一种折叠滑板车
By designing an adjustable control lever and gear mechanism, the system enables switching between gliding, pushcart, and riding modes, solving the problem of limited functionality in existing scooters, meeting the diverse needs of children as they grow, and extending their lifespan.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIAXING XIAOHUZI BIKE FACTORY CO LTD
- Filing Date
- 2025-08-25
- Publication Date
- 2026-07-17
AI Technical Summary
Existing children's scooters have limited functionality and cannot meet the different needs of children as they grow, lacking a design that allows for multiple mode switching.
A folding scooter was designed that allows switching between gliding mode, pushcart mode, and riding mode by adjusting the combination of components and drive components. The different functions can be switched using an adjustable control lever, threaded connection, and gear mechanism.
The scooter can easily switch modes according to usage scenarios and needs, meeting the diverse needs of children during their growth and extending the product's lifespan.
Smart Images

Figure CN224511341U_ABST
Abstract
Claims
1. A folding scooter comprising a base (1), characterized in that: The base (1) has a front wheel (2) installed on one side of its bottom, and a control lever (3) for controlling the front wheel (2) is provided on the top of the base (1) on that side. A groove (4) is provided in the middle area of the top of the base (1), and an adjustment component (5) is provided in the groove (4). A seat cushion (6) is connected to the adjustment component (5). The base (1) has a rear wheel (7) at the bottom of the other side, and a drive component (8) for driving the rear wheel (7) is provided on the top of the base (1) on that side. The adjusting component (5) includes a first cylindrical body (501), a first movable rod (502), a docking screw block (503), a second cylindrical body (504), a second movable rod (505), a ring (506), an annular groove (507), a locking block (508), a threaded insert rod (509), and a threaded hole (510). The first cylindrical body (501) is rotatably connected to one side of the groove (4), and the first movable rod (502) is slidably connected inside the first cylindrical body (501). The docking screw block (503) is rotatably connected to the end of the first movable rod (502). The second cylindrical bodies (504) are rotatably connected to both sides of the outer wall of the first cylindrical body (501), and each second cylindrical body (504) has a sliding... A second movable rod (505) is connected, and a ring (506) is threadedly connected to the outside of each second movable rod (505) and the first movable rod (502). A ring groove (507) is opened on each ring (506), and several locking blocks (508) are engaged and slidably connected in each ring groove (507). The end of each locking block (508) is fixedly connected to the end of the first cylinder (501) and the end of the second cylinder (504). A threaded insert rod (509) is rotatably connected to the end of the second movable rod (505). A threaded hole (510) is threadedly connected to the end of the threaded insert rod (509), and the threaded holes (510) are evenly distributed in the groove (4). The drive component (8) includes a mounting groove (801), a foot pedal (802), a rack (803), a gear ring (804), a locking block (805), a locking spring (806), a ratchet (807), a first rotating shaft (808), a first fixed seat (809), a cylinder (810), a return spring (811), a plug rod (812), a nut (813), a slot (814), a second rotating shaft (815), and a second fixed seat (816). The base (1) has a mounting groove on each of its two top sides. 801), and each mounting slot (801) is rotatably connected to a foot pedal (802), and each foot pedal (802) is connected to a rack (803), each rack (803) is meshed with a gear ring (804), and each gear ring (804) is rotatably connected to several locking blocks (805) at equal angles, and each locking block (805) is connected to the inner wall of the gear ring (804) with a locking spring (806), and each gear ring (804) is provided with a ratchet (806). 7), and the ratchet (807) engages with the locking block (805), and each ratchet (807) is connected to a first rotating shaft (808), one end of each first rotating shaft (808) is connected to a first fixed seat (809) in the mounting groove (801), and the other end of each first rotating shaft (808) is connected to a cylinder (810), each cylinder (810) is provided with a return spring (811), and the end of each return spring (811) is connected to a plug (812), each plug... One end of the rod (812) passes through the outer wall of the cylinder (810) and is fitted with a nut (813), and the nut (813) is threaded to the outer wall of the cylinder (810). The other end of each of the rods (812) is located in the corresponding slot (814), and the slot (814) is opened at one end of the second shaft (815). The other end of each second shaft (815) is connected to the rear wheel (7), and each mounting slot (801) is provided with a second fixing seat (816) for installing and limiting the second shaft (815).
2. The folding scooter of claim 1, wherein: The control rod (3) is a telescopic rod with adjustable length and is equipped with a limiter for locking the length.
3. The folding scooter of claim 1, wherein: The end of the adjustment component (5) is threadedly connected to the seat cushion (6), and the control rod (3) is provided with a threaded block that can be used to fix the seat cushion (6), and the threaded block is threadedly connected to the seat cushion (6).
4. The folding scooter of claim 1, wherein: The threaded insert (509) is configured as a "dry" type structure, and the middle area of the threaded insert (509) is a rotatable connection.
5. The folding scooter of claim 1, wherein: The insertion rod (812) is configured as an "L" shaped structure, and both the end of the insertion rod (812) and the inner side of the slot (814) are configured as polygonal structures, and the end of the insertion rod (812) and the slot (814) are connected by a snap-fit connection.