Tiled panel and tiled toy
Patent Information
- Application Number
- CN202521654361.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-05
- Publication Date
- 2026-09-04
- Estimated Expiration
- 2035-08-05
AI Technical Summary
然而现有的磁吸面板,结构复杂,装配过程繁琐
[0013]The technical solution of this utility model employs at least one first mounting groove on the side wall of the panel body, within which a first magnetic element is installed. Once embedded in the groove, the first magnetic element maintains the magnetic connection requirement with other panels while avoiding the risk of detachment that might occur with exposed components. The end protective shell, through its own first locking groove, forms a tight fit with the end of the panel. This locking method eliminates the need for additional fasteners; simply align the protective shell with the end of the panel and press gently to secure the two.
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Figure CN224711571U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of toy technology, and in particular to a splicing panel and a splicing toy. Background Technology
[0002] With the continuous development of the children's educational toy market, magnetic panel building toys, which combine fun and creativity, are highly favored by consumers because they allow children to freely assemble various shapes. The core component of these toys is the magnetic panel, whose structure generally includes a magnetic mechanism and a baffle. The magnetic mechanism is used to connect with other panels, and the baffle serves as the splicing surface. Through the magnetic mechanism, different shapes such as playhouses and creative models can be constructed. However, existing magnetic panels have complex structures and cumbersome assembly processes. Utility Model Content
[0003] The main purpose of this invention is to provide a splicing panel and splicing toy, which aims to improve the assembly efficiency of magnetic panels.
[0004] To achieve the above objectives, the splicing panel proposed in this utility model includes: The panel body has at least one first mounting groove on its side wall; A first magnetic attractor is rotatably disposed in the first mounting groove, and the two sides of the first magnetic attractor are opposite magnetic poles. An end protective shell is provided with a first slot that is adapted to the end of the panel, and the first slot engages with the end of the panel.
[0005] In one embodiment, the device further includes a sleeve. The first mounting groove has a first sidewall and a second sidewall, which are disposed opposite to each other. The first sidewall has a first protrusion, and the second sidewall has a second protrusion. The first protrusion extends into one end of the sleeve, and the second protrusion extends into the other end of the sleeve. The first magnetic member is disposed inside the sleeve and is rotatably located between the first protrusion and the second protrusion.
[0006] In one embodiment, the two ends of the end protective shell are respectively provided with a first extension and a second extension, and the first extension and the second extension are respectively provided with a first mounting hole and a second mounting hole; The panel has a second mounting groove and a third mounting groove on both sides of its end. The second mounting groove has a third sidewall, on which a third protrusion is provided, and the third protrusion is connected to the first mounting hole; The third mounting groove has a fourth sidewall, and the fourth sidewall is provided with a fourth protrusion; the fourth protrusion is connected to the second mounting hole.
[0007] In one embodiment, the end protective shell includes: A protective shell body, the protective shell having a first end and a second end; A first connector is connected to the first end to form the first extension, and the first mounting hole is provided at the end of the first connector away from the protective shell body. The second connector is connected to the second end to form the second extension, and the second mounting hole is provided at the end of the second connector away from the protective shell body.
[0008] In one embodiment, the first end is provided with a fifth protrusion, and the end of the first connector opposite to the fifth protrusion is provided with a third mounting hole, and the fifth protrusion is connected to the third mounting hole; The second end is provided with a sixth protrusion, and the second connector is provided with a fourth mounting hole at the end opposite to the sixth protrusion, and the sixth protrusion is connected to the fourth mounting hole.
[0009] In one embodiment, the first end is provided with a first inclined surface, and the end of the first connector opposite to the first inclined surface is provided with a third extension, the third extension abutting against the first inclined surface; The second end is provided with a second inclined surface, and the second connector is provided with a fourth extension at the end opposite to the second inclined surface, the fourth extension abutting against the second inclined surface.
[0010] In one embodiment, the first connector is connected to the first end by an adhesive. The second connector is connected to the second end by an adhesive.
[0011] In one embodiment, it includes: A first protective sleeve is disposed on the edge of the panel body and covers one of the first mounting slots and the first extension. The second protective sleeve is disposed on the edge of the panel body and covers another of the first mounting slots and the second extension.
