Jet sliding plate capable of detecting state of sliding plate in real time

By designing a jet skateboard that can detect the status of the skateboard in real time, using high-strength lightweight composite materials and injection devices, the problems of insufficient power, poor handling and poor environmental performance of the skateboard are solved, and the high-speed propulsion, handling and environmental performance of the skateboard are improved.

CN120114818AInactive Publication Date: 2025-06-10NANJING INST OF MECHATRONIC TECH
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Patent Information

Application Number
CN202510278242.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-10
Publication Date
2025-06-10
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing skateboards are insufficient power, poor handling and poor environmental performance, which is difficult to meet users' needs for high-speed, convenient travel and diverse gameplay.

Method used

A jet skateboard that can detect the state of the skateboard in real time is designed. The skateboard body is made of high-strength lightweight composite material, equipped with a jet device, a power source, a sensing unit and safety equipment. The jet device generates a powerful airflow to provide thrust to the skateboard. The sensing unit detects the state of the skateboard in real time, and the user controls the steering and tilt of the skateboard through body changes.

Benefits of technology

The skateboard is realized with high-speed propulsion, improved handling and gameplay, equipped with emergency braking functions, enhanced driving safety, and reduced pollution through the power source of lithium batteries or small safety fuel tanks, and met environmental protection requirements.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of skateboards, in particular to a jet skateboard capable of detecting the state of the skateboard in real time. The lower end of the skateboard main body is fixedly connected with a bearing and rollers, the tail part of the lower end of the skateboard main body is provided with an injection device for providing forward thrust for the skateboard main body, and the lower end of the skateboard main body is provided with a power source for providing kinetic energy required by the injection device; a sensing unit for detecting the state of the skateboard body in real time is fixedly connected to the middle of the lower end of the skateboard body, and the safety equipment comprises a mechanical shoe fixedly connected to the upper end of the skateboard body and an arm operation control device sleeving an arm; electricity or fuel oil can be selected as energy according to requirements, the lithium battery has high energy conversion efficiency, the jet sliding plate does not need to discharge tail gas, power output of the fuel oil is more stable, a user controls steering and inclination of the sliding plate through body changes of the user, an emergency braking function is further achieved, and the driving safety of the user is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of skateboards, and particularly to a jet skateboard capable of real-time detecting the state of the skateboard. Background Art

[0002] Skateboarding is a sport deeply loved by young people. Skateboards are usually made of wood or composite materials. Skateboards can be designed into various shapes and sizes according to different needs, and can change the motion state by adjusting the weight and center of gravity, so as to achieve precise sliding and jumping actions.

[0003] Traditional skateboards mainly rely on the user's feet to push on the ground or external forces such as going downhill to obtain power, with limited speed and endurance. Although electric skateboards have improved the power performance to a certain extent, there are still problems such as large battery weight, long charging time, and insufficiently strong power output. In addition, the existing skateboards also need to be improved in terms of controllability and flexibility, and it is difficult to meet the user's needs for high-speed, convenient travel and diverse playing methods.

[0004] Therefore, in view of the above problems of low concentration efficiency and non-recyclable heat, a jet skateboard capable of real-time detecting the state of the skateboard can be designed. Summary of the Invention

[0005] In order to overcome the problems of insufficient power, poor controllability and poor environmental protection performance of skateboards.

[0006] The technical solution of the present invention is: a jet skateboard capable of real-time detecting the state of the skateboard, including a skateboard main body, bearings and rollers; and also including safety equipment. The lower end of the skateboard main body is fixedly connected with bearings and rollers, and a jet device for providing a forward thrust to the skateboard main body is installed at the tail of the lower end of the skateboard main body. A power source for providing the kinetic energy required by the jet device is installed at the lower end of the skateboard main body. A sensing unit for real-time detecting the state of the skateboard main body is fixedly connected to the middle of the lower end of the skateboard main body. The safety equipment includes a mechanical shoe fixedly connected to the upper end of the skateboard main body and an arm operation control device sleeved on the arm.

