Jigsaw with rotatable drawer

By designing a rotating drawer and divider structure on the puzzle board, the problem of difficult storage of traditional puzzle board fragments is solved, improving the puzzle operation experience and space utilization efficiency.

CN224024209UActive Publication Date: 2026-03-24深圳乃龙科技有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-27
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

Traditional puzzle boards lack a fragment storage function, resulting in a high risk of fragments being scattered and lost. Furthermore, searching for fragments during the puzzle-solving process is time-consuming and laborious, affecting the smooth experience and enjoyment.

Method used

Design a puzzle board with a rotating drawer. The drawer is connected to the puzzle board body by a rotating connecting device, allowing the drawer to extend or retract into the puzzle board. The drawer has an internal divider structure for classifying and storing puzzle pieces, and the puzzle board body has built-in grooves to improve space utilization.

Benefits of technology

It enables convenient fragment management, reduces the risk of fragments being scattered and lost, improves the smoothness and fun of puzzles, and saves space when not in use, making it easy to store.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a puzzle board with a rotatable drawer, which relates to the technical field of puzzle boards, and comprises a puzzle board body, the puzzle board body is provided with the drawer which is rotatably connected with the puzzle board body, and the drawer can extend out of the puzzle board body or be accommodated in the puzzle board body in the rotating process; by means of the design of the rotary drawer, convenient and fast puzzle fragment management is achieved, and meanwhile a user can easily take and store the puzzle fragments conveniently; a partition structure in the drawer, particularly a removable placing tray, can enable a user to classify the fragments according to own habits, so that the fragments are convenient to arrange and find, and different scenes can be flexibly coped with; the space is fully utilized by the semicircular drawer, the storage capacity is increased, the size can be greatly reduced when the jigsaw puzzle is not used due to the foldable design, the jigsaw puzzle is convenient to store and carry, the jigsaw puzzle is suitable for various scenes, and the jigsaw puzzle operation experience of players is integrally improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a jigsaw puzzle board technical field, specifically is a jigsaw puzzle board with rotatable drawer. BACKGROUND

[0002] In the jigsaw puzzle field, the traditional jigsaw puzzle board has existed in a relatively basic form for a long time. They generally present a simple flat board surface, which can only meet the basic function of assembling jigsaw puzzle components. In actual operation scenarios, this conventional jigsaw puzzle board exposes a series of inconvenient problems. When players start their jigsaw puzzle journey and face a large number of jigsaw puzzle pieces with different shapes and patterns, they often need to find another container to hold these pieces. However, this additional operation is not only cumbersome but also increases the risk of losing pieces due to frequent access during the entire jigsaw puzzle process. For example, in a home environment, children may knock over the container holding the pieces while running, causing some pieces to roll into corners that are difficult to find. In addition, when locating a specific piece for assembly from numerous pieces, players have to search one by one due to the lack of a reasonable and orderly storage method. This process is often time-consuming and laborious, disrupting the jigsaw puzzle thought process and greatly affecting the smooth experience and enjoyment of jigsaw puzzles.

[0003] In recent years, as the quality of life of the general public steadily improves, people increasingly pursue quality and depth in leisure and entertainment. For the traditional jigsaw puzzle game, players no longer just satisfy with the basic operation of completing the jigsaw puzzle, and the desire for functional diversification of the jigsaw puzzle board is increasingly strong. Today's users expect the jigsaw puzzle board not only to provide a stable jigsaw puzzle operation plane but also to have a perfect jigsaw puzzle piece storage function. During the jigsaw puzzle, the pieces can be managed conveniently and efficiently, and the required components can be quickly found to speed up the jigsaw puzzle process. When the game is over, the jigsaw puzzle board can orderly store the pieces, reduce space occupation, and facilitate daily storage and organization. It is necessary to develop a jigsaw puzzle board with a rotatable drawer based on such market demand and use pain points. SUMMARY

[0004] The utility model aims at providing a technical solution that can solve the above problems.

[0005] A jigsaw puzzle board with a rotatable drawer includes a jigsaw puzzle board body, a drawer rotatably connected to the jigsaw puzzle board body, and the drawer can be extended from or stored in the jigsaw puzzle board body during rotation.

[0006] As a further scheme of the utility model, the jigsaw puzzle board body is provided with an internal slot for storing the drawer, and the drawer is rotatably connected to the jigsaw puzzle board body through a pivot to extend from or be stored in the internal slot.

