Track and slideway combined toy

By introducing detachable track and slide components into the magnetic frame and slide combination toy, a dual play mode of track and slide is achieved, solving the problem of the limited play mode of existing toys, enhancing the toy's fun and practicality, and meeting the diverse needs of children.

CN223995389UActive Publication Date: 2026-03-17SHANTOU JINXING PLASTICS
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2026-02-06
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

Existing magnetic frame and slide combination toys offer limited gameplay and lack diversity. This leads to children becoming bored after quickly becoming familiar with the entire play process, making it difficult to maintain their interest in the long term and failing to meet their diverse needs for educational toys during their growth.

Method used

Design a track and slide combination toy that uses multiple magnetic frames to magnetically connect and form different shapes. It is equipped with detachable and smoothly connectable track and slide components, realizing dual play with both tracks and slides, enhancing the toy's practicality and fun.

Benefits of technology

By designing diverse ways to play, the toys are made more fun and practical, extending their usage frequency and lifespan, and meeting children's intellectual development needs during their growth.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a track and slide way combined toy which comprises a plurality of magnetic force frames, a track assembly and a slide way assembly. The magnetic frames are mutually attracted and connected to form different shapes, a cavity is formed in each magnetic frame, each magnetic frame is provided with a plurality of side faces, and each side face is provided with a hollowed-out opening communicated with the corresponding cavity. The track assembly comprises a plurality of track blocks, track grooves are formed in the track blocks, all the track blocks are located on the outer side of the magnetic frame, the track blocks are detachably connected to the magnetic frame, and the multiple track blocks are sequentially and smoothly spliced. The slide way assembly comprises a plurality of slide way blocks, the slide way blocks are provided with sliding grooves, all the slide way blocks are detachably connected to the magnetic frame, and the slide way blocks are sequentially and smoothly spliced. According to the track and slide way combined toy, the multiple magnetic force frames are magnetically attracted and spliced into different shapes, the track assembly and the slide way assembly which are detachable and can be smoothly spliced are arranged, the track and slide way dual playing methods are achieved, the playing methods are more diversified, and the practicability and interestingness of the toy are greatly improved.
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Description

Technical Field

[0001] This utility model relates to the field of toy technology, specifically to a track and slide combination toy. Background Technology

[0002] In the realm of children's educational toys, magnetic frame and slide combination toys are particularly popular with children. These toys typically consist of a magnetic frame and a slide assembly. Multiple magnetic frames can be quickly attracted and joined together using magnetic attraction to flexibly assemble into various shapes of supports. The slide assembly can be fitted and connected to the assembled magnetic frame supports to form a complete slide. Children can place rolling elements such as balls on the slide and slide along it to complete their play. These toys can, to some extent, develop children's fine motor skills and spatial reasoning abilities, satisfying the early educational play needs of young children.

[0003] However, these toys offer relatively limited gameplay and lack diverse expansion possibilities. The support structure after the magnetic frame is assembled serves only as an installation carrier for the slide, failing to further explore the multifunctional application value of the assembled structure. Due to the lack of variation and innovation in gameplay, children easily become bored after quickly becoming familiar with the entire play process, making it difficult to maintain interest in the toy in the long term. This leads to a decrease in the frequency of toy use and a shorter usage period, failing to fully meet children's continuous needs for fun and variety in educational toys as they grow.

[0004] In view of the above, this utility model is hereby proposed. Utility Model Content

[0005] This utility model provides a track and slide combination toy.

[0006] This application provides the following technical solution:

[0007] A track-and-slide combination toy, comprising:

[0008] Multiple magnetic frames are connected to each other to form different shapes. Each magnetic frame has a cavity and multiple sides. Each side is provided with a hollow opening that connects to the cavity.

[0009] A track assembly comprising multiple track blocks, each track block having a track groove, each track block being located outside the magnetic frame and detachably connected to the magnetic frame, the multiple track blocks being smoothly spliced ​​together sequentially;

[0010] A slide rail assembly, comprising multiple slide rail blocks, each slide rail block having a groove, each slide rail block being detachably connected to the magnetic frame, the multiple slide rail blocks being smoothly spliced ​​together in sequence.

