Hoisting building block with mortise and tenon joint structure

The lifting building blocks designed with mortise and tenon structures solve the shortcomings of existing building block toys in splicing stability and lifting functions, achieve stable connection and diversity, stimulate children's creativity and imagination, and enhance the fun and playability of toys.

CN223453710UActive Publication Date: 2025-10-21SUZHOU POLYTECHNIC INST OF AGRI
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Patent Information

Application Number
CN202422756487.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-13
Publication Date
2025-10-21
Estimated Expiration
2034-11-13

AI Technical Summary

Technical Problem

Existing building block toys have deficiencies in splicing stability, diversity and lifting functions, lack innovation, and cannot meet children's creativity and exploration needs.

Method used

The mortise and tenon structure design is adopted, including vertical splicing mechanism, connection structure, horizontal splicing structure and lifting structure. The cooperation of tenon and mortise is used to achieve stable connection, and the lifting structure adds interest.

Benefits of technology

The mortise and tenon structure of the lifting building blocks improves the stability and diversity of splicing, stimulates children's creativity and imagination, enhances the fun and playability of the toy, and provides a rich creative building space.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of hoisting building blocks, and particularly relates to a hoisting building block with a mortise and tenon joint structure, which comprises a vertical splicing mechanism, a connecting structure, a transverse splicing structure and a hoisting structure, and is characterized in that the vertical splicing mechanism comprises a splicing seat and a connecting seat, the splicing seat consists of a framework I and a tenon I, and the tenon I is connected with the connecting seat; the connecting base is composed of a second framework and a first mortise block. The vertical splicing mechanism is spliced with the connecting structure, and the transverse splicing structure is inserted into the connecting structure. According to the utility model, the tenon-and-mortise connection is adopted, so that the toy is firm and stable, children can experience the charm of the traditional process during playing, the design of different structures and the same structure is convenient to splice, the manipulative and spatial thinking ability of children is improved, the stability is enhanced by the solid connection structure, larger external force can be borne, and the interestingness and playability are increased by the hoisting structure; and the overall design is rich and diversified, a wide creative building space is provided for the children, and the comprehensive development of the children is promoted.
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Description

TECHNICAL FIELD

[0001] The utility model relates to hoist building block technical field, concretely is a kind of hoist building block of mortise and tenon structure. BACKGROUND

[0002] In the field of building block toys, the traditional building block splicing method is usually relatively simple, the connection is not firm enough, and lacks innovation. At the same time, the existing building block toys are relatively lacking in design in terms of hoisting function, and cannot well meet the needs of children for building and exploration.

[0003] In addition, the general building block structure has certain limitations in splicing diversity and stability. With the increasing requirements of children for toys, a building block toy with unique structure and hoisting function is needed to stimulate the creativity and imagination of children, while improving the interest and playability of the toy.

[0004] To sum up, in order to solve the problems existing in the prior art, a hoist building block with mortise and tenon structure is designed. CONTENT OF THE UTILITY MODEL

[0005] (I) Technical problem solved

[0006] In view of the deficiencies of the prior art, the utility model provides a hoist building block with mortise and tenon structure, which solves the problems raised in the background art.

[0007] (II) Technical scheme

[0008] The utility model discloses a specific technical scheme to achieve the above-mentioned purpose:

[0009] A hoist building block with mortise and tenon structure, comprising a vertical splicing mechanism, a connecting structure, a horizontal splicing structure and a hoisting structure, characterized in that: the vertical splicing mechanism comprises a splicing seat and a connecting seat, the splicing seat is composed of a skeleton one and a tenon one, and the connecting seat is composed of a skeleton two and a mortise one;

[0010] The vertical splicing mechanism splices the connecting structure, and the connecting structure internally inserts the horizontal splicing structure;

[0011] The horizontal splicing structure comprises a horizontal frame and a connecting frame;

[0012] The horizontal frame is composed of a skeleton three and a tenon two;

[0013] The connecting frame is composed of a skeleton four and a mortise two;

[0014] The horizontal frame and the connecting frame are spliced;

[0015] One end of one of the horizontal splicing structures is connected to the connecting hoisting structure.

[0016] Further, the skeleton one and skeleton two can be the same structure, which is composed of a square outer frame and a diagonal rod.

[0017] Further, the tenon one is a structure with a square in the middle and circles on both sides, and the mortise one is shaped to match the structure of the tenon one and is spliced with each other.

[0018] Further, the connecting structure is a solid structure, both ends of which are provided with mortises one and tenons one for installation, and the connecting structure is provided with a groove in which a horizontal splicing structure is inserted.

[0019] Further, the skeleton three and skeleton four are frame and strut structures, which are the same.

[0020] Further, the lifting structure is provided with a rotating shaft, one end of the rotating shaft is provided with a rotating handle, and the rotating shaft is wound with a lifting rope.

