WO2021147224A1 - Jouet de transformation à formes multiples et jouet combiné formé au moyen dudit jouet de transformation - Google Patents

Jouet de transformation à formes multiples et jouet combiné formé au moyen dudit jouet de transformation Download PDF

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Publication number
WO2021147224A1
WO2021147224A1 PCT/CN2020/094055 CN2020094055W WO2021147224A1 WO 2021147224 A1 WO2021147224 A1 WO 2021147224A1 CN 2020094055 W CN2020094055 W CN 2020094055W WO 2021147224 A1 WO2021147224 A1 WO 2021147224A1
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WIPO (PCT)
Prior art keywords
shape
toy
block
split
section
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PCT/CN2020/094055
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English (en)
Chinese (zh)
Inventor
王跃辉
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王跃辉
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Application filed by 王跃辉 filed Critical 王跃辉
Publication of WO2021147224A1 publication Critical patent/WO2021147224A1/fr

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    • 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
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H3/00Dolls
    • A63H3/04Dolls with deformable framework

Definitions

  • the invention relates to the field of transforming toys, in particular to a multi-form transforming toy and a combined toy formed by it.
  • Deformation toys give players great pleasure due to the diversity of their shapes or postures. At present, some transforming toys have an overall shape, which changes the posture of the overall shape through the rotation or movement of the hands, feet, head and other parts. These transforming toys are often not interesting because the overall shape has not changed. Some transforming toys can transform from simple forms such as blocks and bullets into complex forms such as animals, machines or vehicles through the movement of the components. These transforming toys are not highly playable in simple forms. There are also some transforming toys that can be transformed between a variety of complex shapes, but the transforming toys need to be disassembled and reinstalled, which will cause the toy parts to be easily lost and can no longer be used for play.
  • the invention patent CN 103127722 B discloses a digitally deformed combination toy.
  • a toy combination composed of several toy monomers.
  • the toy monomers include digital modeling blocks, and the digital modeling blocks are provided with movable or Rotating parts, the digital modeling blocks are provided with interconnecting parts, which are transformed into various parts of the toy assembly by moving or rotating the parts of the digital modeling blocks, and then using the connecting parts to transform the deformed digital modeling blocks Connect to form a toy assembly.
  • the invention adopts the design of a single toy as a digital modeling block, the digital modeling block is provided with movable or rotating parts, and the digital modeling blocks are provided with interconnecting connecting parts, by moving or rotating the parts of the digital modeling block Each part of the toy assembly is transformed into a toy assembly, and then the deformed digital modeling blocks are connected to form the toy assembly with a connecting piece. But the invention exists
  • the purpose of the present invention is to provide a multi-form transforming toy and the combined toy formed by it.
  • the multi-form rotating transforming toy can solve the problem that the transforming toy has a single form, the form complexity is not enough to express the form to be simulated, and the fun of playing is insufficient This is a problem, and the single transforming toy can further constitute a combined toy, which improves the fun of playing.
  • the present invention provides a multi-form transforming toy, comprising a toy main body, the toy main body including a main structure block and a plurality of first structure blocks, the main structure block and each of the first structure blocks can be spliced into a first shape,
  • the main structural block is provided with a movable and/or rotating connecting member, the first structural block is connected to the main structural block through the connecting member, and the movement of the first structural block relative to the main structural block and/or Or rotate to form a second shape.
  • the connecting member includes a sliding rod arranged on one of the structural blocks, and a track hole arranged on the other structural block; the sliding rod and the track hole cooperate with each other to make One of the structural blocks can move in translation and sliding relative to the other structural block.
  • a limit boss is provided on the side wall of the track hole to restrict the movement of the sliding rod at the set position.
  • the toy body further includes a second structural block, the second structural block has a second-shaped partial structure, the first structural block is provided with a first groove structure, the The second structure block can move or rotate to the inside of the first groove structure and is connected to the first structure block.
  • the second structural block includes a plurality of second structural sub-parts with a second-shaped partial structure, each of the structural sub-parts is rotatably connected to each other, and the structural sub-parts are rotated and folded It cooperates with the first groove structure to fit and move into the first groove structure.
  • the aforementioned multi-form transforming toy is composed of a plurality of joint bodies connected by rotating shafts to the first structural block, and the movement of the joint bodies can assume a partial form of the second shape.
  • the first structure block can be movably hidden into a second groove structure provided in the main structure block.
  • a doll is detachably connected to the main structural block.
  • the first shape is a carriage shape, and the second shape is a cow shape; or, the first shape is a hull shape, and the second shape is a fish shape; or, The first shape is a spaceship shape, and the second shape is a bird shape; or, the first shape is a pharaoh head shape, and the second shape is a scorpion shape; or, the first shape is a vehicle shape, The second shape is a human shape.
  • the present invention also provides a combined toy, including the above-mentioned multi-form transforming toy.
  • a combined toy including the above-mentioned multi-form transforming toy.
  • there are more than two toy bodies each of the toy bodies is detachably connected as a whole, and each of the toy bodies
  • the first shape of the toy body is different, and/or the second shape of each toy body is different.
  • the present invention has the following advantages:
  • the first structure block moves and/or rotates relative to the main structure body to change the positional relationship of mutual attachment and form a second structure.
  • the shape without disassembling parts, can realize the transformation between two complicated forms, simplify the operation of deformation, and improve the fun of playing with the deformation toy. Further, by setting the sliding rod, the track hole and the limit boss, the complicated movement of translation and rotation can be carried out between the mating parts, and the limit position can be converted; further, the second foldable concealed in the slot can be set.
  • the structural block makes the deformable toy show when it reaches the second shape, and improves the simulation degree of the second shape; further, by setting the third structural block of the joint shape, it forms a joint-walkable mount form with the main structural block, and at the same time, it is set again Mounted dolls can be combined with various cartoon characters to enhance the fun of transforming toys.
  • FIG. 1 is a schematic diagram of a first modeling three-dimensional structure of Embodiment 1 of the present invention
  • FIG. 2 is a schematic diagram of a second modeling three-dimensional structure of Embodiment 1 of the present invention.
  • FIG. 3 is a schematic diagram of a three-dimensional structure inside the first model display of the first embodiment of the present invention.
  • FIG. 4 is a schematic diagram of a first modeling three-dimensional structure of Embodiment 2 of the present invention.
  • Embodiment 2 of the present invention is a schematic diagram of a second modeling three-dimensional structure of Embodiment 2 of the present invention.
  • FIG. 6 is a schematic diagram of a three-dimensional structure inside the first model display of the second embodiment of the present invention.