[0011] Optionally, each of the track blocks is disposed on the side of the magnetic frame, and the track groove is disposed on the side of the track block opposite to the magnetic frame;

[0012] In each of the slide blocks, some slide blocks are located inside the cavity, and some slide blocks are located outside the magnetic frame. The slide assembly is configured to pass through the corresponding hollow opening of the magnetic frame.

[0013] Within the same magnetic frame, the side covered by the track block and the side penetrated by the slide assembly are different sides.

[0014] Optionally, each of the slide blocks includes an inner slide block and an outer slide block;

[0015] The internal slide block is located inside the cavity;

[0016] The outer slide block is located outside the magnetic frame, the outer slide block and the magnetic frame are detachably connected, and the outer slide block and the inner slide block are in communication.

[0017] The magnetic frame has a slot on its inner side, and the internal slide block has posts at both ends, which are inserted into the corresponding slots.

[0018] Optionally, a plug-in slot is provided on the side of the magnetic frame;

[0019] The end of the external slide block is provided with an end plate;

[0020] A convex shaft is provided on the end plate, the convex shaft is inserted into the insertion slot, and the end plate is attached to the side of the magnetic frame.

[0021] Optionally, multiple slide blocks can be sequentially joined to form a long slide;

[0022] The upstream end of the long slide is provided with a head end slide;

[0023] The head end slide is located within the cavity. The head end slide includes a main head end slide and a head end baffle. One end of the main head end slide extends to a hollow opening in the magnetic frame and has a passage. The head end baffle is located at the other end of the main head end slide. Side baffles are provided on both sides of the main head end slide along the vertical extension direction. The height of the head end baffle is greater than that of the side baffles, and the upper edges of the head end baffle and the side baffles transition smoothly.

[0024] Optionally, a tail end slide is provided at the downstream end of the long slide;

[0025] The tail end slide is located inside the cavity of the magnetic frame, and a material discharge port is provided on the tail end slide.

[0026] Optionally, a tail end baffle is provided at the end of the tail end slide, and the tail end baffle is located at the edge of the material discharge port.

[0027] Optionally, the track block has a main block and insert ring ribs, the main block is provided with a track groove, and the insert ring ribs are provided on the surface of the main block;

[0028] With the track block and the magnetic frame connected, the insert ring is inserted into the cutout.

[0029] Optionally, each of the track blocks includes a plate-shaped track block;

[0030] The plate-shaped track block includes a plate-shaped main block;

[0031] The main block is provided with the insert ring rib on one side along the thickness direction, and the main block is provided with the track groove on the other side along the thickness direction;

[0032] The area of ​​the main block is equal to the area of ​​any side of the magnetic frame.

[0033] Optionally, the track block includes a fan-shaped track block and a recessed track block;

[0034] The cross-section of the fan-shaped track block is fan-shaped. The main body of the fan-shaped track block has two vertically connected first end faces and an outwardly convex arc surface that connects the two first end faces respectively. The track groove is provided on the outwardly convex arc surface, and the insert ring rib is provided on the first end face.

[0035] The track block includes a recessed track block. The main body of the recessed track block has two vertically connected second end faces and an inwardly concave arc surface located between the two second end faces. The track groove is provided on the inwardly concave arc surface, and the insert ring rib is provided on the second end face.

[0036] By adopting the above technical solution, this application has the following beneficial effects:

[0037] The track and slide combination toy of this application uses multiple magnetic frames to be magnetically assembled into different shapes. It is equipped with detachable and smoothly assembled track and slide components, realizing dual play methods of track and slide, making the play more diverse and greatly enhancing the practicality and fun of the toy. Attached Figure Description

[0038] The accompanying drawings, which form part of this application, are used to provide a further understanding of the present invention. The illustrative embodiments and descriptions of the present invention are used to explain the present invention, but do not constitute an undue limitation of the present invention. Obviously, the drawings described below are merely some embodiments, and those skilled in the art can obtain other drawings based on these drawings without any creative effort.

