Chinese style construction splicing building block toy
By designing Chinese style construction building block toys, using the inter-component combination of multiple components to form multiple shapes, the problem of lack of Chinese style elements in existing building block toys is solved, and the effect of conveying Chinese culture and history is achieved, and it has high educational significance and product value.
Patent Information
- Application Number
- CN202421442344.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-24
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-06-24
AI Technical Summary
The existing building block toys lack Chinese style elements, making it difficult to effectively convey China's culture and history, and lack educational significance and product value.
A Chinese-style construction building block toy was designed. Through the inter-component combination of multiple components, a variety of shapes were formed, including Chinese pavilions, pavilions, pavilions, arch bridges, guardrails, pavilions, long corridors and other elements, reflecting the structure and aesthetics of traditional Chinese architecture.
This building block toy can well convey China's culture and history, cultivate children's sense of identity and pride for the culture of the Chinese nation. By building building blocks, children can understand the structure and aesthetics of traditional Chinese buildings, and have good educational significance and product value.
Smart Images

Figure CN223009788U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of building block toys, in particular to a Chinese-style construction type of building block toy for assembling and building. Background Art
[0002] In general building block toys, there is hardly any embodiment of Chinese-style elements. The building block toy of the utility model has extremely strong constructiveness and creativity. It not only has a large number of combinations and extensions, but also can well display the Chinese style, especially the imagery form of Chinese pavilions, terraces and towers, and can well convey Chinese culture and history, cultivating children's sense of identity and pride in the Chinese nation's culture. And by assembling the building blocks, children can understand the structure and aesthetics of traditional Chinese architecture, learn relevant history and stories, and have good educational significance and extremely high product value. Content of the Utility Model
[0003] Aiming at the deficiencies of the existing building block toy technology, the utility model provides a Chinese-style construction type of building block toy for assembling and building, which solves the problems put forward in the background art.
[0004] The building block components of the utility model can not only be creatively assembled only by using the chassis components, but also can be plugged and combined with each other to form a variety of combined shapes. In some embodiments of the utility model, the chassis components can be vertically stacked with each other or stacked in a staggered manner. When stacked in a staggered manner, the card slots around the rounded rectangular protrusions on the square grid components can enable the chassis components to be plugged in a manner similar to the mortise and tenon structure, so as to have a certain stability and not be easily damaged or fall apart.
[0005] In some embodiments, multiple square grid components can not only be assembled on the long square grid components, but also form a combined state of staggered plug-in on the long square grid components. Multiple square grid components can be plugged and matched with the long square grid components to form an effect similar to a chassis or a platform. At the same time, there are obvious mathematical relationships among the square grid components, the long square grid components and the slope components.
[0006] In some embodiments, when the square grid components and the long square grid components are assembled in the middle and the slope components are assembled on both sides of the combined shape, a construction imagery similar to that of an ancient Chinese arch bridge can be formed.
[0007] In some embodiments, the fence plug-in parts can be plugged on the square grid components, the long square grid components or the slope components, so that the constructed shape can have the imagery of a Chinese-style guardrail.
[0008] In some embodiments, the pavilion-shaped plug-in parts can be plugged on the square grid components, the long square grid components or the slope components, so that the constructed shape can contain Chinese classical elements such as pavilions, terraces and towers, pavilions, verandas, temples, etc.
[0009] In some embodiments, the corridor-shaped plug-in parts can be plugged onto the grid components, long grid components or slope components, so that the constructed shapes can contain the imagery of Chinese-style corridors, waterside pavilions, attics, towers and other shaping elements.
[0010] In some embodiments, the short cylindrical support parts can be not only assembled onto the grid components, long grid components or on the flat ground for construction, but also stacked pairwise. The tree-shaped plug-in parts and long cylindrical support parts can also be plugged onto them, so that the constructed shapes can contain elements such as Chinese-style stone piers, stone pillars, memorial arches, etc.
[0011] In some embodiments, the long cylindrical support parts can be not only plugged onto the grid components and long grid components, but also connect the grid components and long grid components in the vertical direction, not only making the overall shape more vivid, but also endowing the constructed shape with the unique elements of columns and attics in Chinese style.