  • FIG. 7 is a schematic diagram of a first modeling three-dimensional structure of Embodiment 3 of the present invention.
  • FIG. 8 is a schematic diagram of a second modeling three-dimensional structure of Embodiment 3 of the present invention.
  • FIG. 9 is a schematic diagram of a three-dimensional structure inside the first model display of the third embodiment of the present invention.
  • FIG. 10 is a schematic diagram of a first modeling three-dimensional structure of Embodiment 4 of the present invention.
  • FIG. 11 is a schematic diagram of a second modeling three-dimensional structure of Embodiment 4 of the present invention.
  • FIG. 12 is a schematic diagram of a three-dimensional structure inside the first model display of the fourth embodiment of the present invention.
  • FIG. 13 is a schematic diagram of a first modeling three-dimensional structure of Embodiment 5 of the present invention.
  • FIG. 14 is a schematic diagram of a second modeling three-dimensional structure of Embodiment 5 of the present invention.
  • 15 is a schematic diagram of a three-dimensional structure inside the first modeling display of the fifth embodiment of the present invention.
  • Fig. 16 is a schematic diagram of the three-dimensional structure of the combined toy of the present invention.
  • Reference signs are: ship first structure Aa, ship seat body Aa1, anchor joint body Aa2, anchor joint Aa3, upper ship body Ab, ship second body Ab1, fish lower jaw Ab2, fish upper jaw Ab3, first fish fin Ab4 , Watchtower body Ab5, second fin Ab6, ship doll Ab8, ship connecting part Ac7;
  • Base body D1 first mock body D11, second mock body D12, third sliding rod D121, third track hole D122, third limiting boss D123, first connecting rod D124, upper head D13, second sliding rod D131 ,
  • the present invention is a multi-form transforming toy, including a toy body.
  • the toy body includes a main structure block and a number of first structure blocks.
  • the main structure block and each first structure block can be spliced into a first shape.
  • the main structural block is provided with movable and/or rotating connecting parts, the first structural blocks are connected to the main structural block through the connecting parts, and the movement and/or rotation of the first structural block relative to the main structural block can form a second shape .
  • the first structure block moves and/or rotates relative to the main structure body, so that the positional relationship of mutual attachment is changed, and the second shape is formed, Without disassembling parts, the transformation between two complex shapes can be realized, the operation of deformation is simplified, and the play fun of the deformation toy is improved.
  • the connecting component includes a fish sliding rod arranged on one of the structural blocks, and a track hole arranged on the other structural block; the fish sliding rod and the track hole cooperate with each other so that one of the structural blocks can be opposed to the other structure
  • the block makes translational and sliding motions.
  • a limit boss is provided on the side wall of the track hole to limit the movement of the fish sliding rod at the set position.
  • the toy body also includes a second structural block, the second structural block has a second-shaped partial structure, the first structural block is provided with a first groove structure, and the second structural block can move or rotate to the inside of the first groove structure.
  • the second structural block includes a plurality of second structural sub-parts with a partial structure of the second shape, each structural sub-body is rotatably connected to each other, and the rotating and folded structural sub-body cooperates with the first groove structure to fit and move to the first groove structure Inside.
  • the toy main body includes a plurality of third structural blocks
  • the third structural block includes a plurality of joint bodies connected by rotating shafts
  • the third structural block and the main structural block can form a mount form.
  • the third structure block can be moved and hidden into the second groove structure provided in the main structure block.
  • the main structure block is detachably connected with a doll.
  • the third structural block By arranging the third structural block in the shape of a joint, it forms a joint-walkable mount form with the main structural block.
  • a doll with a mount is arranged, which can combine various cartoon characters and enhance the fun of the transforming toy.
  • the first model is a vehicle model
  • the second model is a human model
  • the main structure block is the base D1
  • the first structure block is the first split body D2 and the second split body D3.
  • the multi-form transforming toy includes a toy body.
  • the toy body includes a base body D1, a first split body D2 and a second split body D3.
  • the first split body D2 is movably connected to the side of the base body D1
  • the second split body D2 is movably connected to the side of the base body D1.
  • the split body D3 is movably connected to the lower part of the base body D1; the first split body D2 and the second split body D3 can be moved to the rear of the base body D1, so that the base body D1, the first split body D2 and the second split body D3 are combined to form one Mimic structure.
  • the first form is a truck form
  • the base body D1 is the shape of the front of the truck
  • the first split body D2 is two, which are combined into the shape of the lower rear body of the truck
  • the second split body D3 is two , Split into the shape of the rear upper body of the truck
  • the second form is the robot form
  • the two first splits D2 are turned sideways to the sides of the base D1, as the hands of the robot form
  • the two first splits D2 is turned to the bottom of the base D1, which acts as a leg in the shape of a robot.
  • the toy body in order to realize that the first split body D2 is movably connected between the rear part and the side part of the base body D1, the toy body also includes a first connecting body D21, one end of the first connecting body D21 rotates along the longitudinal axis The ground is connected to the rear of the base body D1, and the other end of the first connecting body D21 is connected to the first split body D2 rotatably along the transverse axis.
  • first connecting body D21 is connected to the base body D1 through a longitudinal shaft and a shaft hole, and the other end of the first connecting body D21 is connected with a first split body D2 through a horizontal rotating shaft and a shaft hole, so that the first split body D2 can rotate about the connection of the first connecting body D21, and can also swing between the rear part and the side part along with the first connecting body D21.
  • first split body D2 After the first split body D2 is deformed into a hand, it can be rotated on the side to assume different postures.
  • the first split D2 in order to make the first split D2 as the second form of hand movable, includes the front branch D22 and the back branch D23, and one end of the front branch D22 is movably connected
  • the front branch D22 is provided with a first sliding rod D221
  • the other of the rear branch D23 is provided with a first track hole D222
  • the inner wall of the track hole is provided with a first limiting boss D223
  • the first sliding rod D221 They are slidably inserted into the first track hole D222 to make the front branch D22 and the rear branch D23 relatively move in translation and rotation.
  • the front branch D22 and the rear branch D23 are also provided with matching protrusions and slot structures D224, so that the two can be locked and fixed.
  • the first connecting body D21 is rotated to the upper rear part of the base body D1, the front limbs and the hind limbs are perpendicular to each other, and the first sliding rod D221 is located at the upper end of the first track hole D222 and passes through the first limit on the end position.
  • the position boss D223 is fixed; in the second form, the first connecting body D21 is rotated to the side, and the rear branch D23 is first pushed to the lower end of the first track hole D222, and the rear branch D23 is rotated to make the protrusion and slot structure D224 is aligned and inserted into it.
