Building block ornament with gradually changed form

By introducing driving and linkage mechanisms into the ornaments, the form of the building block ornaments can be gradually changed, which solves the problem of the single function of existing ornaments, enhances visual appeal and personalization expansion capabilities, and meets the needs of modern consumers for interactivity and playability.

CN224038541UActive Publication Date: 2026-03-27SHENZHEN JINLI CULTURE & CREATIVE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-21
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Existing decorative products are functionally limited, lack dynamic interactive elements, cannot achieve form changes, and lack detachable modular designs, making it difficult to meet modern consumers' needs for interactivity, playability, and personalized customization.

Method used

Design a building block ornament with a gradually changing shape, including a base, a support, and a movable part. The base is equipped with a drive mechanism and a linkage mechanism. The motor drives the linkage plate and linkage rod to drive the reciprocating motion of the movable part to achieve shape changes and supports the standardized connection of the building block splicing panels.

Benefits of technology

It enhances the dynamic interactivity of the ornaments, increases their visual appeal and aesthetic value, and provides personalized expansion capabilities, allowing users to replace and recombine modules independently, thus extending their service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a building block ornament with gradually changed form, which comprises a base, a support piece and a movable piece, the upper surface of the base is a building block splicing panel with building block mounting points, the building block splicing panel is provided with a first through hole, and the support piece is detachably and fixedly connected to the first through hole; the movable part is provided with a fixed end and a movable end, and the fixed end is fixedly connected to the upper end of the supporting part; the driving mechanism is arranged in the base and connected with the linkage mechanism to drive the linkage mechanism to reciprocate, the linkage mechanism is connected with the movable end along the supporting piece to drive the movable end to reciprocate, the limitation of static display of a traditional ornament is broken through, and the visual attraction and the dynamic ornamental value are enhanced; the building block splicing panel can be compatible with splicing connection of mainstream building block assemblies, expandability and reconfigurability of the modeling function are achieved, and a personalized unique ornament is formed; the detachable connection design is adopted, so that the ornament has the functions of replacement and recombination, the service life can be prolonged, and the ornamental value can be increased.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of ornaments, and particularly relates to a building block ornament with morphological gradient. BACKGROUND

[0002] The common ornament products (such as home decoration ornaments, shop display ornaments, etc.) on the market have the technical limitation of single function. The existing ornaments are usually of integral static structure, and the morphological characteristics are fixed and unchangeable after manufacturing, so that the dynamic morphological transformation cannot be realized through mechanical transmission, and the modular design cannot be disassembled and replaced.

[0003] Specifically, the existing ornament products have the following defects: first, the traditional ornaments only provide visual ornamental value through modeling design, lack dynamic interactive elements, and cannot realize periodic or controllable morphological changes, which is easy to cause visual fatigue; second, the components of the ornaments are mostly fixedly connected, and users cannot disassemble or reassemble the functional modules according to needs, and cannot form a unique personalized form through self-reassembly; finally, the existing products are limited to static display function, lack expandable interactive design, and in particular, no standardized connection structure is provided for users to carry out creative playing activities such as building block assembly. These technical defects make it difficult for the traditional ornaments to meet the needs of modern consumers for interactivity, playability and personalized customization. SUMMARY

[0004] The utility model aims at the above-mentioned problems and deficiencies, and provides a building block ornament with morphological gradient, so as to effectively solve the problems of lack of personalization, poor ornamental persistence and inability to interact and play of the existing ornament products.

[0005] The technical scheme of the utility model is realized as follows:

[0006] The building block ornament with morphological gradient comprises a base, a support and a movable piece, the upper surface of the base is a building block assembly panel with building block mounting points, a first through hole is formed in the building block assembly panel, and the lower end of the support is detachably fixedly connected to the first through hole; the movable piece has a fixed end and a movable end, the fixed end is fixedly connected to the upper end of the support; a driving mechanism is arranged in the base, the driving mechanism is connected with a linkage mechanism to drive the linkage mechanism to reciprocate, and the linkage mechanism is connected with the movable end of the movable piece along the support to drive the movable end to reciprocate.