[0012] In some embodiments, the crescent-shaped plug-in parts can be plugged into the card slots of the cylindrical protrusions on the tops of the grid components and long grid components, so that the constructed shapes can contain the elements of the overhanging eaves and bracket sets of traditional Chinese architecture, making the shaping state more vivid and more in line with the temperament of Chinese-style construction toys.
[0013] Beneficial effects: The building blocks of the present utility model take traditional Chinese architecture as the theme, especially absorb the construction elements in traditional Chinese pavilions, terraces and towers, pavilions, waterside pavilions and corridors, and palace walls and palaces, and integrate them into the building block toys. The building blocks of the present utility model can well convey Chinese culture and history, and cultivate children's sense of identity and pride in the Chinese nation's culture. By assembling the building blocks of the present utility model, children can understand the structure and aesthetics of traditional Chinese architecture, learn relevant history and stories, and have good educational significance. Description of the Drawings
[0014] Figure 1 It is an exploded view of the first embodiment of the present utility model;
[0015] Figure 2 It is a combined shaping state diagram of the first embodiment of the present utility model, showing the combined effect of Chinese-style pavilions, terraces and towers;
[0016] Figure 3 It is a schematic diagram of the structures of all components of the present utility model;
[0017] Figure 4 It is an exploded view of the combined effect of the second embodiment of the present utility model;
[0018] Figure 5 It is a schematic diagram of the combined state of the second embodiment of the present utility model;
[0019] Figure 6Schematic diagram of the combined state of the third embodiment of the present utility model;
[0020] Figure 7 Schematic diagram of the combined state of the fourth embodiment of the present utility model;
[0021] Figure 8 Schematic diagram of the combined state of the fifth embodiment of the present utility model;
[0022] Figure 9 Schematic diagram of the combined state of the sixth embodiment of the present utility model;
[0023] Figure 10 Schematic diagram of the combined state of the seventh embodiment of the present utility model;
[0024] Figure 11 Schematic diagram of the combined state of the eighth embodiment of the present utility model;
[0025] Figure 12 Schematic diagram of the combined state of the ninth embodiment of the present utility model;
[0026] Figure 13 Schematic diagram of the combined state of the tenth embodiment of the present utility model;
[0027] Figure 14 Schematic diagram of the combined state of the eleventh embodiment of the present utility model;
[0028] Figure 15 Schematic diagram of the combined state of the twelfth embodiment of the present utility model;
[0029] Figure 16 Schematic diagram of the combined state of the thirteenth embodiment of the present utility model;
[0030] Figure 17 Schematic diagram of the combined state of the fourteenth embodiment of the present utility model;
[0031] Figure 18 Schematic diagram of the combined state of the fifteenth embodiment of the present utility model;
[0032] Figure 19 Schematic diagram of the combined state of the sixteenth embodiment of the present utility model;
[0033] Figure 20 Schematic diagram of the combined state of the seventeenth embodiment of the present utility model;
[0034] Figure 21 Schematic diagram of the combined state of the eighteenth embodiment of the present utility model;
[0035] In the figure: 1, square grid component; 2, long square grid component; 3, slope component; 4, guardrail plug-in component; 5, pavilion-shaped plug-in component; 6, corridor-shaped plug-in component; 7, long cylindrical support; 8, short cylindrical support; 9, tree-shaped plug-in component; 10, crescent-shaped plug-in component; 111, universal card slot; 112, circular through hole; 113, universal groove; 41, plug-in convex foot; 42, corridor-shaped card slot; 71, cylindrical convex foot. Specific embodiments
[0036] Next, the technical solutions in the embodiments of the present invention will be further described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0037] In the embodiments of the present invention, the material of the building block components is plastic, but in other variant embodiments, it can also be other common building block materials, such as wood, EVA (ethylene-vinyl acetate copolymer), EPP (polypropylene plastic foam), etc., without being limited to the embodiments of the present invention. Moreover, the size of the present invention is not limited to the size ratio of traditional building blocks, and can be the size of tabletop toy categories, or can be enlarged proportionally to the size of outdoor toy categories, etc.
[0038] As Figures 1-5 shown, a kind of building block described in the present invention is composed of a plurality of square grid components (1), long square grid components (2), slope components (3), guardrail plug-in components (4), pavilion-shaped plug-in components (5), corridor-shaped plug-in components (6), long cylindrical supports (7), short cylindrical supports (8), tree-shaped plug-in components (9) and crescent-shaped plug-in components (10). The square grid components (1), long square grid components (2), and slope components (3) can be used as the basis of the platform to build the bottom platform.