[0007] As a further scheme of the present application, the drawer is a semicircular structure rotatable around the rotating shaft.

[0008] As a further scheme of the present application, the built-in groove is semicircular and matches the drawer.

[0009] As a further scheme of the present application, the inner wall of the built-in groove is provided with an arc-shaped track, and the outer profile of the drawer matches the arc-shaped track, so that the drawer can smoothly slide along the arc-shaped track when rotating around the rotating shaft.

[0010] As a further scheme of the present application, the drawer is provided with a central hole at the center position, and the built-in groove is provided with shaft holes matching the rotating shaft at both ends corresponding to the central hole of the drawer, and the rotating shaft passes through the shaft holes at both ends and the central hole of the drawer in sequence.

[0011] As a further scheme of the present application, the jigsaw puzzle board body is provided with a hinge structure along the axis thereof, so that the jigsaw puzzle board body can be folded in half.

[0012] The drawer is provided in the built-in groove at each end of the jigsaw puzzle board body, and when the jigsaw puzzle board body is folded in half through the hinge structure, the two drawers are accommodated in the corresponding built-in grooves and approach each other.

[0013] As a further scheme of the present application, the drawer is provided with a plurality of separation structures inside, so that the inside of the drawer is separated into a plurality of independent material placing areas through the separation structures.

[0014] As a further scheme of the present application, the separation structure is a placing disc, and the shape of the placing disc matches the inner profile of the drawer.

[0015] The placing disc can be taken out of the drawer.

[0016] As a further scheme of the present application, the jigsaw puzzle board body is provided with a plane for assembling jigsaw puzzles, and an anti-skid layer is arranged on the plane.

[0017] Compared with the prior art, the present application has the following advantages:

[0018] The design of the rotating drawer realizes convenient jigsaw puzzle piece management, and facilitates users to easily take and store the jigsaw puzzle pieces; the separation structure inside the drawer, especially the taking-out placing disc, can allow users to classify the pieces according to their own habits, which is convenient for sorting and searching and can flexibly cope with different scenes; the semicircular drawer fully utilizes the space and increases the storage capacity, and the foldable design can greatly reduce the size when not in use, facilitating storage and carrying, and being suitable for various scenes, and improving the experience of jigsaw puzzle operation of players as a whole.

[0019] The additional aspects and advantages of the present application will be given in part in the following description, and will become apparent from the following description, or will be learned by practice of the present application. BRIEF DESCRIPTION OF DRAWINGS

[0020] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description only represent some of the embodiments of the present application, and for those skilled in the art, other drawings can also be obtained from these drawings without creative labor.

[0021] Figure 1 is a structural schematic view of the drawer in the storage state of the present application;

[0022] Figure 2 is a structural schematic view of the drawer in the extended state of the present application from one perspective;

[0023] Figure 3 is a structural schematic view of the drawer in the extended state of the present application from another perspective;

[0024] Figure 4 is a sectional structural schematic view of the drawer in the extended state of the present application from one perspective;

[0025] Figure 5 is a sectional structural schematic view of the drawer in the extended state of the present application from another perspective.

[0026] The reference signs and names in the drawings are as follows:

[0027] 10, puzzle board body; 101, built-in groove; 102, rotating shaft; 103, arc-shaped track; 104, shaft hole; 105, hinged structure; 106, anti-skid layer;

[0028] 20, drawer; 201, center hole; 202, separation structure; 203, material placing area; 204, handle. DETAILED DESCRIPTION

[0029] The technical solutions in the embodiments of the present application will be described clearly and completely below in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments only represent some of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative labor are within the protection scope of the present application.

[0030] Please refer to Figures 1-5The utility model discloses a kind of puzzle board with rotatable drawer, including puzzle board body 10, the drawer 20 of being equipped with relative rotation connection is connected on the puzzle board body 10, the drawer 20 can be extended from puzzle board body 10 or be stored in puzzle board body 10 in rotation process.

[0031] In the utility model technical scheme, the drawer 20 of rotatable connection is additionally arranged on the puzzle board body 10, from the mechanical structure principle, the drawer 20 is connected with the puzzle board body 10 by specific rotation connecting device, such as hinge or pivot 102 etc., so that the drawer 20 can make circular motion around connecting point, and this design makes the drawer 20 can flexibly switch position between inside and outside of the puzzle board body 10, and provides space basis for fragment storage.