[0039] Figure 1 A schematic diagram of a track-slide combination toy provided in an embodiment of this utility model;

[0040] Figure 2 A schematic diagram of the structure of the first plate-shaped track block of the track slide combination toy provided in this embodiment of the utility model;

[0041] Figure 3 Another perspective view of the first plate-shaped track block of the track slide combination toy provided in the embodiment of this utility model;

[0042] Figure 4 A schematic diagram of the structure of the second plate-shaped track block of the track slide combination toy provided in this embodiment of the utility model;

[0043] Figure 5 Another perspective view of the second plate-shaped track block of the track slide combination toy provided in this embodiment of the utility model;

[0044] Figure 6 A schematic diagram of the fan-shaped track block structure of the track slide combination toy provided in this embodiment of the utility model;

[0045] Figure 7 Another perspective view of the fan-shaped track block of the track slide combination toy provided in the embodiment of this utility model;

[0046] Figure 8 A schematic diagram of the recessed track block structure of the track slide combination toy provided in this embodiment of the utility model;

[0047] Figure 9 Another perspective view of the recessed track block of the track slide combination toy provided in the embodiment of this utility model;

[0048] Figure 10 A schematic diagram of the feed shell of the track slide combination toy provided in this embodiment of the utility model;

[0049] Figure 11 A schematic diagram of the head slide of the track-slide combination toy provided in this embodiment of the utility model;

[0050] Figure 12 A schematic diagram of the tail slide of the track slide combination toy provided in this embodiment of the utility model;

[0051] Figure 13 A schematic diagram of the external slide block of the track slide combination toy provided in this embodiment of the utility model;

[0052] Figure 14A schematic diagram of the magnetic frame of the track slide combination toy provided in this embodiment of the utility model.

[0053] In the diagram: Magnetic frame 1, cutout 11, slot 12, insertion groove 13, track assembly 2, plate-shaped track block 21, first plate-shaped track block 211, second plate-shaped track block 212, fan-shaped track block 22, first end face 221, convex arc surface 222, recessed track block 23, second end face 231, concave arc surface 232, slide assembly 3, inner slide block 31, insertion post 311, outer slide. Block 32, end plate 321, convex shaft 3211, head end slide 3a, head end main slide 3a1, side baffle 3a11, head end baffle 3a2, first rib 3a3, guide edge 3a31, tail end slide 3b, tail end baffle 3b1, second rib 3b2, inclined guide section 3b21, material drop port 3b3, track groove a, insert ring rib b, magnetic strip c, feed shell 4, ring rib 41, toy car 5. Detailed Implementation

[0054] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions in the embodiments will be clearly and completely described below with reference to the accompanying drawings. The following embodiments are used to illustrate this utility model, but are not intended to limit the scope of this utility model.

[0055] In the description of this utility model, it should be noted that the terms "upper", "lower", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0056] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation" and "connection" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0057] See Figures 1 to 14As shown in the illustration, this application provides a track and slide combination toy, comprising: multiple magnetic frames 1, track components 2, and slide components 3. The magnetic frames 1 are mutually attracted and connected to form different shapes. Each magnetic frame 1 has a cavity and multiple sides, each side having a cutout 11 communicating with the cavity. The track component 2 includes multiple track blocks, each track block having a track groove a. Each track block is located outside the magnetic frame 1 and is detachably connected to the magnetic frame 1. The multiple track blocks are smoothly assembled sequentially. The slide component 3 includes multiple slide blocks, each slide block having a sliding groove. Each slide block is detachably connected to the magnetic frame 1, and the multiple slide blocks are smoothly assembled sequentially. The track and slide combination toy of this application uses multiple magnetic frames 1 to be magnetically assembled into different shapes. It is also equipped with detachable and smoothly assembled track components 2 and slide components 3, realizing dual play methods of track and slide, making the play more diverse and greatly enhancing the practicality and fun of track toys.

[0058] Each track block is disposed on the side of the magnetic frame 1, and the track groove a is provided on the side of the track block facing away from the magnetic frame 1. Among each slide block, some slide blocks are located inside the cavity, and some slide blocks are located outside the magnetic frame 1. The slide assembly 3 is disposed through the corresponding cutout 11 of the magnetic frame 1. In the same magnetic frame 1, the side covered by the track block and the side through which the slide assembly 3 is disposed are different sides. This avoids interference between the track assembly 2 and the slide assembly 3, ensuring smooth assembly and splicing, and makes full use of the space of the magnetic frame 1, further improving the compactness and ease of use of the toy structure.

