Cold light source type sliding plate structure
By introducing a storage buffer assembly and a pad assembly into the skateboard structure, the problem of the power supply being easily damaged and having an unstable position during vibration is solved, achieving better protection and stability.
Patent Information
- Application Number
- CN202422131313.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-30
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2034-08-30
AI Technical Summary
The power supply components in traditional skateboards are easily damaged and unstable during vibration, and their existing protection performance and stability are poor.
The storage buffer assembly and the pad assembly are used to store the power supply in the storage cavity, and the storage buffer assembly is used to cushion the vibration, fix the position of the power supply, and reduce the impact of vibration.
The protection performance and position stability of the power supply unit are improved, and power supply unit failure and position displacement caused by vibration are reduced.
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Figure CN223416702U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present disclosure relates to the technical field of skateboards, in particular to a cold light source type skateboard structure. BACKGROUND
[0002] In recent years, with the increasing richness of people's material life, people's leisure and entertainment activities are various, among which, the skateboard as a component of people's leisure and entertainment activities has also been well developed. The skateboard is a sports appliance that can enable people to complete high-difficulty actions such as sliding, jumping, rotating and somersaulting.
[0003] In the prior art, the traditional skateboard includes a bearing plate body, a pulley assembly, a power supply and a strap body, the pulley assembly is connected with the bearing plate body, the power supply is connected with the pulley assembly and the strap body respectively, so that the strap body binds the power supply on the pulley assembly, the bearing plate body is provided with a light source part, the light source part is electrically connected with the power supply, and the pulley assembly is used for rolling connection with the ground.
[0004] However, since the pulley assembly is used for rolling connection with the ground, so that the pulley assembly rolls along the ground, in the process of rolling the pulley assembly along the ground, the pulley assembly is easily vibrated by the action force of the ground, the strap body binds the power supply on the pulley assembly, so that the power supply is easily vibrated together with the pulley assembly, so that the power supply is subjected to a large vibration action force, the power supply is easily malfunctioned under the large vibration action force, which leads to the power supply being easily damaged, so that the protection performance of the skateboard on the power supply is poor; and in the process of the power supply being vibrated together with the pulley assembly, the constraint performance of the strap body on the power supply is poor, so that the position of the power supply on the pulley assembly is easily inclined and deviated by the action of vibration, so that the position stability of the power supply is poor. CONTENT OF THE UTILITY MODEL
[0005] The purpose of the present disclosure is to overcome the deficiencies in the prior art, and to provide a cold light source type skateboard structure which has good protection performance on the power supply and good position stability of the power supply.
[0006] The purpose of the present disclosure is achieved by the following technical solutions:
[0007] A cold light source type skateboard structure, comprising a bearing plate body, a pulley assembly and a power supply, the pulley assembly is used for rolling connection with the ground,
[0008] The cold light source type skateboard structure further comprises a receiving and buffering assembly and a pad assembly;
[0009] The bearing plate body is provided with a cold light source part, and the cold light source part is electrically connected with the power supply;
[0010] The pulley assembly comprises a first wheel frame and a second wheel frame arranged oppositely;
[0011] The receiving and buffering assembly is arranged between the first wheel frame and the bearing plate, and is detachably connected with the first wheel frame and the bearing plate respectively.
[0012] The cushion plate assembly is arranged between the second wheel frame and the bearing plate, and is detachably connected with the second wheel frame and the bearing plate respectively.
[0013] In one embodiment, the bearing plate is provided with a first mounting through hole and a second mounting through hole, and the cold light source is arranged between the first mounting through hole and the second mounting through hole.
[0014] In one embodiment, the receiving and buffering assembly is provided with a first position-avoiding groove, the first wheel frame is provided with a first through hole, the first position-avoiding groove and the first mounting through hole and the first through hole are in communication to form a first connecting channel, the cushion plate assembly is provided with a second position-avoiding groove, the second wheel frame is provided with a second through hole, and the second position-avoiding groove and the second mounting through hole and the second through hole are in communication to form a second connecting channel.