[0021] (Three) beneficial effects

[0022] Compared with the prior art, the lifting building block with a mortise and tenon structure has the following advantages

[0023] Beneficial effects:

[0024] The mortise and tenon connection is firm and stable, can enable children to appreciate the charm of traditional crafts in play, and the design of different structures with the same structure facilitates splicing, improves the children's hands-on and spatial thinking ability, the solid connecting structure enhances the stability, can bear greater external force, the lifting structure adds interest and playability, stimulates the children's creativity and imagination, the overall design is rich and varied, provides a broad creative building space for children, and promotes the all-round development of children. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 is a structural diagram of the utility model;

[0026] Figure 2 is a structural diagram of the vertical splicing mechanism of the utility model;

[0027] Figure 3 is a structural diagram of the horizontal splicing structure of the utility model;

[0028] Figure 4 is a structural diagram of the tenon one and mortise one connecting structure of the utility model.

[0029] In the figure: 10, vertical splicing mechanism; 20, connecting structure; 30, horizontal splicing structure; 40, lifting structure; 101, splicing seat; 102, connecting seat; 1011, frame one; 1012, tenon one; 1021, frame two; 1022, mortise one; 301, horizontal frame; 302, connecting frame; 3011, frame three; 3012, tenon two; 3021, frame four; 3022, mortise two; 401, rotating shaft; 402, turning handle; 403, lifting rope. DETAILED DESCRIPTION

[0030] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described 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.

[0031] Example

[0032] like Figures 1-4 As shown, a lifting building block with a mortise and tenon structure proposed in one embodiment of the present invention includes a vertical splicing mechanism 10, a connecting structure 20, a horizontal splicing structure 30 and a lifting structure 40. The vertical splicing mechanism 10 includes a splicing seat 101 and a connecting seat 102. The splicing seat 101 is composed of a frame 1011 and a tenon 1012. The connecting seat 102 is composed of a frame 2 1021 and a mortise 1022.

[0033] The vertical splicing mechanism 10 is spliced ​​to the connecting structure 20, and the connecting structure 20 is internally plugged with the horizontal splicing structure 30;

[0034] The transverse splicing structure 30 includes a transverse frame 301 and a connecting frame 302;

[0035] The transverse frame 301 is composed of a third frame 3011 and a second tenon 3012;

[0036] The connecting frame 302 is composed of a fourth frame 3021 and a second mortise 3022;

[0037] The transverse frame 301 and the connecting frame 302 are spliced;

[0038] The front end of one of the transverse splicing structures 30 is connected to the hoisting structure 40;

[0039] 1. Vertical splicing mechanism 10

[0040] Splicing seat 101:

[0041] Skeleton one 1011: composed of a square outer frame plus diagonal bars, providing a stable frame structure for the splicing seat 101, increasing the overall strength and stability.

[0042] Tenon one 1012: a square in the middle and circular on both sides structure, this unique shape design makes the splicing more closely and firmly, at the same time also increases the splicing interest and diversity.

[0043] Connecting seat 102:

[0044] Skeleton two 1021: same structure as skeleton one 1011, also composed of a square outer frame plus diagonal bars, ensuring the consistency and stability of the vertical splicing mechanism 10 when connecting.

[0045] Mortise one 1022: the shape is matched with the structure of tenon one 1012, which can be closely spliced with tenon one 1012 to realize the connection in the vertical direction.

[0046] II. Connecting structure 20

[0047] The connecting structure 20 is a solid structure, with mortise one 1022 at both ends, which can be installed with tenon one 1012 of the vertical splicing mechanism 10 to realize the connection extension in the vertical direction. At the same time, the connecting structure 20 is provided with a slot, and the slot can be inserted with the horizontal splicing structure 30, which plays a role in connecting the horizontal splicing structure 30 and the vertical splicing mechanism 10, increasing the diversity and expandability of the building blocks.

[0048] III. Horizontal splicing structure 30

[0049] Horizontal frame 301:

[0050] Skeleton three 3011: composed of frame and strut, providing stable structural support for the horizontal frame 301. The same structure as skeleton four 3021 of connecting frame 302, facilitating the assembly and connection of horizontal splicing structure 30.

[0051] Tenon two 3012: can be spliced with mortise two 3022 of connecting frame 302 to realize the connection in the horizontal direction.

[0052] Connecting frame 302:

[0053] Skeleton four 3021: same structure as skeleton three 3011, composed of frame and strut, ensuring the consistency and stability of the horizontal splicing structure 30 when connecting.

[0054] Mortise two 3022: matched with the structure of tenon two 3012 of horizontal frame 301, which can be closely spliced to realize the connection in the horizontal direction.

[0055] IV. Hoisting structure 40

[0056] The hoisting structure 40 is provided with a rotating shaft 401, and a handle 402 is provided at one end of the rotating shaft 401. The rotating shaft 401 can be rotated by turning the handle 402. A hanging rope 403 is wound around the rotating shaft 401, and the hanging rope 403 can be used to hang the building blocks, thereby increasing the fun and playability of the building blocks.