[0039] The top of the square component (1) has a rounded rectangular protrusion that is retracted a certain distance, and there are evenly distributed universal slots (111) on the four directions of the rounded rectangular protrusion. These universal slots (111) are similar to the mortise and tenon structure in traditional elements. The center of the square component (1) has a penetrating circular through hole (112), and the bottom has inward-facing universal grooves (113) evenly distributed in four directions. The top structure of the square component (1) uses the traditional Chinese mortise and tenon structure and window lattice pattern, which is full and in line with Chinese elements. The universal groove (113) can be plugged and buckled with the universal slots (111) on the top of other square components (1) to form a stable structure. The center of the square component (1) has a circular through hole (112). Other components can be plugged and matched with the square component (1) through the universal slots (111), the universal grooves (113) or the circular through holes (112).
[0040] The top of the rectangular grid component (2) has three rounded rectangular protrusions that are the same as the top of the square grid component (1). Each rounded rectangular protrusion has evenly distributed universal slots (111) around it, and each rounded rectangular protrusion has a penetrating circular through hole (112) in the center. The bottom of the rectangular grid component (2) has a total of eight evenly distributed inward-facing universal grooves (113). The square grid component (1), the rectangular grid component (2), and the slope component (3) can all be assembled and fastened with the universal slots (111) on the top of other platform components through the universal grooves (113) to form a stable and reliable solid structure, rather than simply stacking like ordinary building blocks. A number of square grid components (1) can be assembled and constructed across space through the rectangular grid component (2) to form various modeling images.
[0041] There is a protrusion at each of the left and right ends of the upper surface of the ramp component (3), and its shape is half of the rounded rectangular protrusion at the top of the grid component (1). The two protrusions also have a universal card slot (111) similar to the top of the grid component (1). There is an internal depression at each of the left and right ends of the lower surface of the ramp component (3), and its shape is half of the rounded rectangular protrusion at the top of the grid component (1). These structures can be spliced and connected with the grid component (1) and the rectangular grid component (2) in all directions to form a stable and reliable structure with rich splicing shape changes.
[0042] There are specific mathematical relationships among the square component (1), the rectangular component (2), and the slope component (3). The square component (1) can be inserted between two horizontally stacked square components (1) through the universal card slot (111) and the universal groove (113). The height of two stacked rectangular components (2) is exactly the height of one square component (1); three square components (1) can be assembled at the bottom of the rectangular component (2). The slope component (3) can be assembled at the height of two stacked square components (1). Through these mathematical relationships, various shapes can be formed between the components.
[0043] The pavilion-shaped plug-in unit (5) and the corridor-shaped plug-in unit (6) each have two plug-in protruding feet (41) at the bottom, which can be plugged into the universal card slots (111) of the square grid component (1), the rectangular grid component (2), and the slope component (3), so as to form the image of Chinese-style buildings such as pavilions and corridors. The corridor-shaped plug-in unit (6) also has two corridor-shaped card slots (42) at the top, and the plug-in protruding feet (41) at the bottom of the pavilion-shaped plug-in unit (5) can be plugged into the corridor-shaped card slots (42).
[0044] The guardrail assembly plug-in unit (4) has two assembly protrusions (41) at the bottom and top, and can be assembled and inserted in the universal slots (111) of the square grid component (1), the rectangular grid component (2), and the slope component (3) in a forward or reverse direction, forming the image of a guardrail in a Chinese-style building.
[0045] The center of the short cylindrical plug-in unit (8) is provided with a circular through hole (113) extending therethrough.
[0046] The top and bottom of the long cylindrical plug-in unit (7) are provided with cylindrical protruding feet (71). The cylindrical protruding feet (71) can be inserted into the circular through holes (113) of the square grid component (1), the rectangular grid component (2), and the short cylindrical plug-in unit (8). The long cylindrical plug-in unit (7) has a specific mathematical relationship with the square grid component (1) and the rectangular grid component (2). The height of one long cylindrical plug-in unit (7) is equivalent to the stacking height of three square grid components (1) or six rectangular grid components (3). Through these mathematical relationships, the long cylindrical plug-in unit (7) can play a role in raising the overall structure and spanning the vertical space in the overall construction shape, and at the same time can better conform to the image of "pillar" in Chinese architecture.
