Slideway toy

By setting end baffles and inner wall ribs on the end tracks of the slide toys, the problem of the ball coming off the end of the track is solved, realizing stable delivery and flexible assembly of the slide toys, and improving the smoothness of use and the playing experience.

CN223995372UActive 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 slide toys are prone to the ball detaching from the end of the slide during the sliding process, resulting in uncertainty in movement, interrupting the play process, and reducing the smoothness of use and the play experience.

Method used

End baffles are installed on the end slides of the slide toy, and ribs are installed on the inner walls of the head and tail slides. Combined with the magnetic assembly characteristics of the magnetic frame, the slide can be flexibly assembled and its shape can be changed, ensuring that the ball is stably transported along the preset path.

Benefits of technology

It effectively prevents the ball from coming off the end of the slide, ensures the ball is stably transported along the preset slide path, improves the smoothness of use of the slide toy and the overall play experience, and enhances structural stability and durability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a slide way toy which comprises a plurality of magnetic force frames and a slide way assembly. The slide way assembly comprises an end slide way and a middle slide way and is detachably connected to the magnetic frame, the end slide way comprises a main slide way and end blocking walls, side blocking walls are arranged on the two sides, in the vertical extending direction, of the main slide way correspondingly, the height of the end blocking walls is larger than that of the side blocking walls, and the upper edges of the end blocking walls and the upper edges of the side blocking walls are in smooth transition. The middle slide way is detachably connected to the magnetic frame, and the middle slide way is communicated with the end slide ways. According to the slideway toy, the end blocking walls are arranged on the end slideways, so that the balls are effectively prevented from being disengaged from the ends of the slideways, it is guaranteed that the balls are stably conveyed along the preset slideway path, the playing process is prevented from being interrupted, meanwhile, the end slideways and the middle slideways are detachably connected to the magnetic frame, and the magnetic splicing characteristic of the magnetic frame is matched; the flexible assembly and shape change of the slideway are realized, and the use smoothness and the overall playing experience of the slideway toy are improved.
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Description

Technical Field

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

[0002] In related technologies, slide toys include several magnetic frames, several inner slides, several outer slides, and a feed shell. Multiple magnetic frames can be magnetically assembled to form a support for the slides. The inner slides are located inside the magnetic frames. The outer slides are located outside the magnetic frames. Several inner and outer slides can be joined to form a structurally connected complete slide, and multiple complete slides can be installed on a support structure composed of multiple magnetic frames. The feed shell has a drop hole and can be supported on the magnetic frames to guide the ball, allowing it to leave the feed shell through the drop hole and enter the complete slide. However, during play, when a ball falls from the feed shell onto the corresponding slide, the lack of effective baffle structures at both ends of the slide causes uncertainty in its movement. The ball may fall from an opening opposite the direction of the slide's extension, failing to ensure the ball completes its journey along the predetermined slide path and interrupting the play process, thus reducing the smoothness of use and the overall play experience of the slide toy.

[0003] In view of the above, this utility model is hereby proposed. Utility Model Content

[0004] This utility model provides a slide toy.

[0005] This application provides the following technical solution:

[0006] A slide toy, comprising:

[0007] Multiple magnetic frames are connected to each other to form different shapes. Each magnetic frame has a cavity inside and multiple hollow openings are provided on the magnetic frame to connect the cavities.

[0008] A slide assembly includes an end slide and a middle slide. The end slide is located within the cavity and is detachably connected to the magnetic frame. The end slide includes a main slide and an end baffle. One end of the main slide extends to a cutout in the magnetic frame and has a passage. The end baffle is located at the other end of the main slide. Side baffles are provided on both sides of the main slide along the vertical extension direction. The height of the end baffle is greater than that of the side baffles, and the upper edges of the end baffles and the side baffles transition smoothly. The middle slide is located outside the magnetic frame or within the cavity of the magnetic frame. The middle slide is detachably connected to the magnetic frame. Passages are provided at both ends of the middle slide, and the middle slide communicates with the end slide.

