Packaging structure and building block classifying device thereof
By designing the screen board and connectors of the building block classification device, the problem of difficult to classify small and medium-sized parts of building blocks is solved, and rapid classification and efficient search are achieved, improving the player's building experience and the utilization rate of packaging boxes.
Patent Information
- Application Number
- CN202422418347.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-30
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-09-30
AI Technical Summary
In existing building block sets, small parts are difficult to quickly sort and search, especially when mixing them in large parts, which consumes time, affects playability and efficiency.
A building block classification device is designed, including the main frame, screen plate and connector. The screen plate has a receiving area and classification area. The rapid screening of building block parts is realized through the classification hole of the screen plate. The screen plate can be movably connected to the bottom of the main frame. The connecting parts are for suspension and fixation, and are suitable for use in packaging boxes.
It realizes the rapid classification of building block parts, improves the search speed of target parts, enhances the utilization rate of packaging boxes and the flexibility of the device, reduces the inconvenience of the building process, and improves the player's building experience.
Smart Images

Figure CN223116972U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of building blocks, and in particular to a packaging structure and a building block classification device thereof. Background Art
[0002] Building block sets usually include multiple building block parts of different shapes and sizes, and in order to improve the scalability and fun of building blocks, different building block parts accessories can be added, so that the styles, shapes and sizes of common or special parts vary greatly. Mixing various building block parts increases the difficulty of searching for target parts, especially small parts mixed in large parts.
[0003] In order to facilitate assembly, a complete set of building blocks will generally split the finished building blocks into multiple building block modules. Each building block module includes different building block parts. The building block parts required for the same building block module are pre-packaged. This process is called subpackaging. If a single building block module has too many building block parts, it may also include multiple building block packages. Most building block packages contain both large parts and small parts.
[0004] However, after each building block package is unpacked, there is also the problem of small parts being hard to find. In addition, for non-novice players, they may mix multiple building block sets for creative assembly. Spending too much time searching for parts is not conducive to improving playability, and the process of classifying various parts in advance is also relatively inefficient. Utility Model Content
[0005] In view of the shortcomings of the existing methods, the present application proposes a packaging structure and a building block classification device thereof to solve the technical problem of the difficulty in screening small parts and large parts in the related art.
[0006] In a first aspect, the present application provides a building block classification device, which includes a main frame, a sieve plate movably connected to the bottom of the main frame, and a first connecting member fixed to the main frame; the sieve plate includes a receiving area and a classification area, and the classification area is provided with classification holes; the receiving area is used to receive building block parts, and the classification area is used to screen the building block parts; the first connecting member is used to suspend and fix the main frame.
[0007] Optionally, the first connecting member includes counter hooks respectively arranged on any two sides of the main frame.
[0008] Further optionally, the width or length of the main frame is adapted to the inner size of the building block packaging box, so that the main frame is hung on the edge of the building block packaging box through the first connecting member.
[0009] Optionally, a support base with a height higher than that of the main frame is further included, which is used to provide a hanging and fixed position for the counter hook.
[0010] Optionally, the receiving area and the sorting area are respectively arranged on both sides of the sieve plate body; or the receiving area is arranged close to the main frame and surrounds the sorting area.
[0011] Furthermore, at least one sieve plate is provided, and / or the sorting holes are configured in at least one size.
[0012] Furthermore, one of the upper edges of the main frame further includes a reading rack for clamping the instruction manual.
[0013] Optionally, the reading rack includes a pair of mirror-symmetrical clamping components, and the two clamping components are connected by a connecting rod.
[0014] Further optionally, the clamping component includes a first clamping piece fixed on the upper edge of the main frame and a second clamping piece abutting against the upper part of the first clamping piece, and the first clamping piece and the second clamping piece are pivotally connected.
[0015] Furthermore, a particle quantity scale is further arranged on the main frame.
[0016] In a second aspect, the present application further provides a packaging structure, which includes a packaging box and a building block sorting device matching the size of the packaging box, and the building block sorting device adopts the building block sorting device as described above.
