Building block splicing mechanism for board game
By setting feet on the bottom side and handles on the top of the individual building blocks, and designing splicing positions on the assembly plate, the problems of complex and easily damaged splicing of building blocks in the existing technology are solved, achieving the effects of easy splicing and extended service life.
Patent Information
- Application Number
- CN202423072383.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-12
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2034-12-12
AI Technical Summary
In existing technologies, the interlocking structure of building blocks and building block sets is complex, difficult to process, requires effort to insert and remove, and is prone to breakage, resulting in a shortened service life.
The building blocks are designed with inserts on the bottom and handles on the top. The assembly tray has joints for connecting blocks, and adjacent blocks are connected by slots to form matching joints, ensuring easy insertion and removal without damaging the components.
It achieves simple structure and easy processing of building block assembly, convenient insertion and removal, and improves the service life of building blocks and assembly plates.
Smart Images

Figure CN223628087U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to game toy technical field especially relates to a building block splicing mechanism for table game. BACKGROUND
[0002] Table game is a face-to-face game, and communication is very emphasized, and it is the best communication mode in family leisure, friend gathering and even business leisure. The building block toy as a kind of table game is usually cubic wooden or plastic solid toy, and generally, each surface is decorated with letters or pictures, allowing different arrangement or building activity. The building block has various styles, and it has great effect on the intelligence development of children, and it is a method to improve the hand-eye coordination of children. At present, the building block toy has many playing methods, such as arrangement, jointing, annular and symmetrical styles, which are helpful to the intelligence of children. When playing the building block toy, it is important to let children participate in proportion, symmetry and other issues by themselves, which is meaningful for early training of children's arithmetic.
[0003] The Chinese utility model patent with publication number CN205627104U provides a new jigsaw building block, which comprises a bottom disc and a building block. A plurality of splicing convex points are distributed on the upper surface of the bottom disc, and a splicing concave point matched with the splicing convex point is arranged on the bottom surface of the building block. A polyvinyl alcohol layer is arranged on the surface of the building block. The building block can be quickly spliced with the splicing convex points on the bottom disc through the splicing concave point on the bottom surface, so that players can flexibly realize more shapes of toys according to their own hobbies, and the interaction is strong.
[0004] The concave-convex point plug-in structure between the building block and the bottom disc not only has high plug-in requirements, but also has complex processing and high cost. In addition, a relatively large force is required in the plug-in process, which brings inconvenience to children aged 5-12. On the other hand, the convex point structure of the bottom disc is easy to break due to excessive force in actual use, which further causes irreversible damage to the bottom disc and reduces the service life of the toy.
[0005] Therefore, a new technical solution is needed to solve the above technical problems. UTILITY MODEL CONTENTS
[0006] The utility model aims at overcoming the problems of the prior art, and provides a building block splicing mechanism for table game, which solves the technical problems that the building block and the building block tray adopt concave-convex points, the structure is complex and not easy to process, it is laborious to plug in and pull out, and excessive force is easy to cause the convex points of the building block tray to break, and further cause damage to the building block tray.
[0007] The above object is achieved by the following technical solutions:
[0008] A building block splicing mechanism for a table game, comprising a building block splicing plate and building blocks, the building blocks comprising at least one building block unit, the bottom side of the building block unit being provided with building block pins and the top being provided with a building block handle; the building block splicing plate is provided with building block splicing positions, the building block splicing positions are composed of a plurality of building block unit splicing positions corresponding to the building block units, adjacent building block unit splicing positions are connected through building block insertion slots, and the building block insertion slots can accommodate two building block pins.
[0009] Further, the building block units are square, and correspondingly, the building block unit splicing positions are square.
[0010] Further, the building block is a rectangle, which is formed by at least two building block units connected to each other.
[0011] Further, the building block is a U-shaped structure, comprising three building block units connected in a straight line and two building block units arranged on the same side.
[0012] Further, the building block unit splicing positions form square building block splicing positions in an MxM array, wherein M is a positive integer greater than 5.
[0013] Further, the building block unit comprises four building block pins corresponding to the axial positions of the side edges of the building block unit.
[0014] Further, the building block pin is a cube.
[0015] Further, the height of the building block pin is greater than the depth of the building block insertion slot.
[0016] Further, the building block insertion slots in the same column are located on the same horizontal line.