[0059] In one possible implementation, such as Figure 1 , Figure 11 , Figure 12 and Figure 14As shown, each slide block includes an inner slide block 31 and an outer slide block 32. The inner slide block 31 is located inside the cavity, and the outer slide block 32 is located outside the magnetic frame 1. The outer slide block 32 and the magnetic frame 1 are detachably connected, and the outer slide block 32 and the inner slide block 31 are in communication. A slot 12 is provided on the inner side of the magnetic frame 1, and insertion posts 311 are provided at both ends of the inner slide block 31, which are inserted into the corresponding slots 12. This not only clearly distinguishes the installation position of the slide assembly 3, ensuring the continuous flow of the slide inside and outside the magnetic frame 1 and ensuring smooth sliding, but also improves the assembly stability of the inner slide block 31 through the insertion structure. Simultaneously, the detachable connection of the outer slide block 32 enhances the flexibility of the slide layout, avoids interference between the track assembly 2 and the slide assembly 3, and fully utilizes the cavity and outer space of the magnetic frame 1, further improving the structural compactness and ease of assembly of the toy.

[0060] like Figure 1 , Figure 13 and Figure 14 As shown, the magnetic frame 1 has a plug-in groove 13 on its side, and the end of the external slide block 32 has an end plate 321. A protruding shaft 3211 is provided on the end plate 321, which is inserted into the plug-in groove 13. The end plate 321 fits against the side of the magnetic frame 1. This plug-in connection allows for a quick and precise connection between the external slide block 32 and the magnetic frame 1, ensuring the continuous flow of the slide. Furthermore, the standardized plug-in connection simplifies assembly steps and improves assembly efficiency.

[0061] In one possible implementation, multiple slide blocks are sequentially spliced ​​to form a long slide, and a head end slide 3a is provided at the upstream end of the long slide. The head end slide 3a is located within the cavity, and the head end slide 3a includes a head end main slide 3a1 and a head end baffle 3a2. One end of the head end main slide 3a1 extends to a hollow opening 11 of the magnetic frame 1 and has a passage. The head end baffle 3a2 is provided at the other end of the main slide. Side baffles 3a11 are respectively provided on both sides of the head end main slide 3a1 along the vertical extension direction. The height of the head end baffle 3a2 is greater than that of the side baffles 3a11, and the upper edges of the head end baffle 3a2 and the side baffles 3a11 transition smoothly.

[0062] like Figure 11As shown, the inner wall of the head end main slide 3a1 is provided with a first rib 3a3. The inner wall of the head end main slide 3a1 is a complete arc surface. The first rib 3a3 extends from the inner wall of the head end main slide 3a1 to the inner wall of the head end baffle 3a2. The side of the first rib 3a3 facing away from the inner wall of the head end main slide 3a1 has a guide edge 3a31 that extends smoothly from the head end baffle 3a2 to the inner wall of the head end main slide 3a1. The first rib 3a3 enhances the overall structural strength of the head end slide 3a, improving its resistance to deformation and service life. The side of the first rib 3a3 facing away from the inner wall of the head end main slide 3a1 is its upper edge, which has a guide edge 3a31 extending smoothly from the tail end baffle 3b1 to the inner wall of the head end main slide 3a1. When the ball falls onto the head end slide 3a through the opening 11 of the magnetic frame 1, the guide edge 3a31 efficiently guides the ball, allowing it to quickly and smoothly enter the preset sliding trajectory of the main slide. This effectively reduces ineffective contact between the ball and the inner wall of the slide, lowers energy loss during sliding, ensures the ball maintains a stable sliding speed, and thus guarantees the continuity and fun of playing with the slide toy.

[0063] The first rib 3a3 includes two sides connected at one end. The two sides are respectively connected to the inner wall of the head end main slide 3a1 and the inner wall of the head end baffle 3a2. The guide edge 3a31 extends smoothly from the end of one side to the end of the other side. The guide edge 3a31 is an arc-shaped edge that is recessed towards the connection part of the head end main slide 3a1 and the head end baffle 3a2. The two sides of the first rib 3a3 are respectively connected to the inner wall of the main slide 3a1 at the head end and the inner wall of the head end baffle 3a2. This not only further strengthens the connection stability between the main slide 3a1 at the head end and the head end baffle 3a2, improving the overall structural strength, but also forms an arc-shaped guide edge 3a31 that is recessed towards the connection between the main slide 3a1 at the head end and the head end baffle 3a2. This provides precise guidance and limiting for the falling ball, preventing it from bouncing or deviating from its trajectory after contacting the head end baffle 3a2. This allows the ball to enter the main slide 3a1 at the head end more smoothly along the arc-shaped guide edge 3a31, further reducing sliding resistance and energy loss, ensuring the stability of the ball's sliding speed, and improving the smoothness of playing with the toy.

