A scooter
Patent Information
- Application Number
- CN202521817599.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-25
- Publication Date
- 2026-09-04
- Estimated Expiration
- 2035-08-25
AI Technical Summary
[0002]随着踏板车产品不断的演变,踏板车也逐渐开始流行,而市场上带有灯效的踏板车并不多,并且带有灯效的踏板车也是简单的灯光效果,要么是颜色变化的灯效,要么是常亮的简单灯效,简单的灯光效果并不能给用户带来更好的视觉体验,无法吸引更多的用户
[0013] The beneficial effects of this utility model are as follows: This utility model provides a scooter with a first light-emitting device, a semi-transparent lens, and a reflector installed on the main body of the scooter. The first light-emitting device is positioned between the semi-transparent lens and the reflector. The light emitted by the first light-emitting device is reflected multiple times between the semi-transparent lens and the reflector before passing through the semi-transparent lens. Users can see multiple first light-emitting devices arranged in a similar abyss light effect in the distance through the semi-transparent lens, providing users with a cooler visual experience. The scooter's support device includes two support frames, which can make the scooter more stable and less prone to tilting and falling. The scooter also includes a mileage counting system, which can detect the scooter's mileage and remind the user to maintain the scooter based on the mileage. It can also be connected to a mobile phone for convenient mileage monitoring. The scooter's fixing rod includes a protrusion with a slot extending from one end to the other. A second light-emitting device is installed in the slot, allowing the second light-emitting device to protrude from the fixing rod and maximizing the outward illumination of the light emitted by the second light-emitting device through the slot.
Smart Images

Figure CN224715127U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of scooters, and in particular to a scooter. Background Technology
[0002] As scooter products continue to evolve and scooters have gradually become more popular, there are not many scooters on the market with lighting effects. Furthermore, the lighting effects on scooters with lighting effects are often simple, either color-changing or constantly lit. These simple lighting effects do not provide a better visual experience for users and fail to attract more customers. Therefore, this utility model provides a scooter that effectively solves the above problems. Utility Model Content
[0003] In order to overcome the shortcomings of the prior art, the present invention provides a scooter, comprising: a scooter body, at least one first light-emitting device, at least one semi-transparent lens, and at least one reflector; The semi-transparent lens can transmit light and reflect light; the semi-transparent lens is used to reflect the light emitted by the first light-emitting device; the reflector is used to reflect the light emitted by the first light-emitting device. The semi-transparent lens and the reflector are disposed on the scooter body, with the semi-transparent lens and the reflector facing each other. The semi-transparent lens is disposed on the outer side, and the reflector is disposed on the inner side. The first light-emitting device is disposed between the semi-transparent lens and the reflector. The light emitted by the first light-emitting device is reflected multiple times between the semi-transparent lens and the reflector and then passes through the semi-transparent lens, so as to achieve an abyss light effect where several first light-emitting devices are arranged sequentially in the distance.
[0004] Furthermore, the scooter body includes a pedal, one side of which includes a first mounting groove. The reflector includes a first reflector, the semi-transparent lens includes a first semi-transparent lens, and the first light-emitting device includes a first light strip. The first reflector, the first light strip, and the first semi-transparent lens are sequentially installed in the first mounting groove. The first semi-transparent lens is located on the outer side, the first reflector is located on the inner side, and the first light strip is located between the first semi-transparent lens and the first reflector. The light emitted by the first light strip is reflected multiple times between the first semi-transparent lens and the first reflector before being transmitted through the first semi-transparent lens.
[0005] Furthermore, the scooter body includes a pedal, one side of which includes a second mounting groove. The reflector includes a second reflector, the semi-transparent lens includes a second semi-transparent lens, and the first light-emitting device includes a second light strip. The second reflector, the second light strip, and the second semi-transparent lens are sequentially installed in the second mounting groove. The second semi-transparent lens is located on the outer side, the second reflector is located on the inner side, and the second light strip is located between the second semi-transparent lens and the second reflector. The light emitted by the second light strip is reflected multiple times between the second semi-transparent lens and the second reflector before being transmitted through the second semi-transparent lens.