[0017] The beneficial technical effects brought by the technical solutions provided by the embodiments of the present application include:
[0018] (1) For the building block sorting device of the present application, a sieve plate is provided at the bottom of the main frame, and the sieve plate includes a receiving area and a sorting area. The sieve plate can be used to transfer building block parts of different shapes and sizes from the receiving area to the sorting area as needed, so as to quickly sort large and small parts, thereby improving the searching speed of target parts.
[0019] (2) For the building block sorting device of the present application, the main frame can be used in cooperation with the packaging box. When the main frame is hung upside down on the edge of the packaging box, the packaging box can receive small parts passing through the sieve plate to avoid loss of small parts. The packaging box can also be continuously used during the assembly process, improving the utilization rate of the packaging box. The main frame can also be hung upside down at other positions according to the needs of players, and even be placed independently and suspended by using the support seat, improving the use flexibility of the building block sorting device.
[0020] (3) For the building block sorting device of the present application, a reading rack and a particle quantity scale are also provided. The reading rack is used to clamp the assembly instruction manual, and the particle quantity scale is used to assist in determining the number or length of the bosses on the building block parts, which is beneficial to reducing the inconvenience during the assembly process and enabling players to focus more on the assembly process.
[0021] Additional aspects and advantages of the present application will be given in part in the following description, will become apparent from the following description, or will be learned through the practice of the present application. Brief Description of the Drawings
[0022] The above-mentioned and / or additional aspects and advantages of the present application will become apparent and be readily understood from the following description of the embodiments in conjunction with the accompanying drawings, in which:
[0023] Figure 1 is a schematic structural diagram of a building block sorting device provided for an embodiment of the present application, showing an exploded view of the building block sorting device;
[0024] Figure 2 is a schematic structural diagram of a building block sorting device provided for an embodiment of the present application, showing a schematic diagram of replacing a sieve plate of the building block sorting device;
[0025] Figure 3 is Figure 2 a longitudinal sectional view of
[0026] Figure 4 is a schematic structural diagram of another building block sorting device provided for an embodiment of the present application, showing an assembly structure of a support seat;
[0027] Figure 5 is a schematic structural diagram of another sieve plate provided for the building block sorting device of the embodiment of the present application.
[0028] Reference Signs:
[0029] 1 - Main Frame; 11 - Boss; 12 - Granule Quantity Scale;
[0030] 2 - Sieve Plate; 21 - Receiving Area; 22 - Sorting Hole;
[0031] 3 - First Connecting Piece; 31 - Reverse Hook;
[0032] 4 - Reading Stand; 41 - First Clamping Piece; 42 - Second Clamping Piece; 43 - Pin Bar; 44 - Connecting Rod;
[0033] 5 - Support Seat. Detailed Description of the Embodiments
[0034] Embodiments of the present application will be described below with reference to the accompanying drawings in the present application. It should be understood that the embodiments described below in conjunction with the accompanying drawings are exemplary descriptions for explaining the technical solutions of the embodiments of the present application, and do not constitute a limitation on the technical solutions of the embodiments of the present application.
[0035] Those skilled in the art can understand that, unless specifically stated, the terms "the" and "said" used herein may also include the plural form. It should be further understood that the term "including" used in the specification of this application means the presence of the described features, integers, and / or components, but does not exclude the implementation of other features, information, data, steps, operations, elements, components, and / or their combinations supported by this technical field. The term "and / or" used herein means at least one of the items defined by the term. For example, "A and / or B" can be implemented as "A", or as "B", or as "A and B".
[0036] To make the objectives, technical solutions, and advantages of this application clearer, the following will further describe the embodiments of this application in detail with reference to the accompanying drawings.