[0032] The drawer 20 is designed as rotary type, not traditional linear pull type, to better adapt to puzzle scene, specifically, in the process of puzzle, the space around player can be limited, and linear pull type drawer 20 can not be completely opened due to space obstruction, which affects the convenience of taking fragment, while rotary type drawer 20 only occupies smaller arc space in rotation process, can be smoothly extended in limited space, and it is convenient for player to take fragment, and compared with linear pull, rotary action is more flexible in operation, and player can easily open the drawer 20 from different angles, which conforms to ergonomics principle and reduces operation difficulty.

[0033] In summary, the utility model can effectively:

[0034] Solve the problem of fragment storage: the puzzle board effectively solves the problem of lack of fragment storage function in traditional puzzle board, and player does not need to additionally find container to store puzzle fragment, and can directly place fragment in the drawer 20, so that the drawer 20 storage enables fragment to be stored in a centralized manner, greatly reduces the risk of fragment scattering and loss, and avoids the situation that puzzle cannot be completed due to fragment loss; for example, in family party, multiple people participate in puzzle game, and the puzzle board with rotary drawer 20 can conveniently store fragment, even if game is interrupted, fragment is not worried to be lost in confusion.

[0035] Improve puzzle operation experience: when puzzle is carried out, rotatable drawer 20 is convenient for player to quickly locate required fragment, and player can place fragment in different areas or different drawers 20 according to the shape, color and other characteristics of fragment, so that corresponding fragment can be quickly found when needed, without searching one by one in a large number of disordered fragments, save time, keep the coherence of puzzle thought, and improve the smooth experience and fun of puzzle.

[0036] Space saving and convenient storage: when the puzzle game is over, the rotatable drawer 20 can be stored in the puzzle board body 10, reducing the overall space occupation, compared with the traditional puzzle board matched with an additional storage container, this integrated design is more convenient for daily storage, especially suitable for users with limited living space, whether placed on a bookshelf, cabinet or under a table, it can effectively save space, making the home environment more tidy and orderly.

[0037] In the embodiment of the utility model, the puzzle board body 10 is provided with a built-in groove 101 for storing the drawer 20, and the drawer 20 is rotatably connected to the puzzle board body 10 through a rotating shaft 102, so as to be able to extend out of the built-in groove 101 or be stored in the built-in groove 101.

[0038] The built-in groove 101 for storing the drawer 20 is based on the consideration of efficient use of space and stable storage of the drawer 20, and is designed from the perspective of space design. The size of the built-in groove 101 is accurately matched with that of the drawer 20, so that the drawer 20 can perfectly fit the puzzle board body 10 in the storage state. This not only makes the overall appearance of the puzzle board more regular, but also effectively prevents the drawer 20 from shaking randomly when not in use, which affects the stability of the puzzle board. At the same time, the built-in groove 101 provides a dedicated storage space for the drawer 20, so that the overall space occupied by the puzzle board when not in use is only the area of the puzzle board body 10, realizing the maximum utilization of space.

[0039] The rotating shaft 102 is used to rotatably connect the drawer 20 and the puzzle board body 10, in order to realize stable and flexible rotation of the drawer 20. The rotating shaft 102, as a core connecting component, has good rotation performance and can withstand the weight and external force of the drawer 20 during rotation. By installing the rotating shaft 102 at a predetermined position, the drawer 20 can make circular motion around the rotating shaft 102, smoothly extending out of or being stored back into the built-in groove 101. Compared with other connection methods, such as simple hinge connection, this connection method can better ensure the stability of the drawer 20 during rotation, reduce shaking and deviation, and provide users with a reliable operation experience.

[0040] In the embodiment of the utility model, the center hole 201 is arranged at the center position of the drawer 20, and the shaft holes 104 adapted to the rotating shaft 102 are respectively arranged at both ends of the built-in groove 101 corresponding to the position of the center hole 201 of the drawer 20. The rotating shaft 102 sequentially passes through one end shaft hole 104, the center hole 201 of the drawer 20 and the other end shaft hole 104.