[0006] Furthermore, the bottom of the pedal includes a battery compartment, and the main body of the scooter also includes a battery, which is disposed in the battery compartment and electrically connected to the first light-emitting device, and is used to power the first light-emitting device; the pedal includes an anti-slip mat, which is disposed on the upper surface of the pedal.
[0007] Furthermore, the scooter body includes a pedal and a support device, the support device being rotatably connected to the pedal, the support device being used to support the ground so that the scooter stands upright on the ground; the support device includes a first support foot, a second support foot and a connecting rod, the first support foot and the second support foot being used to support the ground, one end of the connecting rod being connected to the first support foot, and the other end of the connecting rod being connected to the second support foot.
[0008] Furthermore, the bottom of the pedal includes a connecting part, the connecting part includes a connecting hole, and the connecting rod passes through the connecting hole to make the support device rotatably connected to the pedal; the support device also includes a protrusion, the protrusion is disposed on one side of the first support foot or one side of the second support foot, and the protrusion is used to facilitate the operation of the support device.
[0009] Furthermore, the scooter body includes a pedal, a rear wheel, and a control board. The pedal includes a rear fork arm, and the rear wheel is rotatably connected to the rear fork arm. The control board is located inside the scooter body. The scooter also includes a mileage counting system for recording the scooter's mileage. The mileage counting system includes a Hall sensor mounted on the pedal and a magnet mounted on the rear wheel. When the rear wheel rotates, it drives the magnet to rotate. When the magnet passes the Hall sensor, the Hall sensor detects a change in the magnetic field and generates a pulse signal. The pulse signal is transmitted to the control board, which calculates the number of times the rear wheel rotates based on the number of pulse signals. The mileage of the rear wheel is obtained by multiplying the number of pulse signals by the circumference of the rear wheel. The control board also includes a wireless module for transmitting wireless signals. External mobile devices obtain the scooter's mileage by receiving the wireless signals.
[0010] Furthermore, the scooter body also includes a steering assembly and a pedal. The steering assembly is rotatably connected to the pedal and is located at the front of the scooter body. The steering assembly is used to control the direction of movement of the scooter. The steering assembly includes a handlebar, a telescopic rod, and a hollow fixed rod. One end of the telescopic rod is vertically connected to the middle position of the handlebar, and the other end of the telescopic rod is inserted into the telescopic rod to allow the steering assembly to extend and retract. The steering assembly also includes a fixing member located at the end of the fixed rod. The end of the fixed rod has a notch, and the fixing member is fitted onto the notch. Tightening the fixing member reduces the notch, fixing the telescopic rod within the fixed rod. Releasing the fixing member enlarges the notch, allowing the telescopic rod to slide within the fixed rod. The scooter body also includes a front wheel, and the lower ends of the fixed rod include front fork arms. The front wheel is rotatably connected to the fork arms.
[0011] Furthermore, the scooter body also includes an air pump bell, which has an air hole. Squeezing the air pump bell causes air inside the bell to be expelled from the air hole and produce a sound. The handle includes a third mounting slot in which the air pump bell is mounted. The scooter body also includes a carrying handle, with both ends of the carrying handle connected to the handle.
[0012] Furthermore, the scooter also includes a second light-emitting device. The fixing rod includes a protrusion with a slot extending from one end to the other. The second light-emitting device is disposed within the slot. The scooter body also includes a battery, a control board, a first switch, and a second switch. The control board is electrically connected to the battery, the first switch, the second switch, the second light-emitting device, and the first light-emitting device. The first switch and the second switch are disposed on the fixing rod. The first switch controls the power supply to and from the first light-emitting device, and the second switch controls the power supply to and from the second light-emitting device.