[0009] The end slide rail includes a head end slide rail;

[0010] The inner wall of the head end slide is provided with a first rib;

[0011] The inner wall of the main slide of the head end slide is a complete arc surface, and the first rib extends from the inner wall of the main slide to the inner wall of the end baffle.

[0012] The first rib has a guide edge that extends smoothly from the end baffle toward the inner wall of the main slide on the side opposite to the inner wall of the head end slide.

[0013] Optionally, the first rib includes two sides;

[0014] The two sides are connected at one end, and the two sides are respectively connected to the inner wall of the main slide and the inner wall of the end baffle.

[0015] The guide edge extends smoothly from the end of one side edge to the end of the other side edge;

[0016] The guide edge is an arc-shaped edge that is recessed towards the connection point between the main slide and the end baffle.

[0017] Optionally, the length of the side connecting the main slide is greater than the length of the side connecting the end baffle.

[0018] Optionally, the first rib is located on the plane of symmetry of the head end slide.

[0019] Optionally, when the head end slide is installed in the cavity of the magnetic frame, the first rib is located directly below a cutout in the magnetic frame.

[0020] Optionally, the slide toy includes a feed housing;

[0021] The feed shell is detachably connected to the magnetic frame, and the feed shell communicates with the hollow opening located at the top of the first rib.

[0022] Optionally, the end slide rail includes a tail end slide rail;

[0023] The inner wall of the tail end slide is provided with a second rib;

[0024] The tail end slide has a material discharge port on the main slide, and the second rib is set on the end wall of the tail end slide.

[0025] Optionally, the magnetic frame has a cutout at the top of the discharge port, one end of the second rib extends into the cutout, and the other end of the second rib extends to the edge of the discharge port.

[0026] Optionally, an inclined guide section is provided at the end of the second rib away from the material discharge port;

[0027] The width of the inclined guide section of the second rib gradually decreases in the direction from near the discharge port to away from the discharge port;

[0028] The second rib has a gap at the end away from the discharge port and at the upper edge of the end baffle.

[0029] By adopting the above technical solution, this application has the following beneficial effects:

[0030] The slide toy of this application effectively prevents the ball from falling out of the slide end by setting end baffles on the end slide, ensuring that the ball is stably transported along the preset slide path and avoiding interruption of the play process. At the same time, the end slide and the middle slide can be detachably connected to the magnetic frame. With the magnetic assembly characteristics of the magnetic frame, the slide can be flexibly assembled and its shape can be changed, which not only improves the smoothness of use of the slide toy and the overall play experience. Attached Figure Description

[0031] 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.

[0032] Figure 1 A schematic diagram illustrating the assembly structure of a slide toy provided in this embodiment of the utility model;

[0033] Figure 2 This is a schematic diagram of the head end slide of the slide toy provided in an embodiment of the present utility model;

[0034] Figure 3 A schematic diagram of the tail slide of the slide toy provided in this embodiment of the utility model;

[0035] Figure 4 This is a schematic diagram of the feed shell of the slide toy provided in an embodiment of the present invention.

[0036] In the figure: magnetic frame 1, hollow opening 11, slide assembly 2, end slide 21, main slide 211, end baffle 212, middle slide 22, head slide 21a, first rib 21a1, guide edge 21a11, tail slide 21b, second rib 21b1, inclined guide section 21b11, material drop port 21b2, feed shell 3, ring rib 31. Detailed Implementation

[0037] 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.

[0038] 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.

[0039] 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.