  • the first limiting boss D223 on the other side will fix the rear branch D23 to prevent the protrusion and the slot structure D224 from separating.
  • the second split body D3 is movably connected between the back and the lower part of the base body D1.
  • the toy body further includes a second connecting body D31, one end of the second connecting body D31 It is rotatably connected to the lower rear groove structure of the base body D1 through a transverse rotating shaft, and the other two ends of the second connecting body D31 are connected to the second split body D3 through the rotating shaft.
  • the second connecting body D31 is provided with a first buffer structure D37a including a gear and a gear base, which is respectively connected to the rotation shafts of the second split body D3 on both sides, so that the rotation of the second split body D3 is buffered and restricted.
  • the second split body D3 which is the second form of the leg, can be moved.
  • the second split D3 includes a front leg support section D32, a middle leg support section D33 and a rear leg support section D34.
  • the front leg support section D32 includes a front section D321 and a rear section D322. One end of the front section D321 is connected to the first A buffer structure D37a, the other end of the front section D321 is connected to the rear section D322 with a longitudinal axis of rotation.
  • a gear and gear table are arranged between the front section D321 and the rear section D322, that is, the second buffer structure D37b, so that the front section D321 and the rear section D322 switch between being perpendicular to each other and in a straight line, to achieve the effect of the leg structure of the second split D3 being stretchable;
  • the rear section D322 is connected with the rotating shaft to one end of the middle leg support section D33, The other end of the leg joint D33 is connected to the rear leg joint D34 parallel to the rotating shaft.
  • the rear leg support section D34 is provided with an inner tank body that is rotatably connected with the rear wheel portion D35, the rear leg support section D34 is connected with an extension section D36 through the first link, and the left and right sides of the extension section D36 are respectively provided with clamping strip card slots , That is, the first engaging structure D38a, a buckle plate is provided on one side of the rear leg branch D34, and the buckle plate and the extension branch D36 are respectively provided with a buckle slot, that is, the second engaging structure D38b.
  • a gear and a third cushioning structure D37c of gears are arranged between the rear section D322 and the middle leg support section D33, the bottom of the rear leg support section D34 and the extension support section D36 clamping table slot, that is, the third clamping structure D38c
  • the leg joints D33 are parallel to each other, and the extended branch D36 is rotated to the side of the rear leg joint D34 through the first link; the two left and right second split bodies D3 are fixed to each other by the first engagement structure D38a of the extended branch D36;
  • the buckle plate fixes the rear leg joint D34 and the extension joint D36 in the positional relationship through the second locking structure D38b, and at the same time serves as the rear part of the vehicle shape.
  • the second form first rotate the front section D321 to make the wheels D141 on the two second sections D3 face inward, and separate the buckle plates.
  • the extension branch D36 rotates through the first link and engages through the third
  • the structure D38c is fixed to the bottom of the rear leg joint D34, and then the entire rear leg joint D34 is rotated relative to the middle leg joint D33 so that the extension joint D36 faces downward.
  • the torso of the combined toy is transformed from the second form, the front section D321 and the rear section D322 swing to be parallel to each other, and the rear section D322 and the middle leg support section D33 are perpendicular to each other.
  • the left and right second splits D3 can be fixed by the extension branch D36; through the connection method of the front branch D321, the robot form, the left and right rear The wheel D35 can be hidden inside the second split body D3; extending the joint can increase the leg length of the robot form.
  • the mimic structure is in the form of a vehicle.
  • Both sides of the base body D1 are provided with front wheel parts D14, the outer part of the first split body D2 is provided with rear wheel parts D35, and the front wheel part D14 includes wheels D141. , Wheel plate D142 and adapter body D143.
  • Adapter body D143 can be horizontally rotatably connected to base body D1.
  • One end of wheel plate D142 is rotated to connect wheel D141, and the other end of wheel plate D142 can be vertically rotatably connected to adapter
  • the body D143 and the base body D1 are provided with a slot hole that cooperates with the wheel mounting plate D142, so that the wheel D141 can be inserted into the slot hole between the inward and outward directions.
  • the adapter body D143 is rotated to rotate the front wheel portion D14 out of the slot, and the rear wheel portion D35 is rotated to change the direction, and then the adapter body D143 is rotated again to turn the front wheel portion D14 into the slot.
  • the mimic structure is in the form of a vehicle, and the toy body can be deformed into a human form.
  • the toy body also includes a first mimic D11 that can be displayed as a car light or eye, and can be displayed as a car grid or mouth.
  • the second simulant body D12 of the second phantom body D12 is connected to the base body D1; the first phantom body D11 can be connected to the side of the second phantom body D12 through the second connecting rod 341, and can be connected to the second phantom body D12 Upper activity.
  • the toy body also includes an upper head D13, which can be movably connected to the front upper part of the base body D1 back and forth, and a second simulant body D12 can be movably connected to the front lower part of the base body D1.
  • the upper car head D13 is provided with a second sliding rod D123131, and a second track hole D132 is provided in the slot at the front of the base body D1.
  • a second limiting boss D133 is provided at the setting position of the second track hole D132, the second sliding rod D123131 and the second track hole D132 cooperate with each other so that the upper head D13 can be about The front upper side of the base body D1 telescopically moves.
  • the second mock body D12 is provided with a third sliding rod D121, and a third track hole D122 is provided in the slot hole at the front of the base body D1, specifically an arc-shaped strip hole arranged obliquely, and the third track hole D122 is set at the set position There is a third limiting boss D123, and the third sliding rod D121 and the third trajectory hole D122 cooperate with each other so that the upper carriage D13 can move diagonally forward and backward relative to the base D1.
  • the first phantom D11 swings to both sides of the second phantom D12, the second phantom D12 is pushed to the lower end of the third trajectory hole D122, and is engaged by the third limiting boss D123 Fixed, the upper head D13 is pushed to the front end of the second track hole D132, and is clamped and fixed by the second limiting boss D133.
  • the upper front D13, the lower car grid, and the lights on both sides of the car grid constitute the shape of the truck front.
  • the upper head D13 derives the rear end of the second trajectory hole D132
  • the second simulacrum D12 derives the upper end of the third trajectory hole D122
  • the first simulacrum D11 swings to the second simulacrum D12 through the second link 341
  • the upper car head D13 is hidden, and the mouth on the lower side and the eyes on the upper side constitute a head structure in the form of a robot.
  • a bin body D15 is provided on the upper part of the base body D1, and the bin body D15 is detachably connected with a doll D16, wherein the doll D16 has a human shape and a half-length structure.
  • the bin body D15 is a transparent cover structure.