[0013] The beneficial effects of this utility model are as follows: This utility model provides a scooter with a first light-emitting device, a semi-transparent lens, and a reflector installed on the main body of the scooter. The first light-emitting device is positioned between the semi-transparent lens and the reflector. The light emitted by the first light-emitting device is reflected multiple times between the semi-transparent lens and the reflector before passing through the semi-transparent lens. Users can see multiple first light-emitting devices arranged in a similar abyss light effect in the distance through the semi-transparent lens, providing users with a cooler visual experience. The scooter's support device includes two support frames, which can make the scooter more stable and less prone to tilting and falling. The scooter also includes a mileage counting system, which can detect the scooter's mileage and remind the user to maintain the scooter based on the mileage. It can also be connected to a mobile phone for convenient mileage monitoring. The scooter's fixing rod includes a protrusion with a slot extending from one end to the other. A second light-emitting device is installed in the slot, allowing the second light-emitting device to protrude from the fixing rod and maximizing the outward illumination of the light emitted by the second light-emitting device through the slot. Attached Figure Description
[0014] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the following description of the embodiments will be briefly introduced. 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 these drawings without creative effort.
[0015] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0016] Figure 1 This is a perspective view of the scooter of this utility model; Figure 2 yes Figure 1 A cross-sectional view along line A in the middle; Figure 3 This is another perspective view of the scooter of this utility model; Figure 4This is another perspective view of the scooter of this utility model; Figure 5 This is an exploded view of the scooter of this utility model; Figure 6 yes Figure 5 Enlarged view of point B in the middle; Figure 7 This is another exploded view of the scooter of this utility model; Reference numerals: Scooter body (1); First light-emitting device (2); Semi-transparent mirror (3); Reflector (4); Pedal (11); First mounting slot (111); First reflector (41); First semi-transparent mirror (31); First light strip (21); Second mounting slot (112); Second reflector (42); Second semi-transparent mirror (32); Second light strip (22); Battery compartment (113); Connecting part (117); Connecting hole (1131); Battery (19); Support device (12); Rear wheel (13); Rear fork arm (114); Anti-slip mat (115); First support foot (121); Two support feet (122); connecting rod (123); protrusion (124); steering assembly (6); handle (61); telescopic rod (62); fixing rod (63); fixing piece (64); notch (631); front fork arm (632); front wheel (14); air pump bell (15); air hole (151); third mounting slot (611); handle (16); magnet (131); Hall sensor (116); control main board (9); wireless module (91); second light-emitting device (7); slot (633); first switch (17); second switch (18); protrusion (634). Detailed Implementation 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 protection scope of the present utility model.
[0017] Reference Figures 1 to 7 This utility model provides a scooter, including: a scooter body 1, at least one first light-emitting device 2, at least one semi-transparent lens 3, and at least one reflector 4; The semi-transparent lens 3 can transmit light and reflect light. The semi-transparent lens 3 is used to reflect the light emitted by the first light-emitting device 2, and the reflector 4 is used to reflect the light emitted by the first light-emitting device 2. A semi-transparent lens 3 and a reflector 4 are mounted on the scooter body 1. The semi-transparent lens 3 and the reflector 4 are positioned opposite each other, with the semi-transparent lens 3 on the outside and the reflector 4 on the inside. A first light-emitting device 2 is positioned between the semi-transparent lens 3 and the reflector 4. The light emitted by the first light-emitting device 2 is reflected multiple times between the semi-transparent lens 3 and the reflector 4 before passing through the semi-transparent lens 3 to achieve a lighting effect similar to that of an abyss.
[0018] With the above structural arrangement, lens 3 and reflector 4 are mounted on the scooter body 1. Semi-transparent lens 3 and reflector 4 are positioned opposite each other, with semi-transparent lens 3 on the outside and reflector 4 on the inside. The first light-emitting device 2 is positioned between semi-transparent lens 3 and reflector 4. The light emitted by the first light-emitting device 2 is reflected multiple times between semi-transparent lens 3 and reflector 4 and then shines through semi-transparent lens 3 to achieve a light effect similar to an abyss. Users can see the first light-emitting device 2 after multiple reflections through semi-transparent lens 3, and the first light-emitting device 2 extends infinitely into the distance, achieving a light effect similar to an abyss and bringing users a cooler visual experience.