[0017] Further, the building block insertion slots in the same row are located on the same horizontal line.
[0018] The building block splicing mechanism for a table game provided by the utility model forms different shapes from building block units of the same specification; the building block unit splicing positions corresponding to the shapes of the building block units are arranged on the building block splicing plate, and adjacent building block unit splicing positions are connected through building block insertion slots, thereby forming building block splicing positions for all building blocks. The building block splicing mechanism has simple structure, is easy to process, has good splicing effect, is easy to plug and unplug, does not damage the components, and can effectively improve the service life of the building blocks and the building block splicing plate. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is a structural schematic view of the building block splicing mechanism for a table game.
[0020] Figure 2 The building block and the building block puzzle plate splicing schematic view of a building block splicing mechanism for a table game according to the utility model;
[0021] Figure 3 The structure schematic view of a building block puzzle plate in a building block splicing mechanism for a table game according to the utility model;
[0022] Figure 4 The structure schematic view of a single building block or a building block monomer in a building block splicing mechanism for a table game according to the utility model from a first perspective;
[0023] Figure 5 The structure schematic view of a single building block or a building block monomer in a building block splicing mechanism for a table game according to the utility model from a second perspective;
[0024] Figure 6 The schematic view of a rectangular building block composed of two building block monomers in a building block splicing mechanism for a table game according to the utility model;
[0025] Figure 7 The schematic view of a rectangular building block composed of three building block monomers in a building block splicing mechanism for a table game according to the utility model;
[0026] Figure 8 The schematic view of a U-shaped building block composed of five building block monomers in a building block splicing mechanism for a table game according to the utility model.
[0027] Illustration mark:
[0028] 1-building block puzzle plate, 101-building block splicing position, 102-building block monomer splicing position, 103-building block insertion slot;
[0029] 2-building block, 201-building block monomer, 202-building block insertion foot, 203-building block handle. DETAILED DESCRIPTION
[0030] The utility model will be further described in detail below according to the drawings and examples. The described examples are only a part of the examples of the utility model, rather than all the examples. Based on the examples in the utility model, all other examples obtained by the ordinary skill in the art without making creative labor belong to the scope of protection of the utility model.
[0031] As Figures 1-3As shown, the present scheme provides a building block splicing mechanism for a table game, comprising a building block splicing plate 1 and a building block 2, characterized in that the building block 2 comprises at least one building block unit 201, the bottom side of the building block unit 201 is provided with a building block plug 202, and the top is provided with a building block handle 203, so that the operator can hold the building block and place it, realizing the plug-in splicing of the building block 2.
[0032] The building block splicing plate 1 is provided with a building block splicing site 101, which is composed of a plurality of building block unit splicing sites 102 corresponding to the building block unit 201, and the adjacent building block unit splicing sites 102 are connected by a building block plug slot 103, which can accommodate two building block plugs 202. In this structure, when two adjacent building blocks 2 are spliced on the building block splicing plate 1, the side edges of the two adjacent building blocks 2 will be in close contact, and the building block plugs 202 corresponding to the two edges on the bottom side will be inserted into the same building block plug slot 103.
[0033] It should be noted that the building block plug slots 103 located in the same column are located on the same horizontal line; the building block plug slots 103 located in the same row are located on the same horizontal line.
[0034] Through the above row and column restrictions, the building block plug slots 103 can be arranged in an array with equal spacing, facilitating the perfect splicing of multiple building blocks 2.
[0035] As shown in Figure 4 and Figure 5 In this embodiment, the building block unit 201 is square, and the corresponding building block unit splicing site 102 is square; through the design of square building block unit 201 and building block unit splicing site 102, the seamless splicing of multiple building blocks 2 on the same building block splicing plate 1 can be better facilitated.
[0036] The building block 2 in the present scheme can also be shaped as follows:
[0037] As shown in Figure 6 The building block 2 is a rectangle, which is formed by at least two building block units 201 connected to each other, thereby forming a rectangular building block.
[0038] In this structure, rectangular building blocks containing two building block units 201, rectangular building blocks containing three building block units 201, as shown in Figure 7 , and even more specifications, but it is ensured that the length of the rectangular building block is not longer than the width or length of the building block splicing plate 1.