[0007] In some embodiments, the linkage mechanism comprises a linkage plate and linkage rods equal in number to the support members, the linkage plate being connected to the driving end of the driving mechanism so as to be reciprocated, one end of each linkage rod being detachably connected to the linkage plate, and the other end of each linkage rod being connected to the movable end along the support member; when the support member is separated from the base, the movable member and the linkage rods are separated from the base along with the support member.

[0008] Further, the driving mechanism comprises a motor, an eccentric wheel being connected to the output shaft of the motor, a sliding groove being provided on the linkage plate corresponding to the position of the eccentric wheel, and the eccentric wheel extending into the sliding groove to drive the linkage plate to reciprocate up and down.

[0009] Further, a disc is provided on the top of the linkage plate, a counterbore being provided on the top surface of the disc corresponding to the position of the first through hole, and the bottom of the linkage rod extending into the counterbore to be matched with the linkage plate, the linkage rod being reciprocated up and down to drive the movable end of the movable member to reciprocate.

[0010] In some embodiments, a hollow pipe is provided in the middle of the support member and extends through the upper and lower surfaces of the support member, and the linkage rod extends through the hollow pipe so as to be connected to the movable end at the upper end.

[0011] In some embodiments, the movable member has a plurality of movable ends, and further comprises a transmission member mounted on the fixed end, each movable end being matched with the transmission member, the transmission member being matched and connected with the linkage mechanism, and the linkage mechanism driving the transmission member to reciprocate so as to simultaneously reciprocate the plurality of movable ends.

[0012] In some embodiments, the movable member further comprises a resilient reset member, the lower end of the transmission member being matched with the linkage mechanism, and the upper end of the transmission member being matched with the resilient reset member, the linkage mechanism driving the transmission member to move upward while the resilient reset member stores energy, and the resilient reset member releasing energy to drive the transmission member to move downward when the linkage mechanism resets.

[0013] In some embodiments, the transmission member is a cylinder, and a plurality of rows of convex teeth are provided on the arc surface of the transmission member; each movable end is connected with the fixed end through a hinged plate, the end of the hinged plate close to the transmission member being provided with a sector tooth matched with the convex teeth, and the movable end being connected to the other end of the hinged plate, the transmission member being moved up and down to drive the sector tooth to rotate, so as to swing the movable end around the rotation shaft of the hinged plate.

[0014] In some embodiments, the support is a branch, the movable part is a flower, the movable end is a petal, the fixed end is a pistil, and the linkage mechanism drives the petal to open and close reciprocally.

[0015] In some embodiments, a light guide hose is further included, a second through hole is arranged on the building block splicing panel, and a light part is arranged in the base at a position corresponding to the second through hole.

[0016] The present application has the following beneficial effects:

[0017] (1) Dynamic interaction is improved: through the cooperation of the built-in driving mechanism and the movable part, the periodic form transformation of the main body or the local component (i.e. the movable end) of the ornament is realized, the limitation of the traditional static display of the ornament is broken, and the visual attraction and dynamic ornamental value are enhanced.

[0018] (2) Personalized expansion capability: the building block splicing panel with standardized building block points is arranged on the upper surface of the base of the ornament, the splicing connection of mainstream building block components is compatible, the user can independently install personalized building block units, the expandability and reconfigurability of the modeling function are realized, and thus the unique ornament with individuality is formed.

[0019] (3) Structural optimization innovation: the connection design of the detachable support and the base is adopted, the reliable operation of the dynamic component is ensured, the user can replace the support and the movable part according to the requirements, the product main body can be replaced and recombined, the service life of the ornament is prolonged by replacing the damaged movable part, and the ornamental value of the ornament is prolonged by recombining the movable part.

[0020] The present application will be further described below with reference to the drawings. DRAWINGS

[0021] Figure 1 It is a three-dimensional structure schematic view of the movable part of the present application in a closed state.

[0022] Figure 2 It is a three-dimensional structure schematic view of the movable part of the present application in an open state.

[0023] Figure 3 It is an exploded structure schematic view of the present application.

[0024] Figure 4 It is an exploded structure schematic view of the driving mechanism and the linkage mechanism of the present application.

[0025] Figure 5 It is a sectional structure schematic view of the driving mechanism of the present application driving the linkage rod to move upward.