[0019] In this embodiment, the scooter body 1 includes a pedal 11, one side of which includes a first mounting groove 111. The reflector 4 includes a first reflector 41, the semi-transparent lens 3 includes a first semi-transparent lens 31, and the first light-emitting device 2 includes a first light strip 21. The first reflector 41, the first light strip 21, and the first semi-transparent lens 31 are sequentially installed in the first mounting groove 111. The first semi-transparent lens 31 is located on the outer side, the first reflector 41 is located on the inner side, and the first light strip 21 is located between the first semi-transparent lens 31 and the first reflector 41. The light emitted by the first light strip 21 is reflected multiple times between the first semi-transparent lens 31 and the first reflector 41 before being transmitted through the first semi-transparent lens 31. With the above structural arrangement, one side of the pedal 11 includes a first mounting groove 111. A first reflector 41, a first light strip 21, and a first semi-transparent lens 31 are sequentially installed in the first mounting groove 111. The first semi-transparent lens 31 is located on the outer side, the first reflector 41 is located on the inner side, and the first light strip 21 is located between the first semi-transparent lens 31 and the first reflector 41. The light emitted by the first light strip 21 is reflected multiple times between the first semi-transparent lens 31 and the first reflector 41 and then passes through the first semi-transparent lens 31. The user can see the first light strip 21 after multiple reflections through the first semi-transparent lens 31, and the first light strip 21 extends infinitely into the distance, achieving a lighting effect similar to an abyss, bringing the user a cooler visual experience.
[0020] In this embodiment, the scooter body 1 includes a pedal 11, one side of which includes a second mounting groove 112. The reflector 4 includes a second reflector 42, the semi-transparent lens 3 includes a second semi-transparent lens 32, and the first light-emitting device 2 includes a second light strip 22. The second reflector 42, the second light strip 22, and the second semi-transparent lens 32 are sequentially installed in the second mounting groove 112. The second semi-transparent lens 32 is located on the outer side, the second reflector 42 is located on the inner side, and the second light strip 22 is located between the second semi-transparent lens 32 and the second reflector 42. The light emitted by the second light strip 22 is reflected multiple times between the second semi-transparent lens 32 and the second reflector 42 before being transmitted through the second semi-transparent lens 32. With the above structural arrangement, one side of the pedal 11 includes a second mounting groove 112. The second reflector 42, the second light strip 22, and the second semi-transparent lens 32 are sequentially installed in the second mounting groove 112. The second semi-transparent lens 32 is located on the outer side, the second reflector 42 is located on the inner side, and the second light strip 22 is located between the second semi-transparent lens 32 and the second reflector 42. The light emitted by the second light strip 22 is reflected multiple times between the second semi-transparent lens 32 and the second reflector 42 and then passes through the second semi-transparent lens 32. The user can see the second light strip 22 after multiple reflections through the second semi-transparent lens 32, and the second light strip 22 extends infinitely into the distance, achieving a lighting effect similar to an abyss, bringing the user a cooler visual experience.
[0021] In this embodiment, the bottom of the pedal 11 includes a battery compartment 113, and the scooter body 1 also includes a battery 19. The battery 19 is disposed within the battery compartment 113 and is electrically connected to the first light-emitting device 2, providing power to the first light-emitting device 2. The pedal 11 includes an anti-slip mat 115, which is disposed on the upper surface of the pedal 11. With the above structural arrangement, the bottom of the pedal 11 includes a battery compartment 113, the battery 19 is disposed within the battery compartment 113, and the battery 19 is electrically connected to the first light-emitting device 2, providing power to the first light-emitting device 2. The battery compartment 113 is located at the bottom of the pedal 11, making reasonable use of space and preventing the battery compartment from being exposed, thus enhancing the overall aesthetics of the scooter. Preferably, the pedal 11 includes an anti-slip mat 115, which is disposed on the upper surface of the pedal 11. When a user stands on the pedal 11, the anti-slip mat 115 provides better anti-slip performance, preventing the user from slipping off the pedal 11 and causing danger.