[0015] In one embodiment, the cold light source type skateboard structure further comprises a first fastening bolt, a first fastening nut, a second fastening bolt and a second fastening nut, the first fastening bolt is arranged in the first connecting channel, one end of the first fastening bolt abuts against the inner wall of the first mounting through hole, the other end of the first fastening bolt is threadedly connected with the first fastening nut, and the first fastening nut abuts against the first wheel frame, so that the receiving and buffering assembly is detachably connected with the first wheel frame and the bearing plate respectively; the second fastening bolt is arranged in the second connecting channel, one end of the second fastening bolt abuts against the inner wall of the second mounting through hole, the other end of the second fastening bolt is threadedly connected with the second fastening nut, and the second fastening nut abuts against the second wheel frame, so that the cushion plate assembly is detachably connected with the second wheel frame and the bearing plate respectively.
[0016] In one embodiment, the storage buffer assembly includes a first storage buffer body and a second storage buffer body, the first storage buffer body is provided with a first cavity and a first avoidance hole, the second storage buffer body is provided with a second cavity and a second avoidance hole, the first storage buffer body is in contact with the second storage buffer body, the first cavity and the second cavity are connected to form the storage cavity, the first avoidance hole and the second avoidance hole are connected to form the first avoidance groove, the first storage buffer body is detachably connected to the supporting plate and the power supply component, and the second storage buffer body is detachably connected to the power supply component and the first wheel frame component.
[0017] In one embodiment, the pad assembly includes two stacked pad bodies, each of which is provided with a pad through hole, and the pad through holes between two adjacent pad bodies are connected to form the second avoidance groove, one of the pad bodies is detachably connected to the bearing plate body, and the other pad body is detachably connected to the second wheel frame member.
[0018] In one embodiment, the first receiving and buffering body, the second receiving and buffering body, and each of the pad bodies are all rubber sheet layer structures.
[0019] In one embodiment, the power supply component and the storage buffer assembly are interference fit.
[0020] In one embodiment, the thickness of the storage buffer assembly is consistent with the thickness of the pad assembly.
[0021] In one embodiment, the cold light source portion is an LED light source portion.
[0022] Compared with the prior art, the present disclosure has at least the following advantages:
[0023] 1. Since the pulley assembly is used to be connected to the ground in a rolling manner, the first wheel frame and the second wheel frame are both used to be connected to the ground in a rolling manner, so that the first wheel frame and the second wheel frame roll along the ground. The storage buffer assembly is located between the first wheel frame and the load-bearing plate. The power supply component is inserted into the storage cavity and connected to the storage buffer assembly. That is, the storage buffer assembly stores and fixes the power supply component in the storage cavity so that the storage buffer assembly wraps the power supply component. In the process of the first wheel frame rolling along the ground, the first wheel frame is vibrated by the force of the ground. The vibration force generated by the first wheel frame acts on the storage buffer assembly, and the storage buffer assembly plays a buffering role, thereby reducing the vibration. The vibration impact of the force on the power supply component makes the vibration force on the power supply component smaller, thereby solving the problem in the prior art that the power supply component is more likely to vibrate along with the pulley assembly, so that it is more difficult for the power supply component to vibrate along with the first wheel frame. Therefore, under the action of the storage buffer assembly, the vibration force on the power supply component is smaller, so that it is less likely for the power supply component to fail under a smaller vibration force, thereby making the storage buffer assembly better in protecting the power supply component, making the power supply component less likely to be damaged under the action of the storage buffer assembly, and further making the storage buffer assembly have better protection performance for the power supply component, that is, the cold light source type skateboard structure has better protection performance for the power supply component.
[0024] 2. Since the storage buffer assembly stores and fixes the power supply unit in the storage cavity, the storage buffer assembly wraps the power supply unit, thereby wrapping, binding and fixing the power supply unit. During the vibration of the first wheel frame, the storage buffer assembly plays a buffering role, so that the vibration force on the power supply unit is smaller, making it more difficult for the power supply unit to be separated from the storage cavity, so that the storage buffer assembly has better restraining performance on the power supply unit, thereby solving the problem in the prior art that the position of the power supply unit on the pulley assembly is easily tilted and offset due to the vibration, making it more difficult for the power supply unit to tilt and offset in the storage cavity, thereby making the position stability of the power supply unit better. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] In order to more clearly illustrate the technical solutions of the embodiments of the present disclosure, the following briefly introduces the drawings required for use in the embodiments. It should be understood that the following drawings only illustrate certain embodiments of the present disclosure and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without creative work.
