Combined toy capable of transforming numbers and mathematical symbols

By designing digital and mathematical symbols toys, multiple shape combinations and free replacement are achieved, the problems of single shapes and unstable connections of existing toys are solved, and the playability and creative thinking ability of toys are improved.

CN120472747APending Publication Date: 2025-08-12JINAN AIDONG ANIMATION TECH
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Patent Information

Application Number
CN202510797657.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-16
Publication Date
2025-08-12

AI Technical Summary

Technical Problem

The existing digital deformation combination toys have a single shape, lacking mathematical symbol toy matching, and the connecting parts have a single structure, which is easy to disconnect, making it difficult to meet the creative thinking needs of children.

Method used

Design digital and mathematical symbol deformation toys. By combining the same number of numbers and mathematical symbol toys into different shapes, the toys can be replaced and connected freely, and a variety of connectors are used to improve stability.

Benefits of technology

Enhance the playability and creative thinking ability of toys, improve hands-on ability, assist in teaching of mathematical symbol toys, have good connection stability, and avoid disconnection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a number and mathematical symbol transformation combined toy which comprises a toy combination body formed by combining a plurality of number transformation toys and a plurality of mathematical symbol transformation toys, and the number transformation toys with the same number and the mathematical symbol transformation toys with the same number can be combined into toy combination bodies with different shapes. The digital transformation toy comprises a plurality of digital toy single bodies, each digital toy single body comprises a first basic part and a first connecting part, and part of the first basic parts can move or rotate relatively; the mathematical symbol transformation toy comprises a plurality of mathematical symbol toy single bodies in mathematical operation symbol shapes, each mathematical symbol toy single body comprises a second basic part and a second connecting part, and part of the second basic parts of the mathematical symbol toy single bodies can relatively rotate or be separated. The creative thinking ability of players can be improved, and the stability of connection between the digital transformation toys, between the mathematical symbol transformation toys or between the digital transformation toys and the mathematical symbol transformation toys is better.
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Description

Technical Field

[0001] The present invention relates to the technical field of deformable combination toys, and in particular to a combination toy with deformed numbers and mathematical symbols. Background Art

[0002] Combination transforming toys are a type of creative toy that achieves multiple transformations through modular design. Their core feature is that individual or multiple components can be freely combined through splicing, folding, and rotation. These toys can not only independently transform into specific shapes, but also work in conjunction with other components to create larger, complex structures. These toys emphasize interactive collaboration and open play, retaining the mechanical ingenuity of traditional transforming toys while incorporating the creativity of building block-style construction. They stimulate players' logical thinking and spatial imagination, and are suitable for players of all ages to explore the balance between engineering principles and artistic design through disassembly and reconstruction.

[0003] The Chinese Patent Office has disclosed a digital transformation combination toy with publication number CN103127722A, which includes a toy assembly composed of several toy units. The toy units are characterized in that the toy units include digital modeling blocks, which are provided with movable or rotatable parts, and the digital modeling blocks are provided with interconnected connecting pieces. By moving or rotating the parts of the digital blocks, they are transformed into various parts of the toy assembly, and then the deformed digital modeling blocks are connected using the connecting pieces to form the toy assembly. In this way, the digital modeling blocks can be used for digital calculation games, which can increase knowledge and improve children's intelligence. These digital modeling blocks can also be combined and assembled into a toy assembly for play. The diverse combination methods effectively improve the fun of playing with the toy, attract children's attention and cater to their preferences, and can also exercise children's hands-on ability and innovative thinking ability. The toy has a clever design and diverse shapes, which can maintain long-term play interest. It is an educational and entertaining transformation combination toy.

[0004] However, the above-mentioned digital deformation combination toys have a relatively simple deformation combination form. Children may easily become bored after playing with the combination many times, which makes it difficult to meet the children's play needs. Moreover, when playing with digital toys for calculation, they lack the necessary mathematical symbol toys to cooperate with them, which is not conducive to the convenience of children's play. At the same time, the structural form of the connecting parts is relatively simple, which makes it easy for the connection to become detached, and is not conducive to the connection requirements of different toy units with different connection requirements. Therefore, the practicality is poor and cannot meet the requirements of improving children's creative thinking.

[0005] Therefore, in view of the above problems, a combination toy with deformed numbers and mathematical symbols is proposed to solve the above problems. Summary of the Invention

[0006] In response to the deficiencies in the prior art, the present invention develops a combination toy that deforms numbers and mathematical symbols. The invention can form toy combinations of different shapes by combining the same number of number-deforming toys and the same number of mathematical symbol-deforming toys, and the number-deforming toys or mathematical symbol-deforming toys in some positions on the toy combination can be freely replaced and transposed, which provides better player autonomy and improves the player's creative thinking ability. In addition, the stability of the connection between the number-deforming toys, between the mathematical symbol-deforming toys, or between the number-deforming toys and the mathematical symbol-deforming toys is better.

[0007] To achieve the above-mentioned purpose, the present invention is implemented through the following technical solutions: A combination toy for deforming numbers and mathematical symbols, comprising a toy assembly formed by combining a plurality of number-deforming toys and a plurality of mathematical symbol-deforming toys, wherein the same number of number-deforming toys and the same number of mathematical symbol-deforming toys can be combined into a toy assembly of different shapes; the number-deforming toy comprises ten number-toy units in the shape of numbers 0 to 9, each number-toy unit comprising a plurality of parts, the parts comprising a base unit 1 for constituting the basic form of the number-toy unit and a connecting unit 1 for combining and connecting the toy assembly, and a portion of the base unit 1 of each number-toy unit being capable of relative movement or rotation to enable the number-toy unit to be deformed into different forms; the mathematical symbol-deforming toy comprises mathematical symbol-toy units in the shape of five mathematical operation symbols, namely, an equal sign, a plus sign, a minus sign, a multiplication sign, and a division sign, each mathematical symbol-toy unit comprising a plurality of parts, the parts comprising a base unit 2 for constituting the basic form of the mathematical symbol-toy unit and a connecting unit 2 for combining and connecting the toy assembly, and a portion of the base unit 2 of each mathematical symbol-toy unit being capable of relative rotation or separation to enable the mathematical symbol-toy unit to be deformed into different forms.

[0008] Preferably, the forms of the digital toy units include two complete forms and several intermediate forms. Different forms of different digital toy units are used to form different parts of toy assemblies with different shapes.