[0041] The shaft hole 104 corresponding to the center position of the drawer 20 is arranged at both ends of the built-in groove 101 and is adapted to the rotating shaft 102, so as to realize accurate positioning of the installation of the drawer 20. From the perspective of mechanical installation principle, the accurate matching of the shaft hole 104 and the rotating shaft 102 ensures that the rotating shaft 102 can be installed along a specific track, so that the drawer 20 can stably rotate around the established center shaft after installation. By arranging the shaft hole 104 at the position corresponding to the center of the drawer 20, the uniformity of the force of the drawer 20 in the rotating process is ensured, and the shaking or jamming phenomenon of the drawer 20 during rotation caused by installation deviation is avoided, thereby laying a foundation for the stable operation of the drawer 20. The rotating shaft 102 passes through the shaft hole 104 at one end, the center hole 201 of the drawer 20 and the shaft hole 104 at the other end in sequence, forming a stable rotating support structure. The close matching between the shaft hole 104 and the rotating shaft 102 not only provides a rotation fulcrum for the drawer 20, but also can bear various forces generated during the rotation of the drawer 20, including gravity, inertial force and external force applied by the player during operation. This design enables the drawer 20 to always maintain a stable rotating state during frequent opening and closing, thereby ensuring the normal use of the puzzle board.

[0042] In the embodiment of the utility model, the drawer 20 is a semicircular structure rotatable around the rotating shaft 102.

[0043] The built-in groove 101 is semicircular and adapted to the drawer 20.

[0044] The drawer 20 is designed as a semicircular structure rotatable around the rotating shaft 102, and the built-in groove 101 is also semicircular and adapted to the drawer 20. This design is based on the consideration of efficient use of space and structure matching. Specifically, from the perspective of space design principle, the semicircular structure can maximize the use of the built-in groove 101 area for fragment storage within the limited puzzle board body 10 space. Compared with the design of a square or other shaped drawer 20 and built-in groove 101, the semicircular structure can better fit the internal space profile of the puzzle board, reducing space waste. Moreover, this adaptive shape design enables the drawer 20 to have closer and smoother contact with the built-in groove 101 during rotation, ensuring the stability and smoothness of the rotation of the drawer 20.

[0045] The semicircular drawer 20 design around the rotating shaft 102 conforms to the principles of rotational dynamics. Specifically, the semicircular structure has a relatively uniform center of gravity, which can reduce shaking and resistance caused by center of gravity deviation during rotation around the rotating shaft 102. When the player pushes the drawer 20 to rotate, the semicircular structure enables the force to be more concentrated on the rotating shaft 102, reducing the required force for operation and improving the convenience of operation. At the same time, the semicircular design of the built-in groove 101 also provides a suitable space range and guidance for the rotation of the drawer 20, further optimizing the rotation performance of the drawer 20.

[0046] In the embodiment of the utility model, the inner wall of the built-in groove 101 is provided with an arc-shaped track 103, and the outer profile of the drawer 20 is attached to the arc-shaped track 103, so that the drawer 20 can smoothly slide along the arc-shaped track 103 when rotating around the rotating shaft 102.

[0047] The arc-shaped track 103 is arranged on the inner wall of the built-in groove 101, and the design purpose is to provide accurate sliding guidance and stable support for the rotation of the drawer 20. From the perspective of mechanical motion principle, the arc-shaped track 103 is attached to the outer profile of the drawer 20, which can ensure that the drawer 20 always moves along the predetermined arc-shaped track during rotation around the rotating shaft 102. This guiding effect avoids the offset or shaking of the drawer 20 during rotation, ensuring the stability of the operation of the drawer 20. At the same time, the arc-shaped track 103 can disperse the pressure borne by the drawer 20 during rotation, providing continuous and uniform support force, so that the drawer 20 rotates more smoothly and effectively reduces the jamming phenomenon caused by uneven local stress.

[0048] When the outer profile of the drawer 20 is attached to the arc-shaped track 103 and slides, the friction formed between the two is more stable and controllable compared to the case without the track. The reasonably designed arc-shaped track 103 can reduce the friction coefficient and reduce the resistance of the drawer 20 during rotation, making it easier for the player to push the drawer 20. From the perspective of friction principle, the surface contact between the arc-shaped track 103 and the drawer 20 can better distribute the friction force compared to point contact or line contact, avoiding excessive local friction that causes wear to the drawer 20 and the track, thereby improving the overall motion performance and service life of the drawer 20.