[0026] Figure 1 This is a schematic diagram of a three-dimensional exploded structure of a cold light source type slide plate structure according to an embodiment;
[0027] Figure 2 for Figure 1 A schematic structural diagram of the first wheel frame member of the cold light source type skateboard structure shown;
[0028] Figure 3 for Figure 1 A schematic structural diagram of the second wheel frame member of the cold light source type skateboard structure shown;
[0029] Figure 4 for Figure 1 A schematic structural diagram of a storage buffer assembly of a cold light source type skateboard structure is shown;
[0030] Figure 5 for Figure 1 The schematic structural diagram of the backing plate body of the cold light source type skateboard structure is shown. DETAILED DESCRIPTION
[0031] To facilitate understanding of the present disclosure, a more comprehensive description of the present disclosure will be provided below with reference to the accompanying drawings. The accompanying drawings illustrate preferred embodiments of the present disclosure. However, the present disclosure can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and comprehensive understanding of the disclosure.
[0032] It should be noted that when an element is referred to as being "fixed to" another element, it may be directly attached to the other element or there may be an intermediate element. When an element is referred to as being "connected to" another element, it may be directly connected to the other element or there may be an intermediate element. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only and do not represent the only implementation methods.
[0033] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art to which this disclosure pertains. The terms used herein in the specification of this disclosure are intended only to describe specific embodiments and are not intended to limit this disclosure. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0034] like Figures 1 to 5 As shown, a cold light source type skateboard structure 10 of an embodiment includes a bearing plate body 100 , a pulley assembly 200 and a power supply 300 , wherein the pulley assembly 200 is used for rolling connection with the ground.
[0035] Furthermore, the cold light source type skateboard structure 10 also includes a storage buffer assembly 400 and a pad assembly 500; the load-bearing plate body 100 is provided with a cold light source part 110, and the cold light source part 110 is electrically connected to the power supply part 300; the pulley assembly 200 includes a first wheel frame part 210 and a second wheel frame part 220 arranged opposite to each other; the storage buffer assembly 400 is located between the first wheel frame part 210 and the load-bearing plate body 100, and the storage buffer assembly 400 is detachably connected to the first wheel frame part 210 and the load-bearing plate body 100, respectively, and the storage buffer assembly 400 is provided with a storage cavity, and the power supply part 300 is passed through the storage cavity and connected to the storage buffer assembly 400; the pad assembly 500 is located between the second wheel frame part 220 and the load-bearing plate body 100, and the pad assembly 500 is detachably connected to the second wheel frame part 220 and the load-bearing plate body 100, respectively.
[0036] In this embodiment, the storage buffer assembly 400 is positioned adjacent to the cold light source unit 110. The power supply unit 300 is a battery. A cable hole (not shown) is defined on the side of the carrier plate 100 facing away from the cold light source unit 110. The connecting cable assembly 310 of the power supply unit 300 is electrically connected to the cold light source unit 110 through the cable hole, thereby electrically connecting the cold light source unit 110 to the power supply unit 300. The power supply unit 300 is positioned within the storage cavity and connected to the storage buffer assembly 400. In other words, the storage buffer assembly 400 secures the power supply unit 300 within the storage cavity.