[0022] In this embodiment, the scooter body 1 includes a pedal 11 and a support device 12. The support device 12 is rotatably connected to the pedal 11 and is used to support the ground so that the scooter stands upright on the ground. The support device 12 includes a first support foot 121, a second support foot 122 and a connecting rod 123. The first support foot 121 and the second support foot 122 are used to support the ground. One end of the connecting rod 123 is connected to the first support foot 121 and the other end of the connecting rod 123 is connected to the second support foot 122. With the above structural arrangement, the support device 12 is rotatably connected to the pedal 11. The support device 12 is used to support the ground so that the scooter stands upright on the ground. Preferably, the support device 12 includes a first support foot 121, a second support foot 122 and a connecting rod 123. One end of the connecting rod 123 is connected to the first support foot 121, and the other end of the connecting rod 123 is connected to the second support foot 122. The first support foot 121 and the second support foot 122 are used to support the ground. The first support foot 121 and the second support foot 122 are simultaneously subjected to force when supporting the scooter, which can make the scooter more upright and stable and prevent it from easily tilting.
[0023] In this embodiment, the bottom of the pedal 11 includes a connecting part 117, the connecting part 117 includes a connecting hole 1131, and the connecting rod 123 passes through the connecting hole 1131 so that the support device 12 is rotatably connected to the pedal 11; the support device 12 also includes a protrusion 124, which is disposed on one side of the first support foot 121 or one side of the second support foot 122, and the protrusion 124 is used to facilitate the operation of the support device 12. With the above structural configuration, the bottom of the pedal 11 includes a connecting part 117, the connecting part 117 includes a connecting hole 1131, and a connecting rod 123 passes through the connecting hole 1131 to make the support device 12 rotatably connected to the pedal 11. The support device 12 is rotatably connected through the connecting rod 123 passing through the connecting hole 1131, and the connecting rod 123 and the connecting hole 1131 are damped rotations. Preferably, the support device 12 also includes a protrusion 124, which is disposed on one side of the first support foot 121 or one side of the second support foot 122. The user can use his foot to move the protrusion 124 to control the unfolding and retraction of the support device 12, providing the user with a better experience.
[0024] In this embodiment, the scooter body 1 includes a pedal 11, a rear wheel 13, and a control main board 9. The pedal 11 includes a rear fork arm 114, and the rear wheel 13 is rotatably connected to the rear fork arm 114. The control main board 9 is located inside the scooter body 1. The scooter also includes a mileage counting system, which is used to count the mileage of the scooter. With the above structural configuration, the scooter also includes a mileage counting system and a control main board 9. The mileage counting system can count the mileage of the scooter, making it convenient for users to maintain the scooter and replace parts based on the actual mileage, and to know the service life of the scooter. Specifically, the pedal 11 includes a rear fork arm 114, and the rear wheel 13 is rotatably connected to the rear fork arm 114. The mileage counting system includes a Hall sensor 116 mounted on the pedal 11 and a magnet 131 mounted on the rear wheel 13. When the rear wheel 13 rotates, it drives the magnet 131 to rotate. Each time the magnet 131 passes the Hall sensor 116, the magnet 131 rotates. At 6 o'clock, the Hall sensor 116 detects a change in the magnetic field and generates a pulse signal. The pulse signal is transmitted to the control motherboard 9. The control motherboard 9 calculates the number of rotations of the rear wheel 13 based on the number of pulse signals. The mileage of the rear wheel 13 is obtained by multiplying the number of pulse signals by the circumference of the rear wheel 13. Preferably, the control motherboard 9 also includes a wireless module 91, which is used to transmit wireless signals. Users can receive wireless signals through a mobile APP to obtain the mileage of the scooter. This allows users to view the scooter's mileage in real time wirelessly, providing a better user experience.
