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Camless Rotating Cylinder Engine

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Camless Rotating Cylinder Engine Project Presentation Recognition of the problem: Fossil fuels are at the verge of extinction. Its obvious we just cant stop using ... – PowerPoint PPT presentation

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Title: Camless Rotating Cylinder Engine


1
Camless Rotating Cylinder Engine
  • Project Presentation

2
Recognition of the problem
  • Fossil fuels are at the verge of extinction.
  • Its obvious we just cant stop using them at once.
  • We have to use them wisely and efficiently so
    that it lasts longer and also creates less
    pollution.

3
What is the project ?
  • It is the first major modification since the
    invention of the four stroke engine.
  • This engine uses a rotating cylinder mechanism
    for the operation of valves.
  • Use of this multifunctional cylinder decreases
    the parts count and weight of the engine also
    gets decreased thus increasing the overall
    performance of the engine.

4
Why automobile industry needs such change?
  • Various drawbacks of poppet valves as follows-
  • Reduced efficiency
  • More number of parts to operate poppet valve
  • Extra manufacturing, maintenance and handling
    cost

5
THE CHANGE
  • The cavities on the sleeve are made to function
    as inlet and outlet valves for the CRC engine.

6
  • A pinion attached to the crankshaft drives crown
    gear which is attached to the sleeve which
    rotates at half the crankshaft speed

7
How does it work?
  • The four strokes of the CRC engine are as follows
  • Suction
  • Compression
  • Power
  • Exhaust

8
Suction
  • Piston moves from the TDC to BDC with exhaust
    valve closed inlet valve open

9
Compression
  • In this stroke both valves are closed the
    piston is moving from BDC to TDC.

10
Power
  • Spark plug ignites the fuel during this stroke
    while both valves are closed, and the piston
    moves from TDC to BDC.

11
Exhaust
  • Piston moves from BDC to TDC and the exhaust
    valve is opened.

12
BENEFITS
  • Light Weight
  • Better Fuel Efficiency
  • Easy economic to manufacture maintenance
  • Less number of moving parts
  • No special machinery needed for manufacturing
  • Energy conserving
  • Better power output
  • Multiple fuel capability
  • Less Noisy
  • Compact in size
  • Dual Power Output
  • Multi Utility Designs
  • Less Vibration
  • Portable engine size possible
  • No valve bounce at high speed

13
Future Research Direction
  • Decreasing friction between sleeve head by
    using floating seals
  • Increasing turbulence by changing piston design
  • Decreasing the problem of overheating at full
    load by direct cylinder oil cooling
  • Decreasing oil consumption by revised
    cylinder/crankcase oil distribution
  • Decreasing seal wear by using powder coating
    technology for seal material
  • Use of self lubricating metals for rotting
    cylinder/sleeve to further reduce the frictional
    losses.

14
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