[0037] The cold light source type skateboard structure 10 described above, since the pulley assembly 200 is used for rolling connection with the ground, so that the first wheel frame 210 and the second wheel frame 220 are used for rolling connection with the ground, so that the first wheel frame 210 and the second wheel frame 220 roll along the ground, the buffer assembly 400 is accommodated between the first wheel frame 210 and the bearing plate 100, and the power supply 300 is arranged in the accommodation cavity and connected with the buffer assembly 400, that is, the buffer assembly 400 accommodates and fixes the power supply 300 in the accommodation cavity, so that the buffer assembly 400 wraps the power supply 300, in the process of rolling of the first wheel frame 210 along the ground, the first wheel frame 210 is vibrated by the action force of the ground, and the vibration action force of the first wheel frame 210 acts on the buffer assembly 400, so that the buffer assembly 400 plays a buffering role, thereby reducing the vibration impact of the vibration action force on the power supply 300, so that the power supply 300 receives smaller vibration action force, thereby solving the problem that the power supply 300 is more likely to vibrate with the pulley assembly 200 in the prior art, so that the power supply 300 is more difficult to vibrate with the first wheel frame 210, so that the power supply 300 receives smaller vibration action force under the action of the buffer assembly 400, so that the power supply 300 is more difficult to malfunction under smaller vibration action force, thereby making the protection effect of the buffer assembly 400 on the power supply 300 better, so that the power supply 300 is more difficult to be damaged under the action of the buffer assembly 400, thereby making the protection performance of the buffer assembly 400 on the power supply 300 better, that is, making the protection performance of the cold light source type skateboard structure 10 on the power supply 300 better.
[0038] Since the buffer assembly 400 accommodates and fixes the power supply 300 in the accommodation cavity, so that the buffer assembly 400 wraps the power supply 300, thereby making the buffer assembly 400 wrap and fix the power supply 300, in the process of vibration of the first wheel frame 210, the buffer assembly 400 plays a buffering role, so that the power supply 300 receives smaller vibration action force, so that the power supply 300 is more difficult to separate from the accommodation cavity, thereby making the restraint performance of the buffer assembly 400 on the power supply 300 better, thereby solving the problem that the position of the power supply 300 on the pulley assembly 200 is more likely to be inclined and deviated by vibration in the prior art, so that the position of the power supply 300 in the accommodation cavity is more difficult to be inclined and deviated, thereby making the position stability of the power supply 300 better.
[0039] As shown in Figure 1 In one embodiment, the bearing plate 100 is provided with a first mounting hole 120 and a second mounting hole 130, and the cold light source part 110 is located between the first mounting hole 120 and the second mounting hole 130.
[0040] As Figures 1 to 5 As shown, in one embodiment, the storage buffer assembly 400 is provided with a first avoidance groove, the first wheel frame member 210 is provided with a first through hole 211, and the first avoidance groove is respectively connected with the first mounting through hole 120 and the first through hole 211 to form a first connecting channel; the pad assembly 500 is provided with a second avoidance groove, the second wheel frame member 220 is provided with a second through hole 221, and the second avoidance groove is respectively connected with the second mounting through hole 130 and the second through hole 221 to form a second connecting channel.
[0041] like Figures 1 to 5 As shown, in one embodiment, the cold light source type skateboard structure 10 further includes a first fastening bolt 600, a first fastening nut 700, a second fastening bolt 800 and a second fastening nut 900. The first fastening bolt 600 is provided in the first connecting channel. One end of the first fastening bolt 600 abuts against the inner wall of the first mounting through hole 120. The other end of the first fastening bolt 600 is threadedly connected to the first fastening nut 700. The first fastening nut 700 abuts against the first wheel frame member 210 so that The storage buffer assembly 400 is detachably connected to the first wheel frame component 210 and the supporting plate body 100 respectively; the second fastening bolt 800 is passed through the second connecting channel, one end of the second fastening bolt 800 abuts against the inner wall of the second mounting through hole 130, and the other end of the second fastening bolt 800 is threadedly connected to the second fastening nut 900, and the second fastening nut 900 abuts against the second wheel frame component 220, so that the pad assembly 500 is detachably connected to the second wheel frame component 220 and the supporting plate body 100 respectively.