[0047] The tree-shaped plug-in unit (9) has a cylindrical protruding foot (71) at the bottom, and can be inserted into the circular through holes (112) in the square grid component (1), the rectangular grid component (2) and the short cylindrical plug-in unit (8).
[0048] The crescent-shaped component (10) can be inserted into the universal slot (111) of the square component (1), the rectangular component (2), the slope component (3) or the corridor-shaped slot (42) of the corridor-shaped component (6), thereby forming the image of "flying eaves" in traditional Chinese architecture.
[0049] As Figure 4 , Figure 5 shown in the second embodiment, several square components (1) can be vertically stacked. The long square component (2) can occupy half of two square components (1) through the universal card slot (111) at the top of the long square component (1) to form a cross-space connection. The ramp component (3) can be assembled on the other half of the square component (1) so that the overall shape has the shape intention of a Chinese classical arch bridge. At the same time, due to the cooperation of the universal card slot (111) and the universal groove (113) between the components, the overall structure has relatively good stability.
[0050] As Figure 6 shown in the third embodiment, several square components (1) form an elevated bottom platform at the bottom layer. Through the connection between the long square component (2) and the ramp component (3), the bottom platform is connected as a whole. The guardrail plug-in (4), the pavilion-shaped plug-in (5), and the corridor-shaped plug-in (6) are plugged into the universal card slot (111) of the long square component (2) through the plug-in convex feet (41) to form a stable structure. Multiple long cylinder plug-ins (7) are plugged into the circular through holes (112) of the long square component group (2) through the bottom cylinder convex feet (71) to raise the overall shape and form the image of "columns" in Chinese architecture. At the same time, multiple long square plug-ins (2) can also be assembled again above these long cylinder plug-ins (7) to endow the overall shape with the image of "roof". In addition, multiple crescent plug-ins (10) are plugged into the universal card slot (111) of the long square component to endow the overall shape with the image of "flying eaves" in Chinese architecture.
[0051] As Figures 7-11 shown, the fourth embodiment, the fifth embodiment, the sixth embodiment, the seventh embodiment, and the eighth embodiment represent various images of "pavilions, terraces, and towers" in Chinese architecture. These embodiments form the shape of "blue bricks" at the bottom of the Chinese architecture through the assembly of several square components (1). The long square component (2) connects these square components (1) to form a whole and forms the image of "roof" in the shape. The long cylinder plug-in (7) is plugged into the circular through hole (112) in the long square component (2) through the cylinder convex foot (71) to raise the overall shape in the vertical plane, so that the overall shape has a three-dimensional space span and endows the shape with the image of "columns" in Chinese architecture. The crescent plug-in (10) is plugged into the roof formed by several long square components (2) to form an image similar to "flying eaves" in Chinese architecture.
[0052] As Figures 12-16As shown, the ninth, tenth, eleventh, twelfth, and thirteenth embodiments depict the modeling images of gardens, waterside pavilions, and towers in Chinese architecture. A closed square space can be formed as the bottom modeling platform of a Chinese garden by connecting the square components (1) and the long square components (2); or modeling images of Chinese styles such as semi-enclosed arch bridges and covered corridors can be formed by the mutual splicing and combination of the square components (1), the long square components (2), and the slope components (3) in various directions. The guardrail plug-in components (4), the pavilion-shaped plug-in components (5), and the corridor-shaped plug-in components (6) can be plugged into the universal card slots (111) of the square components (1) or the long square components (2) through the plug-in convex feet (41) to form Chinese-style element buildings such as pavilions, long corridors, and guardrails.
[0053] As Figures 17-21 As shown, in the fourteenth, fifteenth, sixteenth, seventeenth, and eighteenth embodiments, each building block component is connected by splicing and combination or using the mortise and tenon structure on the top of the square component (1) to highlight the modeling beauty in the traditional Chinese architectural structure. The bottom platform constructed by the square component (1) has the characteristic of infinite extension, so that the superstructure can be extended. The long cylindrical components (7) can be connected end to end through the square component (1) or the long square component (2) to construct a Chinese architectural structure with the image of multi-level columns.