[0064] The length of the side connecting the main slide rail 3a1 at the head end is greater than the length of the side connecting the head end baffle 3a2, so that the structural distribution of the first rib 3a3 is adapted to the sliding trajectory of the ball. A longer support and guiding range is formed in the area near the main slide rail 3a1 at the head end, which further enhances the guiding and limiting effect on the ball's sliding process and prevents the ball from deviating within the main slide rail 3a1 at the head end. At the same time, the design of this length difference can make the ribs more evenly stressed, reduce local stress concentration, further improve the structural stability and durability of the head slide rail 3a, and ensure the reliability of the toy for long-term use.

[0065] The first rib 3a3 is located on the plane of symmetry of the head end slide 3a. The plane of symmetry refers to a plane that divides the head end slide 3a into two structurally identical symmetrical parts along the width direction. This plane also passes through the central axis of the head end main slide 3a1 and the head end baffle 3a2, so that the structures on both sides of the head end slide 3a are mirror-image distributed with reference to this plane. The first rib 3a3 is located on the symmetrical plane of the head end slide 3a, which allows the guiding force of the first rib 3a3 on the ball to be evenly distributed along the center of the slide. When the ball falls into the head end slide 3a, it can be accurately guided to the center of the main head end slide 3a1, avoiding the ball from deviating to one side of the slide or even leaving the track due to uneven force. At the same time, the symmetrical layout makes the structural reinforcement effect of the first rib 3a3 on the slide more balanced, effectively dispersing the impact force of the ball on the inner wall of the slide during the slide, reducing the risk of local wear and deformation, further improving the structural stability and service life of the head end slide 3a, and ensuring the smoothness of the toy's play.

[0066] like Figure 1 As shown, when the head end slide 3a is installed in the cavity of the magnetic frame 1, the first rib 3a3 is located directly below a cutout 11 of the magnetic frame 1. This allows the ball falling through the cutout 11 to land directly and accurately in the guiding area of ​​the first rib 3a3, shortening the deviation path of the ball during its fall. This prevents the ball from colliding with the inner wall of the slide due to deviation from the guiding range of the first rib 3a3, reducing the energy loss of the ball during its slide. At the same time, it allows the impact force of the falling ball to be concentrated on the first rib 3a3, reducing wear on other areas of the slide, extending the overall service life of the slide, and ensuring the continuity and stability of the toy's play.

[0067] like Figure 1 and Figure 10As shown, the track slide combination toy includes a feeding shell 4, which is detachably connected to the magnetic frame 1. The feeding shell 4 communicates with the opening 11 located at the top of the first rib 3a3. The upper shell of the feeding shell 4 is funnel-shaped, which effectively enlarges the diameter of the ball's feeding opening, making it easier for players to quickly throw the ball and preventing overflow or jamming. The bottom of the feeding shell 4 is provided with a ring rib 41, the outline of which matches the shape of the opening 11 on the magnetic frame 1, and the ring rib 41 of the feeding shell 4 is engaged with the opening 11 located at the top of the first rib 3a3. This allows for flexible adjustment of the installation position and combination form of the feeding shell 4 according to play needs, expanding the assembly and play methods of the slide toy and improving the overall play fun and operational flexibility of the toy.

[0068] In one possible implementation, such as Figure 1 and Figure 12 As shown, a tail slide 3b is provided at the downstream end of the long slide, and the tail slide 3b is located in the cavity of the magnetic frame 1. A discharge port 3b3 is provided on the tail slide 3b. After the ball slides down from the upstream long slide to the tail slide 3b, it falls from the discharge port 3b3 into the head slide 3a of another long slide.