[0040] See Figures 1 to 4As shown, this application embodiment provides a slide toy, including: multiple magnetic frames 1 and slide assembly 2. Each of the magnetic frames 1 is attracted and connected to each other to form different shapes, and each magnetic frame 1 has a cavity formed inside, and multiple hollow openings 11 communicating with the cavities are provided on the magnetic frame 1. The slide assembly 2 includes an end slide 21 and a middle slide 22. The end slide 21 is located inside the cavity and is detachably connected to the magnetic frame 1. The end slide 21 includes a main slide and an end baffle 212. One end of the main slide extends to a hollow opening 11 of the magnetic frame 1 and has a passage. The end baffle 212 is disposed at the other end of the main slide. Side baffles are respectively provided on both sides of the main slide along the vertical extension direction. The height of the end baffle 212 is greater than that of the side baffles, and the upper edges of the end baffle 212 and the side baffles are smoothly transitioned. The middle slide 22 is located outside the magnetic frame 1 or inside the cavity of the magnetic frame 1. The middle slide 22 is detachably connected to the magnetic frame 1. Both ends of the middle slide 22 are provided with passages. The middle slide 22 and the end slide 21 are connected. The slide toy of this application effectively prevents the ball from falling out of the end of the slide by setting an end baffle 212 on the end slide 21, ensuring that the ball is stably transported along the preset slide path and avoiding interruption of the play process. At the same time, the end slide 21 and the middle slide 22 are detachably connected to the magnetic frame 1. With the magnetic assembly characteristics of the magnetic frame 1, the slide can be flexibly assembled and its shape can be changed, which also improves the smoothness of use of the slide toy and the overall play experience.

[0041] In one possible implementation, the end slide 21 includes a head slide 21a, the inner wall of which is provided with a first rib 21a1, the inner wall of the main slide of the head slide 21a is a complete arc surface, the first rib 21a1 extends from the inner wall of the main slide to the inner wall of the end baffle 212, and the side of the first rib 21a1 facing away from the inner wall of the head slide 21a has a guide edge 21a11 that extends smoothly from the end baffle 212 to the inner wall of the main slide. The first rib 21a1 enhances the overall structural strength of the head end slide 21a, improving its resistance to deformation and service life. The side of the first rib 21a1 facing away from the inner wall of the head end slide 21a is its upper edge, which has a guide edge 21a11 extending smoothly from the end baffle 212 towards the inner wall of the main slide. When the ball falls onto the end slide 21 through the hollow opening 11 of the magnetic frame 1, the guide edge 21a11 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.

[0042] The first rib 21a1 includes two sides connected at one end. The two sides are respectively connected to the inner wall of the main slide and the inner wall of the end baffle 212. The guide edge 21a11 extends smoothly from the end of one side to the end of the other side. The guide edge 21a11 is an arc-shaped edge that is recessed towards the connection part of the main slide and the end baffle 212. The two sides of the first rib 21a1 are respectively connected to the inner wall of the main slide and the inner wall of the end baffle 212. This not only further strengthens the connection stability between the head slide 21a and the end baffle 212 and improves the overall structural strength, but also forms an arc-shaped guide edge 21a11 that is recessed towards the connection between the main slide and the end baffle 212. This provides precise guidance and limiting for the falling ball, preventing it from bouncing or deviating from its trajectory after contacting the end baffle 212. This allows the ball to enter the main slide more smoothly along the arc-shaped guide edge 21a11, further reducing sliding resistance and energy loss, ensuring the stability of the ball's sliding speed, and improving the smoothness of playing with the slide toy.

[0043] The length of the side connecting the main slide is greater than the length of the side connecting the end baffle 212, so that the structural distribution of the first rib 21a1 is adapted to the sliding trajectory of the ball, forming a longer support and guide zone in the area near the main slide, further enhancing the guiding and limiting effect on the ball's sliding process, preventing the ball from deviating within the main slide. At the same time, this length difference design allows the ribs to be stressed more evenly, reducing local stress concentration, further improving the structural stability and durability of the head slide 21a, and ensuring the reliability of the slide toy for long-term use.