[0026] Figure 6The sectional structure schematic view of the driving mechanism driving the linkage rod to move downwards;

[0027] Figure 7 The exploded structure schematic view of the movable part of the utility model;

[0028] Figure 8 The sectional structure schematic view of the movable part of the utility model;

[0029] Figure 9 The three-dimensional structure schematic view of the petal and the transmission part of the utility model.

[0030] Reference signs:

[0031] Movable part 1;

[0032] Fixed end 11, upper cover 111, connecting ring 112, lower seat 113, through hole 114, movable end

[0033] 12, plug hole 121, transmission part 13, convex tooth 131, recess 132, elastic reset part 14, warped plate 15, rotating shaft 151, fan-shaped tooth 152;

[0034] Supporting part 2;

[0035] Hollow pipeline 21;

[0036] Base 3;

[0037] Groove seat 31, motor seat 32, charging socket 33, power switch 34, motor switch 35;

[0038] Building block splicing panel 4;

[0039] First through hole 41, second through hole 42, building block mounting point 43;

[0040] Light guide hose 5;

[0041] Driving mechanism 6;

[0042] Motor 61, output shaft 62, eccentric wheel 63;

[0043] Linkage mechanism 7;

[0044] Linkage plate 71, linkage rod 72, sliding groove 73, disc 74, counterbore 75;

[0045] Light part 8;

[0046] Circuit board 9. Specific implementation

[0047] The embodiments of the present application are described below in detail, examples of which are shown in the drawings, wherein the same or similar notations represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by reference to the drawings are exemplary only, and are used only for explaining the present application, and cannot be understood as a limitation of the present application.

[0048] In the description of the present application, it should be understood that the terms "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation of the present application. In addition, the features limited by "first" and "second" can explicitly or implicitly include one or more of the features, which are used to distinguish the described features, and have no order or priority.

[0049] In the description of the present application, unless otherwise specified, the meaning of "a plurality of" is two or more.

[0050] In the description of the present application, it should be noted that, unless otherwise specified and limited, the terms "fitting", "connection", "connection", "installation" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium, or it can be the communication between two elements. For ordinary skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0051] The building block ornament with morphological gradient of the present application is described below in combination with the drawings.

[0052] As Figures 1 to 3 shown, the present application relates to a building block ornament with morphological gradient, comprising a base 3, a supporting piece 2 and a movable piece 1, the upper surface of the base 3 is a building block splicing panel 4 with building block mounting points 43, so that it can be compatible with the splicing connection of mainstream building block assemblies, users can independently add personalized building block units to realize the extensibility and reconfigurability of modeling function, thereby forming a unique ornament with individuality.

[0053] The building block connecting panel 4 is provided with a plurality of first through holes 41, and the lower end of the supporting member 2 is detachably fixedly connected to the first through holes 41, so that the dynamic component can reliably operate while allowing the user to replace the functional modules such as the supporting member 2 and the movable member 1 according to the requirement, the product main body can be replaced and reorganized, the service life of the swing is prolonged by replacing the damaged movable member 1, and the ornamental value of the swing is prolonged by reorganizing the movable member 1.

[0054] The movable member 1 has a fixed end 11 and a movable end 12, and the fixed end 11 is fixedly connected to the upper end of the supporting member 2; the base 3 is provided with a driving mechanism 6, the driving mechanism 6 is connected to a linkage mechanism 7 to drive the linkage mechanism 7 to reciprocate, and the linkage mechanism 7 is connected to the movable end 12 along the supporting member 2 and the movable end 12 to drive the movable end 12 to reciprocate, so that the periodic shape transformation of the main body or the local component (i.e. the movable end 12) of the swing is realized, the limitation of the traditional swing static display is broken, and the visual attraction and dynamic ornamental value are enhanced.