[0069] like Figure 12 As shown, a tail end baffle 3b1 is provided at the end of the tail end slide 3b, and the tail end baffle 3b1 is located at the edge of the material discharge port 3b3. A second rib 3b2 is provided on the inner wall of the tail end baffle 3b1. When the tail slide 3b of one long slide is positioned above the opening 11 above the head slide 3a of another long slide, the ball sliding to the end of the tail slide 3b can be precisely guided to the drop port 3b3 by the guiding and limiting action of the second rib 3b2. This prevents the ball from spinning and getting stuck at the end of the slide, and the guiding action of the second rib 3b2 quickly adjusts the ball's motion posture and reduces its sliding speed, allowing the ball to smoothly pass through the drop port 3b3 and fall into the corresponding head slide 3a below through the opening 11 at the top of the magnetic frame 1. This prevents the ball from staying at the end of the tail slide 3b for a long time, ensuring the continuity of the ball's transport between multiple connecting slides and improving the smoothness and stability of the track toy.

[0070] like Figure 12As shown, an inclined guide section 3b21 is provided at the end of the second rib 3b2 away from the discharge port 3b3. The width of the inclined guide section 3b21 gradually decreases in the direction from near the discharge port 3b3 to away from the discharge port 3b3. There is a gap between the end of the second rib 3b2 away from the discharge port 3b3 and the upper edge of the tail end baffle 3b1. When the ball slides to the end of the tail slide 3b, the inclined guide section 3b21 can provide precise guidance and constraint for the ball. The gradually narrowing width design can gradually regulate the ball's trajectory and prevent the ball from rotating or deviating at the end. The gap between the second rib 3b2 and the upper edge of the tail baffle 3b1 provides the ball with a suitable buffer space. Combined with the guiding effect of the inclined guide section 3b21, the ball's sliding posture can be quickly adjusted and the sliding speed reduced, so that the ball can fall smoothly and steadily through the drop port 3b3 and the hollow opening 11 at the top of the magnetic frame 1 into the corresponding head slide 3a below. This avoids the problem of the ball staying at the end of the tail slide 3b for a long time, further ensuring the continuity of the transport between multiple splicing slides and improving the smoothness and fun of playing with the toy.

[0071] In one possible implementation, such as Figure 3 , Figure 5 , Figure 7 and Figure 9 As shown, the track block has a main body and an insert ring b. The main body has a track groove a, and the insert ring b is located on the surface of the main body. When the track block and the magnetic frame 1 are connected, the insert ring b is inserted into the cutout 11. The insertion and engagement of the cutout 11 and the insert ring b achieves precise positioning and a secure connection of the track block, preventing loosening and displacement during play. It also simplifies assembly and disassembly, does not occupy extra space, and provides stable structural support for the toy.

[0072] The shape of the insert ring b matches that of the cutout 11. When the insert ring b is inserted into the cutout 11, the outer wall of the insert ring b and the inner wall of the cutout 11 are in close contact, which further improves the fit and stability of the connection between the track block and the magnetic frame 1, effectively preventing the track block from shifting or shaking during play. At the same time, the precise shape matching enables the rapid positioning and assembly of the track block, ensuring the flatness of the track groove a splicing of adjacent tracks.

[0073] like Figure 1 , Figure 11 , Figure 12 and Figure 14As shown, each of the track blocks includes a plate-shaped track block 21. The plate-shaped track block 21 includes a plate-shaped main block. The insert ring rib b is provided on one side of the main block along the thickness direction, and the track groove a is provided on the other side of the main block along the thickness direction. The area of ​​the main block is equal to the area of ​​any side of the magnetic frame 1. The plate-shaped track block 21 includes a first plate-shaped track block 211 and a second plate-shaped track block 212. The first plate-shaped track block has a straight track groove a, and the second plate-shaped track block 212 has two curved track grooves a, and the two curved track grooves a are symmetrically arranged with the diagonal of the second plate-shaped track block 212 as the center line. The straight track groove a of the first plate-shaped track block 211 facilitates the construction of a straight track path, while the two symmetrically arranged curved track grooves a of the second plate-shaped track block 212 enable turning or diversion play. The combination of the two enriches the track combination forms, making the assembly more diverse and interesting, further enhancing children's desire to explore and their hands-on creativity. Moreover, the second plate-shaped track block 212 can achieve precise docking of at least one of the curved track grooves a with the track grooves a on the adjacent track block whether it is installed in the front or back, reducing the difficulty of assembly, improving the convenience of assembly and the flexibility of path combination, and enhancing the fun of playing.

