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2 Stoke Engines Everything a 4 stroke engine does in 2 revolutions a 2 stroke engine does in 1 revolution of the crankshaft 11/2001
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2 Stroke Engines The next page in your notebooks will be “2 stroke engines” page #_________ There will be a “2 Stroke Quiz” _______ Lets start with the names of the parts 11/2001
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2 Stoke Engines part names
Cylinder Still uses a flywheel (not shown) Combustion chamber Exhaust port No Valve Train Crankcase Reed valve Piston Connecting Rod Crankshaft Intake port Transfer port 11/2001
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2 Stroke Engines Turn your page over and lets start with the strokes
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Intake/________ Stroke
TDC BDC Reed Valve Is sucked open Piston moves from BDC to TDC Air/Fuel/Oil mixture is sucked into crankcase 11/2001
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Compare intake strokes
Two Stroke Piston BDC to TDC A/F/O mixture sucked into crankcase Four Stroke Piston TDC to BDC A/F mixture sucked into cylinder 11/2001
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Down to bottom of page Reed Valve TDC BDC Shuts Piston gets to TDC
Air/Fuel/Oil mixture is now trapped in crankcase 11/2001
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Crankcase compression (primary compression)
TDC Reed Valve sealing BDC Piston moves back To BDC Air/Fuel/Oil mixture is now pressurized in crankcase 11/2001
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Crankcase compression
Is only a few pounds of pressure per square inch (psi) [very weak] Cylinder compression in a four stroke engine was several psi [very strong] The crankcase in a two stroke engine has to be very small so we can build some pressure when the piston is moving to BDC 11/2001
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What is going to happen when the top of piston gets to here?
Crankcase Compression 11/2001
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A/F/O mixture squirts into cylinder because of crankcase compression
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Piston reaches BDC Cylinder fills with A/F/O mixture 11/2001
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Intake/________ Stroke
Compression Another A/F/O mixture is sucked into crankcase while First one is compressed in cylinder 11/2001
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Down to bottom of page TDC BDC Piston is pounded Down the cylinder
Piston gets to TDC Air/Fuel/Oil mixture is ignited in cylinder 11/2001
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Blow-by adds to crankcase compression
What is going to happen when the piston gets here? 11/2001
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Power/Exhaust Stroke (TDC-BDC)
Still closed Exhaust port is uncovered and exhaust starts leaving 11/2001
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What’s going to happen when the piston gets back to TDC
OK, I get it ! ANOTHER POWER STROKE 11/2001
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Every time the piston reaches TDC, there is another power stroke !
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Let’s make a chart 11/2001
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Let’s make a chart 11/2001
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Let’s make a chart 11/2001
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Let’s make a chart 11/2001
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Let’s make a chart 11/2001
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Let’s make a chart 11/2001
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Reed valve on the side of crankcase
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Tuned Exhaust 11/2001
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Tuned Exhaust 11/2001
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Tuned Exhaust 11/2001
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Power stroke every revolution
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Oil mixing Pre-mix Oil injection Have to mix before filling tank
Has separate fuel and oil tank and carburetor to mix proper amounts 11/2001
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Advantages 2 Stroke 4 Stroke Smaller/lighter Cheaper Less friction
No oil to change Quicker acceleration Operate at different angles 4 Stroke More efficient No oil to mix Less emissions Less exhaust smoke More low RPM power 11/2001
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Fuel to Oil mixtures 16 to 1 25 to 1 32 to 1 40 to 1 50 to 1 75 to 1 100 to 1 Look in owners manual for exact ratio for your engine 11/2001
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Two stroke piston Notice the piston skirt scars
(lack of oil) Notice the 2 ring lands (only have compression rings) Notice the ring pins (prevents rings from rotating And catching on cylinder ports) 11/2001
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How to identify from outside
Two stroke Exhaust port in center of cylinder Small crankcase Four stroke Exhaust port in end of cylinder Large crankcase 11/2001
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Good uses of two stroke engines
Because it is light, can be used at any angle, operates at high RPM Weed eaters Chain saws Boats Snowmobiles Dirt bikes 11/2001
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Usually don’t see 2 strokes in
Because of pollution, efficiency, lack of low RPM power, and convenience of not mixing oil Cars Trucks Road bikes Lawn mowers Generators 11/2001
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Multiple cylinder two strokes
The crankcase below each piston has to be sealed to create crankcase compression for that cylinder 11/2001
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