[0012] This utility model also proposes a splicing toy, including the splicing panel as described above, wherein the splicing toy is assembled from the splicing panel.
[0013] The technical solution of this utility model employs at least one first mounting groove on the side wall of the panel body, within which a first magnetic element is installed. Once embedded in the groove, the first magnetic element maintains the magnetic connection requirement with other panels while avoiding the risk of detachment that might occur with exposed components. The end protective shell, through its own first locking groove, forms a tight fit with the end of the panel. This locking method eliminates the need for additional fasteners; simply align the protective shell with the end of the panel and press gently to secure the two. Attached Figure Description
[0014] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0015] Figure 1 A schematic diagram of the structure of an embodiment of the splicing panel provided by this utility model; Figure 2 An exploded view of an embodiment of the splicing panel provided by this utility model; Figure 3 An exploded view of another embodiment of the splicing panel provided by this utility model; Figure 4 This is a structural schematic diagram of another embodiment of the splicing panel provided by this utility model.
[0016] Explanation of icon numbers: 100. Panel body; 110. First mounting groove; 111. First sidewall; 112. Second sidewall; 113. First protrusion; 114. Second protrusion; 120. Second mounting groove; 121. Third sidewall; 122. Third protrusion; 130. Third mounting groove; 131. Fourth sidewall; 132. Fourth protrusion; 200. First magnetic suction element; 300. End protective shell; 310. First slot; 320. First extension; 321. First mounting hole; 330. Second extension; 331, second mounting hole; 340, protective shell body; 341, first end; 342, second end; 343, fifth protrusion; 344, sixth protrusion; 345, first inclined surface; 346, second inclined surface; 350, first connector; 351, third extension; 352, third mounting hole; 360, second connector; 361, fourth extension; 362, fourth mounting hole; 400, sleeve; 500, first protective sleeve; 600, second protective sleeve.
[0017] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0018] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present utility model.
[0019] It should be noted that if the embodiments of this utility model involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indicators will also change accordingly.
[0020] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or" or "and / or" throughout the text includes three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution where both A and B are satisfied simultaneously. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.
[0021] In the current booming market for children's educational toys, magnetic panel building toys are widely loved for their free assembly feature. Magnetic panel building toys should be a great way to stimulate children's creativity, but the limited assembly angles of existing products significantly restrict this creativity. The magnetic components of these toys are mostly fixed to the edge of the panel, and the magnetic pole direction cannot be changed. This means that when assembling the panels, they can only be combined along fixed straight lines or right angles. For example, if you want to build a castle with arched doorways, the panels can only be assembled with rigid right angles, making it impossible to create smooth curved lines; if you want to build a bird with outstretched wings, the connection angle between the wings and the body is strictly limited, making it difficult to show the bird's graceful posture no matter how you adjust it. This limitation in angle has many negative impacts on children's play experience. Children's imaginations are boundless, and they often have all sorts of novel ideas, but the limited assembly angle makes it difficult for them to realize their ideas, which may dampen their enthusiasm for creation over time. Moreover, the fixed assembly method can easily make the play monotonous, and children will find it boring after a short time, reducing the toy's playability and longevity. In addition, when children try to assemble at non-fixed angles, the panels are easily unstable because the magnetic parts cannot be adjusted flexibly, and the newly built model falls apart in an instant, which not only affects their play mood but may also cause them frustration. For younger children, this limited assembly method also makes it difficult to develop their spatial reasoning and fine motor skills, failing to fully realize the educational value that magnetic assembly toys should have.
[0022] In response to this situation, this utility model proposes a splicing panel.
[0023] Please see Figures 1-4 In one embodiment of this utility model, the splicing panel includes: A panel body 100, wherein at least one first mounting groove 110 is provided on the side wall of the panel body 100; A first magnetic attractor 200 is rotatably disposed in the first mounting groove 110, and the two sides of the first magnetic attractor are opposite magnetic poles. An end protective shell 300 is provided with a first slot 310 adapted to the end of the panel, and the first slot 310 is engaged with the end of the panel.
