第一翻转件15的后端与第一车架111的底壁枢接,第一翻转件15的前端设有第一锁扣位151和第二锁扣位152,第一锁扣位151和第二锁扣位152均形成为通孔结构,且第一锁扣位151和第二锁扣位152沿前后方向毗邻设置且彼此连通,第一锁扣部1221配合在第一锁扣位151内以将第一翻转件15锁定,第一翻转件15与第一车架111枢接的枢接部241上设有拨块153。
延迟装置16包括阻尼齿轮161、联动板162、锁扣件163和延迟弹性件(图未示出),所述阻尼齿轮161可转动地设于第一车架111上,联动板162可在第一位置和第二位置之间可移动地设于第一车架111上,具体地,联动板162沿前后方向可移动,联动板162由第一位置向前移动可移动至第二位置,联动板162由第二位置向后移动可移动至第一位置,联动板162上设有沿前后方向延伸的齿条部1621,阻尼齿轮161与齿条部1621啮合,所述锁扣件163可前后移动地设于所述第一玩具体10上且与所述联动板162相联动,具体地,当联动板162向前移动时锁扣件163也跟随其向前移动,当联动板162向后移动时锁扣件163也跟随其向后移动,锁扣件163的下表面向下凸出形成第二锁扣 部1631,第二锁扣部1631配合在第二锁扣位152内以将第一翻转件15锁定,延迟弹性件的两端分别抵接于联动板162和第一车架111。当联动板162被锁定在第一位置时,第二锁扣部1631配合在第二锁扣位152内以将第一翻转件15锁定且延迟弹性件被压缩而蓄能,当联动板162被解锁时,延迟弹性件释能以驱动联动板162由第一位置向前缓慢移动,当联动板162移动至第二位置处时,第二锁扣部1631与第二锁扣位152分离以解锁第一翻转件15。联动板162上设有向上延伸的延伸杆1622,延伸杆1622的上端伸入插接位13内且位于锁接件141上端的后侧。
活动件17可前后移动地设于第一车架111的后端,活动件17的后端设有锁定扣钩171,复位弹性件18的两端分别与活动件17和第一车架111抵接,第一翻转件15翻转时,拨块153将推动活动件17向前移动且复位弹性件18被压缩而蓄能。
第一展开组件19可收展地设于所述第一车架111的后端,第一展开组件19包括造型头部191和两个炮筒192,造型头部191可转动地设于第一车架111后端的上侧,两个炮筒192分别可转动地设于第一车架111后端的左右两侧,造型头部191和第一车架111之间设有扭簧,炮筒192和第一车架111之间设有扭簧。当第一展开组件19处于收合状态时,如图5-图6、图8和图11中所示,造型头部191贴合在第一车架111的后端部,两个炮筒192分别贴设于第一车架111的左右两侧壁,当第一展开组件19被触发而展开时,如图12-图13中所示,造型头部191向前翻转,且两个炮筒192向外侧转动展开。造型头部191设有锁定扣孔1911(如图10所示),上述的锁定扣钩171配合在锁定扣孔1911内以将造型头部191锁定在收合状态,且在该收合状态时,造型头部191和第一车架111之间的扭簧处于蓄能状态,当第一翻转件15触发活动件17向前移动时,锁定扣钩171和锁定扣孔1911分离,造型头部191被解锁以使其在自身扭簧作用下向前转动而展开。炮筒192上设有锁钩1921、第一车架111的左右两侧分别设有可前后移动的锁件1113,左侧炮筒192上的锁钩1921与左侧的锁件1113配合,右侧炮筒192上的锁钩1921与右侧的锁件1113配合,以将两个炮筒192分别锁定在收合状态,且在该收合状态时,炮筒192和第一车架111之间的扭簧处于蓄能状态。造型头部191的左右两侧分别设有向外侧凸出的推脚1912,在造型头部191向前转动而展开时,推脚1912将会推动锁件1113向前移动,以使锁件1113与锁钩1921分离而解锁炮筒192,炮筒192在自身扭簧作用下向外转动而展开。
第二玩具体20包括第二固定件21、第二触发件22、插接座23、插接件24、第二翻转件25、第三翻转件26、第三触发件27和第二展开组件28。
