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Pneumatic Jack

Er Yogendra Singh Rajput December 12, 2025
Pneumatic Jack - Mechanical Project
Auto-Mobile Engineering

Pneumatic
Car Jack

Design and fabricate an air-powered lifting system. Harness the power of Compressed Air to lift heavy loads effortlessly using pneumatic cylinders.

Get Presentation Slides (PPT)
CYLINDER
AIR IN →

2 Ton Capacity

100 PSI Pressure

Engineering Concepts

Mechanism Explained

Compressed Air

Potential energy of compressed air is converted into kinetic energy. Air acts as the working fluid.

Double Acting Cylinder

Uses air to extend and retract the piston rod, providing controlled lifting and lowering action.

Directional Control

A 5/2 Way Direction Control Valve (DCV) manages the airflow path to control cylinder movement.

COMPRESSOR

Air

5/2 VALVE

Control Logic

Pressure

CYLINDER

LIFTING FORCE GENERATED

Construction Guide

Follow these steps to build your model.

1

Base Frame

Fabricate a stable metal base to hold the cylinder and control valves securely.

2

Cylinder Mounting

Mount the pneumatic cylinder vertically. Ensure alignment for smooth piston movement.

3

Piping & Valve

Connect PU pipes from the valve to cylinder ports. Use connectors to prevent leaks.

4

Pressure Test

Connect to compressor. Check for air leaks. Test lifting capacity with weights.

Materials Required (BOQ)

Pneumatic Cylinder

Double Acting, 50mm Stroke

5/2 DC Valve

Hand Lever Operated

PU Hose Pipes

6mm/8mm Diameter

Connectors

Push-fit fittings

Popular Search Terms

Pneumatic Jack Project Mechanical Engineering Final Year Hydraulic vs Pneumatic Automobile Jack Design Air Compressed Lifting Fabrication Project PDF

Trending Hashtags

#PneumaticProject #MechanicalEngineering #Automobile #DIYProject #FluidMechanics #StudyForNext #Fabrication

EDUCATIONAL PURPOSE ONLY

This project design, report, and instructions are intended for educational and learning purposes. Students are encouraged to build the model themselves to understand the engineering concepts practically. Intellectual property of the report structure belongs to Study For Next.

© 2024 Study For Next. Mechanical Engineering Dept.
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