[0054] The embodiments of the present application have been described above in conjunction with the accompanying drawings. However, the present application is not limited to the above specific implementation manners. The above specific implementation manners are merely illustrative and not restrictive. Under the inspiration of the present application, those of ordinary skill in the art can also make many forms without departing from the purpose of the present application and the scope protected by the claims. For example, changing the rounded rectangular protrusion on the top of the square component (1) to a circular protrusion, a diamond protrusion, an oval protrusion, or other special-shaped protrusions, etc., and the act of opening the universal card slots (111) around them should be regarded as not belonging to creative changes and all belong to the protection scope of the present application.
Claims
1. A Chinese style construction building block toy, characterized in that: It includes square components, rectangular components and slope components for assembling the bottom platform, and also includes pavilion-shaped plug-ins, corridor-shaped plug-ins, guardrail plug-ins, crescent-shaped plug-ins, tree-shaped plug-ins, and long cylindrical support parts and short cylindrical support parts for assembling and inserting on the various platform components.
2. The grid assembly according to claim 1, characterized in that The top of the square component has a rounded rectangular protrusion that is retracted a certain distance, and there are universal card slots evenly distributed in four directions of the rounded rectangular protrusion.
3. The grid assembly according to claim 1 and claim 2, characterized in that: The square component has a penetrating circular through hole at its center, and has evenly distributed inward-facing universal grooves in four directions at its bottom. The universal grooves can be plugged and engaged with universal slots at the tops of other square components to form a stable structure.
4. The rectangular grid assembly according to claims 1 to 3, characterized in that: The top of the rectangular grid component has three rounded rectangular protrusions that are the same as the top of the square grid component, and each rounded rectangular protrusion has universal card slots evenly distributed in four directions.
5. The rectangular grid assembly according to claim 4, characterized in that: Each rounded rectangular protrusion of the rectangular grid component has a penetrating circular through hole in the center, and the bottom of the rectangular grid component has eight evenly distributed inward-facing universal grooves.
6. The ramp assembly according to claim 1, characterized in that: There is a protrusion at each of the left and right ends of the upper surface of the slope component, and its shape is half of the rounded rectangular protrusion on the top of the grid component. The protrusion has a universal card slot similar to the top of the grid component.
7. The ramp assembly according to claim 1, characterized in that: There is an internal depression at each of the left and right ends of the lower surface of the slope component, and the shape of the internal depression is half of the convexity of the top of the grid component.
8. The pavilion-shaped plug-in assembly according to claim 1, characterized in that: The pavilion-shaped assembly plug-in unit has two assembly convex feet at the bottom, and can be assembled and inserted into the universal card slots of the square assembly, the rectangular assembly and the slope assembly.
9. The corridor-shaped plug-in assembly according to claim 1, characterized in that: The corridor-shaped plug-in unit has two plug-in protruding feet at the bottom, and can be plugged into the universal card slots of the square grid component, the rectangular grid component and the slope component.
10. The corridor-shaped plug-in assembly according to claim 1, characterized in that: The top of the gallery-shaped plug-in unit has two gallery-shaped card slots, the plug-in protrusions at the bottom of the pavilion-shaped plug-in unit can be plugged in the gallery-shaped card slots, and the crescent-shaped plug-in unit can also be plugged in the gallery-shaped card slots.
11. The guardrail assembly component according to claim 1, characterized in that: The guardrail assembly plug-in unit has two assembly and insertion protrusions at the bottom and the top, and can be assembled and inserted in the universal card slots of the square assembly, the rectangular assembly and the slope assembly in a forward or reverse direction.
12. The crescent-shaped insert according to claim 1, characterized in that: The crescent-shaped component can be inserted into the universal slot of a square component, a rectangular component, a slope component or a corridor-shaped component to form the image of "flying eaves" in Chinese-style architecture.
13. The short cylindrical component according to claim 1, characterized in that: A circular through hole is provided at the center of the short cylindrical plug-in unit.
14. The long cylindrical component according to claim 1, characterized in that: The two ends of the long cylindrical plug-in unit are provided with cylindrical protruding feet, and can be plugged into the circular through holes of the square component, the long square component and the short cylindrical plug-in unit.
15. The tree-shaped puzzle piece according to claim 1, characterized in that: The tree-shaped component assembly has cylindrical protruding feet at the bottom, and can be inserted into circular through holes in the square component, the rectangular component and the short cylindrical component assembly.