[0055] Understandably, the shapes of the supporting member 2 and the movable member 1 of the building block swing can be various simulation modeling members, such as Figures 1 to 3 The supporting member 2 is a branch, and the movable member 1 is a flower, wherein the movable end 12 is a petal, and the fixed end 11 is a pistil, and the linkage mechanism 7 drives the petal to reciprocate and change; in addition, the supporting member 2 can be a telegraph pole, and the movable member 1 is a small bird resting on the telegraph pole, wherein the movable end 12 is the wing and head of the small bird, the fixed end 11 is the body, the linkage mechanism 7 drives the wing to reciprocate and change, and the head to reciprocate and lower the head; the supporting member 2 can also be a tree trunk, and the movable member 1 is a small house built on the tree trunk, wherein the movable end 12 is the door of the small house, and the fixed end 11 is the house, and the linkage mechanism 7 drives the door of the small house to reciprocate and change.

[0056] The supporting member 2 can be single or multiple, and the corresponding movable member 1 can also be single or multiple. The linkage mechanism 7 includes a linkage plate 71 and a plurality of linkage rods 72 equal to the number of the supporting members 2, the linkage plate 71 is connected to the driving end of the driving mechanism 6 to realize the reciprocating movement of the linkage plate 71, one end of the linkage rod 72 is detachably connected to the linkage plate 71, when the linkage plate 71 moves, all the linkage rods 72 will move at the same time, that is, one linkage plate 71 can drive multiple linkage rods 72 to move at the same time; the other end of the linkage rod 72 is connected to the movable end 12 along the supporting member 2, and the linkage rod 72 is designed to be detachably connected, so that when the supporting member 2 is separated from the base 3, the movable member 1 and the linkage rod 72 are separated from the base 3 along with the supporting member 2, that is, the user is allowed to replace the functional modules such as the supporting member 2 and the movable member 1 according to the requirement.

[0057] In order to realize the reciprocating movement of the linkage mechanism 7, as shown in Figures 4 to 6As shown, the driving mechanism 6 comprises a motor 61, an eccentric wheel 63 connected to the output shaft 62 of the motor 61, a sliding groove 73 provided on the linkage plate 71 corresponding to the position of the eccentric wheel 63, the eccentric wheel 63 extending into the sliding groove 73, the eccentric wheel 63 being movable in the left and right directions of the sliding groove 73, and when the output shaft 62 of the motor 61 drives the eccentric wheel 63 to eccentrically rotate, the eccentric wheel 63 will be deflected in the sliding groove 73 to drive the linkage plate 71 to reciprocate up and down. Further, in order to ensure that the linkage plate 71 only produces displacement in the upward and downward directions, the embodiment is provided with a groove seat 31 opening upward in the base 3, the size of the groove seat 31 being consistent with the size of the lower part of the linkage plate 71, and after the lower part of the linkage plate 71 extends into the groove seat 31, the displacement of the linkage plate 71 in other directions is limited, and the linkage plate 71 can only move in the upward and downward directions of the groove seat 31.

[0058] In order to increase the connection area with the linkage rod 72, so as to drive more dispersed linkage rods 72 to move simultaneously, the top of the linkage plate 71 is provided with a disc 74, the lower circular surface of the disc 74 being fixedly connected with the linkage plate 71 by screw locking, buckling or the like, and the top surface (upper circular surface) of the disc 74 is provided with a counterbore 75 corresponding to the position of the first through hole 41, the bottom of the linkage rod 72 extending into the counterbore 75 to realize cooperation with the linkage plate 71, and the linkage rod 72 reciprocates up and down to drive the movable end 12 of the movable part 1 to reciprocate. Figure 4 As shown, the disc 74 of the embodiment is provided with three counterbores 75, the linkage rod 72 corresponding to a metal rod body, and the bottom of the linkage rod 72 extending into the counterbore 75. Since the hole wall of the counterbore 75 limits the position of the linkage rod 72, when the disc 74 drives the three linkage rods 72 to move upward, the three linkage rods 72 will not be displaced due to stress, so as to ensure smooth power transmission.

[0059] The linkage rod 72 can extend upward along the outer wall of the support part 2 to the movable part 1, and can also be as shown in Figure 5 and Figure 6 As shown, a hollow pipe 21 is provided in the middle of the support part 2 and extends through the upper and lower end faces of the support part 2, and the linkage rod 72 extends through the hollow pipe 21 to realize the connection between the upper end of the linkage rod 72 and the movable end 12.