  • the upper part of the base body D1 is provided with a cover body D17, and a cavity is provided in the cover body D17.
  • the cover body D17 is hinged to the above-mentioned bin body D15.
  • the bin body D15 can be entirely contained in the cavity , And close the cover body D17; in the second state, the bin body D15 can be rotated out of the cover body D17, so that the doll D16 rides on the robot-shaped structure.
  • the main structural block is the first head B; the first structural block is the second head B2, the inner split wing body B43, and the power part B52; the second structural block is the head as the crown body B51, and the second structural block is the crown body B51.
  • the transforming toy includes a toy body, and the toy body includes a first head B1 and a second head B2.
  • the first head B1 includes a head part body B11
  • the head part body B11 and the second head part B2 are connected by a connecting body B14
  • the first head B1 is provided with an opening B1a that matches with the head part body B11.
  • the body B14 is movably connected to the first head B1, so that the head part body B11 and the second head B2 can be switched between the inside and outside of the opening B1a.
  • the head body B11 includes, but is not limited to, an eye shape.
  • the connecting body B14 can move inside and outside the first head part B1
  • the first head part body B11 when the head part body B11 is switched to the outside of the opening B1a, the first The second head B2 is hidden in the opening B1a, and the head part B11 and the first head B1 form a complete head shape of the first shape; then when the second head B2 is switched to the outside of the opening B1a, the head part B11 is hidden in the opening B1a, the first head B1 is used as the body of the second head B2, and the first head B1 and the second head B2 form a second shape.
  • This solution uses simple rotation and deformation operations and cleverly utilizes the hidden principle of the internal structure, so that the first head B1 can be used as the first-shaped head and the second-shaped body, respectively, to realize the rotation and deformation of two complex shapes.
  • the first head B1 may include a first shell B12 and a second shell B13 that are hinged to each other. The position is on the rear side of the toy, the first shell B12 is located below, and the second shell B13 is located above. Both the front ends of the first shell B12 and the second shell B13 have a half-notch, and the combination of the notches forms the opening B1a.
  • This solution can enable the second housing B13 to be opened from the hinge when the shape is switched to expose the internal space, which facilitates the deformation operation of the first head B1 and the head part body B11.
  • the first head B1 further includes a connecting rod B15, one end of the connecting rod B15 is connected to the first housing B12.
  • the connecting rod B15 can be rotated relative to the front and rear directions about the shaft at the bottom of the transverse shaft; the other end of the connecting rod B15 is universally connected to the connecting body B14, specifically the connecting rod B15 is provided with a ball shaft on this end, and the connecting body
  • the connecting position of B14 is provided with a ball hole, and the ball shaft and the ball hole cooperate with each other.
  • the connecting body B14 can be rotated to a higher position along the rotating shaft, and the blockage of the first housing B12 and the second housing B13 can be avoided by the universal connection to realize the state switching.
  • the first head B1 is the head of the machine mount
  • the head part body B11 is the face of the machine mount
  • the second head B2 Birds heads In the first shape, the head of the bird is hidden, and the toy body is in the form of a machine mount.
  • the face of the machine mount In the second shape, the face of the machine mount is hidden, and the other parts of the head of the machine mount are used as the body of the head of the bird, the toy body It is in the form of birds.
  • the toy body in order to improve the fun and difference of the transformation between the first shape and the second shape, includes a leg B3a and a tail B3b.
  • the leg B3a is connected to the lower side of the first head B1
  • the tail B3b includes a connecting seat and a joint body B31.
  • the joint body B31 is connected to the first head B1 through the connecting seat, so that the joint body B31 can move on the back and lower sides of the first head B1.
  • the legs B3a can form the legs of the second shape ornithology
  • the joint body B31 includes a plurality of mutually hinged joints. As shown in the figure, there are two hinges and three joints, and the tail B3b is provided with two joints.
  • the two joint bodies B31 are universally connected to the connecting seat B34, the connecting seat B34 is connected to the rear side of the toy through a rotating shaft, specifically the rear of the first shell B12 side.
  • This solution enables the joint bodies B31 of the tail part B3b to be rotated to the lower side of the toy body as a whole, and combined with the leg part B3a to form four outriggers in the first shape of the machine mount form.
  • the joint body B31 includes a first tail section B32 and a second tail section B33 which are hinged at the end, and the first tail section B32 A first groove structure B32a is provided; the second tail section B33 and the first groove structure B32a cooperate with each other so that the second tail section B33 can be hidden in the first groove structure B32a.
  • the leg B3a also includes the joint body B31 described above.
  • the first caudal section B32 and the second caudal section B33 of the joint body B31 of the leg B3a are separated, such as a bird’s toe, and the second caudal section B33 of the joint body B31 of the tail B3b is hidden in the first caudal section.
  • B32 like bird feathers.
  • the legs B3a and the tail B3b are on the underside of the toy, and the first tail section B32 and the second tail section B33 are separated, such as the limbs of a machine mount.
  • the toy body also includes wing parts B4 connected to both sides of the first head B1.
  • the wings include at least two split wing bodies, the adjacent split wing bodies are hingedly connected, and a second groove structure is provided on both sides of the first head B1 B4c, the second groove structure B4c matches the shape of each split wing body after being folded.
  • the split wing body has three sections, the outer split wing body B41, the middle split wing body B42, and the inner split wing body 43 are hinged into one body in turn, and the outer split wing body B41, the middle split wing body B42 and the inner split wing body 43 are The thickness and area of the room increase sequentially.
  • the middle split wing body B42 is provided with a first groove B4a, the outer split wing body B41 is rotatably folded into the first groove B4a; the inner split wing body 43 is provided with a second groove B4b, and the middle split wing body B42 is rotatably folded Into the second groove B4b; the inner split wing body 43 can be pivotally folded into the second slot.
  • the inner split wing body 43 is connected to the first shell B12 through a matching ball shaft and a ball hole. After each split wing body is folded, the overall thickness is uniform and the same as the thickness of the second groove structure B4c, so that the wings B4 on both sides It can be rotated and hidden in the second groove structure B4c to realize the switching of the wings between the first shape and the second shape.
  • the second head B2 in order to enhance the fun of the transformation between the first shape and the second shape, is universally connected to the connecting body B14, and the second head B2 includes The crown body B51 and the third groove structure B5a, the crown body B51 is connected to the third groove structure B5a through a rotating shaft, the crown body B51 and the third groove structure B5a cooperate with each other, so that the crown body B51 can be hidden in the third groove structure B5a
  • This structure can realize the retractable deformation of the second head B2, which can realize the characteristic structure such as chicken comb while ensuring that the cavity can be accommodated in the second head B2.