第二固定件21包括第二车架211和设于第二车架211上的第二车轮212,第二车架211 的后端向内凹入形成第二夹持位2111,第二车架211的前端向内凹入形成第三夹持位2112,第二夹持位2111内设有第二磁石,第三夹持位2112内设有第三磁石,第二车架211的前端的左右两侧分别设有枢转轴2113。
第二触发件22包括可前后移动的第一移动件221、第二移动件222和第三移动件223以及多个第二弹性件224,第二移动件222和第三移动件223在上下方向上并排设置,第一移动件221设于第二移动件222和第三移动件223的后端,第一移动件221的后端形成被触发端,第一移动件221的后端伸入第二夹持位2111内,第一移动件221的前端分别与第二移动件222和第三移动件223的后端抵接,多个第二弹性件224中的至少一个的两端分别与第二移动件222和第二车架211抵接,多个第二弹性件224中的至少一个的两端分别与第三移动件223和第二车架211抵接,当第一移动件221被触发而向第二车架211前端移动时,第一移动件221将推动第二移动件222和第三移动件223朝向第二车架211前端移动,且第二弹性件224被压缩而蓄能。第二移动件222的前端的左右两侧分别形成向外凸出的锁接部2221,第三移动件223上设有接合部2231。
插接座23上设有插接柱231和识别扣槽232,插接柱231上设有枢转孔2311,插接座23通过枢转孔2311外套在枢转轴2113外侧,并且通过固定件2312(例如螺钉等)将插接座23固定在枢转轴2113上,枢转孔2311和枢转轴2113之间设有扭簧242,识别扣槽232包括扣槽部2321和设于扣槽部2321两侧的第一凸台部2322和第二凸台部2323,第一凸台部2322的上端面高于第二凸台部2323的上端面。
插接件24包括枢接部241、插接部243和锁定部244,枢接部241上形成有插接槽2411和识别扣钩2412,插接槽2411与上述插接柱231配合,识别扣钩2412包括扣钩部24121和设于所述扣钩部24121两侧的第三凸台部24122和第四凸台部24123,第三凸台部24122的下端面高于第四凸台部24123的下端面,扣钩部24121与扣槽部2321配合,第三凸台部24122的下端面抵接在第一凸台部2322的上端面上,第四凸台部24123的下端面抵接在第二凸台部2323的上端面上。插接部243设于所述枢接部241的一侧(如图14-图20中所示的前侧),插接部243上设有锁定槽2431和止挡部2432。当插接件24与插接位13插接配合时,插接部243伸入插接位13内,锁接件141的上端与锁定槽2431配合,以将插接件24锁定,并且止挡部2432与弹性件142的前端抵接以压缩弹性件142,插接部243的前端与延伸杆1622抵接并推动联动板162向后移动,以将联动板162锁定在上述第一位置。所述锁定部244设于所述枢接部241的另一侧(如图14-图20中所示的后侧),锁定部244与锁接部2221配合,以将第二玩具体20锁定在第一玩具体10的前端,第二玩具体20与第一玩具体10成并列状态,且此时枢转孔2311和枢转轴2113之间的扭簧242弹性变形而蓄能。
第二翻转件25枢接于第二玩具体20的顶部,第二翻转件25上设有卡接部251,卡接部251与接合部2231配合,以将第二翻转件25锁定,在第三移动被触发而向第二车架211前端移动时,卡接部251与接合部2231分离以解锁第二翻转件25。
第三翻转件26枢接于第二车架211的底部,第三触发件27设于第二车架211的前端且可前后移动,第三触发件27与第三翻转件26配合以锁定第三翻转件26,第三触发件27的前端形成被触发端,第三触发件27的前端伸入第三夹持位2112内,当第三触发件27被触发时,第三触发件27朝向第二车架211的后端移动使其与第三翻转件26分离,从而解锁第三翻转件26。
第二展开组件28可收展地设于所述第二玩具体20的顶部,所述第三翻转件26翻转时将触发所述第二展开组件28展开。
需要说明的是,当第二翻转件25与支撑面相向,且第二翻转件25被解锁时,第二翻转件25可带动第二玩具体20翻转180°。当第三翻转件26与支撑面相向,且第三翻转件26被解锁时,第三翻转件26可带动第二玩具体20翻转360°。