[0060] The movable part 1 can have only one movable end 12, such as the movable part 1 being a cottage and the movable end 12 being the door of the cottage; or the movable part 1 can have multiple movable ends 12, such as the movable part 1 being a flower and the multiple petals corresponding to the multiple movable ends 12. When there are multiple movable ends 12, in order to enable a single linkage rod 72 to simultaneously drive all the movable ends 12 to move, in some embodiments, the movable part 1 further comprises a transmission part 13 installed on the fixed end 11, the multiple movable ends 12 are all in cooperation with the transmission part 13, the transmission part 13 is in cooperation with the linkage mechanism 7, and the linkage mechanism 7 drives the transmission part 13 to reciprocate to simultaneously change the multiple movable ends 12. As shown in Figure 7 the embodiment, the movable part 1 is a flower, eight petals are arranged thereon, four small petals are arranged in a circle around the upper part of the pistil as the fixed end 11, four large petals are arranged in a circle around the lower part of the pistil and wrap the four small petals, a transmission part 13 is arranged in the pistil, the transmission part 13 can move up and down in the pistil, the bottom of the transmission part 13 is connected with the top of the linkage rod 72, and the roots of the eight petals are arranged to extend into the pistil to cooperate with the transmission part 13, so as to simultaneously drive the eight petals to open when the linkage rod 72 drives the transmission part 13 to move upward, and simultaneously drive the eight petals to close when the linkage rod 72 drives the transmission part 13 to move downward or both the transmission part 13 and the linkage rod 72 move downward under the action of gravity. Therefore, the petals of the flower can be continuously opened and closed, and the gradual change of the form can be realized by driving the eccentric wheel 63 to reciprocate by the motor 61.

[0061] In order to better realize the automatic reset of the transmission part 13 and avoid the insufficient gravity from causing the movable end 12 to fail to be well reset, in some embodiments, the movable part 1 further comprises an elastic reset part 14, the lower end of the transmission part 13 is in cooperation with the linkage mechanism 7, and the upper end of the transmission part 13 is in cooperation with the elastic reset part 14, the elastic reset part 14 stores energy when the linkage mechanism 7 drives the transmission part 13 to move upward, and the elastic reset part 14 releases energy to drive the transmission part 13 to move downward when the linkage mechanism 7 resets. Specifically, as shown in Figure 8In the shown embodiment, the transmission member 13 and the elastic reset member 14 of the embodiment are both mounted inside the fixed end 11 which comprises an upper cover 111, a connecting ring 112 and a lower seat 113, the transmission member 13 passes through the connecting ring 112 and is supported at the bottom in the lower seat 113, the bottom of the lower seat 113 is provided with a through hole for the bottom of the transmission member 13 to abut against the bottom of the connecting rod 72, the upper end of the transmission member 13 is inwardly provided with a recessed hole 132, the elastic reset member 14 is a spring, the lower part of the spring extends into the recessed hole 132, and the upper part of the spring abuts against the top of the upper cover 111, the eight petal petals are movably connected to the connecting ring 112, the connection and fixation of the upper cover 111 and the connecting ring 112 and the connecting ring 112 and the lower seat 113 are realized through screws, and after the connection and fixation, the transmission member 13 can move up and down inside the fixed end 11. When the connecting rod 72 lifts up the transmission member 13, the transmission member 13 moves up and makes the spring compressed and stored energy, and when the connecting rod 72 moves down, the potential energy of the spring pushes the transmission member 13 to move down.

[0062] The transmission member 13 can be provided with a push block or a convex block at the connecting end corresponding to the eight petal petals, so that when the transmission member 13 moves up, the push block or the convex block is used to drive the petals to open. In order to simplify the structure and ensure that the power transmission is more reliable, a more preferred scheme is as follows: Figure 9 As shown in the figure, the transmission member 13 is a cylinder, and a plurality of convex teeth 131 are arranged on the arc surface of the transmission member 13; each movable end 12 is connected with the fixed end 11 through a flap 15, one end of the flap 15 close to the transmission member 13 is provided with a fan-shaped tooth 152 which is engaged with the convex tooth 131 on the transmission member 13, the movable end 12 is connected to the other end of the flap 15, and the connection part of the movable end 12 is provided with an insertion hole 121, and the other end of the flap is inserted into the movable end 12 for fixed connection; when the transmission member 13 moves up and down, the fan-shaped tooth 152 can be driven to rotate, so as to realize the swing of the movable end 12 around the rotating shaft 151 of the flap 15, and realize the opening and closing action.