[0049] In the embodiment of the utility model, the jigsaw puzzle board body 10 is provided with a hinge structure 105 along the axis thereof, so that the jigsaw puzzle board body 10 can be folded in half.

[0050] The drawer 20 has two, which are arranged in the built-in grooves 101 at both ends of the jigsaw puzzle board body 10. When the jigsaw puzzle board body 10 is folded in half through the hinge structure 105, the two drawers 20 are accommodated in the corresponding built-in grooves 101 and approach each other.

[0051] The hinge structure 105 is arranged along the middle axis of the puzzle board body 10 to meet the user's demand for portability of the puzzle board. From the product design concept, the puzzle board can be folded in half through the hinge structure 105 (such as a hinge) to greatly reduce the floor space occupied by the puzzle board when not in use. When the user needs to carry the puzzle board out, such as participating in outdoor picnics, parent-child activities or travel, the foldable design enables the puzzle board to be easily placed into a backpack, handbag or the like, facilitating transportation and storage. Meanwhile, two drawers 20 are arranged in the built-in slots 101 at both ends of the puzzle board body 10 and are stored close to each other when the puzzle board is folded in half, further optimizing the space utilization. This design fully considers the storage needs of puzzle pieces and maximizes the storage capacity by reasonably arranging the positions of the drawers 20 in the limited space of the puzzle board, while ensuring the stability of the drawers 20 and the internal pieces in the folded state.

[0052] In the embodiment of the utility model, the drawer 20 is internally provided with a plurality of separation structures 202 to separate the interior of the drawer 20 into a plurality of independent material placing areas 203 through the plurality of separation structures 202.

[0053] The plurality of separation structures 202 are arranged in the interior of the drawer 20 to meet the actual needs of classification and management of the pieces during the puzzle process. The puzzle pieces usually have different shapes, colors and patterns. During the puzzle process, the player needs to quickly find specific pieces. The interior of the drawer 20 is separated into a plurality of independent material placing areas 203 through the separation structures 202, which enables the player to store the pieces according to their characteristics. This design draws on the zoning concept in warehouse management to reasonably plan the originally chaotic piece storage space, so that each area has a specific purpose, thereby improving the efficiency of piece management.

[0054] From the perspective of space utilization, the arrangement of the separation structures 202 optimizes the space layout in the interior of the drawer 20. Puzzle pieces of different sizes and shapes can be placed according to the size of the separation areas to avoid chaotic accumulation of the pieces in the drawer 20. Each separation area becomes a relatively independent storage unit, so that the interior space of the drawer 20 is fully and reasonably utilized. This orderly space planning not only helps to improve the storage efficiency, but also reduces the mutual extrusion and collision between the pieces to protect the pieces from being damaged.

[0055] In the embodiment of the utility model, the separation structure 202 is a placing disc, and the shape of the placing disc is adapted to the contour of the interior of the drawer 20.

[0056] The placing disc can be taken out of the drawer 20.

[0057] The separation structure 202 is designed as a placement disc which is shaped to match the internal profile of the drawer 20 and can be taken out of the drawer 20, aiming to meet the flexible requirements and personalized customization of users on the storage mode, and different users have different standards for sorting the pieces when assembling the puzzle, and the removable placement disc allows users to freely adjust the size and layout of each placement area 203 according to their own habits; for example, for a complex portrait puzzle, some users may wish to place the pieces of different characters in separate placement discs, and some users may classify and place the pieces according to colors, and such design gives users the right to decide, greatly improving the flexibility of the storage mode and better meeting the personalized puzzle habits of users.

[0058] From the perspective of product use convenience and maintenance, the removable placement disc design makes cleaning much easier. During the puzzle process, the placement disc is easy to get dirty with dust, stains, etc., especially in a home use scenario, when children participate in the puzzle, the placement disc may be contaminated with food residues, etc. The removable design allows users to directly take the placement disc out of the drawer 20 for separate cleaning, avoiding the inconvenience of cleaning the inside of the drawer 20, and ensuring that the storage space always remains clean and tidy, providing a good storage environment for the puzzle pieces.

[0059] At the same time, the characteristic of the placement disc being separately removable can greatly improve the instant use convenience of the puzzle board. Specifically, the player can directly hold the placement disc loaded with corresponding puzzle pieces to play the puzzle game.

[0060] In the embodiment of the utility model, the puzzle board body 10 is provided with a plane for assembling puzzles, and an anti-skid layer 106 is arranged on the plane.