[0025] In this embodiment, the scooter body 1 also includes a steering assembly 6, which is disposed at the front of the scooter body 1 and is used to control the direction of movement of the scooter. The steering assembly 6 includes a handlebar 61, a telescopic rod 62, and a hollow fixed rod 63. One end of the telescopic rod 62 is vertically connected to the middle position of the handlebar 61, and the other end of the telescopic rod 62 is inserted into the telescopic rod 62 so that the steering assembly 6 can extend and retract. The steering assembly 6 also includes a fixing member 64, which is disposed at the end of the fixed rod 63. The end of the fixed rod 63 has a notch 631, and the fixing member 64 is fitted onto the notch 631. The fixing member 64 is tightened to make the notch 631 smaller, so that the telescopic rod 62 is fixed in the fixed rod 63. The fixing member 64 is released to make the notch 631 larger, so that the telescopic rod 62 can slide in the fixed rod 63. The scooter body 1 also includes a front wheel 14, and the lower ends of the fixed rod 63 include front fork arms 632. The front wheel 14 is rotatably connected to the fork arms 632. With the above structural configuration, the scooter body 1 also includes a steering assembly 6, which is located at the front of the scooter body 1. The user controls the direction of movement of the scooter through the steering assembly 6. Specifically, the steering assembly 6 includes a handlebar 61, a telescopic rod 62, and a hollow fixed rod 63. One end of the telescopic rod 62 is vertically connected to the middle of the handlebar 61, and the other end of the telescopic rod 62 is inserted into the telescopic rod 63 to allow the steering assembly 6 to extend and retract. The steering assembly 6 also includes a fixing member 64, which is located at the end of the fixed rod 63. The end of the fixed rod 63 has a notch 631, and the fixing member 64 is fitted onto the notch 631. Tightening the fixing member 64 reduces the distance between the notches 631, fixing the telescopic rod 62 within the fixed rod 63; releasing the fixing member 64 increases the distance between the notches 631, allowing the telescopic rod 62 to slide within the fixed rod 63. The scooter body 1 also includes a front wheel 14, and the lower ends of the fixing rod 63 include front fork arms 632. The front wheel 14 is rotatably connected to the fork arms 632 to enable the steering assembly 6 to control the steering of the front wheel 14.
[0026] In this embodiment, the scooter body 1 also includes an air pump bell 15, which includes an air hole 151. Squeezing the air pump bell 15 causes air inside the bell to be expelled from the air hole 151, producing a sound. The handlebar 61 includes a third mounting groove 611, in which the air pump bell 15 is mounted. With the above structural arrangement, the scooter body 1 also includes an air pump bell 15, which includes an air hole 151. The user squeezes the air pump bell 15 to expel air from the air hole 151, producing a sound, thus achieving a horn-like effect. Preferably, the handlebar 61 includes a third mounting groove 611, in which the air pump bell 15 is mounted. The handlebar 61 is close to the user's hand, and the air pump bell 15 is mounted in the third mounting groove 611, making it convenient for the user to press the air pump bell 15.
[0027] In this embodiment, the scooter body 1 also includes a handle 16, with both ends of the handle 16 connected to the handle portion 61. With the above structural arrangement, the scooter body 1 includes a handle 16, with both ends of the handle 16 connected to the handle portion 61, allowing the user to lift the scooter using the handle 16, facilitating storage and movement of the scooter. Preferably, the handle 16 is made of rubber, which is soft and will not scratch the user's hands.
[0028] In this embodiment, the scooter also includes a second light-emitting device 7. The fixing rod 63 includes a protrusion 634, and the protrusion 634 includes a slot 633. The slot 633 extends from one end of the protrusion 634 to the other end of the protrusion 634, and the second light-emitting device 7 is disposed in the slot 633. The scooter body 1 also includes a battery 19, a control main board 9, a first switch 17, and a second switch 18. The control main board 9 is electrically connected to the battery 19, the first switch 17, the second switch 18, the second light-emitting device 7, and the first light-emitting device 2. The first switch 17 and the second switch 18 are disposed on the fixing rod 63. The first switch 17 is used to control the power supply and power-off of the first light-emitting device 2, and the second switch 18 is used to control the power supply and power-off of the second light-emitting device 7. With the above structural arrangement, the fixing rod 63 includes a protrusion 634 that protrudes from the fixing rod 63. The protrusion 634 includes a slot 633 that extends from one end of the protrusion 634 to the other end. Therefore, the slot 633 is relatively large. The second light-emitting device 7 is disposed in the slot 633. Visually, the second light-emitting device 7 protrudes from the fixing rod 63, which allows the light emitted by the second light-emitting device 7 to shine outward through the slot 633 to the maximum extent, enabling the second light-emitting device 7 to emit brighter light forward. The scooter body 1 also includes a battery 19, a control main board 9, a first switch 17, and a second switch 18. 8. The control motherboard 9 is electrically connected to the battery 19, the first switch 17, the second switch 18, the second light-emitting device 7, and the first light-emitting device 2. The first switch 17 and the second switch 18 are mounted on the fixed rod 63. The first switch 17 is used to control the power on and off of the first light-emitting device 2, and the second switch 18 is used to control the power on and off of the second light-emitting device 7. The first switch 17 and the second switch 18 control the power on and off of the first light-emitting device 2 and the second light-emitting device 7 respectively, which is convenient for users to control separately and avoid misoperation. In addition, the first switch 17 and the second switch 18 are both mounted on the fixed rod 63, which makes it more convenient for users to operate by hand and improves the user experience.