[0024] The technical solution of this utility model involves providing at least one first mounting groove 110 on the side wall of the panel body 100; a first magnetic attractor 200 is provided in the first mounting groove 110; the first magnetic attractor 200 is rotatably disposed in the first mounting groove 110, and the two sides of the first magnetic attractor are opposite magnetic poles; when two splicing panels are spliced, since the two sides of the first magnetic attractor are opposite magnetic poles, when the two splicing panels are brought close to each other, the first magnetic attractors on different panels will generate a force due to the interaction between the magnetic poles. This magnetic force will cause the first magnetic attractor to rotate automatically until the opposite magnetic poles of the two magnetic attractors are precisely aligned, at which point the magnetic force reaches its maximum, thereby causing the two panels to be tightly attracted together, completing the splicing.
[0025] No wrenches, screwdrivers, or any other additional tools are needed. Simply bring the corresponding sides of the two panels close together, and the magnetic force of the magnetic connector will complete the connection. The entire process is quick and efficient, and even those without professional installation experience can easily operate it. Regarding connection flexibility, since the first magnetic connector can rotate freely, the two panels are no longer limited to a fixed angle when connecting. They can be adjusted to a suitable angle according to actual installation needs, greatly improving applicability in different scenarios. Whether it's a right-angle connection or an angled connection at any angle, it can be easily achieved.
[0026] The end protective shell 300 forms a tight fit with the end of the panel through its own first slot 310. This snap-fit method does not require additional fasteners. Simply align the protective shell with the end of the panel and press it gently to fix the two together.
[0027] See Figures 1-4 In one embodiment, the device further includes a sleeve 400. The first mounting groove 110 has a first sidewall 111 and a second sidewall 112, which are disposed opposite to each other. The first sidewall 111 has a first protrusion 113, and the second sidewall 112 has a second protrusion 114. The first protrusion 113 extends into one end of the sleeve 400, and the second protrusion 114 extends into the other end of the sleeve 400. The first magnetic suction member 200 is disposed inside the sleeve 400 and is rotatably located between the first protrusion 113 and the second protrusion 114.
[0028] In this embodiment, by adding a sleeve 400 structure, the protection and fixing performance of the first magnetic component 200 is further improved, and the user experience of the product is optimized. The first magnetic component 200 is enclosed inside the sleeve 400. Meanwhile, the first sidewall 111 of the first mounting groove 110 has a first protrusion 113, and the second sidewall 112 has a second protrusion 114. When the sleeve 400, along with the first magnetic component 200 inside, is placed into the first mounting groove 110, the first protrusion 113 extends into one end of the sleeve 400, and the second protrusion 114 extends into the other end of the sleeve 400, thus confining the first magnetic component 200 inside the sleeve 400 without affecting its rotation.
[0029] The sleeve 400 directly encloses and protects the first magnetic component 200, preventing direct contact between the magnetic component and the inner wall of the first mounting groove 110, thus reducing friction and wear during assembly and use. The first protrusion 113 and the second protrusion 114 axially fix the sleeve 400, preventing displacement or wobbling within the mounting groove and making the entire magnetic assembly more stable. During assembly, the operator simply places the first magnetic component 200 into the sleeve 400, then places the entire sleeve 400 into the first mounting groove 110. The first protrusion 113 and the second protrusion 114 will naturally extend into both ends of the sleeve 400, requiring no additional adjustment or fixing tools, keeping the assembly process simple and efficient.
[0030] The sleeve 400 effectively protects the first magnetic component 200, reducing the risk of damage to the magnetic component due to collision or friction and extending the stability of the magnetic attraction performance. The structure of the first protrusion 113 and the second protrusion 114 extending into the sleeve 400 not only strengthens the limiting of the magnetic component but also fixes the position of the sleeve 400, preventing the components from loosening and improving the overall structural reliability of the splicing panel.
[0031] See Figures 1-4 In one embodiment, the two ends of the end protective shell 300 are respectively provided with a first extension 320 and a second extension 330, and the first extension and the second extension 330 are respectively provided with a first mounting hole 321 and a second mounting hole 331. The panel is provided with a second mounting groove 120 and a third mounting groove 130 on both sides of its end; The second mounting groove 120 has a third sidewall 121, and a third protrusion 122 is provided on the third sidewall 121. The third protrusion 122 is connected to the first mounting hole 321. The third mounting groove 130 has a fourth side wall 131, and a fourth protrusion 132 is provided on the fourth side wall 131; the fourth protrusion 132 is connected to the second mounting hole 331.