[0061] The anti-skid layer 106 (such as felt) is arranged on the plane of the puzzle board body 10 for assembling puzzles, in order to deal with the problem of puzzle sliding that may occur during the puzzle process. From the perspective of mechanics, when the puzzle pieces are placed on the puzzle board for assembly, due to the change in force and angle of hand operation, as well as external environmental factors such as table vibration, the pieces are prone to displacement on a smooth plane. The design of the anti-skid layer 106 increases the friction between the plane of the puzzle board and the puzzle pieces, effectively preventing such displacement. The anti-skid layer 106 is usually made of a material with micro concave-convex texture or adhesion on the surface. These micro structures or material properties can interact with the surface of the puzzle pieces, forming a larger friction force, thereby stabilizing the puzzle pieces and ensuring the smooth progress of the puzzle process.

[0062] As a further scheme of the utility model, in order to realize accurate positioning and stable fixing of the drawer 20 in the storage state, a magnetic attraction structure is arranged at the slot opening of the drawer 20 and the built-in groove 101; specifically, a permanent magnet is embedded at the edge position of the slot opening of the built-in groove 101, and a metal patch capable of attracting the permanent magnet or a magnet with opposite magnetic pole is mounted at the corresponding outer edge of the drawer 20; when the drawer 20 is stored in the built-in groove 101, the attractive force between the opposite magnetic poles plays a role, and the drawer 20 is adsorbed at the predetermined position, thereby effectively enhancing the stability of the drawer 20 during storage.

[0063] Preferably, the outer side of the drawer 20 when stored is further provided with a handle 204, so as to facilitate the player to operate the drawer 20 to rotate the angle and store or extend.

[0064] It is obvious for those skilled in the art that the utility model is not limited to the details of the above exemplary embodiments, and the utility model can be realized in other specific forms without departing from the spirit or basic characteristics of the utility model. Therefore, no matter from which point of view, the embodiments should be regarded as exemplary and non-limiting, the scope of the utility model is defined by the appended claims rather than the above description, and all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the utility model.

Claims

1. A puzzle board having a rotatable drawer, characterized by, The puzzle board body is provided with an inner slot for accommodating the drawer, and the drawer is rotatably connected with the puzzle board body through a rotating shaft to be extended from or accommodated in the inner slot.

2. A puzzle board with a rotatable drawer according to claim 1, characterized in that The puzzle board body is provided with an inner slot for accommodating the drawer, and the drawer is rotatably connected with the puzzle board body through a rotating shaft to be extended from or accommodated in the inner slot.

3. A puzzle board with a rotatable drawer according to claim 2, characterized in that, The drawer is a semicircular structure rotatable around the rotating shaft.

4. A puzzle board with a rotatable drawer according to claim 3, characterized in that, The inner slot is semicircular to match the drawer.

5. A puzzle board with a rotatable drawer according to claim 4, characterized in that The inner wall of the inner slot is provided with an arc-shaped track, and the outer profile of the drawer is matched with the arc-shaped track, so that the drawer can smoothly slide along the arc-shaped track when rotating around the rotating shaft.

6. A puzzle board with a rotatable drawer as claimed in claim 2, characterized in that The drawer is provided with a central hole at the center position, and the inner slot is provided with a shaft hole matched with the rotating shaft at the position corresponding to the central hole of the drawer.

7. A puzzle board with a rotatable drawer as defined in claim 2, characterized in that The puzzle board body is provided with a hinge structure along the axis to enable the puzzle board body to be folded in half. The two drawers are arranged in the inner slots at the two ends of the puzzle board body, and when the puzzle board body is folded in half through the hinge structure, the two drawers are accommodated in the corresponding inner slots and approach each other.

8. A puzzle board with a rotatable drawer according to any one of claims 1-7, characterized in that, The drawer is provided with a plurality of partition structures inside to separate the interior of the drawer into a plurality of independent material placing areas.

9. A puzzle board with a rotatable drawer according to claim 8, characterized in that The partition structure is a placing disc, and the shape of the placing disc is matched with the profile of the interior of the drawer. The placing disc can be taken out of the drawer.

10. The puzzle board with a rotatable drawer of claim 1, wherein, The puzzle board body is provided with a plane for assembling puzzles, and the plane is provided with an anti-slip layer.