[0037] Referring to Figure 1 , the building block sorting device of this application includes a main frame 1, a sieve plate 2, and a first connecting member 3. The sieve plate 2 includes a receiving area 21 and a sorting area, and sorting holes 22 are formed in the sorting area. When using the building block sorting device of this application, the building block part package can be first poured onto the receiving area 21 of the building block sieve plate 2, and a cavity for accommodating a plurality of building block parts is formed through the main frame 1 and the receiving area 21. At this time, shake the main frame 1 to drive the plurality of building block parts on the receiving area 21 to move accordingly. After the building block parts move to the sorting area, the small parts can pass through the sorting holes 22 and fall, while the large parts can stay on the sorting area, realizing the separation of large parts and small parts. Subsequently, users can directly and quickly take the large parts or small parts for assembly. That is to say, the building block sorting device of this application is used to realize the preliminary screening of mixed building block parts. The small parts can pass through the sorting holes 22 of the sieve plate 2 and be screened to the lower part of the building block sorting device, and the large parts are intercepted by the sieve plate 2 on the sieve plate 2.
[0038] The "small parts" and "large parts" mentioned in this embodiment are relative to the sorting holes 22 of the sieve plate 2. The building block parts that cannot pass through the sorting holes 22 are classified as "large parts", and the building block parts that can pass through the sorting holes 22 are classified as "small parts". "Large" and "small" are relative. Different sizes of the sorting holes 22 used result in different classifications of specific building block parts, but how specific building block parts are classified does not involve the inventive concept of this application and does not affect the implementation of this application.
[0039] The shape of the main frame 1 in this embodiment can be a closed figure of any shape. The movable connection between the sieve plate 2 and the main frame 1 can be buckled with the lower edge of the main frame 1, or magnetically connected to the lower edge of the main frame 1. It can also be that the lower edge of the main frame 1 protrudes inward to form a boss 11, and the edge of the sieve plate 2 is hung on the boss 11 under the action of gravity. In this embodiment, the main frame 1 is enclosed by four side walls to form a rectangle, and the lower edge of the main frame 1 protrudes inward to form a boss 11 for the movable connection of the sieve plate 2. Therefore, the size of the sieve plate 2 can be slightly smaller than that of the main frame 1 to facilitate the assembly and disassembly of the sieve plate 2 (as Figures 2 to 4 shown). Further, the main frame 1 can be integrally formed to improve the durability of the main frame 1. The main frame 1 can also be formed into a rectangle by means of plugging to improve the storage capacity and variability of the main frame 1. A first connecting member 3 is fixedly provided on the main frame 1. The first connecting member 3 is used to suspend and fix the main frame 1 so that a space for accommodating small parts can be formed below the sieve plate 2. The first connecting member 3 in this embodiment can be a top block, a clamping structure, etc.
[0040] Preferably, the first connecting member 3 includes at least one reverse hook 31 extending from the upper edge of the main frame 1. The reverse hook 31 is used to assist in suspending and fixing the main frame 1. In a possible implementation manner, the reverse hook 31 includes a horizontal portion extending horizontally from the upper edge and a bent portion extending downward from the edge of the horizontal portion. The bent portion maintains a certain distance from the outer surface of the side wall of the main frame 1 so that an object with a thickness less than this distance can be inserted into this distance to realize the fixing of the reverse hook 31. The object with a thickness less than this distance can be provided by the outer wall of the packaging box or by a dedicated support base 5.
[0041] Referring to Figure 4 , the support base 5 can be correspondingly connected to the first connecting member 3 so that the main frame 1 can be suspended and fixed on the support base 5 to prevent the sorting holes of the sieve plate 2 from being blocked due to too many small parts. Multiple first connecting members 3 can be connected to one support base 5 at the same time, or each first connecting member 3 can be correspondingly connected to a support base 5. This embodiment does not make specific limitations.
[0042] Specifically, when the main frame 1 is fixed to the upper edge of the packaging box through the anti-hooks 31 and the main frame 1 is accommodated inside the packaging box, the packaging box can assist the main frame 1 in performing the function of sieving building block parts. Specifically, the packaging box receives the small parts passing through the sieve plate 2. In order to stably hang and fix the main frame 1, anti-hooks 31 are respectively arranged on any two upper edges of the main frame 1. One implementation is that anti-hooks 31 are respectively arranged on two parallel upper edges in the width direction or the length direction of the main frame 1, and two or more anti-hooks 31 are arranged on each upper edge. Thus, the width or length dimension of the main frame 1 is adapted to the packaging box, so that the main frame 1 can be suspended across the packaging box. Another implementation is that anti-hooks 31 are respectively arranged on two adjacent upper edges of the main frame 1, and two or more anti-hooks 31 are arranged on each upper edge. Thus, the width and length dimensions of the main frame 1 should not exceed the internal dimensions of the packaging box, so that the main frame 1 can be suspended on one side inside the packaging box and at least partially block the bottom of the packaging box. Further, the main frame 1 can also be fixed to the upper edge of the packaging box through the anti-hooks 31 and the main frame 1 is outside the packaging box. At this time, the packaging box expands the operation space of the main frame 1, and the packaging box serves as a temporary storage space for building block parts.