[0009] Preferably, each digital toy unit is provided with a plurality of connecting pieces 1 at different positions, and the connecting pieces 1 at different positions on different digital toy units are interconnected to form toy combinations of different shapes.

[0010] Preferably, the mathematical symbol toy monomer includes a complete form and several intermediate forms, and the different forms of different mathematical symbol toy monomers are used to combine into different parts of toy assembly bodies with different shapes.

[0011] Preferably, the toy assembly has shapes including a robot shape, a dinosaur shape and an aircraft carrier shape.

[0012] Preferably, the two complete forms of the digital toy include a basic form and an ultimate form in the shape of numbers 0 to 9, and the ultimate form includes a tank form, a ship form, a gun carriage form, an engineering vehicle form, or an aircraft form.

[0013] Preferably, the complete form of the mathematical symbol toy monomer includes five basic forms of mathematical symbol shapes, namely, equal sign, plus sign, minus sign, multiplication sign, and division sign. When the mathematical symbol toy monomer is in different intermediate forms, it can be partially connected to each other to form a combination form of different shapes, and the combination form is a weapon form, a claw form, or an anchor form.

[0014] Preferably, the weapon forms of the mathematical symbol toy monomer combination include a long sword form, a shuriken form and a clamp form.

[0015] Preferably, the long sword form includes a combination of mathematical symbol toys in three shapes: equal sign, minus sign and division sign, and the shuriken form includes a combination of mathematical symbol toys in two shapes: plus sign and multiplication sign.

[0016] Preferably, the first connector includes a locking connector and a rotating connector. The locking connector includes a slot and a U-shaped block. The U-shaped block on one digital toy unit can be inserted into the slot on another digital toy unit to achieve locking connection; the rotating connector includes a connecting shaft and a connecting hole. The connecting shaft on one digital toy unit can be inserted into the connecting hole on another digital toy unit to achieve rotating connection.

[0017] Preferably, the U-shaped card blocks are rotatably mounted on the digital toy body, and wedge-shaped protrusions are provided on the outer sides of both ends of the U-shaped card blocks for engaging with the inner wall of the card slot.

[0018] Preferably, the base part includes a main part and a movable part. The main part is an immovable part in the digital toy unit, and the movable part is a movable part set on the main part in the digital toy unit. The movable part can rotate or slide relative to the main part.

[0019] Preferably, the second connecting part includes a cross card block, a combination card block, a plug-in plate, a wide card strip and a rotating shaft. The cross card block can not only meet the connection between the basic parts 2 of different mathematical symbol toy units, but also meet the connection between the basic parts 2 and the digital toy units; the combination card block can be combined to connect the basic part 1 of the digital toy unit, the plug-in plate is used to connect the basic part 2 of the mathematical symbol toy unit, the wide card strips in different positions are used to connect the basic part 1 or to connect the basic parts 2 to each other, and the rotating shaft is used to rotate the connecting basic part 1.

[0020] Preferably, the cross card block includes a card plate and a plate slot, which are arranged in a rectangular shape, and a pair of card plates and a pair of plate slots are respectively provided in the diagonal direction of the rectangle. The card plate can be inserted into the plate slot of another cross card block and realize the card connection.

[0021] Preferably, convex plates are provided on the side surfaces of the card plates that are close to each other, and the cross card block also includes a card shaft, and the card shaft is provided with symmetrical grooves corresponding to the convex plates along its length direction, and the convex plates on the card plates can be engaged in the grooves.

[0022] Preferably, the second basic component includes a detachable component that can be separated from each other and an additional component rotatably arranged on the detachable component, and the detachable components on the same mathematical symbol toy unit are connected as a whole through cross-blocks or wide strips.

[0023] Preferably, in the robot-shaped toy combination, the toy unit of number 3 and the toy unit of number 0 are connected front and back to form the chest part of the robot-shaped toy combination, a movable part on the toy unit of number 3 is in the shape of a robot's head, and a U-shaped card block is provided on the movable part in the shape of the robot's head, which is used to connect the toy unit of number 0, the bottom of the toy unit of number 0 is connected to the toy unit of number 2, serving as the waist of the robot-shaped toy combination, the left and right sides of the toy unit of number 0 are respectively connected to the toy unit of number 4 and the toy unit of number 7, serving as the left arm part and the right arm part of the robot-shaped toy combination, and the toy unit of number 4 is connected to the toy unit of number 7. A movable part on the toy monomer of number 7 is in the shape of the robot's left hand, a movable part on the toy monomer of number 7 is in the shape of the robot's right hand, the movable part in the shape of the left hand is connected to the toy monomer of number 9, the movable part in the shape of the right hand is connected to some mathematical symbol toy monomers combined into the shape of a long sword, the left and right sides of the bottom of the toy monomer of number 2 are respectively connected to the toy monomer of number 6 and the toy monomer of number 1, which serve as the left leg part and the right leg part of the robot-shaped toy combination body respectively, the bottom of the toy monomer of number 6 is connected to the toy monomer of number 8 as the left foot part of the robot, and the bottom of the toy monomer of number 1 is connected to the toy monomer of number 5 as the right foot part of the robot.

[0024] Preferably, the toy monomer of number 4, the toy monomer of number 7, the toy monomer of number 6 and the toy monomer of number 1 can all be connected and combined into mathematical symbol toy monomers in the form of shuriken.

[0025] Preferably, in a toy combination in the form of a dinosaur, the toy monomer of number 0 and the toy monomer of number 2 are connected front to back to form the body part of the toy combination in the form of a dinosaur, the side of the toy monomer of number 0 away from the toy monomer of number 2 is connected to the toy monomer of number 1 as the neck of the dinosaur, the end of the toy monomer of number 1 away from the toy monomer of number 0 is connected to the toy monomer of number 4 as the head of the dinosaur, both sides of the toy monomer of number 1 are connected to some mathematical symbol toy monomers in the form of claws, which serve as the claw part of the dinosaur, and the left and right sides of the toy monomer of number 0 are respectively connected to the toy monomer of number 6 and the toy monomer of number 9, which serve as the left legs of the toy combination in the form of a dinosaur The bottom of the toy unit with number 6 is connected to the toy unit with number 5 as the left foot part of the dinosaur, the bottom of the toy unit with number 9 is connected to the toy unit with number 8 as the right foot part of the dinosaur, the end of the toy unit with number 2 away from the toy unit with number 0 is connected to the toy unit with number 7 as the tail of the dinosaur, the upper side of the toy unit with number 0 is connected to the toy unit with number 3 as the back of the dinosaur, and the detachable parts of the mathematical symbol toy unit are respectively arranged on the upper side of the toy unit with number 1 as the spike on the neck of the dinosaur, on the upper side of the toy unit with number 7 as the spike on the tail of the dinosaur and on the front side of the toy unit with number 5 as the toe part of the left foot.