[0029] The above description provides one or more embodiments in conjunction with specific content, but it is not intended that the specific implementation of this utility model is limited to these descriptions. Any methods or structures that are similar to or identical to those of this utility model, or any technical deductions or substitutions made based on the concept of this utility model, should be considered within the scope of protection of this utility model.
Claims
1. A scooter, characterized in that, include: The scooter body (1), at least one first light-emitting device (2), at least one semi-transparent lens (3), and at least one reflector (4); The semi-transparent lens (3) can transmit light and reflect light. The semi-transparent lens (3) is used to reflect the light emitted by the first light-emitting device (2). The reflector (4) is used to reflect the light emitted by the first light-emitting device (2). The semi-transparent lens (3) and the reflector (4) are disposed on the scooter body (1). The semi-transparent lens (3) and the reflector (4) are disposed opposite to each other. The semi-transparent lens (3) is disposed on the outside and the reflector (4) is disposed on the inside. The first light-emitting device (2) is disposed between the semi-transparent lens (3) and the reflector (4). The light emitted by the first light-emitting device (2) is reflected multiple times between the semi-transparent lens (3) and the reflector (4) and passes through the semi-transparent lens (3) to achieve the effect of seeing several first light-emitting devices (2) arranged in sequence in the distance.
2. The scooter according to claim 1, characterized in that, The scooter body (1) includes a pedal (11), one side of which includes a first mounting groove (111). The reflector (4) includes a first reflector (41), the semi-transparent lens (3) includes a first semi-transparent lens (31), and the first light-emitting device (2) includes a first light strip (21). The first reflector (41), the first light strip (21), and the first semi-transparent lens (31) are sequentially installed in the first mounting groove (111). The first semi-transparent lens (31) is located on the outside, the first reflector (41) is located on the inside, and the first light strip (21) is located between the first semi-transparent lens (31) and the first reflector (41). The light emitted by the first light strip (21) is reflected multiple times between the first semi-transparent lens (31) and the first reflector (41) before passing through the first semi-transparent lens (31).
3. The scooter according to claim 1, characterized in that, The scooter body (1) includes a pedal (11), one side of which includes a second mounting groove (112). The reflector (4) includes a second reflector (42), and the semi-transparent lens (3) includes a second semi-transparent lens (32). The first light-emitting device (2) includes a second light strip (22). The second reflector (42), the second light strip (22), and the second semi-transparent lens (32) are sequentially installed in the second mounting groove (112). The second semi-transparent lens (32) is located on the outside, the second reflector (42) is located on the inside, and the second light strip (22) is located between the second semi-transparent lens (32) and the second reflector (42). The light emitted by the second light strip (22) is reflected multiple times between the second semi-transparent lens (32) and the second reflector (42) and then passes through the second semi-transparent lens (32).
4. The scooter according to claim 2, characterized in that, The bottom of the pedal (11) includes a battery compartment (113), and the main body (1) of the scooter also includes a battery (19). The battery (19) is disposed in the battery compartment (113) and is electrically connected to the first light-emitting device (2). The battery (19) is used to supply power to the first light-emitting device (2). The pedal (11) includes an anti-slip mat (115), which is disposed on the upper surface of the pedal (11).
5. The scooter according to claim 1, characterized in that, The scooter body (1) includes a pedal (11) and a support device (12). The support device (12) is rotatably connected to the pedal (11). The support device (12) is used to support the ground so that the scooter stands upright on the ground. The support device (12) includes a first support foot (121), a second support foot (122), and a connecting rod (123). The first support foot (121) and the second support foot (122) are used to support the ground. One end of the connecting rod (123) is connected to the first support foot (121), and the other end of the connecting rod (123) is connected to the second support foot (122).