玩具币30为可与磁石相吸的磁性件,玩具币30用于触发上述第一触发件12、第二触发件22和第三触发件27,当第一夹持位1112内夹入玩具币30时,玩具币30与推动件121前端碰撞以触发推动件121向后移动,当第二夹持位2111内夹入玩具币30时,玩具币30与第一移动件221后端碰撞以触发推动件121向第二车架211前端移动,当第三夹持位2112内夹入玩具币30时,玩具币30与第三触发件27的前端碰撞以触发第三触发件27向第二车架211的后端移动。
需要说明的是,玩具币30进入夹持位内,可以通过手动将玩具币30插入夹持位内,也可以通过朝向夹持位内抛扔、弹射玩具币30,或者将玩具币30放置在支撑面上,通过朝向玩具币30推动玩具100,以将玩具币30吸夹入夹持位内,由此使得玩具100玩法具有多样化特性,可以锻炼小朋友的手脑协调能力,提高小朋友的方向感和力度感等的控制能力。
当然玩具币30并不是该玩具100所必须的配件,例如玩家可以采用一些生活用品代替,例如通过铁片来代替玩具币30,通过铁片来触发上述的第一触发件12、第二触发件22和第三触发件27。
下面参考图1-图20描述上述具体示例中的翻转组合玩具100的一个具体玩法和以及玩具100各部分的具体动作过程。
在下面描述的玩法中,以将玩具币30放置于支撑面上,朝向玩具币30推动所述玩具100以使所述玩具100夹持到所述玩具币30为例进行说明,当然可以理解地,所述玩具100的 玩法并不仅限于此。
首先,将第一夹持位1112内的玩具币30移除,第一弹性件释能驱动推动件121和锁止件122向前移动而复位,翻转第一翻转件15以将第一翻转件15扣合在第一车架111的底部(第一锁扣部1221扣合在第一锁扣位151内),在第一翻转件15翻转扣合后,设于第一翻转件15上的拨块153与活动件17分离,复位弹性件18释能驱动活动件17向后移动而复位。
将第一展开组件19收合,具体地,将造型头部191由图4中所示位置向后翻转以使其与第一车架111的后端贴合,并使造型头部191的锁定扣孔1911与活动件17上的锁定扣钩171配合以将造型头部191锁定在收合状态(如图1-图3所示),且此时造型头部191和第一车架111之间的扭簧处于蓄能状态,然后将第一车架111左侧的炮筒192由图4中所示的位置向右转动以使其与第一车架111的左侧壁贴合,并使左侧炮筒192上的锁钩1921卡扣在第一车架111左侧的锁件1113上,将第一车架111右侧的炮筒192由图4中所示的位置向左转动以使其与第一车架111的右侧壁贴合,并使右侧炮筒192上的锁钩1921卡扣在第一车架111右侧的锁件1113上,从而将炮筒192锁定在收合状态(如图1-图3所示)。
将第三夹持位2112内的玩具币30移除,第三触发件27朝向第二车架211前端移动而复位,接着翻转第三翻转件26以使第三翻转件26与第三触发件27配合而将第三翻转件26锁定在第二车架211的底部,接着将第二展开组件28收合锁定在第二车架211顶部。
将第二夹持位2111内的玩具币30移除,第二弹性件224释能以驱动第一移动件221、第二移动件222和第三移动件223向第二车架211后端移动而复位,接着翻转第二翻转件25以使第二翻转件25和第三移动件223配合(卡接部251和接合部2231配合),第二翻转件25被锁定在第二车架211的顶部。
然后转动第二玩具体20上的插接件24,使得插接件24的锁定部244与第二移动件222上的锁接部2221配合(如图14所示),此时设于枢转轴2113和枢转孔2311之间的扭簧242位于蓄能状态。
接着将第一玩具体10的底部朝下且前端朝前放置于支撑面上,此时设于第一玩具体10底部的第一翻转件15与支撑面相向,设于第一车架111前端的第一夹持位1112朝前;将第二玩具体20的底部朝上、顶部朝下且后端朝前、前端朝后放置于支撑面上,此时设于第二车架211后端的第二夹持位2111朝前,设于第二车架211前端的第三夹持位2112朝后,设于第二车架211顶部的第二翻转件25与支撑面相向,将第二玩具体20 放置于第一玩具体10的前方,即第二玩具体20的前端与第一玩具体10的前端相对(如图7中所示)。
