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Two Strokes vs Four Strokes

Here is one of the best graphical comparisons of 2 stroke vs 4 stroke engines I’ve seen. Keep in mind, Amsoil offers products for both types of engines. Here’s more information on Amsoil 2 stroke products, and here is information on Amsoil 4 stroke products.

Use this link for a Free Amsoil catalog sent via US Postal Service, no obligation.

Amsoil advantages for 2 strokes;

  • Helps prevents hard carbon deposits that cause exhaust power valve sticking and ring sticking.
  • Superior lubricity controls cylinder, piston and bearing wear.
  • Reduces smoke and odor associated with two-cycle engines.
  • Helps prevent plug fouling.
  • Provides exceptional SAE #4 cold temperature fluidity (-58°F pour point).
  • Versatile and excellent for all types of recreational equipment.
  • Protects against rust.
  • Helps prevent pre-detonation from combustion chamber “hot spots.”

 

via: “>”>Motocrossgear.com

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Stored Equipment Needs Protection – Engine Fogging Oil

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Engine Fogging Oil

As fall turns to winter, customers in many parts of the country begin placing summer work and recreational equipment; including motorcycles, boats, lawnmowers, construction and farm equipment; into winter storage. Ensure customers’ stored equipment is protected throughout the winter season and in top condition when it is put back into service in the spring. Engine fogging oil helps protect your equipment.

AMSOIL Engine Fogging Oil

amsoil engine fogging oil

amsoil engine fogging oil

Fluctuations in ambient temperatures can cause water vapor to form condensate within stored engines. When this condensate comes into direct contact with steel
and iron components, it forms surface corrosion on cylinder liners, piston rings, anti-friction bearings and steel/
iron contact surfaces on rotational seals. Long periods of storage can also dry out cylinders, often resulting in permanent damage when the equipment is taken out
of storage and dry-started. Most two- and four-stroke motor oils are formulated to have an affinity to engine component surfaces, acting as a barrier that keeps condensate from contacting engine components and forming corrosion.
However, the effectiveness of motor oil in this area diminishes with time.

 

AMSOIL Engine Fogging Oil (FOG)

offers superior film retention, providing long-term
protection against corrosion and dry starts, etending engine life and reducing operating expenses. Amsoil engine fogging oil is an aerosol spray formulation offers easy and clean application, while
reaching more components and offering complete distribution of the oil, something especially beneficial in applications with horizontal cylinder orientation, such as outboard
motors. Consult equipment owner’s manual for application directions.

AMSOIL Gasoline Stabilizer

Gasoline is not formulated for long-term storage and can start to degrade in as little as 60 days, leading to varnish and sludge deposits that clog injectors, fuel lines and carburetors; stick oats; and cause poor engine performance, starting problems, increased maintenance expenses and decreased equipment life. It is difficult to drain all of the fuel from equipment before storage, and doing so would expose the to other problems, including the formation
of rust and corrosion on the bare metal in the tank and fuel system and the drying and cracking of gaskets and seals.
Some fuels are pre-treated with oxidation inhibitors that allow them to be stored for short periods without forming excessive deposits, while other fuels have no inhibitors at all. AMSOIL Gasoline Stabilizer (AST) reduces
the oxidation that occurs when fuel is stored for extended periods, improving performance, extending equipment life
and decreasing maintenance expenses.

www.syntheticoilhq.com

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AMSOIL INTERCEPTOR snowmobile oil | Amsoil snowmobile oil.

Amsoil Snowmobile Oil

Buy online, or get a FREE Amsoil Catalog

See all Amsoil snowmobile oil products here.

image

Amsoil snowmobile oil

INTERCEPTOR™ High Performance Synthetic 2-Cycle Oil (AIT)
A high-performance two-cycle oil with a performance emphasis on exhaust power valves. Excellent for all types of snowmobiles, motorcycles, personal watercraft, ATVs and jet boats. Contains high levels of detergent additives to prevent valve sticking. High quality replacement for manufacturer branded oils. Injector use or 50:1 premix. JASO FC, API TC

Amsoil Snowmobile Oil

Amsoil Snowmobile Oil AMSOIL INTERCEPTOR™ Synthetic 2-Cycle Oil is formulated with a proprietary blend of the finest synthetic base oils and additives available today. This unique AMSOIL Chemistry represents a breakthrough development in the field of two-cycle engine lubrication. The backbone of AMSOIL INTERCEPTOR 2-Cycle Oil is a specially developed molecularly saturated synthetic base oil. This, combined with a robust additive package, ensures exceptional lubricity, cleanliness and optimum clean-burning characteristics. Extensive research and testing, including a full snowmobiling season in severe Rocky Mountain applications, has proven that wear on cylinders, pistons and bearings is significantly reduced. And with up to 30 percent more detergency and dispersancy additives than typical two-cycle oils, Amsoil Snowmobile Oil AMSOIL INTERCEPTOR virtually eliminates hard carbon deposits that cause exhaust power valve sticking, ring sticking and preignition-promoting “hot spots” in the combustion chamber.