[0057] like Figure 2 As shown, in some embodiments, the first and second frames 1011 and 1021 can be identical in structure, consisting of a square outer frame and diagonal rods. The square outer frame provides a relatively stable foundation, and the addition of diagonal rods further enhances the stability of the overall structure. The diagonal rods provide support and reinforcement, making the frame more robust and less susceptible to deformation when subjected to external forces. Because the first and second frames 1011 and 1021 have the same structure, splicing them together is more convenient and quick. Children can more easily understand and master the splicing method, improving their hands-on skills and spatial thinking abilities.

[0058] like Figure 2 As shown, in some embodiments, the tenon 1012 is a square structure with two rounded sides. The shape of the mortise 1022 matches the tenon 1012 structure and they are connected together. The square center portion provides a relatively stable connection surface, which fits more tightly with the mortise 1022 and prevents shaking. The rounded sides serve as a guide when inserting the mortise 1022, making the splicing process smoother. This unique shape design is not only practical but also adds an artistic touch to the building block. The unique shape can attract children's attention and stimulate their creativity and imagination.

[0059] like Figure 1 As shown, in some embodiments, the connecting structure 20 is a solid structure, with a mortise 1022 and a tenon 1012 at each end for mounting. A slot is provided in the connecting structure 20, into which the transverse splicing structure 30 is inserted. Solid structures are generally stronger than hollow structures and can withstand greater pressure and weight. During the building process, the connecting structure 20 must withstand forces from all directions. A solid structure prevents it from easily deforming or damaging, thereby ensuring the stability of the entire building block structure.

[0060] like Figure 3 As shown, in some embodiments, the third frame 3011 and the fourth frame 3021 are composed of a frame and support rods, and have the same structure. The frame provides an overall support structure, and the support rods further enhance the stability and strength of the frame. This combination allows the frame to more evenly distribute stress when subjected to external forces, making it less likely to deform or damage.

[0061] like Figure 1As shown, in some embodiments, the hoisting structure 40 is provided with a rotating shaft 401, one end of the rotating shaft 401 is provided with a rotating handle 402, and the rotating shaft 401 is wound with a hoisting rope 403; the hoisting rope 403 adds a new play and interest to the building blocks. Children can hoist the building blocks to different positions by operating the hoisting structure 40, and create various interesting scenes and structures. The hoisting function can stimulate the creativity and imagination of children, and improve their interest and participation in the building blocks.

[0062] Finally, it should be noted that: the above only for the preferred embodiments of the present application and is not intended to limit the present application, although the foregoing detailed description of the present application is made with reference to the foregoing embodiments, for those skilled in the art, it still can be modified to the technical solutions recorded in the foregoing embodiments, or equivalent replacement of some of the technical features. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included within the scope of protection of the present application.

Claims

1. A mortise and tenon structure of a hoisting building block comprising a vertical splicing mechanism (10), a connecting structure (20), a transverse splicing structure (30), and a hoisting structure (40), characterized in that: The vertical splicing mechanism (10) comprises a splicing seat (101) and a connecting seat (102), the splicing seat (101) is composed of a skeleton one (1011) and a tenon one (1012), and the connecting seat (102) is composed of a skeleton two (1021) and a mortise one (1022); The vertical splicing mechanism (10) is spliced with a connecting structure (20), and the connecting structure (20) is internally inserted with a transverse splicing structure (30); The transverse splicing structure (30) comprises a transverse frame (301) and a connecting frame (302); The transverse frame (301) is composed of a skeleton three (3011) and a tenon two (3012); The connecting frame (302) is composed of a skeleton four (3021) and a mortise two (3022); The transverse frame (301) and the connecting frame (302) are spliced; One end of the transverse splicing structure (30) is connected with a connecting hoisting structure (40).

2. A mortise and tenon construction hoistable building block according to claim 1, characterised in that: The skeleton one (1011) and the skeleton two (1021) can be the same structure, which is composed of a square outer frame and an inclined rod.

3. A mortise and tenon construction hoistable building block according to claim 2, characterised in that: The tenon one (1012) is a structure with a square in the middle and circles on both sides, and the shape of the mortise one (1022) is adapted to the structure of the tenon one (1012) and spliced with each other.

4. A mortise and tenon construction hoistable building block according to claim 1, characterized in that: The connecting structure (20) is a solid structure, both ends of which are provided with mortises one (1022) and tenons one (1012) for installation, and the connecting structure (20) is provided with a groove, and the transverse splicing structure (30) is inserted in the groove.

5. A mortise and tenon construction hoistable building block according to claim 1, characterized in that: The skeleton three (3011) and the skeleton four (3021) are composed of a frame and a supporting rod, and have the same structure.

6. A mortise and tenon construction hoistable building block according to claim 1, characterized in that: The hoisting structure (40) is provided with a rotating shaft (401), one end of the rotating shaft (401) is provided with a rotating handle (402), and the rotating shaft (401) is wound with a lifting rope (403).