[0074] In one possible implementation, such as Figure 6 , Figure 7 , Figure 8 and Figure 9 As shown, the track block includes a fan-shaped track block 22 and a recessed track block 23. The cross-section of the fan-shaped track block 22 is fan-shaped. The main body of the fan-shaped track block 22 has two vertically connected first end faces 221 and an outwardly convex arc surface 222 connecting the two first end faces 221 respectively. The track groove a is provided on the outwardly convex arc surface 222, and the insert ring rib b is provided on the first end face 221. When the first end face 221 of the fan-shaped track block 22 is installed on the magnetic frame 1, one side of the first end face 221 extends out of the magnetic frame 1, and the width of the surface of the first end face 221 extending out of the magnetic frame 1 is equal to the thickness of the plate-shaped track block 21. When the fan-shaped track block 22 and the plate-shaped track block 21 are respectively connected to two perpendicular sides of the same magnetic frame 1, the track groove a on the fan-shaped track block 22 and the plate-shaped track block 21 are smoothly connected. It can achieve smooth docking of the track groove a of the fan-shaped track block 22 and the track groove a of the plate-shaped track block 21 on the vertical side, flexibly construct three-dimensional curves and turning paths, enrich the track combination forms, and improve the flexibility of assembly and the smoothness of play.

[0075] like Figure 8 and Figure 9As shown, the track block includes a recessed track block 23. The main body of the recessed track block 23 has two vertically connected second end faces 231 and an inwardly concave arc surface 232 located between the two second end faces 231. The track groove a is provided on the inwardly concave arc surface 232, and the insert ring rib b is provided on the second end face 231. The recessed track block 23 can be fitted and spliced ​​with the fan-shaped track block 22, or can independently construct an inwardly concave curved path, further enriching the curvature and combination diversity of the track, and enhancing the flexibility and fun of three-dimensional assembly.

[0076] Two second end faces 231 are provided with vertical end faces at their opposite ends. The concave arc surface 232 extends from one vertical end face to the other. The side surface area of ​​the second end face 231 and the magnetic frame 1 are equal. The width of the vertical end face and the thickness of the plate-shaped track block 21 are equal. When the concave track block 23 and the plate-shaped track block 21 are respectively connected to two adjacent magnetic frames 1, the track grooves a on the concave track block 23 and the plate-shaped track block 21 are smoothly connected. When the concave track block 23 and the fan-shaped track block 22 are respectively connected to two perpendicular sides of the same magnetic frame 1, the track grooves a on the concave track block 23 and the fan-shaped track block 22 are smoothly connected. This allows the concave track block 23 to smoothly connect with the plate-shaped track block 21 on the adjacent magnetic frame 1, and also allows for precise connection with the fan-shaped track block 22 on the perpendicular side of the same magnetic frame 1, further expanding the combination form of the three-dimensional track path and improving the splicing flexibility and playability.

[0077] In one possible implementation, such as Figure 1 As shown, the track slide combination toy includes a toy car 5. A magnetic strip c is provided on the bottom wall of the track groove a. The toy car 5 has a drive mechanism (not shown) and magnetic wheels. The magnetic wheels are supported by the magnetic strip c, and the magnetic wheels and magnetic strip c are magnetically attracted to each other. The drive mechanism is connected to the magnetic wheels to drive them to rotate. This track slide combination toy, through the splicing of the magnetic frame 1 and the detachable connection of the track blocks, allows for flexible changes in the shape of the track toy, enhancing its fun. The magnetic wheels attract the magnetic strip c of the track, and the drive mechanism ensures the stable and autonomous operation of the toy car 5. It is easy to assemble, structurally stable, can develop children's hands-on skills, and is simple to operate.

[0078] The preferred embodiments disclosed above are merely illustrative of this application. These preferred embodiments do not exhaustively describe all details, nor do they limit the application to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of this application, thereby enabling those skilled in the art to better understand and utilize this application. This application is limited only by the claims and their full scope and equivalents.