[0026] Preferably, in the toy combination in the form of an aircraft carrier, the toy unit number 0, the toy unit number 1, the toy unit number 3, the toy unit number 5 and the toy unit number 6 are connected in sequence front to back to form the hull part of the aircraft carrier shaped toy combination, the front side of the toy unit number 0 is connected to the toy unit number 7 as the bow part of the aircraft carrier, the side of the toy unit number 6 away from the toy unit number 5 is connected to the toy unit number 8 as the stern bottom part of the aircraft carrier, the upper side of the toy unit number 8 is connected to the toy unit number 9 as the stern deck part of the aircraft carrier, and parking areas are reserved on the hull part and the stern deck part, the upper side of the toy unit number 0 is connected to the toy unit number 4 in the ultimate form, the upper side of the toy unit number 9 is connected to the toy unit number 2 in the ultimate form, both sides of the toy unit number 7 are connected to some mathematical symbol toy units in the form of weapons, and one side of the toy unit number 6 is connected to some mathematical symbol toy units in the form of anchors.

[0027] The effects provided in the summary of the invention are only the effects of the embodiments, not all the effects of the invention. The above technical solution has the following advantages: 1. The present invention provides a plurality of digital transformation toys and a plurality of mathematical symbol transformation toys, and the digital transformation toys can be connected to each other, the mathematical symbol transformation toys can be connected to each other, and the digital transformation toys and the mathematical symbol transformation toys can also be connected to each other, so as to improve the player's hands-on ability and make the game more playable. 2. The present invention can form multiple toy assemblies with completely different shapes by combining the same number of digital transforming toys and the same number of mathematical symbol transforming toys. In different toy assemblies, the position and function of each digital transforming toy and each mathematical symbol transforming toy are different. In addition, some of the digital transforming toys, mathematical symbol transforming toys, and digital transforming toys and mathematical symbol transforming toys that make up the same toy assembly can be interchanged, making the toy assembly similar to the combination of building blocks. The position of the toy can be changed according to the player's different thinking, thereby improving the player's creative thinking ability. 3. The digital transformation toys of the present invention include digital toy units in the form of numbers 0 to 9, and mathematical symbol transformation toys include mathematical symbol toy units in the form of mathematical symbols "=", "+", "-", "×", and "÷". Players can play calculation games of addition, subtraction, multiplication, and division, and serve as auxiliary teaching to help players learn and memorize mathematical knowledge during the game, thereby improving their mathematical thinking ability. 4. Each digital toy unit of the present invention can be transformed into other shapes, such as a tank, a ship, a gun carriage, an engineering vehicle, or an aircraft, by rotating or moving the movable parts relative to the main body, making the individual digital toy units playable and interesting. 5. The transformable form of the mathematical symbol toy units of the present invention is relatively simple. However, by disassembling different mathematical symbol toy units and reassembling the disassembled parts of some of the different mathematical symbol toy units, new combinations can be formed, including weapon forms, claw forms, and anchor forms. Different forms can be connected to different toy combinations or played with individually, thereby increasing the playability of the mathematical symbol transformable toys and improving the player's hands-on ability through assembly. At the same time, the same combination of forms can serve as different functional parts on different toy combinations, which can enhance the player's imagination and creativity. 6. The connector 1 provided on the digital toy unit of the present invention is used for interconnecting the digital toy units, and the connector 2 of the mathematical symbol toy unit is used for connecting the mathematical symbol toy units with each other and with the digital toy unit, and the connector 2 includes a cross card block, a combination card block, a plug-in board, a wide card strip, and a rotating shaft. Through the different forms of the connector 2, the position of the corresponding basic component 2 can be quickly located, and the toy combination can be quickly spliced together, avoiding the situation where the player is unclear about the position of different basic components 2 on different toy combinations and cannot accurately assemble the toy combination, thereby improving the player's sense of accomplishment in playing. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] The accompanying drawings are used to provide further understanding of the present invention and constitute a part of the specification. They are used to explain the present invention together with the embodiments of the present invention and do not constitute a limitation of the present invention.

[0029] Figure 1 This is a schematic structural diagram of a dinosaur-shaped toy assembly according to an embodiment of the present invention; Figure 2 An exploded schematic diagram of a dinosaur-shaped toy assembly according to an embodiment of the present invention; Figure 3 The structure of the robot-shaped toy assembly according to the embodiment of the present invention is shown as follows: Figure 1 ; Figure 4 The structure of the robot-shaped toy assembly according to the embodiment of the present invention is shown as follows: Figure 2 ; Figure 5 An exploded schematic diagram of a robot-shaped toy assembly according to an embodiment of the present invention; Figure 6 This is a schematic structural diagram of a toy assembly in the form of an aircraft carrier according to an embodiment of the present invention; Figure 7 An exploded schematic diagram of a toy assembly in the form of an aircraft carrier according to an embodiment of the present invention; Figure 8 This is a schematic structural diagram of the basic form of the toy unit number 1 according to an embodiment of the present invention; Figure 9 This is a schematic structural diagram of the ultimate form of the toy unit number 1 according to an embodiment of the present invention; Figure 10 Schematic diagram of the structure of the mathematical symbol toy with a division sign in different forms according to an embodiment of the present invention; Figure 11 Schematic diagram of the structure of different forms of a minus sign mathematical symbol toy body according to an embodiment of the present invention; Figure 12 Schematic diagram of the structure of different forms of the equal sign mathematical symbol toy body according to an embodiment of the present invention; Figure 13Schematic diagram of the structure of the multiplication sign mathematical symbol toy in different forms according to an embodiment of the present invention; Figure 14 Schematic diagram of the structure of the plus sign mathematical symbol toy in different forms according to an embodiment of the present invention; Figure 15 This is a schematic structural diagram of half of a plus sign mathematical symbol toy according to an embodiment of the present invention; Figure 16 This is a schematic diagram of the structure of a long sword in the form of a mathematical symbol toy monomer assembly according to an embodiment of the present invention. Figure 1 ; Figure 17 This is a schematic diagram of the structure of a long sword in the form of a mathematical symbol toy monomer assembly according to an embodiment of the present invention. Figure 2 ; Figure 18 This is a schematic structural diagram of an anchor-shaped mathematical symbol toy monomer assembly according to an embodiment of the present invention; Figure 19 A schematic structural diagram of a mathematical symbol toy unit assembly in a shuriken or clamp form according to an embodiment of the present invention; Figure 20 This is a schematic structural diagram of the claw shape of a mathematical symbol toy monomer assembly according to an embodiment of the present invention.