[0039] As shown in Figure 8 The building block 2 is a U-shaped, comprising three building block units 201 connected in a straight line, and two building block units 201 arranged on the same side.
[0040] The above is only an introduction to two combination forms of the building block 2. The manufacturer can reasonably design the building block 2 in the present scheme into an L-shaped, T-shaped or other special-shaped form which is convenient for splicing on the basis of the above creation mode, thereby enriching the types of building blocks.
[0041] As an optimization of the building block set 1 described in the present embodiment, the building block splicing positions 102 form a square of the building block splicing positions 101 in an MxM array, where M is a positive integer greater than 5.
[0042] As shown in Figure 3 As an embodiment of the present scheme, M is 13, and a 13x13 square building block splicing position is formed.
[0043] As a second embodiment of the present scheme, M is 15, and a 15x15 square building block splicing position is formed.
[0044] As a third embodiment of the present scheme, M is 19, and a 19x19 square building block splicing position is formed.
[0045] As shown in Figure 4 and Figure 5 As an optimization of the u-shaped building block 201 in the present embodiment, the following is specifically implemented:
[0046] The building block 201 includes four building block pins 202, which correspond to the axial positions of the sides of the building block 201.
[0047] Specifically, the four building block pins 202 are paired, one pair is arranged at the axial position of one set of symmetric edges, and the other pair is arranged at the axial position of the other set of symmetric edges; the outer sides of the four building block pins 202 are flush with the sides of the corresponding building block 201.
[0048] The above structure can ensure that each building block 2 has at least four building block pins 202 that can be inserted into the building block splicing position 101 and stably fixed on the building block set 1.
[0049] In addition, the building block pin 202 can be designed as a cube, thereby stably connecting to the bottom of the building block 201, and the four building block pins 202 can stably support the building block 201.
[0050] The height of the building block pin 202 is greater than the depth of the building block slot 103.
[0051] Under the structure, the building block plug 202 realizes the plug connection of the building block and the building block splicing position 101, and since a gap is left between the building block and the building block puzzle 1 after the plug connection, the operator can easily separate the building block 2 from the building block puzzle 1 by holding the building block handle 203.
[0052] The above merely illustrates the embodiments of the present application and is not used to limit the present application. Any modification, equivalent replacement, improvement, etc. made by those skilled in the art within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A building block assembly mechanism for a table game, comprising a building block assembly tray (1) and a building block (2), characterized in that, The building block (2) comprises at least one building block unit (201), the bottom side of the building block unit (201) is provided with a building block plug (202), and the top is provided with a building block handle (203); The building block set (1) is provided with a building block splicing position (101), the building block splicing position (101) is composed of a plurality of building block unit splicing positions (102) corresponding to the building block unit (201), adjacent building block unit splicing positions (102) are connected through a building block slot (103), and the building block slot (103) can accommodate two building block plugs (202).
2. The building block assembly mechanism for a table game according to claim 1, wherein, The building block unit (201) is square, and correspondingly, the building block unit splicing position (102) is square.
3. The building block assembly mechanism for a table game according to claim 1 or 2, wherein, The building block (2) is a rectangle, which is formed by at least two building block units (201) connected with each other.
4. The building block assembly mechanism for a table game according to claim 1 or 2, wherein, The building block (2) is U-shaped, comprising three building block units (201) connected in a straight line, and two building block units (201) arranged on the same side.
5. The building block assembly mechanism for a table game according to claim 1, wherein, The building block unit splicing position (102) forms the square building block splicing position (101) in an MxM array, wherein M is a positive integer greater than 5.
6. The building block assembly mechanism for a table game according to claim 1, wherein, The building block unit (201) comprises four building block plugs (202) corresponding to the axial positions of the side edges of the building block unit (201).
7. The building block assembly mechanism for a table game according to claim 6, wherein, The building block plug (202) is a cube.
8. The building block assembly mechanism for a table game according to claim 6 or 7, wherein, The height of the building block plug (202) is greater than the depth of the building block slot (103).
9. The building block assembly mechanism for a table game according to claim 1, wherein, The building block slots (103) in the same column are located on the same horizontal line.
10. The building block assembly mechanism for a table game according to claim 1, wherein, The building block slots (103) in the same row are located on the same horizontal line.
Citation Information
Patent Citations
Novel picture arragement building blocks
CN205627104U