[0043] When the main frame 1 is fixed to the support seat 5 through the anti-hooks 31, the main frame 1 can be placed independently and suspended. The support seat 5 provides a position for hanging and fixing the anti-hooks 31, and the support seat 5 needs to be higher than the height of the main frame 1. The support seat 5 can only provide a structure for fixing the anti-hooks 31, or other functional structures can be added on this basis. The specific implementation manner of the support seat 5 does not affect the inventive essence of this application. The main frame 1 can also be suspended on the support seat 5 on one side and on the packaging box or other objects on the other side to improve the hanging stability of the main frame 1.
[0044] Further, one of the upper edges of the main frame 1 further includes a reading stand 4 for clamping the instruction manual. Preferably, the reading stand 4 is provided on the longer side edge of the main frame 1, and the positions of the reading stand 4 and the anti-hook 31 do not interfere with each other. In this embodiment, the reading stand 4 includes a pair of mirror-symmetrical clamping components, and the two clamping components are connected by a connecting rod 44. Each clamping component includes a first clamping member 41 fixed to the upper edge of the main frame 1 and a second clamping member 42 abutted against the upper part of the first clamping member 41, and the first clamping member 41 and the second clamping member 42 are pivotally connected. The first clamping member 41 is used to be fixed to the side wall of the main frame 1. In order to improve the bearing capacity of the reading stand 4, the first clamping member 41 can be selected as an independent part to be connected to the main frame 1, or integrally formed with the side wall of the main frame 1 on the basis of improving the structural stability of the first clamping member 41, and a pivotal connection structure is reserved at the upper part of the first clamping member 41. The lower part of the second clamping member 42 abuts against the upper part of the first clamping member 41, and a pivotal connection structure matching the first clamping member 41 is provided at the lower part of the second clamping member 42, so that the first clamping member 41 and the second clamping member 42 are connected in a pivotal manner. In this embodiment, a pin rod 43 sequentially penetrates through the pivotal connection structures of the first clamping member 41 and the second clamping member 42 to realize the connection between the two; a certain damping structure can also be added to the pivotal connection between the first clamping member 41 and the second clamping member 42 to realize the effect of adjusting the fixed angle of the second clamping member 42 relative to the first clamping member 41, and further improve the use effect of the reading stand 4. Further, a connection hole is provided at the upper part of the second clamping member 42 for assembling the connecting rod 44; a fixed clip is further provided at the upper part of the second clamping member 42 for clamping the plug-in instruction manual of the building blocks or other materials, and the fixed clip can be a fixed card slot or a movable spring clip.
[0045] Furthermore, one of the upper edges of the main frame 1 further includes a particle quantity scale 12, and the positions of the particle quantity scale 12 and the anti-hook 31 do not interfere with each other. The particle quantity scale 12 is used to assist in determining the number of bosses 11 on the building block parts or the length of the building block parts, which is beneficial to reducing the inconvenience generated during the assembly process. In this embodiment, a five-particle scale, an eight-particle scale, a twelve-particle scale, and a sixteen-particle scale are provided. The single use or combined use of these scales can improve the efficiency of players in checking the number of particles on a single building block part or multiple building block parts. For example, when a player holds a long building block part, there is no need to count the number of particles on it. The player can directly hold the building block part and compare it with the particle quantity scale 12. If they match, it is the building block part with that particle quantity, which can save the assembly time and improve the assembly experience. In other embodiments, the particle quantity scale 12 can also be provided at other positions on the main frame 1 that are easy to observe and easy to compare with the building block parts, or can be detachably connected to the main frame 1 so that it can be used separately when necessary.