[0030] In the figure, 1, digital toy monomer; 11, basic part 1; 12, connecting part 1; 2, mathematical symbol toy monomer; 21, basic part 2; 22, connecting part 2; 121, card slot; 122, U-shaped card block; 123, connecting shaft; 124, connecting hole; 1221, wedge-shaped protrusion; 111, main part; 112, movable part; 221, cross card block; 222, combination card block; 223, plug-in board; 224, wide card strip; 225, rotating shaft; 226, rotating hole; 227, plate hole; 2211, card board; 2 212, plate groove; 2213, convex plate; 2214, clamping shaft; 2215, groove; 211, detachable part; 212, additional part; 100, toy monomer with number 0; 101, toy monomer with number 1; 102, toy monomer with number 2; 103, toy monomer with number 3; 104, toy monomer with number 4; 105, toy monomer with number 5; 106, toy monomer with number 6; 107, toy monomer with number 7; 108, toy monomer with number 8; 109, toy monomer with number 9. DETAILED DESCRIPTION

[0031] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0032] To achieve the above-mentioned purpose, the present invention is implemented through the following technical solutions: The present invention provides a combination toy for deforming numbers and mathematical symbols, comprising a plurality of number-deforming toys and a plurality of mathematical symbol-deforming toys. The number-deforming toys and the mathematical symbol-deforming toys can be combined into a toy combination, and the same number of number-deforming toys and the same number of mathematical symbol-deforming toys can be combined into toy combinations of different shapes.

[0033] The digital transformation toy includes a total of ten digital toy units 1 in the shape of numbers 0 to 9. Each digital toy unit 1 includes several parts. The parts of the digital toy unit 1 include a basic part 11 for forming the basic form of the digital toy unit 1 and a connecting part 12 for assembling and connecting the toy assembly. Part of the basic part 11 of each digital toy unit 1 can move or rotate relative to each other so that the digital toy unit 1 is transformed into different shapes.

[0034] The digital toy units 1 have two complete forms and several intermediate forms. The different forms of different digital toy units 1 are used to form different parts of different toy assemblies. The two complete forms of the digital toy units 1 include a basic form shaped like the numbers 0 through 9 and an ultimate form. The ultimate forms include a tank, a ship, a gun carriage, an engineering vehicle, or an aircraft. Each digital toy unit 1 is equipped with several connectors 12 in different locations. These connectors 12 on different digital toy units 1 are interconnected to form different toy assemblies.

[0035] The mathematical symbol transformation toy includes mathematical symbol toy monomers 2 in the shape of five mathematical operation symbols: equal sign, plus sign, minus sign, multiplication sign, and division sign, that is, mathematical symbol toy monomers 2 in the shape of "=", "+", "-", "×" and "÷". Each mathematical symbol toy monomer 2 includes several parts. The parts of the mathematical symbol toy monomer 2 include a basic part 21 for forming the basic form of the mathematical symbol toy monomer 2 and a connecting part 22 for connecting the toy assembly. Part of the basic part 21 of each mathematical symbol toy monomer 2 can rotate or separate relative to each other, so that the mathematical symbol toy monomer 2 is transformed into different shapes.

[0036] The mathematical symbol toy units 2 include a complete form and several intermediate forms. The complete form corresponds to the shapes of "=", "+", "-", "×", and "÷". The different forms of the mathematical symbol toy units 2 are used to combine to form different parts of the toy assembly with different shapes. When in different intermediate forms, the mathematical symbol toy units 2 can be partially connected to form different combined forms, such as weapon forms, claw forms, or anchor forms. The weapon forms of the mathematical symbol toy units 2 include longsword forms, shuriken forms, and clamp forms.

[0037] Example 1 like Figure 1-Figure 2 As shown, the present invention provides a toy assembly in the form of a dinosaur, including a dinosaur head, a dinosaur neck, a dinosaur body, a dinosaur claw, a dinosaur leg, a dinosaur foot and a dinosaur tail.

[0038] Among them, the toy monomer 100 of number 0 and the toy monomer 102 of number 2 are connected front and back to form the body part of the toy combination body in the form of a dinosaur. The side of the toy monomer 100 of number 0 away from the toy monomer 102 of number 2 is connected to the toy monomer 101 of number 1 as the neck of the dinosaur. The end of the toy monomer 101 of number 1 away from the toy monomer 100 of number 0 is connected to the toy monomer 104 of number 4 as the head of the dinosaur. Both sides of the toy monomer 101 of number 1 are connected to the claw shape of some mathematical symbols combined into the toy monomer 22 as the claw part of the dinosaur. The left and right sides of the toy monomer 100 of number 0 are respectively connected to the toy monomer 106 of number 6 and the toy monomer 109 of number 9, which serve as the left leg part and the right leg part of the toy combination body in the form of a dinosaur. The bottom of the toy unit 106 of the number 6 is connected to the toy unit 105 of the number 5 as the left foot part of the dinosaur, the bottom of the toy unit 109 of the number 9 is connected to the toy unit 108 of the number 8 as the right foot part of the dinosaur, the end of the toy unit 102 of the number 2 away from the toy unit 100 of the number 0 is connected to the toy unit 107 of the number 7 as the tail of the dinosaur, the upper side of the toy unit 100 of the number 0 is connected to the toy unit 103 of the number 3 as the back of the dinosaur, and the detachable part 211 of the mathematical symbol toy unit 22 is respectively arranged on the upper side of the toy unit 101 of the number 1 as the spike on the neck of the dinosaur, on the upper side of the toy unit 107 of the number 7 as the spike on the tail of the dinosaur, and on the front side of the toy unit 105 of the number 5 as the toe part of the left foot.