  • the toy body also includes a power part B52 and a swing rod B56.
  • the power part B52 is rotatably connected to one end of the swing rod B56 off-center.
  • the other end of the swing rod B56 is hinged to the first head B1 so that the power part B52 is on the front side.
  • the power part B52 is in the shape of a gas turbine.
  • the power part B52 swings to the front of the first head B1 in the bird form as the chest in the bird form; it swings to the first head B1 in the mount form Below is the power plant for the mechanical mount in the first shape.
  • a bin body B54 is specifically provided.
  • the bin body B54 is a groove structure provided on the top side of the second housing B13, and the bottom of the doll B55 is provided with an engaging structure.
  • the doll B55 is detachably clamped in the bin body B54.
  • the doll B55 is in the shape of a human, half-length or full-body, with various expressions.
  • the warehouse body B54 and the doll B55 can increase the gameplay of the mechanical mount form of the first shape, and can combine various animation styling elements to increase the fun of the mount.
  • the main modeling body in the transforming toy is the upper hull
  • the first modeling block in the transforming toy includes an anchor joint body
  • the upper hull body is provided with a connecting part, so that the anchor joint body can be translated and rotatably connected to the two upper hull bodies.
  • the anchor joint body includes anchor nodes connected to each other.
  • the anchor joint body located below and the upper hull constitute the first shape, that is, the hull transformation; by moving and rotating the anchor joint body by the connecting part, and swinging the shape of the anchor joint body again, the anchor joint body and the upper hull body can form the second shape.
  • Shape that is, fish shape.
  • the connecting component includes a boat seat body and a movable block, one of the movable block and the toy body is provided with a fish sliding rod, and the other of the movable block and the upper hull A track hole is provided, and the fish sliding rod cooperates with the track hole to make the movable block translate and rotate relative to the upper hull.
  • the upper hull Ab is a hull structure
  • the combination of the first structure a and the upper hull Ab of the ship can form a fish shape.
  • the anchor joint bodies Aa2 are brought together to form the first fish shape, which outlines the fish head, fish body and fish tail through the outline.
  • each anchor joint Aa2 is adjusted through the anchor joint Aa3 to form a supporting foot, and since the first structure a of the ship is the hull
  • the structure, its outline and some concealable parts are the front half of the fish shape, and the anchor joints Aa2 of the hull structure and the foot shape of the lower side can form the second shape of the boat mount.
  • the upper hull Ab is a ship-shaped shell structure
  • each anchor joint Aa3 is hinged as a whole
  • the tail of the anchor joint Aa2 is a boat anchor structure
  • the upper and lower tail anchor joints Aa3 are separated by a certain angle to form a fish tail structure.
  • the movable part is a movable block, and the upper hull Ab
  • the second ship body Ab1 that can rotate relative to the upper hull Ab, the rear end of the second ship body Ab1 is provided with an opening
  • the opening of the upper hull Ab is provided with a sliding rod
  • the movable block is provided with a track hole
  • the movable block can be in the opening
  • the movable block is sleeved on the sliding rod through the track hole.
  • the track hole is a strip-shaped ship track hole.
  • the sliding rod and the track hole cooperate with each other, so that the movable block can move linearly under the support of the sliding rod, and the movable block can be opposed to each other.
  • the sliding rod rotates.
  • the movable block moves downwards along the track hole from the rear end of the upper hull Ab, moves to the other end of the track hole, and rotates the movable block to move it to the second ship.
  • the seat body Ab1 is fixed within the opening of the seat body Ab1.
  • this embodiment realizes that the first structure a of the ship can be transformed from the rear side of the upper hull Ab to the bottom side of the upper hull Ab ; And, by rotating the second ship body Ab1, the ship's first structure a can be rotated to the front side of the bottom of the upper hull Ab, and then unfold each anchor joint Aa3 under the ship's first structure a to form a mount
  • the legs of the shape, multiple legs constitute the leg.
  • the inner wall surfaces of the two ends of the track hole are provided with limited bosses to restrict the movement at the ends.
  • the rotation of the second ship body Ab1 can also be fixed in a deformed state through the matching raised ends and clamping holes.
  • Example 3 as an embodiment in which the ship seat body Aa1 is adjusted to be close to the top surface of the upper ship body Ab and the fixing method before and after adjustment, the ship seat body Aa1 is connected to the movable block by a rotating shaft deviating to the side of the movable block.
  • the ship seat body Aa1 is provided with an engaging structure
  • the movable block and the upper hull Ab are respectively provided with an engaging structure
  • the engaging structure and the engaging structure are mutually engaged and fixed, wherein the engaging structure is an end structure
  • the engaging structure is an end structure.
  • the structure is a slot structure.
  • the first structure a of the boat is located close to and away from the sliding rod, so that the first structure a of the boat is set
  • the position is higher and can be close to the top surface of the upper hull Ab, which is more convenient to simulate the shape of the fish.
  • the boat seat body Aa1 can be fixed by the end clamped to the upper boat body Ab and the slot holes on the movable block.
  • the second structure in order to achieve a more vivid transformation between the fish form and the boat-shaped mount form, includes: fish lower jaw Ab2, fish upper jaw Ab3, first fish fin Ab4, and watchtower body Ab5, the second fin Ab6.
  • a fish lower jaw Ab2 is rotatably provided at the front end of the second ship body Ab1
  • a fish upper jaw Ab3 is provided at the corresponding position of the front end of the upper hull Ab, and the rear of the upper hull Ab
  • the end is provided with a groove; in the first shape of the fish shape, the fish lower jaw Ab2 can cooperate with the fish upper jaw Ab3 to form a mouth, and in the second shape of the boat mount form, the fish lower jaw Ab2 rotates to the rear end of the upper hull Ab, and can Hidden in the groove plays a role in highlighting the difference between the two forms.
  • the boat seat body Aa1 is hinged with two connecting plates, and the two connecting plates rotate in opposite directions, and each connecting plate is connected with two anchor joint bodies Aa2, which are connected to each other.
  • the method is the universal joint connection of the ball shaft and the ball hole; in the fish shape of the first shape, the two connecting plates rotate relative to each other, and the anchor joint bodies Aa2 on both sides are brought together to form the shape of the fish tail.
  • the two connecting plates rotate back to each other to separate the anchor joint bodies Aa2 on both sides, so that the mimicry of the legs of the mount is more vivid.
  • the top surface of the upper hull Ab is mirror-symmetrically hinged with two first fins Ab4, the two first fins Ab4 rotate relative to each other to form a fish-shaped top fin image, and the two first fins Ab4 turns opposite to unfold into the image of a sail in the form of a boat mount.