调节第一玩具体10和第二玩具体20的位置,使插接件24的插接部243的前端朝向插接位13的插入口131,然后将插接部243插入插接位13内,锁定槽2431和锁接件141的上端配合以将插接部243锁定在插接位13内,且插接部243上的止挡部2432与弹性件142的前端止抵以使弹性件142处于压缩状态,插接部243的前端与延伸杆1622抵接并推动联动板162向后移动,以将联动板162锁定在上述第一位置。将插接部243插配于插接位13内后,所述第二玩具体20与所述第一玩具体10连接成一体且呈并列状态(如图1所示),第二玩具体20被锁定在第一玩具体10的前端。
需要说明地,在所述并列状态时,如图1所示,第一玩具体10的前端和第二玩具体20的前端相对,由此使得设于第一玩具体10前端的第一夹持位1112被第二玩具体20遮挡,设于第二玩具体20前端的第三夹持位2112被第一玩具体10遮挡,即第一夹持位1112和第三夹持位2112均为隐蔽状态,而此时第二夹持位2111朝前且处于显露状态,由此使得在所述并列状态时,仅有第二触发件22可被触发。
在玩具100的前方放置至少三个玩具币30,然后向前推动处于所述并列状态的玩具100,当第二夹持位2111夹吸到一个玩具币30时,进入第二夹持位2111内的玩具币30与第一移动件221的后端碰撞,以驱动第一移动件221朝向第二车架211的前端移动,由此第二移动件222和第三移动件223在第一移动件221的驱动下均朝向第二车架211的前端移动。第二移动件222朝向第二车架211的前端移动以使得锁定部244和锁接部2221分离,第二玩具体20被解锁,设于枢转轴2113和枢转孔2311之前的扭簧242释能,第三移动件223朝向第二车架211的前端移动以使得接合部2231和卡接部251分离,第二翻转件25被解锁,第二翻转件25翻转。通过扭簧242释能以及第二翻转件25翻转带动第二玩具体20相对插接件24转动,以使其翻转至第一玩具体10上端的容纳位1111内,第二玩具体20位于第一玩具体10的上方,如图2中所示,玩具100处于叠加状态。另外,在第二移动件222和第三移动件223被触发而朝向第二车架211前端移动时,第二弹性件224被压缩而蓄能。
在上述叠加状态,如图2所示,第二玩具体20的顶部朝上、底部朝下、前端朝前、后端朝后,此时设于第二玩具体20底部的第三翻转件26与第一玩具体10相向。另外,如图2中所示,在叠加状态时,设于第二车架211前端的第三夹持位2112和设于第一车架111前端的第一夹持位1112均朝前且显露出来,此时第一夹持位1112可夹吸支撑面上的玩具币30。
在第二玩具体20翻转至第一玩具体10的上方之后,当设于第一车架111前端的两个第 一夹持位1112中的任一个夹吸到玩具币30时,如图3、图8和图9中所示,进入第一夹持位1112内的玩具币30将与推动件121碰撞,以推动推动件121向后移动,推动件121的后端的左侧的斜面部1213推动设于第一车架111左侧的锁接件141的下端,左侧的锁接件141的上端向左转动,以使第一玩具体10左侧的锁接件141的上端与第二玩具体20左侧的插接件24上的锁定槽2431分离,以解锁第二玩具体20左侧的插接件24,同样地,推动件121后端的右侧的斜面部1213推动设于第一车架111右侧的锁接件141的下端,右侧的锁接件141的上端向右转动,以使第一玩具体10右侧的锁接件141的上端与第二玩具体20右侧的插接件24上的锁定槽2431分离,以解锁第二玩具体20右侧的插接件24。左右两侧的插接件24均被解锁后,弹性件142释能而将第二玩具体20向前弹离第一玩具体10,如图3中所示,第二玩具体20被向前弹出一段距离后降落至支撑面,第二玩具体20降落至支撑面时,第二玩具体20的顶部依然朝上、底部依然朝下、前端依然朝前,即此时第二玩具体20的第三翻转件26与支撑面相向,第三夹持位2112朝前可夹吸支撑面上的玩具币30。
