DESIGN AND FABRICATION OF PNEUMATIC LIFTING TABLE
ABSTRACT
This project is developed for the users to lift any weight using air pressure. High pressure air is stored in a tank. A cylinder with piston arrangement is connected with a zig-zag pattern. Two pipes connected with ball valves connect the air tank with the cylinder. When one valve is opened, the air rushes out into the cylinder. Therefore the piston moves in one direction.
The rod connected with the piston pushes the zig-zag frame so that the lift moves up. When the other ball valve is opened, the air inside the cylinder is released. Therefore the lift comes down.
Introduction:
A hydraulic fluid power system is defined as a means of power transmission in which relatively in compressible fluid is used as the power transmitting media. The primary purpose of pneumatic system is the transfer of energy from one location to another location and this energy into useful work.
In this project of the fabricated model of will describe the working principles as well as hydraulic machines application and its advantages. Efforts have been taken to show the path of hydraulic fluid as it is applied and released. The system pressure can be generated in the form of any physical action which result a compression over the pneumatic pressure which is developed in the form of air compressing externally can be applied to activate system. There is a constant relation between pressure density, and volume, According to Bernoulli’s equation.
Lift tables are used to raise and position work pieces for ergonomic access. They are used for material positioning, load positioning, or lifting. This lifting has a pneumatic power source and is safe for heavy paint applications and other hazardous locations. This lift comes with alternative power sources
CONSTRUCTION AND WORKING
This project is developed for the users to lift any weight using air pressure. High pressure air is stored in a tank. A cylinder with piston arrangement is connected with a zig-zag pattern. Two pipes connected with ball valves connect the air tank with the cylinder. When one valve is opened, the air rushes out into the cylinder. Therefore the piston moves in one direction. The rod connected with the piston pushes the zig-zag flame so that the lift moves up. When the other ball valve is opened, the air inside the cylinder is released. Therefore the lift comes down. The main objective of Zig-Zag Pneumatic Lift project is developing a lift system for lifting any weight using air pressure.
In this project, we stored high pressure air in a tank. A zig-zag pattern is connected with a cylinder with piston arrangement.
The cylinder and the air tank are connected by the two pipes with ball valves. When one ball valve is opened, the high pressure air will enter into the cylinder. Hence, the piston will move in one direction. The rod connected with the piston pushes the zig -zag frame so that the lift moves up. When we open the other ball valve, the air inside the cylinder is released. So, the lift comes down.
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Up to how much weight can the air pressure handle? Or, is it directly proportional?
is it possible to get all the calculations for this table? and the project itself?
Hello you are selling of the product