  • a watchtower body Ab5 is provided on the top surface of the upper hull Ab. Specifically, the watchtower body Ab5 is composed of two parts hinged into one body, and the two first fins Ab4 are hinged on the connecting rods extending from the watchtower body Ab5, and the watchtower body Ab5 increases the image degree of the ship shape.
  • a groove structure is provided on both sides of the upper hull Ab, and a second fin Ab6 is hinged in the groove structure.
  • the groove structure and the shape of the second fin Ab6 match each other, and the second fin Ab6 serves as the side of the fish in the fish form. Part of the fin, the second fin Ab6 is hidden in the trough structure in the mount form.
  • a bin body is provided above the upper hull Ab, and a ship doll Ab8 is detachably mounted on the bin body.
  • the bin body is a slot provided on the top surface of the upper hull Ab ship structure, the slot is provided with a card hole, and the bottom of the ship doll Ab8 is provided with an engaging rod, so that the ship doll Ab8 can be detachably clipped to In the slot.
  • the boat doll Ab8 has a human shape, full body or half body, with various expressions.
  • the warehouse body and the boat doll Ab8 can increase the gameplay of the mount form in the second shape, and can also be used as a fun for various animations and mount forms.
  • the first shape is the shape of a pharaoh's head and the second shape is the shape of a scorpion.
  • the main structure block is the base body C1;
  • the first structure block is the first section C21a, the second section C21b and the second section C4;
  • the second structure block is the head with the small cheeks C31 and the limbs Department C2.
  • the fourth embodiment specifically includes that the heart-changing toy includes a toy body, the toy body includes a base body C1, a seat body C11, and a limb portion C2; the base body C1 has a pseudo-shaped structure, and the base body C1 is provided with a first slot C1a that opens downwards,
  • the seat body C11 can be movably connected to the base body C1 along the inside and outside of the first slot C1a, and the limb portion C2 is connected to the seat body C11, so that the limb portion C2 can move with the seat body C11 and hide into the first slot C1a.
  • the number of limb parts C2 is four, which are distributed on both sides of the seat body C11, so that the deformed toy can stand stably; each limb part C2 is connected by a universal joint of a ball shaft and a ball hole, so that the limb part C2 swings out
  • the postures with different orientations also facilitate the folding and storing of the limb portion C2 in the first slot C1a.
  • the base body C1 is the mimic structure of the Pharaoh’s head.
  • the mimic structure itself is a playable state. It is combined with the stretched limbs C2 to form a mount form.
  • the outside of the base body C1 can be provided with movable parts to form a scorpion shape, forming a multi-form movable transforming toy.
  • the fourth embodiment is more specifically that, in order to realize multi-form deformation, the mimic structure of the base body C1 is a Pharaoh head, and the toy body is provided with concealable parts on the base body C1, which can be deformed into a scorpion shape.
  • the fourth embodiment is more specifically that the toy body also includes a first split body C3, the base body C1 and the first split body C3 together form a pseudo-shaped structure, and the lower part of the first split body C3 is hingedly connected with a small cheek limb C31;
  • the split body C3 is respectively movably connected to both sides of the base body C1 through the connecting rod assembly C32, so that the first split body C3 is switched between the state of the chelator structure and the state of being hidden in the pseudo structure.
  • the base body C1 is a Pharaoh's head
  • the first split body C3 is the Pharaoh's turban on both sides of the front of the Pharaoh's head
  • the connecting rod assembly C32 Including base chelate section C321 and middle chelate section C322, one end of base chelate section C321 is mounted on the side of base body C1 through a rotating shaft; base chelate section C321 and center chelate section C322 are connected by a ball shaft and a ball hole in order to make the two relative to each other.
  • the middle chelate section C322 is connected to the first split body C3 through a shaft. Because of the base chelate section C321 and the middle chelate section C322, and the connection between the two, the first split body C3 can swing left and right and stretch back and forth, so that the first split body C3 can abut on both sides of the base body C1. In order to make the Pharaoh's towel hid on both sides of the Pharaoh's head.
  • the toy body also includes a second split body C4, the base body C1 and the second split body C4 together form a pseudo-shaped structure, the second split body C4 includes a number of sections connected by related sections, and the rear part of the base body C1 A second slot C1b is provided, and the second split body C4 is movably connected in the second slot C1b, so that the second split body C4 deforms into a tail structure and switches between the state hidden in the second slot C1b.
  • the second split body C4 includes the front caudal section C41, the middle caudal section C42 and the back caudal section C43, which are sequentially articulated.
  • the base body C1 is the shape of the Pharaoh’s head, the front caudal section C41, the middle caudal section C42 and the back caudal section C43.
  • the outer side has the same brick-shaped texture structure as the base body C1.
  • the toy split body can be deformed into a scorpion shape.
  • the cross-sectional dimensions of the front tail section C41, the middle tail section C42 and the rear tail section C43 are successively reduced, so that the second split body C4 looks like a scorpion.
  • Scorpion-shaped tail wherein, the front tail section C41 is provided with a tail trajectory hole C412, and a tail sliding rod C411 is provided under the second slot hole C1b.
  • the tail sliding rod C411 and the tail trajectory hole C412 cooperate with each other to make the second split body C4 rotate and rotate relative to each other along the trajectory. It is connected to the base body C1 in translation, and the tail detent bosses C413 are respectively provided at both ends of the tail track hole C412. Both ends of the tail trajectory hole C412 are respectively provided with tail catching bosses C413, and the tail sliding rod C411 needs to be actively pushed into the tail catching boss C413, so that the front tail section C41 can maintain the limit position of movement.
  • a tail gear C44 and a tail gear C45 are arranged between the front tail section C41 and the middle tail section C42, so that the articulated rotation of the two generates resistance to maintain the shape.
  • the fourth embodiment is more specifically that the toy body also includes a third split body C5.
  • the base body C1 and the third split body C5 jointly form a pseudo-shaped structure.
  • the third split body C5 includes a base section C51 and a tooth section C52.
  • the front part of the base body C1 A third slot C1c is provided on both sides, the base section C51 is installed in the third slot C1c through a rotating shaft, and the tooth section C52 is connected to the base section C51 through a ball shaft, so that the third split body C5 is deformed into a jaw limb structure and hidden in Switch between states in the third slot C1c.
  • the front surface of the tooth section C52 is the same as the base body C1 with brick-shaped textures, so that the base body C1 and the third split body C5 form a pseudo-shaped structure.