[0039] The positions of the left claw and the right claw of the dinosaur-shaped toy assembly in this embodiment can be replaced, the positions of the left foot and the right foot can be replaced, and the positions of the left leg and the right hind leg can be replaced, which does not affect the overall shape of the dinosaur and improves playability.

[0040] Example 2 like Figure 3 、 Figure 4 and Figure 5 As shown, the present invention provides a toy in the form of a robot, including a robot head, a robot chest, a robot waist, a robot arm, a robot hand and a robot foot, etc.

[0041] The toy monomer 103 of number 3 and the toy monomer 100 of number 0 are connected front and back to form the chest part of the toy combination body in the form of a robot. A movable part 112 on the toy monomer 103 of number 3 is set to the shape of a robot's head, and a U-shaped block 122 is set on the movable part 112 in the shape of the robot's head, which is used to connect the toy monomer 100 of number 0 to improve the stability of the connection. The bottom of the toy monomer 100 of number 0 is connected to the toy monomer 102 of number 2, serving as the waist of the toy combination body in the form of a robot. The left and right sides of the toy monomer 100 of number 0 are respectively connected to the toy monomer 104 of number 4 and the toy monomer 107 of number 7, serving as the left arm part and the right arm part of the toy combination body in the form of a robot, and a movable part 112 on the toy monomer 104 of number 4 is the robot's The toy unit 107 is in the shape of a left hand, and a movable part 112 on the number 7 is in the shape of the right hand of the robot. Both the left-hand and right-hand movable parts 112 have palm holes. The palm hole on the left-hand movable part 112 is connected to the toy unit 109 of the number 9, and the palm hole on the right-hand movable part 112 is connected to part of the mathematical symbol toy unit 2 to form a long sword shape. The left and right sides of the bottom of the toy unit 102 of the number 2 are respectively connected to the toy unit 106 of the number 6 and the toy unit 101 of the number 1, which serve as the left leg part and the right leg part of the robot-shaped toy combination body respectively. The bottom of the toy unit 106 of the number 6 is connected to the toy unit 108 of the number 8 as the left foot part of the robot, and the bottom of the toy unit 101 of the number 1 is connected to the toy unit 105 of the number 5 as the right foot part of the robot.

[0042] Among them, a part of the basic part 11 of the toy monomer 109 of the number 9 is relatively rotated and deformed into different shapes, serving as a shield or a gun of the robot. A basic part of the toy monomer 109 of the number 9 is set as an insertion shaft that can be plugged into the palm hole on the movable part 112 in the shape of the left hand and the right hand. The toy monomer 109 of the number 9 and the part of the mathematical symbol toy monomer 2 combined into the shape of a long sword can be replaced in the positions of the left hand and the right hand of the robot.

[0043] The toy unit 104 of the number 4, the toy unit 107 of the number 7, the toy unit 106 of the number 6 and the toy unit 101 of the number 1 can all be connected and combined into a shuriken-shaped mathematical symbol toy unit 2, that is, the shuriken-shaped mathematical symbol toy unit 2 can be freely set on the toy unit 104 of the number 4 or the toy unit 107 of the number 7 or the toy unit 106 or the toy unit 101 of the number 1 according to the player's ideas, thereby improving the playability of the toy.

[0044] Example 3 like Figure 6 、 Figure 7 As shown, the present invention provides a toy assembly in the form of an aircraft carrier, including a hull portion, a bow portion, a stern bottom portion, and a stern deck portion.

[0045] The toy monomer 100 of number 0, the toy monomer 101 of number 1, the toy monomer 103 of number 3, the toy monomer 105 of number 5 and the toy monomer 106 of number 6 are connected front and back in sequence to form the hull part of the aircraft carrier form toy assembly, that is, the main part of the aircraft carrier form. The front side of the toy monomer 100 of number 0 is connected to the toy monomer 107 of number 7 as the bow part of the aircraft carrier. The side of the toy monomer 106 of number 6 away from the toy monomer 105 of number 5 is connected to the toy monomer 108 of number 8 as the bottom part of the stern of the aircraft carrier. The upper side of the toy monomer 108 of number 8 is connected to the toy monomer 109 of number 9 as the Parking areas are reserved on the stern deck, hull and stern deck of the aircraft carrier. The upper side of the toy unit 100 of number 0 is connected to the ultimate form of the toy unit 104 of number 4, and the upper side of the toy unit 109 of number 9 is connected to the ultimate form of the toy unit 102 of number 2. The ultimate forms of the toy unit 104 of number 4 and the toy unit 102 of number 2 are both aircraft forms. As aircraft installed on the aircraft carrier, both sides of the toy unit 107 of number 7 are connected to part of the mathematical symbol toy unit 2 combined into a weapon form, and one side of the toy unit 106 of number 6 is connected to part of the mathematical symbol toy unit 2 combined into an anchor form.

[0046] Among them, the positions of some mathematical symbol toy units 2 in the form of weapons on both sides of the toy unit 107 of the number 7 can be replaced, thereby improving the playability of the toy.

[0047] Example 4 like Figure 8As shown, taking the number 1 as an example, the basic component 11 of the digital toy unit 1 includes a main part 111 and a movable part 112. The main part 111 is an immovable part in the digital toy unit 1, and the movable part 112 is a movable part set on the main part 111 in the digital toy unit 1. The movable part 112 can rotate or slide relative to the main part 111; and one movable part 112 can also be connected to the main part 111 through other movable parts 112, so that the deformation of the digital toy unit 1 is more flexible.

[0048] The connector 12 of the digital toy unit 1 includes a snap-in connector and a rotating connector. The snap-in connector includes a slot 121 and a U-shaped block 122. The U-shaped block 122 on one digital toy unit 1 can be inserted into the slot 121 on another digital toy unit 1 to achieve a snap connection. The rotating connector includes a connecting shaft 123 and a connecting hole 124. The connecting shaft 123 is a round shaft, and the connecting hole 124 can be a round hole or a regular hexagonal hole. The connection between the regular hexagonal hole and the round shaft can extend the service life of the mating. The connecting shaft 123 on one digital toy unit 1 can be inserted into the connecting hole 124 on another digital toy unit 1 to achieve a rotating connection. The U-shaped blocks 122 are each rotatably mounted on the digital toy unit 1 and rotated out only when a connection is required. Wedge-shaped protrusions 1221 are provided on the outer sides of the U-shaped blocks 122 for quick snapping into the inner wall of the slot 121 to achieve a fixed connection.