  • Helps prevents hard carbon deposits that cause exhaust power valve sticking and ring sticking.
  • Superior lubricity controls cylinder, piston and bearing wear.
  • Reduces smoke and odor associated with two-cycle engines.
  • Helps prevent plug fouling.
  • Provides exceptional SAE #4 cold temperature fluidity (-58°F pour point).
  • Versatile and excellent for all types of recreational equipment.
  • Protects against rust.
  • Helps prevent pre-detonation from combustion chamber “hot spots.”

 

Amsoil Snowmobile Oil

PRODUCT DESCRIPTION
AMSOIL INTERCEPTOR Synthetic 2-Cycle Oil is formulated with a proprietary blend of the finest synthetic base oils and additives available today. This unique AMSOIL chemistry represents a breakthrough development in the field of two-cycle engine lubrication.

The backbone of AMSOIL INTERCEPTOR 2-Cycle Oil is a specially developed molecularly saturated synthetic base oil. This, combined with a potent additive package, ensures exceptional lubricity, cleanliness and optimum clean-burning characteristics. Extensive research and testing, including a full snowmobiling season in severe Rocky Mountain applications, has proven that wear on cylinders, pistons and bearings is dramatically reduced. And with up to 30 percent more detergency and dispersancy than typical two-cycle oils, AMSOIL INTERCEPTOR virtually eliminates damaging deposits on piston skirts, ring grooves and exhaust power valves.

APPLICATIONS

AMSOIL INTERCEPTOR Synthetic 2-Cycle Oil is recommended as an injector oil or at a 50:1 mix ratio in carbureted, electronic fuel Injected (EFI) and direct fuel injected (DFI) snowmobiles, personal watercraft, motorcycles, ATVs and jet boats, including, but not limited to, those manufactured by Bombardier®, Yamaha®, Arctic Cat®, Polaris®, Kawasaki®, Suzuki® and Honda®.

It is recommended wherever JASO FC or API TC two-cycle oils are specified. INTERCEPTOR is a premium quality replacement for recreational equipment manufacturers’ branded two-cycle oils. It is compatible with most mineral and synthetic two-cycle oils, however, for best performance, mixing oils should be minimized.

400,000 Miles of Severe Snowmobile Field testing With No Deposit Buildup, Power Valve Sticking, Ring Sticking or Engine Failures.
Subjected to adverse field testing conditions in the Rocky Mountains, including long trail rides, high RPM powder riding and steep hill climbs, AMSOIL INTERCEPTOR demonstrated superior wear protection and outstanding deposit control.

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Amsoil snowmobile oil

Amsoil snowmobile oil

No carbon deposits are detectable in the functioning region of the exhaust power valves, resulting in “no stick” performance, continuous valve operation and reduced maintenance.

Amsoil snowmobile oil

Pistons show no scoring, little or no wear and no heavy deposits, and wrist pins show no discoloration from heat. In fact, the original machine markings on the pistons are still visible.
Cylinder head is clean with no deposits, preventing pre-ignition problems.

http://www.syntheticoilhq.com

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Engine Fogging Oil

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Testimonial for Amsoil Synthetic Motorcycle 20W-50

Synthetic Motorcycle 20W-50

This is a reprint of a testimonial sent to Amsoil Corporate. – editor

Hello,

Synthetic Motorcycle 20W-50

Synthetic Motorcycle 20W-50

You’ll notice by my signature below that I am an employee of Chevron Global Lubricants. I am a training specialist and field engineer for our North American lubricants division. I originally worked for Amoco at the R&D facility before moving into marketing, and while in that role, Chevron bought our lubricants business right after I moved to Florida.

All in all, I have more than 34 years of experience in fuels and lubricants testing, development and tech service support.

I own three motorcycles that I either drive on the street or race. What I wanted to share with you today is my experience with my drag bike.

It is a Yamaha Roadstar Warrior. Originally built as a power cruiser, but now it is stretched, slammed and built to run on E-85 fuel and nitrous oxide. I have taken this bike from a fun street cruiser to a beast that wants to jump out from under me every time I snap the throttle.

Synthetic Motorcycle 20W-50

The engine is putting out more than three times the horsepower it was originally built with, and with the highly oxygenated fuel, nitrous, and severe use, I have been battling cylinder and piston ring distress for a couple of years. Essentially, whenever I did a teardown, there was evidence of streaking of the Nikasil-lined aluminum cylinder, essentially a scuffing situation that is aggravated by the high cylinder pressures and fuel dilution. Synthetic Motorcycle 20W-50

Since Chevron does not make motorcycle oils, I have had to try many of the “other” different motor oils, all synthetic. To make a long story short, I should have read your white paper on motorcycle oil testing. It would have saved me at least three premature teardowns. Synthetic Motorcycle 20W-50

Synthetic Motorcycle 20W-50

Bottom line — the AMSOIL Synthetic Motorcycle 20W-50 has completely solved my problems. I have been running it for over a year now, and compression and leakdown have stayed at the exact level as when the engine was freshly rebuilt. This weekend, I tore down the top end to try a new piston ring combination, and the cylinders had absolutely NO sign of streaking or other wear-related distress. Synthetic Motorcycle 20W-50

Also, all other clearances, including valve lash and valve guide and bearing have stayed the same. This is truly remarkable.