[0007] Preferably, the jet skateboard is placed on the ground through bearings and rollers. The arm operation control device in the safety equipment is worn on the arm. The user stands on the mechanical shoe on the skateboard main body. The mechanical shoe is strengthened for the human foot through the arm operation control device. The power source provides power, the jet device generates a strong airflow to provide a forward thrust to the skateboard main body, the sensing unit real-time detects the state of the skateboard main body, and the user controls the turning and tilting of the skateboard main body through the changes of his own body.

[0008] Preferably, the skateboard body is made of a high-strength lightweight composite material, such as carbon fiber reinforced composite material. The upper surface of the skateboard body is provided with anti-slip texture. The shape of the skateboard body is designed to be streamlined. The overall shape of the skateboard body is long and strip-shaped, with a pointed front end and a wide rear end. A braking device is also provided on the skateboard body.

[0009] Preferably, the power source is a small high-performance lithium battery pack or a small safety fuel tank.

[0010] Preferably, the jetting device adopts a micro-turbine engine or a high-performance electric injector. The nozzle of the jetting device is designed to have an adjustable angle structure.

[0011] Preferably, the sensing unit is an attitude sensor, including a three-axis gyroscope, a three-axis accelerometer, and a three-axis electronic compass.

[0012] Preferably, two mechanical shoes are provided, and the mechanical shoes adopt an electrically retractable and adjustable design. The retraction and extension of the mechanical shoes are controlled by an arm operation control device.

[0013] Preferably, the jet skateboard further includes an emergency braking device, which includes a manual braking device installed on the skateboard body and a braking button on the arm operation control device.

[0014] The present invention also provides a method for manufacturing a jet skateboard that can detect the skateboard state in real time, and the steps are as follows:

[0015] Step 1: Manufacture the skateboard body

[0016] Select a suitable carbon fiber reinforced composite material, manufacture a mold for the skateboard body according to the design drawings, place the carbon fiber reinforced composite material in the mold in a certain laying manner, perform high-temperature curing and molding. After molding, the surface of the skateboard body is treated to remove burrs and defects, and then anti-slip texture is pressed on its upper surface, and bearings and rollers are installed on the lower surface;

[0017] Step 2: Install the jetting device at the bottom of the skateboard body. The jetting device uses a micro-turbine engine or a high-performance electric injector;

[0018] Step 3: Install the operation and energy system

[0019] Equip an intelligent control system to adjust the jetting intensity and direction. In terms of energy supply, if it is electric, the power source is selected as a high-capacity battery; if it is fuel, the power source adopts a small safety fuel tank;

[0020] Step 4: Install the sensing unit

[0021] The installation position of the sensing unit on the skateboard body is near the center of the skateboard body or close to the front end;

[0022] Step Five: Install Safety Equipment

[0023] The mechanical shoes in the safety equipment are installed at the upper end of the skateboard body.

[0024] Advantages of the present invention: Electricity or fuel can be selected as the energy source according to requirements. The lithium battery has a high energy conversion efficiency and small energy loss, and is more energy-saving and environmentally friendly than the fuel power device. At the same time, because there is no traditional fuel combustion process, the jet skateboard does not need to emit exhaust gas, which can effectively reduce pollution and meet the requirements of modern society for low-carbon environmental protection. The power output of fuel is more stable, providing a powerful thrust for the skateboard and bringing an unprecedented speed experience. The maximum speed is greatly improved compared with traditional skateboards, allowing users to feel the speed and passion of flying. The user controls the steering and tilting of the skateboard through their own body movements, which makes the jet skateboard more playable and interesting, and can bring unprecedented control fun to users. In addition, it is also equipped with an emergency braking function, which can quickly decelerate and stop the skateboard in case of an emergency, further enhancing the driving safety of users. Description of the Drawings

[0025] Figure 1 Shown is the first three-dimensional structural schematic diagram of the jet skateboard capable of real-time detecting the skateboard state of the present invention;

[0026] Figure 2 Shown is the second three-dimensional structural schematic diagram of the jet skateboard capable of real-time detecting the skateboard state of the present invention;

[0027] Figure 3 Shown is the cross-sectional three-dimensional structural schematic diagram of the jet skateboard capable of real-time detecting the skateboard state of the present invention;

[0028] Figure 4 Shown is the three-dimensional structural schematic diagram of the steam generating device in the jet skateboard capable of real-time detecting the skateboard state of the present invention.