在推动件121被触发向后移动时,推动件121将带动锁止件122向后移动,以使第一锁扣部1221和第一锁扣位151分离,锁止件122对第一翻转件15的锁定作用解除。即在第一触发件12被触发时,不仅使得第二玩具体20弹离第一玩具体10,同时第一触发件12对第一翻转件15的锁定作用被解除。但需要说明的是,在第一锁扣部1221和第一锁扣位151分离时(即第一触发件12对第一翻转件15解除锁定时),第一翻转件15还不会发生翻转,此时延迟装置16对第一翻转件15的锁定作用还未解除。另外,在推动件121和锁止件122被触发向后移动时,第一弹性件被压缩而蓄能。
在上述的第一触发件12被触发而使得第二玩具体20弹离第一玩具体10时,插接部243与联动板162的延伸杆1622分离,联动板162被解锁,联动板162在延迟弹性件的作用下向前移动至上述的第二位置,由于阻尼齿轮161和联动板162之间的配合作用,联动板162会缓慢向前移动,由于锁扣件163与联动板162相联动,锁扣件163也缓慢向前移动,当联动板162运动至第二位置时,第二锁扣部1631与第二锁扣位152分离,由此使得延迟装置16对第一翻转件15的解锁作用解除,第一翻转件15可转动以带动第一玩具体10空翻,并且在第一翻转件15转动时,拨块153推动活动件17向前移动且复位弹性件18被压缩而蓄能,锁定扣钩171与锁定扣孔1911分离,第一展开组件19被解锁而展开,从而使得第一玩具体10在翻转后发生变形。第一展开组件19的具体展开过程在上文中已详细阐述,这里不再赘述。
通过延迟装置16与第一翻转件15之间的配合使得第一翻转件15在第一触发件12被触发后延迟一段时间被解锁。即在第二玩具体20被弹离第一玩具体10之后,延迟一 段时间,第一翻转件15才可转动而带动第一玩具体10空翻。
而第二玩具体20被弹离第一玩具体10之后,其可在惯性作用下继续向前行驶,当其第三夹持位2112夹吸到玩具币30时,第三触发件27被触发而朝向第二车架211的后端移动,第三触发件27与第三翻转件26分离,第三翻转件26被解锁而转动,从而带动第二玩具体20腾空翻转,在第三翻转件26翻转时,第二展开组件28被被触发而展开,从而使得第二玩具体20在翻转后发生变形。
可以理解地,通过延迟装置16与第一翻转件15之间的配合使得第一翻转件15在第一触发件12被触发后延迟一段时间被解锁,而第二玩具体20在第一触发件12被触发时弹离第一玩具体10,也就是说,在第二玩具体20弹离第一玩具体10后延迟一段时间,第一翻转件15才被完全解锁,而延迟的这段时间可以为第二玩具体20的第三夹持位2112夹币预留时间,以使得第二玩具体20的第三夹持位2112夹币和第一翻转件15被完全解锁同步,从而使得第一玩具体10和第二玩具体20可在同一时刻翻转,玩具100的趣味性强。
根据本发明上述实施例的翻转组合玩具100,第二玩具体20可在翻转至第一玩具体10之后弹离第一玩具体10,并且在第二玩具体20弹离第一玩具体10之后,第一玩具体10和第二玩具体20还可同时分别进行翻转和变形,玩具100的动作感强,趣味性更高。
需要说明地,图1-图13中所示意的“上”、“下”、“前”、“后”分别指向第一玩具体10的顶部、底部、前端和后端。
图14-图21中所示意的“上”、“下”、“前”、“后”分别指向第二玩具体20的顶部、底部、前端和后端。
在本说明书的描述中,参考术语“一个实施例”、“一些实施例”、“示意性实施例”、“示例”、“具体示例”、或“一些示例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或者特点包含于本发明的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不一定指的是相同的实施例或示例。而且,描述的具体特征、结构、材料或者特点可以在任何的一个或多个实施例或示例中以合适的方式结合。
尽管已经示出和描述了本发明的实施例,本领域的普通技术人员可以理解:在不脱离本发明的原理和宗旨的情况下可以对这些实施例进行多种变化、修改、替换和变型,本发明的范围由权利要求及其等同物限定。