[0032] In this embodiment, the two ends of the end protective shell 300 extend to form a first extension 320 and a second extension 330, respectively. These two extensions are respectively provided with a first mounting hole 321 and a second mounting hole 331. Correspondingly, a second mounting groove 120 and a third mounting groove 130 are respectively formed on both sides of the end of the panel body 100. A third protrusion 122 is formed on the third sidewall 121 inside the second mounting groove 120, and a fourth protrusion 132 is formed on the fourth sidewall 131 inside the third mounting groove 130. During assembly, the third protrusion 122 connects to the first mounting hole 321, and the fourth protrusion 132 connects to the second mounting hole 331. This structure achieves precise fixation between the end protective shell 300 and the end of the panel.
[0033] The first extension 320 and the second extension 330 extend from both ends of the end protective shell 300, corresponding precisely to the second mounting groove 120 and the third mounting groove 130 on both sides of the panel end, forming symmetrical connection points. The connection between the third protrusion 122 of the second mounting groove 120 and the first mounting hole 321, and the connection between the fourth protrusion 132 of the third mounting groove 130 and the second mounting hole 331, utilize the fit between the protrusion and the hole to achieve limiting—after the protrusion is inserted into the mounting hole, the tight fit between the two restricts the displacement of the extension, thereby firmly fixing the end protective shell 300 to the panel end. This structure allows the protective shell to not only be engaged with the panel end through the original slot, but also form multiple fixation points through the mounting holes of the extension and the protrusions of the mounting groove, distributing the stress points.
[0034] The first extension 320 and the second extension 330 are connected by the mounting hole and the mounting groove protrusion, which adds two symmetrical fixing points on the basis of the original slot fit, disperses the external force on the end protective shell 300, avoids loosening after long-term use of the single snap-fit structure, and greatly improves the stability of the end connection.
[0035] The connection between the protrusion and the mounting hole requires no fasteners, maintaining the advantage of simple assembly and not increasing the complexity of the production process. At the same time, the cooperation between the extension and the mounting groove also provides lateral restraint for the end protective shell 300, reducing the possibility of lateral deviation of the protective shell during use, further enhancing the protective effect of the panel end, extending the product's service life, and better meeting the needs of scenarios where children's toys are frequently assembled.
[0036] See Figures 1-4 In one embodiment, the end protective shell 300 includes: The protective shell body 340 has a first end 341 and a second end 342; A first connector 350 is connected to the first end 341 to form the first extension 320, and the first mounting hole 321 is provided at the end of the first connector 350 away from the protective shell body 340. The second connector 360 is connected to the second end 342 to form the second extension 330, and the second mounting hole 331 is provided at the end of the second connector 360 away from the protective shell body 340.
[0037] In this embodiment, the end protective shell 300 is composed of a protective shell body 340, a first connector 350, and a second connector 360. The protective shell body 340 has a first end 341 and a second end 342. The first connector 350 is connected to the first end 341 of the protective shell body 340, forming the previously described first extension 320. A first mounting hole 321 is located at the end of the first connector 350 away from the protective shell body 340. The second connector 360 is connected to the second end 342 of the protective shell body 340, forming a corresponding second extension 330. A second mounting hole 331 is also located at the end of the second connector 360 away from the protective shell body 340. This structure allows the extension to be connected to the body through independent connectors, rather than being integrally formed, making the processing and assembly of each part more flexible.
[0038] See Figures 1-4 In one embodiment, the first end 341 is provided with a fifth protrusion 343, and the first connector 350 is provided with a third mounting hole 352 at the end opposite to the fifth protrusion 343, and the fifth protrusion 343 is connected to the third mounting hole 352; The second end 342 is provided with a sixth protrusion 344, and the second connector 360 is provided with a fourth mounting hole 362 at the end opposite to the sixth protrusion 344, and the sixth protrusion 344 is connected to the fourth mounting hole 362.
[0039] In this embodiment, the first end 341 of the protective shell body has a fifth protrusion 343, and the first connector 350 connected thereto has a third mounting hole 352 at the opposite end, with the fifth protrusion 343 connected to the third mounting hole 352; the second end 342 of the protective shell body 340 has a sixth protrusion 344, and the corresponding second connector 360 has a fourth mounting hole 362 at the opposite end, with the sixth protrusion 344 connected to the fourth mounting hole 362. This structure allows the first connector 350 to be fixed to the fifth protrusion 343 of the first end 341 through the third mounting hole 352, and the second connector 360 to be fixed to the sixth protrusion 344 of the second end 342 through the fourth mounting hole 362.