[0029] Description of the Reference Numerals: 1. Skateboard body; 2. Power source; 3. Jet device; 4. Sensing unit; 5. Safety equipment; 51. Mechanical shoes; 52. Arm operation control device; 6. Bearing and roller. Detailed Embodiments

[0030] The present invention will be further described below with reference to the drawings and embodiments.

[0031] Embodiment 1

[0032] Please refer to Figures 1-4, the present invention provides an embodiment: a jet skateboard capable of real-time detecting the skateboard state, which includes a skateboard main body 1, bearings and rollers 6; it also includes safety equipment 5. The lower end of the skateboard main body 1 is fixedly connected with bearings and rollers 6. At the tail of the lower end of the skateboard main body 1, a jet device 3 for providing forward thrust to the skateboard main body 1 is installed. At the lower end of the skateboard main body 1, a power source 2 for providing the kinetic energy required by the jet device 3 is installed. In the middle of the lower end of the skateboard main body 1, a sensing unit 4 for real-time detecting the state of the skateboard main body 1 is fixedly connected. The safety equipment 5 includes a mechanical shoe 51 fixedly connected to the upper end of the skateboard main body 1 and an arm operation control device 52 sleeved on the arm. The skateboard main body 1 is made of a high-strength lightweight composite material, such as carbon fiber reinforced composite material. The upper surface of the skateboard main body 1 is provided with anti-slip textures. The shape of the skateboard main body 1 is designed to be streamlined. The overall shape of the skateboard main body 1 is long strip-shaped, with a pointed front end and a wide rear end. A braking device is also provided on the skateboard main body 1. The power source 2 is a small high-performance lithium battery pack. The jet device 3 uses a high-performance electric injector. The nozzle of the jet device 3 is designed to be an adjustable-angle structure. The sensing unit 4 is an attitude sensor, including a three-axis gyroscope, a three-axis accelerometer, and a three-axis electronic compass. There are 2 mechanical shoes 51, and the mechanical shoes 51 are designed to be electrically retractable and adjustable. The retraction of the mechanical shoes 51 is controlled by the arm operation control device 52. This jet skateboard also includes an emergency braking device, which includes a manual braking device installed on the skateboard main body 1 and a braking button on the arm operation control device 52.

[0033] The present invention also provides a manufacturing method of a jet skateboard capable of real-time detecting the skateboard state, and the steps are as follows:

[0034] Step 1: Manufacture the skateboard main body 1

[0035] Select a suitable carbon fiber reinforced composite material, manufacture a mold of the skateboard main body 1 according to the design drawings, put the carbon fiber reinforced composite material into the mold in a certain laying manner, perform high-temperature curing and molding. After molding, the surface of the skateboard main body 1 is treated to remove burrs and defects, and then anti-slip textures are pressed on its upper surface, and bearings and rollers 6 are installed on the lower surface;

[0036] Step 2: Install the jet device 3 at the bottom of the skateboard main body 1, and the jet device 3 uses a high-performance electric injector;

[0037] Step 3: Install the operation and energy systems

[0038] Equip an intelligent control system to adjust the jet intensity and direction. In terms of energy supply, the power source 2 selects a high-capacity battery;

[0039] Step 4: Install the sensing unit 4

[0040] The installation position of the sensing unit 4 on the skateboard main body 1 is near the center of the skateboard main body 1;

[0041] Step Five: Install Safety Equipment 5

[0042] The mechanical shoes 51 in the safety equipment 5 are installed at the upper end of the skateboard main body 1.