Claims (14)

  1. 一种翻转组合玩具,其特征在于,包括:
    第一玩具体,所述第一玩具体设有第一触发件、插接位和功能件,所述第一触发件可活动地设于所述第一玩具体上,所述插接位固定在所述第一玩具体上,所述功能件与所述第一触发件相配合,所述功能件可触发所述第二玩具体执行相应的功能;
    第二玩具体,所述第二玩具体设有第二触发件和插接件,所述第二触发件可活动地设于所述第二玩具体上,所述插接件可转动地设于所述第二玩具体上;
    所述插接件与所述插接位相插接配合时,所述第二玩具体与所述第一玩具体连接成一体且呈并列状态;
    当所述第二触发件被触发时,所述第二玩具体相对所述插接件翻转至所述第一玩具体的上端呈叠加状态;
    当所述第一触发件被触发时,带动所述功能件触发所述第二玩具体执行相应的功能。
  2. 根据权利要求1所述的翻转组合玩具,其特征在于,所述功能件为变形触发件,所述第二玩具体上相应设有第二展开组件,所述第一触发件被触发时,所述变形触发件被带动而使所述第二展开组件展开。
  3. 根据权利要求1所述的翻转组合玩具,其特征在于,所述功能件为弹射件,所述弹射件设置于所述第一玩具体上或所述插接位中,所述第一触发件被触发时,所述弹射件被带动而将所述第二玩具体弹离所述第一玩具体。
  4. 根据权利要求3所述的翻转组合玩具,其特征在于,所述弹射件包括锁接件和弹性件,所述锁接件可活动地设于所述第一玩具体上,所述锁接件的一端与所述第一触发件配合,所述锁接件的另一端伸入所述插接位内,所述弹性件设于所述插接位内,当所述插接件与所述插接位相插接配合时,所述弹性件弹性变形而蓄能,且所述插接件和所述锁接件配合以将所述插接件锁定在所述插接位内,当所述第一触发件被触发时,所述锁接件被带动而活动以使所述插接件和所述锁接件分离,所述插接件被解锁且在所述弹性件的驱动下使得所述第二玩具体弹离所述第一玩具体。
  5. 根据权利要求4所述的翻转组合玩具,其特征在于,所述锁接件可转动地设于所述第一玩具体上,所述第一触发件具有斜面部,所述斜面部与所述锁接件抵接,在所述第一触发件被触发时,所述斜面部驱动所述锁接件转动而使所述锁接件和所述插接件分离。
  6. 根据权利要求1所述的翻转组合玩具,其特征在于,所述插接件包括:
    枢接部,所述枢接部与所述第二玩具体枢转连接;
    扭簧,所述扭簧设于所述枢接部和所述第二玩具体之间;
    插接部,所述插接部设于所述枢接部的一侧,所述插接部适于与所述插接位插接配合;
    锁定部,所述锁定部设于所述枢接部的另一侧,所述第二触发件上设有与所述锁定部配合的锁接部,当所述锁定部与所述锁接部配合时,所述第二玩具体被锁定在所述并列状态且所述扭簧弹性变形而蓄能,当所述第二触发件被触发时,所述锁接部和所述锁定部分离,所述扭簧释能带动所述第二玩具体翻转至所述叠加状态。
  7. 根据权利要求1或6所述的翻转组合玩具,其特征在于,所述第二玩具体设有第二翻转件,所述第二翻转件与所述第二玩具体枢接,在所述并列状态时所述第二翻转件位于与支撑面相向的位置,且所述第二翻转件可与所述第二触发件相配合以使所述第二翻转件处于锁定状态,
    当所述第二触发件被触发时,所述第二翻转件与所述第二触发件分离,以使所述第二翻转件转动并带动所述第二玩具体腾空翻转至所述叠加状态。