[0063] In order to further improve the ornamental value of the ornament, the utility model also includes a light guide hose 5, a second through hole 42 is arranged on the building block splicing panel 4, a light part 8 is arranged in the base 3 at a position corresponding to the second through hole 42, and the light guide hose 5 is inserted into the second through hole 42. Figure 3 As shown in the figure, the light part 8 of the embodiment is a lamp bead which is mounted on a circuit board 9, and the light guide hose 5 is a transparent or translucent pipe body. When the light part 8 is lighted, the light will be transmitted through the light guide hose 5, so as to realize the light emission of the whole light guide hose 5 and increase the night ornamental value of the ornament. The base 3 is provided with a lithium battery for power supply, the lithium battery is a rechargeable battery, a charging socket 33 is arranged on the outer wall of the base 3, and a power switch 34 and a motor switch 35 are also arranged.

[0064] The following will be described in combination withFigures 1 to 6 The embodiment is described in detail.

[0065] The building block flower ornament of this embodiment includes a flowerpot as the base 3, a branch as the support 2, a flower as the movable piece 1, a short branch as the light guide hose 5, a driving mechanism 6 and a linkage mechanism 7. The upper surface of the base 3 is a building block splicing panel 4 with building block mounting points 43, so that some building block components such as grass and rabbits can be spliced on the building block splicing panel 4, making the planting surface of the flowerpot more beautiful. A USB charging socket 33, a power switch 34 and a motor switch 35 are arranged on the circular surface of the base 3 close to the bottom. On the building block splicing panel 4, a first through hole 41 and a second through hole 42 are arranged, wherein the first through hole 41 is a circular hole and there are three of them, and the second through hole 42 is a polygonal hole and there are also three of them. The first through hole 41 is used for inserting the support 2, and the second through hole 42 is used for inserting the light guide hose 5, so the support 2 and the light guide hose also have three of them respectively. The driving mechanism 6 is arranged in the base 3, which includes a motor 61, a motor 61 seat 32 and an eccentric wheel 63. The motor 61 seat 32 fixes the motor 61 in the base 3, and the eccentric wheel 63 is connected with the rotating shaft 151 of the motor 61. The linkage mechanism 7 includes a linkage plate 71 and a linkage piece. The linkage plate 71 includes a plate body and a disc 74 connected with the eccentric wheel 63. A transversely extending sliding groove 73 is arranged on the plate body, and the height of the sliding groove 73 is the same as the diameter of the eccentric wheel 63, and the eccentric wheel 63 extends into the sliding groove 73. The bottom of the disc 74 is integrally connected with the top of the plate body by screws, and three counterbores 75 are arranged on the top surface of the disc 74 corresponding to the positions of the three first through holes 41. The linkage rod 72 of this embodiment is a wire, and a hollow pipe 21 is arranged in the middle of the support 2 extending through the upper and lower end surfaces of the support 2. The linkage rod 72 extends through the hollow pipe 21, and the lower end of the linkage rod 72 extends into the counterbores 75 from the first through holes 41 of the building block splicing panel 4, and the upper end of the linkage rod 72 extends into the movable piece 1 from the support 2. Three light pieces 8 are arranged in the base 3 corresponding to the positions of the second through holes 42, and the three light pieces 8 are fixed on the same circuit board 9.