  • the base section C51 passes through the shaft from the third slot on both sides of the Pharaoh's head. Flip out from C1c, the tooth section C52 can rotate and swing in multiple directions through the ball shaft, so as to move from the upper to the downward direction where it is attached to the base section C51, forming the shape of the jaw limbs of a scorpion.
  • the fourth embodiment is more specifically that one of the first slot C1a and the seat body C11 is provided with a track hole C14, and the other of the first slot hole C1a and the seat body C11 is provided with a sliding rod C15, a track hole C14 and a sliding rod C15
  • the seat body C11 is relatively movably connected to the first slot C1a along the track, and the two ends of the track hole C14 are respectively provided with positioning bosses C16.
  • the track hole C14 is a strip hole
  • the sliding rod C15 is a rod with a circular cross-section. The width of the sliding rod C15 matches the width of the strip hole, so that the sliding rod C15 moves along the track hole C14.
  • the fourth embodiment is more specifically that the seat body C11 includes a guide block C12 and a sliding sleeve C13, the sliding rod C15 is fixed inside the sliding sleeve C13, the track hole C14 is provided in the guide block C12, and the guide block C12 is fixedly connected to the first slot hole Inside C1a, the limb part C2 is connected to the sliding sleeve C13.
  • the sliding sleeve C13 can be used to install each limb portion C2, and the internal cavity structure of the sliding sleeve C13 can slide along the guide block C12, so as to increase the activity intensity of the seat body C11 and maintain the posture and shape of the toy body.
  • the fourth embodiment is more specifically that the limb part C2 includes three limb joints connected by related joints, and two adjacent limb joints are connected, one of which is provided with a limb gear C24, and the other is provided with a limb tooth table C25, limb gear C24 and limb
  • the tooth base C25 meshes with each other to maintain the posture when the limb joints rotate.
  • the limb part C2 includes three limbs such as a base limb section C21, a middle limb section C22, and an end limb section C23 that are hingedly connected in sequence. Among them, a limb is provided at the joint between the base limb section C21 and the middle limb section C22.
  • the coordination of the gear C24 and the limb tooth platform C25 is more specifically that the limb part C2 includes three limb joints connected by related joints, and two adjacent limb joints are connected, one of which is provided with a limb gear C24, and the other is provided with a limb tooth table C25, limb gear C24 and
  • the base limb section C21 includes a first section C21a and a second section C21b.
  • the first section C21a is provided with a T-shaped hole and the second section C21b is provided with a T-shaped boss.
  • the slotted hole and the T-shaped boss cooperate with each other so that the first section C21a and the second section C21b are rotatably connected with respect to the dividing surface into one body.
  • the fourth embodiment is more specifically that a bin body C71 is provided on the upper side of the base body C1, and the bin body C71 is detachably mounted with a doll C7.
  • the bin body C71 is a groove structure set on the top of the base body C1 of the Pharaoh head portrait, and the bottom of the doll C7 and the slot structure are provided with a matching engagement structure, so that the bin body C71 can be assembled and detached after completion.
  • the doll C7 has a human shape and a half-length structure, which can carry various expressions.
  • the warehouse body C71 and the doll C7 can increase the gameplay of the mount form, and can combine various animation styling elements to increase the fun of the toy.
  • the first model is a carriage model
  • the second model is a cow model, a polymorphic transforming toy.
  • the main structure block is the first split body E1; the first structure block is the second upper split body E21, and the second lower split body E22.
  • the transforming toy includes a toy main body, the toy main body includes a first split E1 and a second split E2, the first split E1 and the second split E2 are connected to each other and have a shape-like structure;
  • the second split body E2 includes a second upper split body E21 and a second lower split body E22.
  • the second lower split body E22 is movably connected to the rear side of the first split body E1
  • the second upper split body E21 is movably connected On the upper side of the second lower split E22 to move the second lower split E22 away from the first split E1, the second upper split E21 can move from the upper side of the second lower split E22 to the first split Between the body E1 and the second lower split body E22.
  • the first split body E1, the second upper split body E21 on the rear upper side and the second lower split body E22 on the rear lower side can be combined into a pseudo-structure, and the second lower split body E22 on the rear side is stretched away from the first split body E1, so that there is a set distance between the two, and then swing the second upper part E21 from above to between the first part E1 and the second lower part E22, so as to realize the transformation of the complicated shape-like structure into another shape.
  • the components hidden in the first split body E1 and the second split body E2 oscillate to show the other external shape into another toy form.
  • the second upper split body E21 in order to make the second upper split body E21 move on the upper and front sides of the second lower split body E22, the second upper split body E21 is provided with a first sliding rod E23;
  • the body E22 is a shell structure with first track holes E24 provided on both sides of the inner upper part;
  • the first sliding rod E23 is cylindrical, and its diameter matches the width of the first track hole E24, and is connected to the first track hole in a translational sliding manner.
  • the first trajectory hole E24 is a T-shaped trajectory, and its rear end and lower end are respectively provided with first limiting bosses E25.
  • the first limiting boss E25 is a structure slightly protruding from the upper and lower side walls of the first track hole E24 to form an engagement limit for the first sliding rod E23.
  • the second lower split body E22 has been pulled out, the second upper split body E21 is first pulled from the upper right side to the left side, and the second upper split body E21 is rotated to make it from horizontal to vertical, and then follow the first The vertical direction of a track hole E24 is pushed to the lower end to realize the deformation of the second upper split body E21.
  • the toy body further includes a connecting body E11, and the connecting body E11 is connected to the first part E1.
  • the connecting body E11 is provided with a second sliding rod E12, and the inner and lower sides of the shell structure of the second lower split body E22 are provided with second track holes E13.
  • the second sliding rod E12 is cylindrical, and its diameter matches the width of the second track hole E13, and is connected to the second track hole E13 in a translational sliding manner.
  • the second trajectory hole E13 is a linear trajectory.
  • the rear end of the second trajectory hole E13 and the front side near the front end are provided with a second limiting boss E14.
  • the second limiting boss E14 is the upper and lower side walls of the hole slightly.
  • the protruding structure is formed to limit the engagement of the second sliding rod E12.
  • the second sliding rod E12 on the connecting body E11 is pushed out from the right end of the second track hole E13, pushed to the left end, and the second upper split body E21 is rotated to within the interval, and the second sliding rod on the connecting body E11 The sliding rod E12 is pushed to the right of the second limiting boss E14 on the left.
  • the toy body can be deformed into an animal shape, and the mimic structure is a vehicle shape.
  • the first split body E1 is on the front side
  • the second upper split body E21 is on the upper rear side
  • the second lower split body E22 is on the lower rear side
  • the overall shape and surface texture structure of the three fit together constitute the vehicle shape, which is:
  • the second lower part E22 is stretched out and the second upper part E21 moves into the gap after stretching.