[0049] like Figure 9 As shown, the ultimate form of the movable part 112 of the toy unit 101 of number 1 after rotating relative to the main body 111 is a cannon vehicle form or a rocket vehicle form.

[0050] Example 5 like Figure 10-15 As shown, the complete form of the mathematical symbol toy monomer 2 includes five basic forms of mathematical symbol shapes: equal sign, plus sign, minus sign, multiplication sign, and division sign. The connecting part 22 includes a cross card block 221, a combination card block 222, a plug board 223, a wide card strip 224 and a rotating shaft 225. The cross card block 221 can not only meet the connection between the basic parts 21 of different mathematical symbol toy monomers 2, but also meet the connection with the digital toy monomer 1; the combination card block 222 can be connected to the basic part 11 of the digital toy monomer 1 after combination and merging. The plug board 223 is used to connect the basic part 21 of the mathematical symbol toy monomer 2. The wide card strips 224 at different positions are respectively used to connect the basic part 11 or to connect the basic parts 21 to each other. The rotating shaft 225 is used to rotate the connecting basic part 11. The second base member 21 includes a detachable member 211 and an attachment member 212 rotatably mounted on the detachable member 211 . The detachable members 211 on the same mathematical symbol toy unit 2 are connected as a whole via a cross block 221 or a wide strip 224 .

[0051] The cross card block 221 includes a card plate 2211 and a plate slot 2212, which are arranged in a rectangular shape, and a pair of card plates 2211 and a pair of plate slots 2212 are respectively arranged in the two diagonal directions of the rectangle. The card plate 2211 of one cross card block 221 can be inserted into the plate slot 2212 of another cross card block 221 to achieve card connection.

[0052] Each of the adjacent sides of the clamping plates 2211 is provided with a protruding plate 2213. The cross-clamping block 221 also includes a clamping shaft 2214. The clamping shaft 2214 has symmetrical grooves 2215 along its length corresponding to the protruding plates 2213. The protruding plates 2213 on the clamping plates 2211 can be snapped into the grooves 2215. In this embodiment, the clamping shaft 2214 is provided on the division sign-shaped mathematical symbol toy unit 2 and serves as the rotational axis for rotatably connecting the attachment member 212 of the division sign-shaped mathematical symbol toy unit 2 to the detachable member 211.

[0053] The combination card block 222 is set on the division sign-shaped mathematical symbol toy unit 2, and includes two half-axes that are rotatably set on the detachable part 211 of the division sign-shaped mathematical symbol toy unit 2. The half-axes are rotated and assembled into a whole to form the combination card block 222. The combination card block 222 is inserted into the palm hole on the left-hand or right-hand shaped movable part 112.

[0054] The wide clip 224 is provided on both the mathematical symbol toy monomer 2 in the shape of a division sign and the mathematical symbol toy monomer 2 in the shape of an equal sign. The wide clip 224 includes two opposing clip plates. The spacing between the clip plates of each group of wide clips 224 is different. Clip teeth for clipping are provided on the opposite or opposite sides of the clip plates. The wide clip 224 is used for connecting between the detachable parts 211 or between the detachable part 211 and the base part 11.

[0055] The plugboard 223 is rotatably set on the mathematical symbol toy monomer 2 in the shape of a minus sign. Corresponding to the plugboard 223 is a plate hole 227. The plate hole 227 is set on both the mathematical symbol toy monomer 2 in the shape of a division sign and the mathematical symbol toy monomer 2 in the shape of an equal sign. The plugboard 223 can be inserted into the plate hole 227.

[0056] The rotating shaft 225 is provided on both the mathematical symbol toy monomer 2 in the shape of a division sign and the mathematical symbol toy monomer 2 in the shape of a plus sign, and is used to connect the detachable part 211 or the base part 11. The rotating shaft 225 is cooperatively connected with the rotating hole 226. The rotating hole 226 is provided on the detachable part 211 and the base part 11. The rotating shaft 225 on part of the base part 21 is rotatably connected to the rotating hole 226 on the toy monomer 104 of the number 4; the rotating shaft 225 on part of the base part 21 is rotatably connected to the rotating hole 226 on the toy monomer 107 of the number 7; in another embodiment, the rotating shaft 225 can also be rotatably provided on the base part 11 for connecting the detachable part 211.

[0057] Example 6 like Figures 16-20 As shown, the mathematical symbol toy unit 2 can be combined into a variety of different forms, including a long sword form, a shuriken form, a clamp form, a claw form or an anchor form.

[0058] Among them, the long sword form is combined through three mathematical symbol toy monomers 2 in the shape of equal sign, minus sign and division sign, the shuriken form is combined through two mathematical symbol toy monomers 2 in the shape of plus sign and multiplication sign, the clamp form is combined through two mathematical symbol toy monomers 2 in the shape of plus sign and multiplication sign, the anchor form is combined through two mathematical symbol toy monomers 2 in the shape of equal sign and division sign, and the claw form is combined through two mathematical symbol toy monomers 2 in the shape of division sign and multiplication sign.

[0059] The main structures of the clamp form and the shuriken form are the same structure, but they represent different forms in different toy assemblies. Specifically, in the robot form toy assembly, it is in the form of a shuriken. Preferably, the additional part 212 of the multiplication sign mathematical symbol toy monomer 2 can be retracted, which is more like a shuriken shape. In the aircraft carrier form toy assembly, it is in the form of a clamp and is arranged on both sides of the hull. Preferably, the additional part 212 of the multiplication sign mathematical symbol toy monomer 2 can be turned out, which is more in line with the shape of the clamp. The same connection form is used in different toy assemblies as a component that plays different roles in different toy assemblies, which can enhance the player's imagination. Similarly, the anchor form assembly is the form formed by removing the minus sign mathematical symbol toy monomer 2 from the shuriken form assembly, which improves the playability of the toy and the player's hands-on and thinking ability, is conducive to the fun of long-term play, and avoids fatigue from playing.

[0060] Any details not provided in the present invention are conventional technical means known to those skilled in the art.

[0061] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise" and the like to indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as limiting the present invention.

[0062] In addition, the terms "first" and "second" are used for descriptive purposes only and cannot be understood as indicating or suggesting relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include one or more such features. In the description of the present invention, the meaning of "multiple" is two or more, unless otherwise clearly and specifically defined.