[0046] The body of the sieve plate 2 is a plate that can be connected to the main frame 1 and serve as the bottom plate of the main frame 1. Further, the sieve plate 2 is further divided into a receiving area 21 and a sorting area. The sorting area is provided with sorting holes 22 for allowing small parts smaller than the size of the sorting holes 22 to pass through and intercepting large parts larger than the size of the sorting holes 22. The receiving area 21 is an area without sorting holes 22 and can load unsorted building block parts or loaded sorted large parts. It is preferred that there is no any blocking structure between the receiving area 21 and the sorting area, so that the building block parts can reciprocate between the receiving area 21 and the sorting area batch by batch and quickly; in other implementation manners, a low retaining bar can also be provided between the receiving area 21 and the sorting area to increase the loading capacity of the receiving area 21 or prevent the building block parts in the receiving area 21 from accidentally sliding into the area of the sorting area. The distribution directions of the receiving area 21 and the sorting area on the sieve plate 2 can be respectively arranged on both sides of the body of the sieve plate 2, that is, respectively arranged on both sides of the body of the sieve plate 2 along the width direction, the length direction or the diagonal direction; or the receiving area 21 can be arranged close to the main frame 1 to utilize the side wall of the main frame 1 to improve the stackability of the building block parts, and the sorting area is arranged at the center position of the sieve plate 2, so that the receiving area 21 surrounds the sorting area. Further, the area ratio of the receiving area 21 and the sorting area on the body of the sieve plate 2 is preferably between 1:2 and 1:1.
[0047] To achieve multiple screening, this embodiment can also be configured with two or more sieve plates 2 having different sizes of sorting holes 22. The sieve plates 2 with different sizes of sorting holes 22 are used in sequence, which can realize multiple screening of the mixed building block parts, making it easier to find the target parts. A degenerate implementation manner can cluster and arrange two or more different sizes of sorting holes 22 on the same sieve plate 2, and the sizes of the sorting holes 22 between different sieve plates 2 are all different.
[0048] The size of the sorting holes 22 includes the description of the shape and size of the sorting holes 22. From the perspective of the shape, referring to Figures 1 to 5 , the sorting holes 22 include circular, oval or waist-shaped holes. Among them, the circular sorting holes 22 are beneficial to screening out building block parts with a similar aspect ratio (such as 1x1, 1x2 small parts), while the oval or waist-shaped sorting holes 22 are beneficial to screening out longitudinally long small parts (such as 1x3, 1x4 small parts); from the perspective of the size, the sorting holes 22 include circular, oval or waist-shaped holes. Among them, the diameter of the circular hole, the short diameter of the oval hole and the width of the waist-shaped hole are close to one unit length (the particle size of the building block parts) of the building block parts, which is beneficial to screening out small parts (such as 1x1, 1x2, 1x3, 1x4 small parts).
[0049] Further, to improve the use effect of the sieve plate 2, the building block parts to be sieved can be first placed in the bearing area to prevent non-target building block parts from vertically passing through the sorting holes 22 during the falling process, which may affect the sieving effect. Next, the building block parts can be manually toggled to slide towards the sorting area. The small parts pass through the sorting holes 22 and fall below the main frame 1. Alternatively, the entire main frame 1 can be shaken so that the longitudinal axis of the building block parts is parallel to the long axis of the oval sorting holes 22 or the waist-shaped sorting holes 22 on the sieve plate 2, making it easier for the small parts to pass through the sorting holes 22 and fall below the main frame 1.
[0050] This application also includes a packaging structure, including a packaging box and a building block sorting device that matches the size of the packaging box. The packaging box can be a single-sided flip-open packaging box or a packaging box with a separable upper cover and lower bottom. The building block sorting device adopts the building block sorting device of this application as described above. The building block sorting device is directly placed inside the packaging box, playing a certain role in positioning and buffering the building block package and the internal structure of the packaging box.