[0042] like Figure 1 and Figure 4 As shown, in one embodiment, the storage buffer assembly 400 includes a first storage buffer body 410 and a second storage buffer body 420, the first storage buffer body 410 is provided with a first cavity 411 and a first avoidance hole 412, the second storage buffer body 420 is provided with a second cavity 421 and a second avoidance hole 422, the first storage buffer body 410 is in contact with the second storage buffer body 420, the first cavity 411 and the second cavity 421 are connected to form a storage cavity, the first avoidance hole 412 and the second avoidance hole 422 are connected to form a first avoidance groove, the first storage buffer body 410 is detachably connected to the supporting plate body 100 and the power supply component 300, respectively, and the second storage buffer body 420 is detachably connected to the power supply component 300 and the first wheel frame component 210, respectively.
[0043] like Figure 1 and Figure 5As shown, in one embodiment, the pad assembly 500 includes two stacked pad bodies 510, each pad body 510 is provided with a pad through hole 511, and the pad through holes 511 between two adjacent pad bodies 510 are connected to form a second avoidance groove, one of the pad bodies 510 is detachably connected to the supporting plate body 100, and the other pad body 510 is detachably connected to the second wheel frame member 220.
[0044] In one embodiment, the first receiving and buffering body 410 , the second receiving and buffering body 420 , and each pad body 510 are all rubber sheet structures.
[0045] In one embodiment, the power supply 300 and the receiving buffer assembly 400 are interference fit.
[0046] In one embodiment, the thickness of the receiving and buffering assembly 400 is consistent with the thickness of the backing plate assembly 500 .
[0047] In one embodiment, the cold light source unit 110 is an LED light source unit.
[0048] Compared with the prior art, the present disclosure has at least the following advantages:
[0049] 1. Since the pulley assembly 200 is used to be connected to the ground in a rolling manner, the first wheel frame member 210 and the second wheel frame member 220 are both used to be connected to the ground in a rolling manner, so that the first wheel frame member 210 and the second wheel frame member 220 both roll along the ground, and the storage buffer assembly 400 is located between the first wheel frame member 210 and the bearing plate body 100, and the power supply member 300 is passed through the storage cavity and connected to the storage buffer assembly 400, that is, the storage buffer assembly 400 stores and fixes the power supply member 300 in the storage cavity, so that the storage buffer assembly 400 wraps the power supply member 300. In the process of the first wheel frame member 210 rolling along the ground, the first wheel frame member 210 is vibrated by the force of the ground, and the vibration force generated by the first wheel frame member 210 acts on the storage buffer assembly 400, and the storage buffer assembly 400 plays a buffering role, thereby The vibration impact of the vibration force on the power supply component 300 is weakened, so that the vibration force applied to the power supply component 300 is smaller, thereby solving the problem in the prior art that the power supply component 300 is more likely to vibrate together with the pulley assembly 200, so that the power supply component 300 is less likely to vibrate together with the first wheel frame component 210. Therefore, under the action of the storage buffer assembly 400, the vibration force applied to the power supply component 300 is smaller, so that the power supply component 300 is less likely to fail under a smaller vibration force, so that the storage buffer assembly 400 has a better protective effect on the power supply component 300, and the power supply component 300 is less likely to be damaged under the action of the storage buffer assembly 400, and further the storage buffer assembly 400 has better protection performance on the power supply component 300, that is, the cold light source type skateboard structure 10 has better protection performance on the power supply component 300.
[0050] 2. Since the storage buffer assembly 400 stores and fixes the power supply component 300 in the storage cavity, the storage buffer assembly 400 wraps the power supply component 300, thereby wrapping, binding and fixing the power supply component 300. During the vibration of the first wheel frame 210, the storage buffer assembly 400 plays a buffering role, so that the vibration force on the power supply component 300 is smaller, making it more difficult for the power supply component 300 to be separated from the storage cavity, so that the storage buffer assembly 400 has better restraining performance on the power supply component 300, thereby solving the problem in the prior art that the position of the power supply component 300 on the pulley assembly 200 is easily tilted and offset due to the effect of vibration, making it more difficult for the power supply component 300 to tilt and offset in the storage cavity, thereby improving the position stability of the power supply component 300.
[0051] The above-described embodiments merely represent several implementation methods of the present disclosure. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the disclosed patent. It should be noted that a person of ordinary skill in the art may make various modifications and improvements without departing from the scope of the present disclosure, all of which fall within the scope of protection of the present disclosure. Therefore, the scope of protection of the disclosed patent shall be determined by the appended claims.