  8. 根据权利要求1所述的翻转组合玩具,其特征在于,所述插接件和所述第二玩具体通过插接座可拆卸相连,所述插接座可枢转地设于所述第二玩具体上,所述插接座和所述插接件的其中一个上设有插接柱且另一个上设有与所述插接柱适配的插接槽,且所述插接件和所述插接座的其中一个上设有识别扣钩且另一个上设有识别扣槽。
  9. 根据权利要求1所述的翻转组合玩具,其特征在于,所述第一玩具体设有第一翻转件,所述第一翻转件与所述第一玩具体枢接,所述第一翻转件位于与支撑面相向的位置,且所述第一翻转件可与所述第一触发件配合以使所述第一翻转件处于锁定状态,
    当所述第一触发件被触发时,所述第一触发件与所述第一翻转件分离,以使所述第一翻转件被解锁而转动以带动所述第一玩具体腾空翻转。
  10. 根据权利要求9所述的翻转组合玩具,其特征在于,所述第一玩具体设有延迟装置,所述延迟装置与所述第一翻转件配合,以使所述第一翻转件在所述第一触发件被触发后延迟翻转。
  11. 根据权利要求10所述的翻转组合玩具,其特征在于,所述延迟装置包括:
    阻尼齿轮,所述阻尼齿轮可转动地设于所述第一玩具体上;
    联动板,所述联动板在第一位置和第二位置之间可移动地设于所述第一玩具体上,所述联动板上设有齿条部,所述阻尼齿轮和所述齿条部啮合;
    锁扣件,所述锁扣件可活动地设于所述第一玩具体上且与所述联动板相联动,所述锁扣件可与所述第一翻转件配合以将所述第一翻转件锁定;
    延迟弹性件,所述延迟弹性件的两端分别抵接于所述第一玩具体和所述联动板,所述联动板在所述第一触发件被触发后在所述延迟弹性件的驱动下由所述第一位置朝向所述第二位置移动,当所述联动板位于所述第一位置时,所述锁扣件与所述第一翻转件配合且所述延迟弹性件弹性变形而储能,当所述联动板位于所述第二位置时,所述锁扣件与所述第一翻转件分离以解锁所述第一翻转件。
  12. 根据权利要求9所述的翻转组合玩具,其特征在于,所述第一玩具体包括有第一固定件和第一展开组件,所述第一固定件的前端形成有顶部敞开的容纳位以在所述叠加状态时容纳所述第二玩具体,所述插接位包括两个且分别设于所述容纳位的两侧,所述第一展开组件可收展地设于所述第一固定件的后端,所述第一翻转件设于所述第一固定件的底部,所述第一触发件可活动地设于所述第一固定件的前侧上,所述第一翻转件翻转时将触发所述第一展开组件展开。
  13. 根据权利要求3所述的翻转组合玩具,其特征在于,所述第二玩具体包括有第三翻转件和第三触发件,所述第三触发件可活动地设于所述第二玩具体上,所述第三翻转件与所述第二玩具体枢接,且所述第三翻转件可与所述第三触发件配合以使所述第三翻转件处于锁定状态,在所述第二玩具体被弹出后,所述第三翻转件位于与支撑面相向的位置,在所述第二玩具体弹出后且所述第三触发件被触发时所述第三翻转件与所述第三触发件分离,以使所述第三翻转件被解锁而转动以带动所述第二玩具体腾空翻转。
  14. 根据权利要求13所述的翻转组合玩具,其特征在于,所述第二玩具体还包括第二展开组件,所述第二展开组件可收展地设于所述第二玩具体上,所述第三翻转件翻转时将触发所述第二展开组件展开。
PCT/CN2018/114652 2017-12-29 2018-11-08 翻转组合玩具 WO2019128490A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201711483938.3 2017-12-29
CN201711483938.3A CN109985397A (zh) 2017-12-29 2017-12-29 翻转组合玩具