In my training endeavors, I run into a lot of end users who are high performance junkies just like me. I have no problem sharing my experience with the AMSOIL products.

Thank you so much for the great product.

Best Regards,
Sam Vallas
Training Specialist
Chevron Global Lubricants

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Two cycle Engine Applications and Lubrication

Two cycle Engine

Applications and Lubrication Needs

The best two cycle engine oil

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Two cycle engines can be found nearly everywhere these days. They are used in dozens of applications and in a wide variety of designs for everything from work and recreation to power generation. two cycle engines have design differences and operate under conditions that require different oil chemistries than their four-cycle counterparts. In order to recommend a lubricant for a two-cycle engine, one needs to know how this engine operates, why it is used in place of a four-cycle engine and where and in what type of applications it is used.

Two cycle Engine

What is a two cycle engine? How do two cycle engines work?

Two cycle engine

Two cycle engine

The terms “two-cycle” and “two-stroke” are often inter-changed when speaking about two cycle engines. These engines derive their name from the amount of directional changes that the pistons make during each power stroke. Internal combustion engines are used to produce mechanical power from the chemical energy contained in hydrocarbon fuels. The power-producing part of the motor’s operating cycle starts inside the motor’s cylinders with a compression process. Following this compression, the burning of the fuel-air mixture then releases the fuel’s chemical energy and produces high-temperature, high-pressure combustion products. These gases then expand within each cylinder and transfer work to the piston. Thus, as the engine is operated continuously, mechanical power is produced. Each upward or downward movement of the piston is called a stroke. There are two commonly used internal combustion engine cycles: the two-stroke cycle (Two cycle engine) and the four-stroke cycle.

Two cycle Engine

How are two cycle engines different from four-cycle engines?

Two cycle engine

Two cycle engine

The fundamental difference between two cycle engines and four-cycle engines is in their gas exchange process, or more simply, the removal of the burned gases at the end of each expansion process and the induction of a fresh mixture for the next cycle. The two cycle engine has an expansion, or power stroke, in each cylinder during each revolution of the crankshaft. The exhaust and the charging processes occur simultaneously as the piston moves through its lowest or bottom center position.

In a four-cycle engine, the burned gasses are first displaced by the piston during an upward stroke, and then a fresh charge enters the cylinder during the following downward stroke. This means that four-cycle engines require two complete turns of the crankshaft to make a power stroke, versus the single turn necessary in a two-cycle engine. In other words, two-cycle engines operate on 360 degrees of crankshaft rotation, whereas four-cycle engines operate on 720 degrees of crankshaft rotation.

Where are two cycle engines used?

Two-cycle engines are inexpensive to build and operate when compared to four-cycle engines. They are lighter in weight and they can also produce a higher power-to-weight ratio. For these reasons, two-cycle engines are very useful in applications such as chainsaws, Weedeaters, outboards, lawnmowers and motorcycles, to name just a few. Two-cycle engines are also easier to start in cold temperatures. Part of this may be due to their design and the lack of an oil sump. This is a reason why these engines are also commonly used in snowmobiles and snow blowers.

Some advantages and disadvantages of two-cycle engines

Because two-cycle engines can effectively double the number of power strokes per unit time when compared to four-cycle engines, power output is increased. However, it does not increase by a factor of two. The outputs of two-cycle engines range from only 20 to 60 percent above those of equivalent-size four-cycle units. This lower than expected increase is a result of the poorer than ideal charging efficiency, or in other words, incomplete filling of the cylinder volume with fresh fuel and air. There is also a major disadvantage in this power transfer scenario. The higher frequency of combustion events in the two-cycle engine results in higher average heat transfer rates from the hot burned gases to the motor’s combustion chamber walls. Higher temperatures and higher thermal stresses in the cylinder head (especially on the piston crown) result. Traditional two-cycle engines are also not highly efficient because a scavenging effect allows up to 30 percent of the unburned fuel/oil mixture into the exhaust. In addition, a portion of the exhaust gas remains in the combustion chamber during the cycle. These inefficiencies contribute to the power loss when compared to four-cycle engines and explains why two-cycle engines can achieve only up to 60 percent more power.

How are two-cycle engines lubricated?

Two-cycle motors are considered total-loss type lubricating systems. Because the crankcase is part of the intake process, it cannot act as an oil sump as is found on four-cycle engines. Lubricating traditional two-cycle engines is done by mixing the oil with the fuel. The oil is burned upon combustion of the air/fuel mixture. Direct Injection engines are different because the fuel is directly injected into the combustion chamber while the oil is injected directly into the crankcase. This process is efficient because the fuel is injected after the exhaust port closes, and therefore more complete combustion of fuel occurs and more power is developed. Direct injection engines have a higher power density than traditional two-cycle engines. Because the oil is directly injected into the crankcase, less oil is necessary and lower oil consumption results (80:1 range). Direct Injection motors have higher combustion temperatures, often up to 120F. They also require more lubricity than traditional two-cycle motors.

 

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