Claims
1. A cold light source type skateboard structure, comprising a bearing plate, a pulley assembly and a power supply, wherein the pulley assembly is used for rolling connection with the ground, characterized in that: The cold light source type skateboard structure further includes a storage buffer component and a pad component; The carrier plate is provided with a cold light source portion, and the cold light source portion is electrically connected to the power supply; The pulley assembly includes a first wheel frame member and a second wheel frame member that are arranged opposite to each other; The storage buffer assembly is located between the first wheel frame and the supporting plate, and is detachably connected to the first wheel frame and the supporting plate, respectively. The storage buffer assembly defines a storage cavity, and the power supply is disposed in the storage cavity and connected to the storage buffer assembly. The pad assembly is located between the second wheel frame component and the bearing plate body, and the pad assembly is detachably connected to the second wheel frame component and the bearing plate body respectively.
2. The cold light source type slide plate structure according to claim 1, characterized in that: The supporting plate is provided with a first mounting through hole and a second mounting through hole, and the cold light source portion is located between the first mounting through hole and the second mounting through hole.
3. The cold light source type slide plate structure according to claim 2, characterized in that: The storage buffer assembly is provided with a first avoidance groove, the first wheel frame member is provided with a first through hole, the first avoidance groove is respectively connected with the first mounting through hole and the first through hole to form a first connecting channel; the pad assembly is provided with a second avoidance groove, the second wheel frame member is provided with a second through hole, the second avoidance groove is respectively connected with the second mounting through hole and the second through hole to form a second connecting channel.
4. The cold light source type slide plate structure according to claim 3, characterized in that: The cold light source type skateboard structure also includes a first fastening bolt, a first fastening nut, a second fastening bolt and a second fastening nut, the first fastening bolt passes through the first connecting channel, one end of the first fastening bolt abuts against the inner wall of the first mounting through hole, the other end of the first fastening bolt is threadedly connected to the first fastening nut, the first fastening nut abuts against the first wheel frame part, so that the storage buffer assembly is respectively detachably connected to the first wheel frame part and the bearing plate body; the second fastening bolt passes through the second connecting channel, one end of the second fastening bolt abuts against the inner wall of the second mounting through hole, the other end of the second fastening bolt is threadedly connected to the second fastening nut, and the second fastening nut abuts against the second wheel frame part, so that the pad assembly is respectively detachably connected to the second wheel frame part and the bearing plate body.
5. The cold light source type slide plate structure according to claim 4, characterized in that: The storage buffer assembly includes a first storage buffer body and a second storage buffer body, the first storage buffer body is provided with a first cavity and a first avoidance hole, the second storage buffer body is provided with a second cavity and a second avoidance hole, the first storage buffer body is in contact with the second storage buffer body, the first cavity and the second cavity are connected to form the storage cavity, the first avoidance hole and the second avoidance hole are connected to form the first avoidance groove, the first storage buffer body is detachably connected to the supporting plate and the power supply component, and the second storage buffer body is detachably connected to the power supply component and the first wheel frame component.
6. The cold light source type slide plate structure according to claim 5, characterized in that: The pad assembly includes two stacked pad bodies, each of which is provided with a pad through hole, and the pad through holes between two adjacent pad bodies are connected to form the second avoidance groove, one of the pad bodies is detachably connected to the bearing plate body, and the other pad body is detachably connected to the second wheel frame member.
7. The cold light source type slide plate structure according to claim 6, characterized in that: The first storage buffer body, the second storage buffer body and each of the pad bodies are all rubber plate layer structures.
8. The cold light source type slide plate structure according to claim 1, characterized in that: The power supply component and the storage buffer component are interference fit.
9. The cold light source type slide plate structure according to claim 1, characterized in that: The thickness of the storage buffer assembly is consistent with the thickness of the pad assembly.
10. The cold light source type slide plate structure according to claim 1, characterized in that: The cold light source portion is an LED light source portion.