[0044] The first rib 21a1 is located on the plane of symmetry of the head end slide 21a. The plane of symmetry refers to a plane that divides the head end slide 21a into two symmetrical parts with identical structures along the width direction. This plane also passes through the central axis of the main slide and the end baffle 212, so that the structures on both sides of the head end slide 21a are mirrored with respect to this plane. The first rib 21a1 is located on the plane of symmetry of the head slide 21a, which allows the guiding force of the first rib 21a1 on the ball to be evenly distributed along the center of the slide. When the ball falls into the head slide 21a, it can be accurately guided to the center of the main slide trajectory, avoiding the ball from deviating to one side of the slide or even leaving the slide due to uneven force. At the same time, the symmetrical layout makes the structural reinforcement effect of the first rib 21a1 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 slide 21a, and ensuring the smoothness of playing with the slide toy.

[0045] With the head end slide 21a installed in the cavity of the magnetic frame 1, the first rib 21a1 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 guide area of ​​the first rib 21a1, 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 guide range of the first rib 21a1, reducing energy loss during the ball's slide. At the same time, it allows the impact force of the falling ball to be concentrated on the first rib 21a1, reducing wear on other areas of the slide, extending the overall service life of the slide, and ensuring the continuity and stability of the slide toy.

[0046] In one possible implementation, the slide toy includes a feeding shell 3, which is detachably connected to the magnetic frame 1. The feeding shell 3 communicates with a cutout 11 located at the top of the first rib 21a1. The upper shell of the feeding shell 3 is funnel-shaped, which effectively enlarges the diameter of the ball's inlet, facilitating quick ball placement by the player and preventing spillage or jamming. A ring rib 31 is provided at the bottom of the feeding shell 3. The outline of the ring rib 31 matches the shape of the cutout 11 on the magnetic frame 1, and the ring rib 31 engages with the cutout 11 located at the top of the first rib 21a1. This allows for flexible adjustment of the installation position and combination of the feeding shell 3 according to play needs, expanding the assembly and play methods of the slide toy and enhancing overall playability and operational flexibility.

[0047] In one possible implementation, the end slide 21 includes a tail slide 21b, the inner wall of which is provided with a second rib 21b1, and a material discharge port 21b2 is provided on the main slide of the tail slide 21b. The second rib 21b1 is disposed on the end baffle 212 of the tail slide 21b. The slide toy can be assembled into multiple long slides by the slide assembly 2, wherein the tail slide 21b of one long slide can be correspondingly disposed at the hollow opening 11 above the head slide 21a of another long slide. When the ball slides to the end of the tail slide 21b, the second rib 21b1 can effectively restrict the ball's trajectory, preventing the ball from spinning and getting stuck in the tail slide 21b. At the same time, the second rib 21b1 can guide the ball upward, quickly reduce the ball's speed, and guide the ball to fall smoothly into the head slide 21a on the corresponding long slide below. This prevents the ball from staying at the end of the tail slide 21b for a long time, ensuring the continuity of the ball's transport between multiple long slides and improving the smoothness of playing with the slide toy.

[0048] In one possible implementation, the magnetic frame 1 has a cutout 11 located at the top of the discharge port 21b2, one end of the second rib 21b1 extends toward the cutout 11, and the other end of the second rib 21b1 extends to the edge of the discharge port 21b2. When the tail slide 21b of one long slide is correspondingly set at the hollow opening 11 above the head slide 21a of another long slide, the ball that slides to the end of the tail slide 21b can be precisely guided to the drop port 21b2 under the guiding and limiting action of the second rib 21b1. This not only prevents the ball from spinning and getting stuck at the end of the slide, but also quickly adjusts the ball's motion posture and reduces its sliding speed through the guiding action of the second rib 21b1, allowing the ball to smoothly pass through the drop port 21b2 and fall into the corresponding head slide 21a below through the hollow opening 11 at the top of the magnetic frame 1. This prevents the ball from staying at the end of the tail slide 21b for a long time, ensuring the continuity of the ball's transport between multiple spliced ​​slides and improving the smoothness and connection stability of the slide toy.

