Swing-type bicycle/tricycle

A technology for twisting and pinching two-wheeled vehicles, which is applied in the field of two-wheeled and three-wheeled motorcycles and electric vehicles, and can solve the problems of wide roads, easy topple over, high energy consumption, etc.

Inactive Publication Date: 2015-03-25
彭加桂
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

But it is not easy to hold steady when starting, low speed and when you want to stop, and you can't stand and stop, and it is easy to fall over
The tricycle is relatively balanced, but it should not be ridden too fast or turn too sharply, otherwise, it is easy to fall over
In comparison, a large car is comfortable, stable and safe, but it consumes a lot of energy and takes up a wide road. Most of the time, only one or two people in the car run on the way to and from get off work.

Method used

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  • Swing-type bicycle/tricycle
  • Swing-type bicycle/tricycle
  • Swing-type bicycle/tricycle

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0016] Such as figure 1 , figure 2 As shown in a twisting two-wheeled vehicle and a tricycle, a gyroscope 7 that can sense the stability and skew of the vehicle body and a gravity sensor 8 that can weigh inertial force and side pressure like an electronic scale are installed on the vehicle body; Also be equipped with can according to gyroscope 7, gravity sensor 8 signals, the motor 1 that rotates left and right and driven by motor 1, the single fork 2 that can swing left and right. Fork 2 is installed in the pedal position of stepping on foot, and makes relatively wide pedal sample structure, doubles as fork shaft with motor shaft 9, and one end of fork 2 is movably connected with vehicle body 3. The other end of fork 2 is vertically provided with a vertical rod 6 for installing seat plate 5 , and seat plate 5 is installed on the top of vertical rod 6 . The line path micro-processing system of the gyroscope 7 that can sense the stability and skew of the vehicle body and the...

Embodiment 2

[0018] Such as image 3 , Figure 4 As shown in a twisting two-wheeled vehicle and a tricycle, a gyroscope 7 that can sense the stability and skew of the vehicle body and a force sensor 8 that can weigh inertial force and side pressure like an electronic scale are installed on the vehicle body; Also installed can according to gyroscope 7 and gravity sensor 8 signals, the motor 21 that rotates left and right and driven by motor 21, the fork 17 and the fork 18 that can swing in parallel left and right. The swing link 17 and the swing link 18 are installed between the bottom plate 24 and the vehicle body 3 . And one end of the fork 17 and the fork 18 is movably connected with the base plate 24, and one end is movably connected with the vehicle body 3. Seats can be installed above the base plate 24, and a cockpit can also be installed. The rack 23 meshed with the gear 22 is installed below the base plate 24, and the motor 21 is fixedly connected with the gear 22 again. Rotating...

Embodiment 3

[0020] Such as Figure 5 , Image 6 , Figure 7 Shown are two-wheelers and three-wheelers. The steering structure of the car is like this: on both sides of the base plate 24, there is a direction bar 25 and a direction bar 26 that can be pushed and pulled forward and backward respectively. , the middle section of the direction rod 25 and the direction rod 26, and then respectively connected with the left and right two pull rods 29 and the pull rod 30 that drive the front wheel 12 to turn, and the other end of the pull rod 29 and the pull rod 30 are connected to the front fork of the front wheel 12 respectively. The activities on the left and right sides are connected. The upper ends of the direction bar 25 and the direction bar 26 are respectively erected with a handle 27 and a handle 28 that are movably connected to each other. Handle 27 and handle 28 can move outwards and left and right. The tail end of the handle 27 and the handle 28 is connected to the front and rear ...

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PUM

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Abstract

The invention provides a swing-type bicycle/tricycle. The swing-type bicycle/tricycle can swing leftwards and rightwards, and the gravity center of the swing-type bicycle/tricycle can be adjusted to keep balance and stability. A gyroscope capable of inducting deflection of a bicycle/tricycle body and a gravity sensor capable of inducting the magnitude of inertial force are installed on the bicycle/tricycle body. A motor and a swing rod which can rotate leftwards and rightwards according to signals of the gyroscope and signals of the gravity sensor are further installed. The swing rod drives the bicycle/tricycle body to swing leftwards and rightwards to keep the bicycle/tricycle body balanced and stable.

Description

Technical field: [0001] The present invention relates to a means of transportation, which is a two-wheeled and three-wheeled motorcycle and an electric vehicle capable of swinging left and right, automatically adjusting the center of gravity, and maintaining balance. Background technique: [0002] Existing two-wheeled motorcycles and electric vehicles are all balanced and flexible when riding. But at the start, low speed and when you want to stop, it is not easy to hold firmly, and you can't stand and stop, and it is easy to fall over. The tricycle is relatively balanced, but it should not be ridden too fast or turn too sharply, otherwise, it is easy to fall over. In comparison, a large car is comfortable, stable and safe, but it consumes a lot of energy and takes up a wide road. Most of the time, only one or two people in the car run on the way to and from get off work. There is no economical economy of motorcycles and electric vehicles. Invention content: [0003] The...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B62K11/00B62K5/027
Inventor 彭加桂
Owner 彭加桂
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