  • the overall shape of the three changes, the front part remains unchanged, and the rear part becomes longer and shorter, which is transformed into another form .
  • the other form is to be transformed into a target.
  • various other limb parts of the animal that are hidden in the vehicle form can constitute the animal form.
  • the toy body also includes a head E3 and a tail E4.
  • the bottom of the first split E1 is provided with a first slot E3a, and the head E3 is rotatably connected to the front side of the first split E1. Rotation is hidden in the first slot E3a; the second upper split E21 is provided with a second slot E4a, the tail E4 can be connected to the rear of the second lower split E22 through a shaft and a shaft hole, the second slot E4a and the tail
  • the size and shape of E4 are matched so that the tail E4 can be hidden.
  • a third sliding rod E31 provided on the lower side of the first split body E1, two on the head E3
  • a third track hole E32 is provided on the side, and both ends of each third track hole E32 are provided with third limiting bosses E33.
  • the third sliding rod E31 is cylindrical and its diameter matches the width of the third track hole E32. It is connected to the third track hole E32 in translation and sliding manner.
  • the head E3 in the first slot E3a is first pulled from the third track hole E32 from the lower end to the upper end, the head E3 exits the first slot E3a downwards, and then rotates E180 degrees to swing the head E3 to the front side. Then push the third trajectory hole E32 from the upper end to the lower end to push up the head E3 to realize the movable deformation of the head E3.
  • the toy body further includes a leg E5 and a wheel E6, and the leg E5 and the wheel E6 are convertible as a supporting structure and connected to the toy body.
  • the two sides of the first part E1 and the second lower part E22 are respectively provided with a radially rotating rotating body E51, and the leg part E5 T-shaped boss .
  • the connecting body E11 has a T-shaped slot hole, and the T-shaped boss and the T-shaped slot hole are mated and connected to each other, so that the leg E5 can be rotatably connected to the connecting body E11.
  • the wheel E6 includes a frame E61 and a wheel E62.
  • One end of the frame E61 is connected with a wheel E62, the other end of the frame E61 is provided with a fourth sliding rod E63, the foot is provided with a fourth track hole E64, and a fourth sliding rod E63. It is cylindrical, with a diameter that matches the width of the fourth track hole E64, and is slidably connected to the fourth track hole E64. Both ends of the fourth track hole E64 are provided with fourth limit bosses E65, and the fourth limit bosses E65 is a structure slightly protruding from the upper and lower side walls of the fourth track hole E64 to form an engagement limit for the fourth sliding rod E63.
  • Figure 4 shows that the wheel E6 is pushed to the lower end of the fourth track hole E64, and the foot is not turned over to form a mount form;
  • Figure 5 is that the wheel E6 is pushed to the upper end of the fourth track hole E64, and the foot is not turned over;
  • 6 is the foot turning over after being rotated, and the wheel E6 is derived from the lower end of the fourth trajectory hole E64.
  • a doll E8 is detachably connected to the upper side of the first split body E1. More specifically, the upper side of the first split body E1 is connected with a fixed plate through a rotating shaft, one side of the fixed plate is provided with the above-mentioned connecting portion E7, and the other side of the fixed plate is provided with a doll E8 that is convenient to assemble and disassemble through a buckle structure. E8 is a humanoid shape with a half-length structure that can carry various expressions.
  • the upper part of the base body D1, the two sides of the base body D1, and the bottom of the second split body D3 are respectively provided with a connecting part D18, and the connecting part D18 is detachably installed on another toy as The body of the toy.
  • the connecting part D18 connecting the other head-shaped toy is located on the cover D17 and has a rectangular slot structure;
  • the connecting part D18 connecting the other two hand-shaped toys on both sides is located on the first connecting body D21 and is a regular polygon Hole structure,
  • the lower connecting part D18 connecting the other two foot-shaped toys is located on the extension joint, which is a T-shaped hole structure.
  • the connecting portion D18 may also be other connection methods, such as other snap connection structures, or threaded connections.
  • the present invention is a combination toy, including the multi-form transforming toy of the above embodiment.
  • There are five toy bodies each of the toy bodies is detachably connected as a whole, and the The first shape is different, and/or the second shape of each toy body is different.
  • the first embodiment D is the body
  • the second B and the third A are the hands
  • the fourth C is the head
  • the fifth E is the feet.

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  • Toys (AREA)

Abstract

La divulgation concerne un jouet de transformation à formes multiples et un jouet combiné formé au moyen dudit jouet de transformation, se rapportant au domaine des jouets de transformation. L'utilisation d'un corps de construction principal et d'un premier bloc de structure, présentant une première forme et fixés l'un à l'autre, le premier bloc de structure se déplaçant et/ou tournant par rapport au corps de construction principal afin de varier la relation de position de fixation mutuelle et de construire une seconde forme sans besoin d'enlever un élément, permet d'effectuer la transformation entre deux formes complexes, simplifiant ainsi la manœuvre de transformation et améliorant le plaisir de jouer avec le jouet de transformation. En outre, l'utilisation d'une tige coulissante, d'un trou de guidage et d'un bossage de limitation permet de commuter des positions limitées des éléments fixés au moyen d'un mouvement complexe impliquant une translation et une rotation ; en outre, l'utilisation d'un deuxième bloc de structure pouvant être plié et caché dans une rainure permet d'exhiber mobile le jouet de transformation lors de l'obtention d'une seconde forme, ce qui permet d'améliorer le degré de simulation de la seconde forme ; et en outre, l'utilisation d'un troisième bloc de structure en forme d'articulation permet de construire une forme à enfourcher au moyen du troisième bloc de structure et d'un bloc de structure principal. La divulgation concerne en outre une poupée à enfourcher, ce qui permet de combiner diverses formes de figures de dessins animés.
PCT/CN2020/094055 2020-01-23 2020-06-03 Jouet de transformation à formes multiples et jouet combiné formé au moyen dudit jouet de transformation WO2021147224A1 (fr)

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Application Number Priority Date Filing Date Title
CN202010077139.1 2020-01-23
CN202010077139.1A CN115607975A (zh) 2020-01-23 2020-01-23 一种多形态变形玩具及其所构成的组合玩具

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WO2021147224A1 true WO2021147224A1 (fr) 2021-07-29

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CN201855566U (zh) * 2010-04-29 2011-06-08 浙江中南卡通股份有限公司 一种可在三种状态间变形的虎玩具
CN202010419U (zh) * 2010-08-31 2011-10-19 万代贸易(广州)有限公司 组合机器人玩具
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