[0049] An inclined guide section 21b11 is provided at the end of the second rib 21b1 away from the material discharge port 21b2. The width of the inclined guide section 21b11 gradually decreases in the direction from near the material discharge port 21b2 to away from the material discharge port 21b2. There is a gap between the end of the second rib 21b1 away from the material discharge port 21b2 and the upper edge of the end baffle 212. When the ball slides to the end of the tail slide 21b, the inclined guide section 21b11 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 21b1 and the upper edge of the end baffle 212 provides the ball with a suitable buffer space. With the guiding effect of the inclined guide section 21b11, 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 21b2 and the hollow opening 11 at the top of the magnetic frame 1 into the corresponding head slide 21a below. This avoids the problem of the ball staying at the end of the tail slide 21b for a long time, further ensuring the continuity of the transport between multiple spliced ​​slides and improving the smoothness and fun of playing with slide toys.

[0050] 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 slide toy characterized by, The application relates to a magnetic frame assembly. The magnetic frame assembly comprises a plurality of magnetic frames which are connected to each other by magnetic attraction to form different shapes, and a plurality of hollow cavities are formed in each of the magnetic frames, and a plurality of hollow openings which are in communication with the hollow cavities are arranged on the magnetic frames. The assembly further comprises a slide assembly which comprises an end slide and a middle slide, the end slide is arranged in the hollow cavity and detachably connected to the magnetic frame, the end slide comprises a main slide and an end baffle, one end of the main slide extends to a hollow opening of the magnetic frame and is provided with a through hole, the end baffle is arranged at the other end of the main slide, side baffles are arranged on both sides of the main slide along the vertical extension direction, the height of the end baffle is greater than that of the side baffles, and the upper edges of the end baffle and the side baffles are smoothly connected, the middle slide is arranged outside the magnetic frame or in the hollow cavity of the magnetic frame, the middle slide is detachably connected to the magnetic frame, through holes are arranged at both ends of the middle slide, and the middle slide is in communication with the end slide. The end slide comprises a head end slide. A first rib is arranged on the inner wall of the head end slide. The inner wall of the main slide of the head end slide is a complete arc surface, and the first rib extends from the inner wall of the main slide to the inner wall of the end baffle. The side of the first rib away from the inner wall of the head end slide is provided with a guide edge which smoothly extends from the inner wall of the end baffle to the inner wall of the main slide.

2. The slide toy of claim 1, wherein The first rib comprises two side edges. One end of each of the two side edges is connected to the inner wall of the main slide and the inner wall of the end baffle. The guide edge smoothly extends from the end of one side edge to the end of the other side edge. The guide edge is an arc-shaped edge which is recessed to one side of the connecting part of the main slide and the end baffle.

3. The slide toy of claim 2, wherein The length of the side edge connecting the main slide is greater than that of the side edge connecting the end baffle.

4. The slide toy of claim 2, wherein The first rib is located on the symmetry plane of the head end slide.

5. The slide toy of claim 4, wherein In the state that the head end slide is arranged in the hollow cavity of the magnetic frame, the first rib is located directly below a hollow opening of the magnetic frame.

6. The slide toy of claim 5, wherein The assembly further comprises a feeding shell. The feeding shell is detachably connected to the magnetic frame, and the feeding shell is in communication with the hollow opening located at the top of the first rib.

7. The slide play set according to claim 1, wherein The end slide comprises a tail end slide. A second rib is arranged on the inner wall of the tail end slide. A feeding opening is arranged on the main slide of the tail end slide, and the second rib is arranged on the end baffle of the tail end slide.

8. The slide toy of claim 7, wherein, The magnetic frame is provided with a hollow opening located at the top of the feeding opening, one end of the second rib extends to the hollow opening, and the other end of the second rib extends to the edge of the feeding opening.

9. The slide toy of claim 8, wherein, An inclined guide section is arranged at the end of the second rib away from the feeding opening. The width of the inclined guide section gradually decreases in the direction from the feeding opening to the end of the second rib away from the feeding opening. The second rib is provided with a gap between the end away from the feeding opening and the upper edge of the end baffle.