[0043] Embodiment 2

[0044] Please refer to Figures 1-4 , the present invention provides an embodiment: a jet skateboard capable of real-time detecting the state of the skateboard, including a skateboard main body 1, bearings and rollers 6; further including safety equipment 5, the lower end of the skateboard main body 1 is fixedly connected with bearings and rollers 6, a jet device 3 for providing a forward thrust for the skateboard main body 1 is installed at the tail of the lower end of the skateboard main body 1, a power source 2 for providing the kinetic energy required by the jet device 3 is installed at the lower end of the skateboard main body 1, a sensing unit 4 for real-time detecting the state of the skateboard main body 1 is fixedly connected to the middle of the lower end of the skateboard main body 1, the safety equipment 5 includes mechanical shoes 51 fixedly connected to the upper end of the skateboard main body 1 and an arm operation control device 52 sleeved on the arm, the skateboard main body 1 is made of a high-strength lightweight composite material, such as carbon fiber reinforced composite material, the upper surface of the skateboard main body 1 is provided with anti-slip textures, the shape of the skateboard main body 1 is designed to be streamlined, the overall shape of the skateboard main body 1 is long and strip-shaped, with a pointed front end and a wide rear end, a braking device is also provided on the skateboard main body 1, the power source 2 is a small safety fuel tank, the jet device 3 adopts a micro-turbine engine, the nozzle of the jet device 3 is designed as a structure with an adjustable angle, the sensing unit 4 is an attitude sensor, including a three-axis gyroscope, a three-axis accelerometer and a three-axis electronic compass, there are 2 mechanical shoes 51, and the mechanical shoes 51 adopt an electrically operated telescopic adjustable design, the telescoping of the mechanical shoes 51 is controlled by the arm operation control device 52, the jet skateboard further includes an emergency braking device, and the emergency braking device includes a manual braking device installed on the skateboard main body 1 and a braking button on the arm operation control device 52.

[0045] The present invention also provides a manufacturing method of a jet skateboard capable of real-time detecting the state of the skateboard, and the steps are as follows:

[0046] Step One: Manufacture the skateboard main body 1

[0047] Select a suitable carbon fiber reinforced composite material, manufacture the mold of the skateboard main body 1 according to the design drawing, put the carbon fiber reinforced composite material into the mold in a certain laying manner, carry out high-temperature curing and molding, the formed skateboard main body 1 is subjected to surface treatment to remove burrs and defects, and then anti-slip textures are pressed on its upper surface, and bearings and rollers 6 are installed on the lower surface;

[0048] Step Two: Install the jet device 3 at the bottom of the skateboard main body 1, and the jet device 3 uses a micro-turbine engine;

[0049] Step Three: Install the operation and energy system

[0050] Equipped with an intelligent control system to adjust the spraying intensity and direction. In terms of energy supply, the power source 2 uses a small and safe fuel tank;

[0051] Step Four: Install the sensing unit 4

[0052] The installation position of the sensing unit 4 on the skateboard main body 1 is near the front end of the skateboard main body 1;

[0053] Step Five: Install the safety equipment 5

[0054] The mechanical shoes 51 in the safety equipment 5 are installed at the upper end of the skateboard main body 1.

[0055] When working, place the jet skateboard on the ground through the bearings and rollers 6. The arm operation control device 52 in the safety equipment 5 is worn on the arm. The user stands on the mechanical shoes 51 on the skateboard main body 1. The mechanical shoes 51 are controlled by the arm operation control device 52 to strengthen the human feet. The power source 2 provides power, and the jet device 3 generates a strong airflow to provide a forward thrust for the skateboard main body 1. The sensing unit 4 detects the state of the skateboard main body 1 in real time. The user controls the steering and tilting of the skateboard main body 1 through their own body movements. When an emergency occurs, the user can immediately stop the jet power through the brake button on the arm operation control device 52 or the manual braking device installed on the skateboard main body 1, and activate the braking system to quickly decelerate and stop the skateboard main body 1.