[0066] The movable piece 1 of this embodiment includes a petal as the movable end 12, a stigma as the fixed end 11, a transmission piece 13 for driving the petal to move, and an elastic reset piece 14 for resetting, as shown in Figure 1 or Figure 2As shown, the movable end 12 has eight parts, which means there are eight petals in total. Four small petals form a circle around the upper part of the stamen, which serves as the fixed end 11, and four large petals form a circle around the lower part of the stamen, which are staggered and wrap around the four small petals. The fixed end 11 in this embodiment includes an upper cover 111, a connecting ring 112, and a lower seat 113. The transmission member 13 passes through the connecting ring 112 and its bottom is supported in the lower seat 113. The bottom of the lower seat 113 is provided with a through hole 114 for the linkage rod 72 to pass through and abut against the bottom of the transmission member 13. The upper end of the transmission member 13 has a recessed hole 132. The elastic reset member 14 is a spring. The lower part of the spring extends into the recessed hole 132, and its upper part abuts against the top of the upper cover 111. The transmission component 13 is a cylinder with multiple rings of protruding teeth 131 spaced apart on its arc surface. Each movable end 12 is connected to the fixed end 11 by a rocker plate 15. Specifically, the rocker plate 15 has a rotating shaft 151 in the middle, and corresponding slots for placing the rotating shaft 151 are provided at the upper and lower ends of the connecting ring 112. After placement, the upper cover 111 and the connecting ring 112, and the connecting ring 112 and the lower seat 113 are connected and fixed by screws, so that the rocker plate 15 will not fall off the fixed end 11, and the rocker plate 15 can swing around the rotating shaft 151. The rocker 15 has a fan-shaped tooth 152 at one end near the transmission component 13, which meshes with the protruding tooth 131 on the transmission component 13; the other end of the rocker 15 extends out of the fixed end 11 and is used to connect with the movable end 12. Specifically, a plug hole 121 is provided at the connection of the movable end 12, and the other end of the rocker 15 is inserted into the plug hole 121 and fixed by adhesive bonding.

[0067] The gradual change in shape of the ornament in this embodiment is as follows:

[0068] like Figure 5 As shown, the eccentric wheel 63 is in a downward position at this time. In this state, the linkage plate 71 is at its lowest position, and the bottom surface of the linkage plate 71 is in contact with the bottom surface of the slot seat 31. The disc 74 is also at its lowest position. At this time, the three linkage rods 72 and the transmission component 13 are also at their lowest positions under the action of the elastic reset component 14. Therefore, the convex tooth 131 of the transmission component 13 drives the fan-shaped tooth 152 to rotate downward, thereby causing the other end of the rocker plate 15 to tilt upward. Thus, the eight movable ends 12 are also in an upward swinging state, that is, the petals are in a closed state, and the whole flower is in a budding state, as shown. Figure 1 As shown.

[0069] When motor 61 starts to rotate, eccentric wheel 63 will gradually shift upwards, until it reaches the desired position. Figure 6The state shown, at this time the eccentric wheel 63 is in the uppermost position, that is, the linkage plate 71 is also moved to the uppermost position, the three linkage rods 72 are lifted up, so the top of each linkage rod 72 respectively lifts the transmission member 13 in the movable piece 1, the transmission member 13 moves to the upper end position, so the convex teeth 131 of the transmission member 13 drives the sector teeth 152 to rotate upward, so that the other end of the rocker 15 swings downward, so the eight movable ends 12 are also in the downward swing state, that is, the petals are in the open state, the whole flower is in the blooming form, as shown in Figure 2 The state shown, and at this time the elastic reset member 14 is compressed and stored. Therefore, in the process of Figures 5 to 6 , the motor 61 drives the flower to gradually bloom, and when the motor 61 continues to rotate, it starts to change from Figures 6 to 5 , so that the flower gradually changes from the blooming form to the closing state, and so on, so as to realize the reciprocating gradual change of the flower of the swing piece between the blooming form and the closing form, that is, the dynamic display of the swing piece.

[0070] When a movable piece 1 is damaged or wants to be replaced by other movable pieces 1, such as a rose shown in the figure, when a lily flower shape is wanted, only the support piece 2 is pulled out of the first through hole 41 of the building block splicing panel 4, that is, the support piece 2 is separated from the base 3 together with the movable piece 1 and the linkage member, then other flower-shaped support pieces 2 are inserted, and the lower end of the linkage member is ensured to extend into the counterbore 75, so as to complete the replacement, which is very simple and convenient.

