Pipeline air-suspending transportation device

A kind of transportation device and suspension technology, applied in the field of vehicles, can solve the problems of insufficient driving power, non-availability, and inconvenient use, and achieve significant energy-saving effects, improve operating efficiency, and improve safety.

Inactive Publication Date: 2017-08-29
BEIJING KANGHUAYUAN SCI TECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Existing reaction-driven engines include air-breathing engines and rocket jet engines, among which air-breathing engines are also commonly used aero-engines, which are driven by fuel combustion when the actual high-power driving demand is required, but in some cases the driving power It still does not meet the requirements or is inconvenient to use, and does not yet have a high-power reaction-driven engine that uses electric energy as the main drive to supply energy directly or indirectly

Method used

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  • Pipeline air-suspending transportation device

Examples

Experimental program
Comparison scheme
Effect test

experiment example ( 1

[0038] Experimental example (1): Simulation experiment of pipeline semi-vacuum state:

[0039] Experimental materials: JetCat P120 SX turbojet model engine, remote control, stainless steel plate, SYT-2000V intelligent digital pressure anemometer (Shanghai Green Technology).

[0040] Preparation of experimental device:

[0041] Welded 400X 400mm stainless steel square tube, 6 meters long. Take the stainless steel plate and weld a stainless steel square box with a length, width and height of 400X 405X405mm. The front stainless steel plate of the square box is separated by 5mm diameter holes at 15mm intervals, and the bottom of the square box rear stainless steel plate has a diameter of 155mm. Weld the front end of the stainless steel square box to one end of the stainless steel square tube. The rear end of the stainless steel box is airtightly connected and fixed to the air inlet of the JetCat P120 SX turbojet model engine. Take two SYT-2000V intelligent digital pressure anem...

experiment example ( 2

[0044] Experimental example (2): Simulation experiment of pipeline closed semi-vacuum state:

[0045] Experimental materials: JetCat P120 SX turbojet model engine, remote control, stainless steel plate, SYT-2000V intelligent digital pressure anemometer (Shanghai Green Technology).

[0046] Preparation of experimental device:

[0047] Welded 400X 400mm stainless steel square tube, 6 meters long. Take the stainless steel plate and weld a stainless steel square box with a length, width and height of 400X 405X405mm. The front stainless steel plate of the square box is separated by 5mm diameter holes at 15mm intervals, and the bottom of the square box rear stainless steel plate has a diameter of 155mm. Weld the front end of the stainless steel square box to one end of the stainless steel square tube. The rear end of the stainless steel box is airtightly connected and fixed to the air inlet of the JetCat P120 SX turbojet model engine. Another welded 400X 400mm stainless steel squ...

experiment example ( 3

[0055] Experimental example (3): Simulation experiment of pipeline suspension operation:

[0056] Experimental materials: JetCat P120 SX turbojet model engine, stainless steel plate, stainless steel square tube, remote control.

[0057] Preparation of experimental device:

[0058]Welded 400X 400mm stainless steel square pipe, 6 meters long, as the running pipeline. Take a stainless steel plate and weld a stainless steel square box with a length, width, and height of 600X 380X 380mm as a carrying device. Install pulleys on the left and right sides of the carrying device. The pulleys protrude outward at a height of 5mm. A hole with a diameter of 5mm is opened, and a round hole with a diameter of 155mm is opened at the bottom of the stainless steel plate at the rear end of the square box. Install the JetCat P120 SX turbojet model engine into the stainless steel box, the air inlet is in the front, and the exhaust port is connected and fixed to the rear end of the stainless steel...

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PUM

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Abstract

The invention provides a pipeline air-suspending transportation device which is characterized by comprising a running pipeline, wherein a running guide rail is disposed on the bottom face inside the running pipeline, and a carrying device runs on the running guide rail; the carrying device has a carriage structure; and an air-breathing engine is disposed inside the carrying device, an output end of the air-breathing engine is connected to an air vent disposed on the rear end of the carrying device, and an input end of the air-breathing engine is connected to a second-stage air inlet structure which is disposed on the front end of the carrying device by an air inlet pipeline.

Description

technical field [0001] The invention relates to a pipeline air suspension transportation device, belonging to the technical field of vehicles. Background technique [0002] In our life, the commonly used means of transportation are automobiles, trains, airplanes, ships, electric vehicles, motorcycles, etc. Among them, there are many types of cars, which can be divided into passenger cars mainly for people, trucks for carrying goods, and special-purpose vehicles for construction, agricultural production, sports competitions, etc. according to their use; The adaptability can be divided into ordinary cars and off-road vehicles; according to the type of power plant, it can be divided into piston internal combustion engine vehicles, electric vehicles, and gas turbine vehicles. There are also many types of aircraft, which can be divided into civil passenger aircraft, military transport aircraft, military combat aircraft, etc. according to their uses; according to the type of engi...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B61B13/10
CPCB61B13/10
Inventor 刘凤鸣
Owner BEIJING KANGHUAYUAN SCI TECH CO LTD
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