[0056] Through the above steps, electricity or fuel can be selected as the energy according to requirements. Lithium batteries have high energy conversion efficiency. The jet skateboard does not need to emit exhaust gas, which can effectively reduce pollution. The power output of fuel is more stable, providing a strong thrust for the skateboard. The user controls the steering and tilting of the skateboard through their own body movements, which makes the jet skateboard more playable and interesting, and can bring unprecedented control fun to users. And it is also equipped with an emergency braking function. When an emergency occurs, it can quickly decelerate and stop the skateboard, further enhancing the driving safety of users to solve the problems of insufficient power, poor controllability and poor environmental performance of the skateboard.

[0057] The above has described the embodiments of the present invention in detail with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the gist of the present invention.

Claims

1. A jetting slide capable of detecting the state of a slide in real time, comprising a slide body (1) and a bearing and a roller (6); characterized in that: The invention also includes safety equipment (5), wherein the lower end of the skateboard body (1) is fixedly connected to a bearing and a roller (6), the lower end of the skateboard body (1) is equipped with a spray device (3) for providing a forward thrust to the skateboard body (1), the lower end of the skateboard body (1) is equipped with a power source (2) for providing the kinetic energy required by the spray device (3), and the middle part of the lower end of the skateboard body (1) is fixedly connected to a sensor unit (4) for real-time detection of the state of the skateboard body (1), and the safety equipment (5) includes a mechanical shoe (51) fixedly connected to the upper end of the skateboard body (1) and an arm operation control device (52) sleeved on the arm.

2. The jet slide capable of detecting the slide state in real time according to claim 1, characterized in that: The skateboard body (1) is made of a high-strength and lightweight composite material, such as a carbon fiber reinforced composite material. The upper surface of the skateboard body (1) is provided with an anti-slip texture. The shape of the skateboard body (1) is designed to be streamlined. The overall shape of the skateboard body (1) is a long strip with a pointed front end and a wide rear end. A brake device is also provided on the skateboard body (1).

3. The jet slide capable of detecting the slide state in real time according to claim 1, characterized in that: The power source (2) is a small high-performance lithium battery pack or a small safety oil tank.

4. The jet slide capable of detecting the slide state in real time according to claim 1, characterized in that: The injection device (3) adopts a micro-turbine engine or a high-performance electric injector, and the nozzle of the injection device (3) is designed as a structure with adjustable angle.

5. The jet slide capable of detecting the slide state in real time according to claim 1, characterized in that: The sensing unit (4) is a posture sensor, comprising a three-axis gyroscope, a three-axis accelerometer and a three-axis electronic compass.

6. The jetting slide capable of detecting the slide state in real time according to claim 1, characterized in that: Two mechanical shoes (51) are provided, and the mechanical shoes (51) are designed to be electrically retractable and adjustable, and the retraction of the mechanical shoes (51) is controlled by an arm-operated control device (52).

7. The jet slide capable of detecting the slide state in real time according to claim 1, characterized in that: The jetting skateboard also includes an emergency braking device, which includes a manual braking device installed on the skateboard body (1) and a braking button on the arm operation control device (52).

8. The jet slide capable of detecting the slide state in real time according to any one of claims 1 to 7, characterized in that: The production steps are as follows: Step 1: Make the skateboard body (1) Selecting a suitable carbon fiber reinforced composite material, manufacturing a mold of a skateboard body (1) according to a design drawing, placing the carbon fiber reinforced composite material into the mold according to a certain layering method, and performing high-temperature curing molding, performing surface treatment on the molded skateboard body (1) to remove burrs and defects, and then pressing an anti-slip texture on its upper surface, and installing bearings and rollers (6) on the lower surface; Step 2: Installing a spray device (3) at the bottom of the skateboard body (1), wherein the spray device (3) uses a micro-turbine engine or a high-performance electric sprayer; Step 3: Install operating and energy systems Equipped with an intelligent control system to adjust the spray intensity and direction. In terms of energy supply, if it is electric, the power source (2) uses a high-capacity battery; if it is fuel, the power source (2) uses a small safety tank; Step 4: Install the sensor unit (4) The installation position of the sensor unit (4) on the skateboard body (1) is located near the center or near the front end of the skateboard body (1); Step 5: Install safety equipment (5) The mechanical shoe (51) in the safety equipment (5) is installed on the upper end of the skateboard body (1).