Publications (1)

Publication Number Publication Date
WO2019128490A1 true WO2019128490A1 (zh) 2019-07-04

Family

ID=67066476

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2018/114652 WO2019128490A1 (zh) 2017-12-29 2018-11-08 翻转组合玩具

Country Status (2)

Country Link
CN (1) CN109985397A (zh)
WO (1) WO2019128490A1 (zh)

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP4837140B1 (ja) * 2011-06-14 2011-12-14 株式会社バンダイ 車両玩具変形装置、当該装置の車両玩具変形方法及び車両玩具
CN103182190A (zh) * 2013-03-19 2013-07-03 广东奥飞动漫文化股份有限公司 一种多功能的组合玩具
CN203060811U (zh) * 2013-02-08 2013-07-17 王跃辉 一种数字变形的组合玩具
CN206198683U (zh) * 2016-09-28 2017-05-31 奥飞娱乐股份有限公司 子母玩具
CN207822515U (zh) * 2017-12-29 2018-09-07 奥飞娱乐股份有限公司 翻转组合玩具

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104353243B (zh) * 2014-10-28 2016-09-14 广东奥飞动漫文化股份有限公司 一种可夹持玩具物的翻转变形玩具车
CN205759671U (zh) * 2016-05-26 2016-12-07 奥飞娱乐股份有限公司 一种可连续翻转的变形玩具车
CN205832602U (zh) * 2016-06-27 2016-12-28 奥飞娱乐股份有限公司 可二次空翻玩具
CN205964991U (zh) * 2016-06-27 2017-02-22 奥飞娱乐股份有限公司 可变形玩具
CN205832605U (zh) * 2016-06-27 2016-12-28 奥飞娱乐股份有限公司 可二次夹币的动物类玩具

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP4837140B1 (ja) * 2011-06-14 2011-12-14 株式会社バンダイ 車両玩具変形装置、当該装置の車両玩具変形方法及び車両玩具
CN203060811U (zh) * 2013-02-08 2013-07-17 王跃辉 一种数字变形的组合玩具
CN103182190A (zh) * 2013-03-19 2013-07-03 广东奥飞动漫文化股份有限公司 一种多功能的组合玩具
CN206198683U (zh) * 2016-09-28 2017-05-31 奥飞娱乐股份有限公司 子母玩具
CN207822515U (zh) * 2017-12-29 2018-09-07 奥飞娱乐股份有限公司 翻转组合玩具

Also Published As

Publication number Publication date
CN109985397A (zh) 2019-07-09

Similar Documents

Publication Publication Date Title
WO2016065916A1 (zh) 一种可夹持玩具物的翻转变形玩具车
CN207822515U (zh) 翻转组合玩具
CN207822509U (zh) 可弹射的玩具车
RU2719145C1 (ru) Игрушка для ребенка и матери
WO2018000521A1 (zh) 可弹射配件的玩具
KR101859808B1 (ko) 변신 완구
CN107771098B (zh) 变形玩具
WO2020187089A1 (zh) 可分裂组合的玩具套装
WO2018000522A1 (zh) 可二次夹币玩具
CN207941195U (zh) 翻转组合玩具
WO2019128490A1 (zh) 翻转组合玩具
CN209997191U (zh) 可分裂组合的玩具套装
WO2018149040A1 (zh) 玩具
WO2022228092A1 (zh) 一种触发可动玩具
CN110251953B (zh) 可嵌套变形的玩具套装
CN110270102B (zh) 功能旋转玩具
CN214260649U (zh) 单次触发多次腾空的玩具
CN114452657A (zh) 一种场景玩具结构
CN209475589U (zh) 承台玩具体
CN112915556A (zh) 变形玩具
CN111450545A (zh) 双触发式玩具
WO2019128489A1 (zh) 可多次空翻玩具及可二次空翻的玩具车
CN109847379B (zh) 合体变形玩具
CN215962130U (zh) 玩具配件和组合玩具
CN218944350U (zh) 变形玩具

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 18893612

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 18893612

Country of ref document: EP

Kind code of ref document: A1