[0063] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

[0064] Finally, it should be noted that the above descriptions are merely preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art will be able to modify the technical solutions described in the aforementioned embodiments or substitute equivalents for some of the technical features. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.

Claims

1. A combination toy of numbers and mathematical symbols, characterized in that: A toy assembly consisting of a plurality of number-transforming toys and a plurality of mathematical symbol-transforming toys, wherein the same number of number-transforming toys and the same number of mathematical symbol-transforming toys can be combined into toy assemblies of different shapes; The digital transformation toy comprises ten digital toy monomers (1) in the shape of numbers 0 to 9, each digital toy monomer (1) comprises a plurality of parts, the parts comprising a basic part (11) for forming the basic form of the digital toy monomer (1) and a connecting part (12) for connecting the toy assembly, and a part of the basic part (11) of each digital toy monomer (1) can move or rotate relative to each other, so that the digital toy monomer (1) is transformed into a different form; The mathematical symbol transformation toy comprises mathematical symbol toy monomers (2) in the shape of five mathematical operation symbols, namely, an equal sign, a plus sign, a minus sign, a multiplication sign, and a division sign. Each mathematical symbol toy monomer (2) comprises a plurality of parts, and the parts comprise two basic parts (21) for forming the basic form of the mathematical symbol toy monomer (2) and two connecting parts (22) for connecting the toy assembly. Part of the two basic parts (21) of each mathematical symbol toy monomer (2) can be relatively rotated or separated, so that the mathematical symbol toy monomer (2) is transformed into different forms.

2. A combination toy of numbers and mathematical symbols according to claim 1, characterized in that: The forms of the digital toy monomer (1) include two complete forms and several intermediate forms. The different forms of different digital toy monomers (1) are used to form different parts of toy combinations with different shapes.

3. A combination toy with deformed numbers and mathematical symbols according to claim 2, characterized in that: Each digital toy monomer (1) is provided with a plurality of connecting pieces (12) at different positions, and the connecting pieces (12) at different positions on different digital toy monomers (1) are connected to each other to form toy combinations of different shapes.

4. The combination toy of number and mathematical symbol deformation according to claim 3, characterized in that: The mathematical symbol toy monomer (2) includes a complete form and several intermediate forms. The different forms of different mathematical symbol toy monomers (2) are used to combine into different parts of a toy assembly with different shapes.

5. The combination toy of number and mathematical symbol deformation according to claim 4, characterized in that: The toy set comes in robot, dinosaur and aircraft carrier form.

6. The combination toy of number and mathematical symbol deformation according to claim 5, characterized in that: The two complete forms of the digital toy unit (1) include a basic form and an ultimate form in the shape of numbers 0 to 9, wherein the ultimate form includes a tank form, a ship form, a gun carriage form, an engineering vehicle form, or an aircraft form.

7. The combination toy of number and mathematical symbol deformation according to claim 6, characterized in that: The complete form of the mathematical symbol toy monomer (2) includes five basic forms of mathematical symbol shapes, namely, equal sign, plus sign, minus sign, multiplication sign, and division sign. When the mathematical symbol toy monomer (2) is in different intermediate forms, it can be partially connected to each other to form a combination form of different shapes, and the combination form is a weapon form, a claw form, or an anchor form.

8. The combination toy of number and mathematical symbol deformation according to claim 7, characterized in that: The weapon forms of the mathematical symbol toy monomer (2) include a long sword form, a shuriken form and a clamp form.

9. The combination toy of number and mathematical symbol deformation according to claim 8, characterized in that: The long sword form includes a combination of three mathematical symbol toy monomers (2) in the shape of an equal sign, a minus sign and a division sign, and the shuriken form includes a combination of two mathematical symbol toy monomers (2) in the shape of a plus sign and a multiplication sign.

10. A combination toy with deformed numbers and mathematical symbols according to claim 9, characterized in that: The first connecting member (12) comprises a locking connecting member and a rotating connecting member, wherein the locking connecting member comprises a locking groove (121) and a U-shaped locking block (122), and the U-shaped locking block (122) on one digital toy monomer (1) can be inserted into the locking groove (121) on another digital toy monomer (1) to achieve locking connection; and the rotating connecting member comprises a connecting shaft (123) and a connecting hole (124), and the connecting shaft (123) on one digital toy monomer (1) can be inserted into the connecting hole (124) on another digital toy monomer (1) to achieve rotating connection.

11. The combination toy of number and mathematical symbol deformation according to claim 10, characterized in that: The U-shaped card blocks (122) are all rotatably arranged on the digital toy unit (1), and wedge-shaped protrusions (1221) are arranged on the outer sides of both ends of the U-shaped card blocks (122) for clamping the inner wall of the card slot (121).

12. The combination toy of number and mathematical symbol deformation according to claim 11, characterized in that: The first base member (11) includes a main body member (111) and a movable member (112). The main body member (111) is an immovable part in the digital toy unit (1). The movable member (112) is a movable part in the digital toy unit (1) and is arranged on the main body member (111). The movable member (112) can rotate or slide relative to the main body member (111).

13. The combination toy of number and mathematical symbol deformation according to claim 12, characterized in that: The second connecting member (22) comprises a cross card block (221), a combination card block (222), a plug board (223), a wide card strip (224) and a rotating shaft (225). The cross card block (221) can satisfy the connection between the two basic members (21) of different mathematical symbol toy monomers (2) and can also satisfy the connection between the two basic members (21) and the digital toy monomer (1). The combination card block (222) can be connected to the first basic member (11) of the digital toy monomer (1) after being combined and combined. The plug board (223) is used to connect the second basic member (21) of the mathematical symbol toy monomer (2). The wide card strips (224) at different positions are respectively used to connect the first basic member (11) or to connect the two basic members (21) to each other. The rotating shaft (225) is used to rotate and connect the first basic member (11).

14. The combination toy of number and mathematical symbol deformation according to claim 13, characterized in that: The cross card block (221) comprises a card plate (2211) and a plate slot (2212), wherein the card plate (2211) and the plate slot (2212) are arranged in a rectangular shape, and a pair of card plates (2211) and a pair of plate slots (2212) are respectively provided in the diagonal direction of the rectangle, and the card plate (2211) can be inserted into the plate slot (2212) of another cross card block (221) to achieve a snap connection.