[0040] See Figures 1-4 In one embodiment, the first end 341 is provided with a first inclined surface 345, and the first connector 350 is provided with a third extension 351 at the end opposite to the first inclined surface 345, and the third extension 351 abuts against the first inclined surface 345. The second end 342 is provided with a second inclined surface 346, and the second connector 360 is provided with a fourth extension 361 at the end opposite to the second inclined surface 346, and the fourth extension 361 abuts against the second inclined surface 346.
[0041] In this embodiment, the first end 341 of the protective shell body 340 is provided with a first inclined surface 345, and the first connector 350 connected thereto is provided with a third extension 351 at the opposite end. When the first connector 350 is connected to the protective shell body 340, the third extension 351 will abut tightly against the first inclined surface 345. Correspondingly, the second end 342 of the protective shell body 340 is provided with a second inclined surface 346, and the opposite end of the second connector 360 is provided with a fourth extension 361. When the second connector 360 is connected to the body, the fourth extension 361 abuts against the second inclined surface 346. This structure allows the connection between the connector and the body to not only rely on the previous protrusion and mounting hole, but also to form an auxiliary fixation through the surface contact between the inclined surface and the extension.
[0042] The contact between the first inclined surface 345 and the third extension 351, and the contact between the second inclined surface 346 and the fourth extension 361, utilize the angle of the inclined surfaces to create a tight fit between the extensions and the inclined surfaces. This significantly increases the contact area compared to point contact, distributing external forces over a larger area and preventing localized deformation or wear caused by stress concentration. Simultaneously, the inclined surfaces provide a natural guiding function. During assembly, the third extension 351 naturally slides into the contact position along the inclined direction of the first inclined surface 345, and the fourth extension 361 slides in along the second inclined surface 346, helping operators quickly locate the installation position of the connectors and ensuring assembly accuracy.
[0043] See Figures 1-4 In one embodiment, the first connector 350 is connected to the first end 341 by an adhesive. The second connector 360 is connected to the second end 342 by an adhesive.
[0044] In this embodiment, when the first connector 350 is connected to the first end 341 of the protective shell body 340, in addition to relying on the cooperation between the original fifth protrusion 343 and the third mounting hole 352 and the abutment between the third extension 351 and the first inclined surface 345, the two are further fixed by adhesive. Similarly, the connection between the second connector 360 and the second end 342 is also strengthened by adhesive, based on the cooperation between the sixth protrusion 344 and the fourth mounting hole 362 and the abutment between the fourth extension 361 and the second inclined surface 346. This design provides dual protection through the limiting of the mechanical structure and the bonding force of the adhesive, comprehensively improving the reliability of the connection.
[0045] The adhesive fills the tiny gaps between the first connector 350 and the first end 341, and between the second connector 360 and the second end 342. Through the adhesive force after curing, it tightly bonds the two components into a whole, effectively dispersing stress concentration under external force. The mechanical structure provides precise positioning for the connectors and the main body, ensuring that the adhesive application will not affect the bonding effect due to component displacement. The adhesive, on the other hand, adds surface contact bonding force to the mechanical fixation, avoiding the loosening risk that may occur with simple mechanical connections, and is especially resistant to the impact of pulling and collisions caused by children.
[0046] See Figures 1-4 In one embodiment, it includes: A first protective sleeve 500 is disposed on the edge of the panel body 100 and covers one of the first mounting grooves 110 and the first extension 320. The second protective sleeve is disposed on the edge of the panel body 100 and covers the other first mounting groove 110 and the second extension 330.
[0047] In this embodiment, the splicing panel is supplemented with a first protective sleeve 500 and a second protective sleeve. The first protective sleeve 500 is positioned at the edge of the panel body 100, precisely covering one of the first mounting grooves 110 and the corresponding first extension 320; the second protective sleeve is positioned at the other edge of the panel body 100, covering the other first mounting groove 110 and the corresponding second extension 330. The shape of the protective sleeve is adapted to the edge structure it covers, allowing it to tightly fit the outer surface of the mounting groove and the extension, forming a complete protective layer.