[0051] In summary, this application provides a building block sorting device, which includes a main frame, a sieve plate movably connected to the bottom of the main frame, and a first connecting member fixed to the main frame. The sieve plate includes a receiving area and a sorting area, and sorting holes are provided in the sorting area. The receiving area is used to receive building block parts, and the sorting area is used to sort building block parts. The first connecting member is used to suspend and fix the building block sorting device of this application. The bottom of its main frame is provided with a sieve plate, which includes a receiving area and a sorting area. The sieve plate can be used as needed to transfer the building block parts mixed with different shapes and sizes from the receiving area to the sorting area for rapid sorting of large and small parts, so as to improve the searching speed of target parts.
[0052] Those skilled in the art of this technology can understand that the steps, measures, and solutions in the various operations, methods, and processes discussed in this application can be alternated, changed, combined, or deleted. Further, the other steps, measures, and solutions in the various operations, methods, and processes discussed in this application can also be alternated, changed, rearranged, decomposed, combined, or deleted. Further, the steps, measures, and solutions in the related technologies that are the same as those disclosed in this application can also be alternated, changed, rearranged, decomposed, combined, or deleted.
[0053] In the description of the present application, the directions or positional relationships indicated by terms such as "center", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. are exemplary directions or positional relationships based on those shown in the drawings. They are for the convenience of describing or simplifying the embodiments of the present application, rather than indicating or implying that the device or component referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations to the present application.
[0054] The terms "first" and "second" are used only for descriptive purposes, and should not be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present application, unless otherwise specified, the meaning of "a plurality" is two or more.
[0055] In the description of the present application, it should be noted that, unless otherwise clearly specified and limited, the terms "mounted", "connected" and "coupled" should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or an integral connection; it may be a direct connection, or an indirect connection through an intermediate medium, and it may be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific circumstances.
[0056] In the description of this specification, specific features, structures, materials, or characteristics may be combined in any one or more embodiments or examples in a suitable manner.
[0057] The above are only some embodiments of the present application. It should be noted that for those of ordinary skill in the art, without departing from the technical concept of the solution of the present application, other similar implementation means based on the technical idea of the present application also belong to the protection scope of the embodiments of the present application.
Claims
1. A building block sorting device, characterized in that, It includes a main frame, a sieve plate movably connected to the bottom of the main frame, and a first connecting member fixed to the main frame; the sieve plate includes a receiving area and a sorting area, and sorting holes are formed in the sorting area; the receiving area is used to receive building block parts, and the sorting area is used to sieve building block parts; the first connecting member is used to suspend and fix the main frame.
2. The building block sorting device according to claim 1, wherein The first connecting member includes anti-hooks respectively arranged on any two sides of the main frame.
3. The building block sorting device according to claim 2, wherein, The width or length of the main frame is adapted to the internal size of the building block packaging box, so that the main frame is hung on the edge of the building block packaging box through the first connecting member.
4. The building block sorting device according to claim 2, wherein It further includes a support seat with a height higher than that of the main frame, which is used to provide a suspension and fixing position for the anti-hook.
5. The building block sorting device according to claim 1, characterized in that The receiving area and the sorting area are respectively arranged on two sides of the sieve plate body; or the receiving area is arranged close to the main frame and surrounds the sorting area.
6. The building block sorting device according to claim 5, characterized in that, At least one sieve plate is provided, and / or the sorting holes are configured in at least one size.
7. The building block sorting device according to claim 1, wherein, One of the upper edges of the main frame further includes a reading rack for clamping the instruction manual.
8. The building block sorting device according to claim 7, wherein The reading rack includes a pair of mirror-symmetrical clamping components, and the two clamping components are connected by a connecting rod.
9. The building block sorting device according to claim 8, characterized in that, The clamping component includes a first clamping piece fixed to the upper edge of the main frame and a second clamping piece abutted against the upper part of the first clamping piece, and the first clamping piece and the second clamping piece are pivotally connected.
10. The building block sorting device according to claim 1, wherein, A particle quantity scale is also arranged on the main frame.
11. A packaging structure, characterized in that, It includes a packaging box and a building block sorting device matching the size of the packaging box, and the building block sorting device adopts the building block sorting device according to any one of claims 1 to 10.