15. The combination toy of number and mathematical symbol deformation according to claim 14, characterized in that: A convex plate (2213) is provided on each side surface of the card plate (2211) that is close to each other. The cross card block (221) further includes a card shaft (2214). The card shaft (2214) is provided with symmetrical grooves (2215) corresponding to the convex plates (2213) along its length direction. The convex plates (2213) on the card plate (2211) can be clamped in the grooves (2215).

16. The combination toy of number and mathematical symbol deformation according to claim 15, characterized in that: The second basic component (21) comprises a detachable component (211) that can be separated from each other and an additional component (212) rotatably arranged on the detachable component (211). The detachable components (211) on the same mathematical symbol toy unit (2) are connected as a whole through a cross-clamping block (221) or a wide clamping strip (224).

17. The combination toy of number and mathematical symbol deformation according to claim 16, characterized in that: In a toy assembly in the form of a robot, a toy monomer (103) with the number 3 and a toy monomer (100) with the number 0 are connected front and back to form a chest portion of the toy assembly in the form of a robot, a movable part (112) on the toy monomer (103) with the number 3 is in the shape of a robot head, and a U-shaped block (122) is provided on the movable part (112) in the shape of the robot head for connecting the toy monomer (100) with the number 0, the bottom of the toy monomer (100) with the number 2 is connected to the toy monomer (102) with the number 2, serving as the waist of the toy assembly in the form of a robot, the left and right sides of the toy monomer (100) with the number 0 are respectively connected to the toy monomer (104) with the number 4 and the toy monomer (107) with the number 7, serving as the left arm portion and the right arm portion of the toy assembly in the form of a robot, and the toy monomer (104) with the number 4 is connected to the toy monomer (102) with the number 2, serving as the waist of the toy assembly in the form of a robot, and the left and right sides of the toy monomer (100) with the number 0 are respectively connected to the toy monomer (104) with the number 4 and the toy monomer (107) with the number 7, serving as the left arm portion and the right arm portion of the toy assembly in the form of a robot, and the toy monomer (104) with the number 4 is connected to the toy monomer (104) with the number 7. ) is in the shape of the robot's left hand, a movable part (112) on the toy monomer (107) of number 7 is in the shape of the robot's right hand, the movable part (112) in the shape of the left hand is connected to the toy monomer (109) of number 9, the movable part (112) in the shape of the right hand is connected to the partial mathematical symbol toy monomer (2) combined into the shape of a long sword, the left and right sides of the bottom of the toy monomer (102) of number 2 are respectively connected to the toy monomer (106) of number 6 and the toy monomer (101) of number 1, which serve as the left leg part and the right leg part of the toy combination body in the shape of the robot, respectively, the bottom of the toy monomer (106) of number 6 is connected to the toy monomer (108) of number 8 as the left foot part of the robot, and the bottom of the toy monomer (101) of number 1 is connected to the toy monomer (105) of number 5 as the right foot part of the robot.

18. The combination toy of number and mathematical symbol deformation according to claim 17, characterized in that: The toy monomer (104) of the number 4, the toy monomer (107) of the number 7, the toy monomer (106) of the number 6 and the toy monomer (101) of the number 1 can all be connected and combined to form a mathematical symbol toy monomer (2) in the form of a shuriken.

19. The combination toy of number and mathematical symbol deformation according to claim 16, characterized in that: In a toy assembly in the form of a dinosaur, a toy unit (100) of number 0 and a toy unit (102) of number 2 are connected front and back to form the body part of the toy assembly in the form of a dinosaur; a side of the toy unit (100) of number 0 away from the toy unit (102) of number 2 is connected to the toy unit (101) of number 1 to serve as the neck of the dinosaur; an end of the toy unit (101) of number 1 away from the toy unit (100) of number 0 is connected to the toy unit (104) of number 4 to serve as the head of the dinosaur; both sides of the toy unit (101) of number 1 are connected to a part of the mathematical symbol toy unit (2) in the form of a claw to serve as the claw part of the dinosaur; the left and right sides of the toy unit (100) of number 0 are respectively connected to the toy unit (106) of number 6 and the toy unit (109) of number 9 to serve as the left leg part and the right leg part of the toy assembly in the form of a dinosaur. The toy monomer (106) of the number 6 is connected to the toy monomer (105) of the number 5 as the left foot of the dinosaur, the bottom of the toy monomer (109) of the number 9 is connected to the toy monomer (108) of the number 8 as the right foot of the dinosaur, the end of the toy monomer (102) of the number 2 away from the toy monomer (100) of the number 0 is connected to the toy monomer (107) of the number 7 as the tail of the dinosaur, the upper side of the toy monomer (100) of the number 0 is connected to the toy monomer (103) of the number 3 as the back of the dinosaur, and the detachable detachable parts (211) of the mathematical symbol toy monomer (2) are respectively arranged on the upper side of the toy monomer (101) of the number 1 as the spike on the neck of the dinosaur, the upper side of the toy monomer (107) of the number 7 as the spike on the tail of the dinosaur, and the front side of the toy monomer (105) of the number 5 as the toe of the left foot.

20. The combination toy of number and mathematical symbol deformation according to claim 16, characterized in that: In the toy assembly in the form of an aircraft carrier, the toy monomer (100) with the number 0, the toy monomer (101) with the number 1, the toy monomer (103) with the number 3, the toy monomer (105) with the number 5 and the toy monomer (106) with the number 6 are sequentially connected front to back to form the hull portion of the toy assembly in the form of an aircraft carrier. The front side of the toy monomer (100) with the number 0 is connected to the toy monomer (107) with the number 7 as the bow portion of the aircraft carrier. The side of the toy monomer (106) with the number 6 away from the toy monomer (105) with the number 5 is connected to the toy monomer (108) with the number 8 as the stern bottom portion of the aircraft carrier. The upper side of the toy monomer (108) of number 8 is connected to the toy monomer (109) of number 9 as the stern deck part of the aircraft carrier, and parking areas are reserved on the hull part and the stern deck part. The upper side of the toy monomer (100) of number 0 is connected to the toy monomer (104) of number 4 in the ultimate form. The upper side of the toy monomer (109) of number 9 is connected to the toy monomer (102) of number 2 in the ultimate form. Both sides of the toy monomer (107) of number 7 are connected to the partial mathematical symbol toy monomer (2) combined into the weapon form. One side of the toy monomer (106) of number 6 is connected to the partial mathematical symbol toy monomer (2) combined into the anchor form.

Citation Information

Patent Citations

  • Figure transformation combination toy

    CN103127722A