[0071] The dynamic display of the swing piece is organically combined with the building block playing function, so that the swing piece simultaneously has multiple application functions such as decoration display, dynamic demonstration, intelligence interaction, and the value of the swing piece is significantly improved, and the technical improvement from passive display to active interaction of the decoration swing piece is realized.

[0072] In the description of the present application, the description of the terms "embodiment", "example" and the like means that the specific features, structures, materials or characteristics described in combination with the embodiment or example are contained in at least one embodiment or example of the present application. In the present application, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0073] Although the embodiments of the present application have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and purposes of the present application, and the scope of the present application is defined by the claims and their equivalents.

Claims

1. A building block figurine having a morphing shape, characterized in that, The application relates to a toy, which comprises a base, a support and a movable piece, the upper surface of the base is a building block splicing panel with building block mounting points, a first through hole is formed in the building block splicing panel, the lower end of the support is detachably fixedly connected with the first through hole; the movable piece has a fixed end and a movable end, the fixed end is fixedly connected with the upper end of the support; a driving mechanism is arranged in the base, the driving mechanism is connected with a linkage mechanism to drive the linkage mechanism to reciprocate, the linkage mechanism is connected with the movable end of the movable piece along the support to drive the movable end to reciprocate.

2. The building block toy set with morphing shapes according to claim 1, wherein, The linkage mechanism comprises a linkage plate and linkage rods equal in number to the support, the linkage plate is connected with the driving end of the driving mechanism to realize that the linkage plate can reciprocate, one end of the linkage rod is detachably connected with the linkage plate, and the other end of the linkage rod is connected with the movable end along the support; when the support is separated from the base, the movable piece and the linkage rod are separated from the base along with the support.

3. The building block toy set with morphing shapes according to claim 2, wherein, The driving mechanism comprises a motor, an eccentric wheel is connected with the output shaft of the motor, a sliding groove is arranged on the linkage plate at a position corresponding to the eccentric wheel, and the eccentric wheel extends into the sliding groove to drive the linkage plate to reciprocate up and down.

4. The building block toy set with morphing shapes according to claim 3, wherein, A disc is arranged on the top of the linkage plate, a counterbore is arranged on the top surface of the disc at a position corresponding to the first through hole, the bottom of the linkage rod extends into the counterbore to realize cooperation with the linkage plate, and the linkage rod reciprocates up and down to drive the movable end of the movable piece to reciprocate.

5. The morphing block toy piece of claim 2, wherein, A hollow pipe is arranged in the middle of the support and extends through the upper and lower end faces of the support, and the linkage rod extends through the hollow pipe to realize that the upper end of the linkage rod is connected with the movable end.

6. The morphing block toy piece of claim 1, wherein, The movable piece has a plurality of movable ends, and further comprises a transmission piece, the transmission piece is arranged on the fixed end, the plurality of movable ends are matched with the transmission piece, the transmission piece is matched and connected with the linkage mechanism, and the linkage mechanism drives the transmission piece to reciprocate to realize that the plurality of movable ends simultaneously reciprocate.

7. The morphing building block toy of claim 6, wherein, The movable piece further comprises an elastic reset piece, the lower end of the transmission piece is matched with the linkage mechanism, the elastic reset piece is matched with the upper end of the transmission piece, the linkage mechanism drives the transmission piece to move upwards at the same time that the elastic reset piece stores energy, and the elastic reset piece releases energy to drive the transmission piece to move downwards when the linkage mechanism resets.

8. The morphing block toy piece of claim 6, wherein, The transmission piece is a cylinder, a plurality of rows of convex teeth are arranged on the arc surface of the transmission piece at intervals; each movable end is connected with the fixed end through a warped plate, the end of the warped plate close to the transmission piece is provided with a sector tooth matched with the convex teeth, the movable end is connected with the other end of the warped plate, and the transmission piece moves up and down to drive the sector tooth to rotate, so that the movable end swings around the rotating shaft of the warped plate.

9. The morphing building block toy piece of any of claims 1-8, wherein, The support is a branch, the movable piece is a flower, the movable end is a petal, the fixed end is a pistil, and the linkage mechanism drives the petal to reciprocate and change.

10. The morphing-graduated building block toy piece of claim 1, wherein, The light guide hose is inserted into the second through hole.