Claims

1. A track and slide combination toy characterized by, The utility model relates to a magnetic frame set, including: a plurality of magnetic force frame, each magnetic force frame is mutually adsorbed and is connected and forms different shapes, and the cavity is formed in each magnetic force frame, and the magnetic force frame has a plurality of side surfaces, and each side surface is provided with a hollow opening communicating with the cavity; a track assembly, the track assembly includes a plurality of track blocks, the track blocks are provided with track grooves, each track block is located outside the magnetic force frame, and the track blocks are detachably connected to the magnetic force frame, and a plurality of track blocks are sequentially and smoothly spliced; a slide assembly, the slide assembly includes a plurality of slide blocks, the slide blocks have slide grooves, each slide block is detachably connected to the magnetic force frame, and a plurality of slide blocks are sequentially and smoothly spliced.

2. The track-and-slide combination toy of claim 1, wherein Each track block is arranged on the side surface of the magnetic force frame, and the track block is provided with the track groove on the side away from the magnetic force frame; In each slide block, part of the slide blocks is located in the cavity, and part of the slide blocks is located outside the magnetic force frame, and the slide assembly is arranged through the hollow opening of the corresponding magnetic force frame; Wherein, in the same magnetic force frame, the side surface covered by the track block and the side surface penetrated by the slide assembly are different side surfaces.

3. The track-and-slide combination toy of claim 2, wherein, Each slide block includes an internal slide block and an external slide block; The internal slide block is located in the cavity; The external slide block is located outside the magnetic force frame, and the external slide block and the magnetic force frame are detachably connected, and the external slide block and the internal slide block are in communication; Wherein, the inside of the magnetic force frame is provided with a slot, and the two ends of the internal slide block are provided with a plug column, and the plug column is inserted into the corresponding slot.

4. The track-and-slide combination toy of claim 3, wherein The side surface of the magnetic force frame is provided with a plug-in slot; The end of the external slide block is provided with an end plate; The end plate is provided with a convex shaft, the convex shaft is inserted into the plug-in slot, and the end plate is attached to the side surface of the magnetic force frame.

5. The track slide combination toy of claim 2, wherein, A plurality of slide blocks are sequentially spliced to form a long slide; The upstream end of the long slide is provided with a head-end slide; The head-end slide is located in the cavity, and the head-end slide includes a head-end main slide and a head-end blocking wall, one end of the head-end main slide extends to a hollow opening of a magnetic force frame, and has a through hole, the head-end blocking wall is arranged at the other end of the main slide, and the head-end main slide is provided with side blocking walls on both sides along the vertical extension direction, the height of the head-end blocking wall is greater than that of the side blocking walls, and the upper edges of the head-end blocking wall and the side blocking walls are smoothly transitioned.

6. The track-and-slide combination toy of claim 5, wherein, The downstream end of the long slide is provided with a tail-end slide; The tail-end slide is located in the cavity of a magnetic force frame, and the tail-end slide is provided with a material falling opening.

7. The track-and-slide combination toy of claim 6, wherein, The end of the tail-end slide is provided with a tail-end blocking wall, and the tail-end blocking wall is located at the edge of the material falling opening.

8. The track slide combination toy of claim 1, wherein, The track block has a main block and an insertion ring muscle, the main block is provided with a track groove, and the insertion ring muscle is arranged on the surface of the main block; In the connected state of the track block and the magnetic force frame, the insertion ring muscle is inserted into the hollow opening.

9. The track slide combination toy of claim 8, wherein, Each track block includes a plate-shaped track block; The plate-shaped track block includes a plate-shaped main block; One side of the main block along the thickness direction is provided with the insertion ring muscle, and the other side of the main block along the thickness direction is provided with the track groove; The area of the main block is equal to the area of any side of the magnetic force frame.

10. The track slide combination toy of claim 9, wherein, The track blocks include sector track blocks and concave track blocks. The cross section of the sector track block is sector-shaped, the main block of the sector track block has two first end faces connected perpendicularly and outer convex arc faces connecting the two first end faces respectively, the track slots are arranged on the outer convex arc faces, and the insertion ring ribs are arranged on the first end faces. The track blocks include concave track blocks, the main block of the concave track block has two second end faces connected perpendicularly and an inner concave arc face between the two second end faces, the track slots are arranged on the inner concave arc face, and the insertion ring ribs are arranged on the second end faces.