6. The scooter according to claim 5, characterized in that, The bottom of the pedal (11) includes a connecting part (117), the connecting part (117) includes a connecting hole (1131), and the connecting rod (123) passes through the connecting hole (1131) so that the support device (12) is rotatably connected to the pedal (11); the support device (12) also includes a protrusion (124), the protrusion (124) is disposed on one side of the first support foot (121) or one side of the second support foot (122), and the protrusion (124) is used to facilitate the operation of the support device (12).
7. The scooter according to claim 1, characterized in that, The scooter body (1) includes a pedal (11), a rear wheel (13), and a control board (9). The pedal (11) includes a rear fork arm (114), and the rear wheel (13) is rotatably connected to the rear fork arm (114). The control board (9) is located inside the scooter body (1). The scooter also includes a mileage counting system, which is used to count the mileage of the scooter. The mileage counting system includes a Hall sensor (116) installed on the pedal (11) and a magnet (131) installed on the rear wheel (13). When the rear wheel (13) rotates, it drives the magnet (131) to rotate. When the magnet (131) passes the Hall sensor (116), the Hall sensor (116) detects the change in the magnetic field and generates a pulse signal. The pulse signal is transmitted to the control motherboard (9). The control motherboard (9) calculates the number of rotations of the rear wheel (13) based on the number of pulse signals. The mileage of the rear wheel (13) is obtained by multiplying the number of pulse signals by the circumference of the rear wheel (13). The control motherboard (9) also includes a wireless module (91). The wireless module (91) is used to transmit wireless signals. External mobile devices obtain the mileage of the scooter by receiving the wireless signals.
8. The scooter according to claim 1, characterized in that, The scooter body (1) also includes a steering assembly (6) and a pedal (11). The steering assembly (6) is rotatably connected to the pedal (11). The steering assembly (6) is located at the front of the scooter body (1) and is used to control the direction of movement of the scooter. The steering assembly (6) includes a handle (61), a telescopic rod (62), and a hollow fixed rod (63). One end of the telescopic rod (62) is vertically connected to the middle position of the handle (61), and the other end of the telescopic rod (62) is inserted into the telescopic rod (62) so that the steering assembly (6) can extend and retract. The steering assembly (6) also includes a fixing member (64). A fixing member (64) is provided at the end of the fixing rod (63), and a notch (631) is provided at the end of the fixing rod (63). The fixing member (64) is sleeved on the notch (631). The fixing member (64) is tightened to make the notch (631) smaller, so that the telescopic rod (62) is fixed in the fixing rod (63). The fixing member (64) is released to make the notch (631) larger, so that the telescopic rod (62) can slide in the fixing rod (63). The scooter body (1) also includes a front wheel (14). The lower ends of the fixing rod (63) include front fork arms (632). The front wheel (14) is rotatably connected to the fork arms (632).
9. The scooter according to claim 8, characterized in that, The scooter body (1) also includes an air pump bell (15), which includes an air hole (151). Squeezing the air pump bell (15) causes the air inside the air pump bell (15) to be expelled from the air hole (151) and make a sound. The handle (61) includes a third mounting groove (611), in which the air pump bell (15) is installed. The scooter body (1) also includes a handle (16), the two ends of which are connected to the handle (61).
10. The scooter according to claim 8, characterized in that, The scooter also includes a second light-emitting device (7), the fixing rod (63) includes a protrusion (634), the protrusion (634) includes a slot (633), the slot (633) extends from one end of the protrusion (634) to the other end of the protrusion (634), and the second light-emitting device (7) is disposed in the slot (633); the scooter body (1) also includes a battery (19), a control board (9), a first switch (17), and a second switch (18), the control board (9) being electrically connected to the battery (19), the first switch (17), the second switch (18), the second light-emitting device (7), and the first light-emitting device (2); the first switch (17) and the second switch (18) are disposed on the fixing rod (63), the first switch (17) being used to control the power on and power off of the first light-emitting device (2), and the second switch (18) being used to control the power on and power off of the second light-emitting device (7).