[0048] The first protective cover 500 completely encloses the first mounting slot 110 and the first extension 320, preventing the first magnetic component 200 inside the mounting slot from being directly exposed and preventing the extension from rubbing against other components and causing wear during assembly. The second protective cover acts in the same way on the other first mounting slot 110 and the second extension 330, completely covering the vulnerable functional components and isolating them from the external environment. The edges of the protective cover are designed to be smooth, eliminating any sharp edges that may exist on the panel body 100, reducing the risk of children being scratched during use, and further improving safety.
[0049] This utility model also proposes a splicing toy, which includes the splicing panel as described above, and the splicing toy is assembled from the splicing panel. The specific structure of the splicing panel is as described in the above embodiments. Since this splicing toy adopts all the technical solutions of all the above embodiments, it has at least all the beneficial effects brought about by the technical solutions of the above embodiments, which will not be described in detail here.
[0050] The above description is merely an exemplary embodiment of the present utility model and does not limit the patent scope of the present utility model. Any equivalent structural transformations made based on the technical concept of the present utility model and the contents of the present utility model specification and drawings, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present utility model.
Claims
1. A splicing panel, characterized in that, include: The panel body has at least one first mounting groove on its side wall; A first magnetic attractor is rotatably disposed in the first mounting groove, and the two sides of the first magnetic attractor are opposite magnetic poles. An end protective shell is provided with a first slot that is adapted to the end of the panel, and the first slot engages with the end of the panel.
2. The splicing panel as described in claim 1, characterized in that, It also includes a sleeve, the first mounting groove having a first sidewall and a second sidewall, the first sidewall and the second sidewall being disposed opposite to each other, the first sidewall having a first protrusion, the second sidewall having a second protrusion, the first protrusion extending into one end of the sleeve, the second protrusion extending into the other end of the sleeve, the first magnetic member being disposed inside the sleeve and rotatably located between the first protrusion and the second protrusion.
3. The splicing panel as described in claim 1, characterized in that, The end protective shell is provided with a first extension and a second extension at both ends, and the first extension and the second extension are respectively provided with a first mounting hole and a second mounting hole. The panel has a second mounting groove and a third mounting groove on both sides of its end. The second mounting groove has a third sidewall, on which a third protrusion is provided, and the third protrusion is connected to the first mounting hole; The third mounting groove has a fourth sidewall, and the fourth sidewall is provided with a fourth protrusion; the fourth protrusion is connected to the second mounting hole.
4. The splicing panel as described in claim 3, characterized in that, The end protective shell includes: A protective shell body, the protective shell having a first end and a second end; A first connector is connected to the first end to form the first extension, and the first mounting hole is provided at the end of the first connector away from the protective shell body. The second connector is connected to the second end to form the second extension, and the second mounting hole is provided at the end of the second connector away from the protective shell body.
5. The splicing panel as described in claim 4, characterized in that, The first end is provided with a fifth protrusion, and the first connector is provided with a third mounting hole at the end opposite to the fifth protrusion, and the fifth protrusion is connected to the third mounting hole; The second end is provided with a sixth protrusion, and the second connector is provided with a fourth mounting hole at the end opposite to the sixth protrusion, and the sixth protrusion is connected to the fourth mounting hole.
6. The splicing panel as described in claim 4, characterized in that, The first end is provided with a first inclined surface, and the first connector is provided with a third extension at the end opposite to the first inclined surface, the third extension abutting against the first inclined surface; The second end is provided with a second inclined surface, and the second connector is provided with a fourth extension at the end opposite to the second inclined surface, the fourth extension abutting against the second inclined surface.
7. The splicing panel as described in claim 4, characterized in that, The first connector is connected to the first end by an adhesive; the second connector is connected to the second end by an adhesive.
8. The splicing panel as described in claim 3, characterized in that, include: A first protective sleeve is disposed on the edge of the panel body and covers one of the first mounting slots and the first extension. The second protective sleeve is disposed on the edge of the panel body and covers another of the first mounting slots and the second extension.
9. A building block toy, characterized in that, Includes the splicing panel as described in any one of claims 1-8, wherein the splicing toy is assembled from the splicing panel.