Sunday, March 1, 2015

Conventional Vs. Synthetics




Conventional Vs. Synthetics



Oil, whether synthetic or petroleum-based, consists of molecular chains of hydrogen and carbon atoms, referred to as hydrocarbons. Petroleum crude oil is a thick, highly flammable dark-brown or greenish liquid with high energy densities. Many contaminating elements exist in this complex mixture of hydrocarbons, including sulfur, nitrogen, oxygen and metal components such as nickel or vanadium. Petroleum crude oil is the raw material
used for a wide variety of petrochemicals, including solvents, fertilizers, plastics and lubricants.
The oil refining process separates the various types of molecules in the oil by weight, resulting in a concentrated batch suitable for today’s uses such as gasoline, LPG, kerosene or base oils for lubricants. The chemical composition of conventional motor oil can vary substantially and depends on the raw crude oil refining process.
While petroleum base oils are refined, synthetic base oils are manufactured and can achieve a higher performance level. Synthetic oil is chemically engineered for a certain molecular composition with a tailored and uniform structure. Such fine-tuned control over the final molecular composition of synthetic oils is the key to the superior performance properties of these fluids. Designing molecular structures in a planned and orderly fashion results in molecules, and an end-product, that are far more stable than their refined petroleum counterparts.

Base Oil Groups

The entire range of base oils, including conventional petroleum products, are divided into five groups based on the level of saturates (saturated molecules), sulfur and viscosity index. In general, the chemical composition and performance properties of the base oil categories improve with advancing group number. For instance, Group I has a lower concentration of saturates than Group II, while Group II has a lower concentration of saturates
than Group III base oils. Today, Group III, Group IV and Group V base oils are considered synthetic.
Base Oil Chart

Saturated molecules contain a higher percentage of carbon-hydrogen (CH) bonds, which limits the available sites to which other, harmful molecules can attach. When other molecules, like oxygen, attach to oil molecules, they break down the molecular composition of the oil and weaken its performance. Saturated molecules are beneficial in lubricating fluids because they remain stable longer, resulting in a more durable lubricant. Unsaturated molecules have fewer single carbon-hydrogen bonds and are therefore less stable.
Saturated Bonds graphic
Sulfur is a naturally occurring, inorganic element that readily reacts with oxygen molecules and is detrimental to oil performance. Synthetic base oils have less sulfur than conventional base oils.
Viscosity index refers to the temperature-viscosity relationship of lubricating fluids. Oils with a high viscosity index (VI) are less affected by temperature; those with low VI are affected more. Oils with a VI less than 120 (Groups I & II) are more susceptible to viscosity variance due to temperature. The viscosity index of synthetic base oils is higher than that of conventional petroleum base oils.

Pure, Uniform Molecules Form Strong, Stable Lubricants

Petroleum oils have molecular structures that are randomly organized and, consequently, have limited performance abilities. Their varied and inconsistent molecular structure results in less film strength and lubricity. Their paraffinic wax content also makes them more susceptible to viscosity variance and cold-temperature flow problems.
On the other hand, synthetic base oil molecules are chemically controlled, which provides increased film strength and lubricity over petroleum oils.
The performance qualities of base oils have a marked impact on the performance qualities of the finished product. Synthetic base oils provide key features and customer benefits including better wear protection, more horsepower, increased engine cleanliness, improved fuel economy, easier cold starts and longer oil life.
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Tuesday, February 17, 2015

AMSOIL Synthetic Lubricants Protect Hardworking Diesels



AMSOIL Synthetic Lubricants Protect Hardworking Diesels


The term “diesel” still conjures a host of negative connotations to some: loud, smelly, smoky, dirty. Such unflattering descriptions may have been apt years ago, but those in the know realize today’s diesels no longer fit the stereotype. And judging by the numbers, increasingly more drivers are discovering the truth about diesels.

Data compiled by Hybridcars.com and Baum and Associates reveal that U.S. clean-diesel car sales jumped 25 percent during the first six months of 2014. An impressive increase, but even more so when considering the overall car market increased just 4.2 percent during the same time. Even more remarkable, increased sales have come during an economic recessionary period during which, until recently, diesel fuel prices have trended upward. 

“Clean diesel” is a term automakers use to distinguish today’s cleaner, quieter diesels from their loud and smoky predecessors. Technically, a clean-diesel engine is no different from any other diesel engine. The differences lie in the fuel they use and their sophisticated exhaust-treatment devices. 

In 1993, the United States government limited diesel fuel sulfur content to 500 ppm – known as low-sulfur diesel. In 2006, ultra-low-sulfur diesel became available, which has a maximum sulfur level of 15 ppm. By 2010, the EPA required that 100 percent of highway diesel fuel be ULSD. 

More changes to the diesel fleet came in 2007. To meet EPA emissions standards, on-road diesel vehicles model-year 2007 and later come with exhaust-treatment systems designed to reduce harmful emissions. These systems range from exhaust gas recirculation (EGR), diesel particulate filters (DPF), in-line regeneration and others. Though they all function differently, their purpose is the same. They, along with ULSD, are expected to decrease emissions from these engines by more than 90 percent. 

Turbocharged diesels already place enormous stress on motor oil. Elevated heat and shearing forces can thin the oil until it fails to provide adequate protection, leaving components susceptible to wear and failure. Sophisticated emissions-control devices on 2007-and-newer diesels make things worse. Fuel dilution from DPF regeneration or excessive idling further thins the oil, while excess soot from EGR and blow-by leads to harmful sludge formation and abrasive wear.

AMSOIL synthetic diesel oils are designed to withstand the punishment doled out by diesel engines. The complete line of AMSOIL synthetic diesel oils delivers superior protection for older and modern diesels equipped with exhaust treatment devices. They resist wear, withstand extreme heat and guard against the harmful effects of soot, such as oil thickening and sludge formation. 

AMSOIL synthetic diesel oils have you covered during heavy use and even abuse.

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Tuesday, February 3, 2015

Premium Protection for High-Horsepower Chrysler and Nissan Applications




Premium Protection for High-Horsepower Chrysler and Nissan Applications

Along with the new 5W-50 viscosity formulated for high-horsepower Ford Mustang engines, the Signature Series line now includes a robust 0W-40 synthetic motor oil formulated specifically for high-horsepower Chrysler and Nissan engines. AMSOIL Signature Series 0W-40 Synthetic Motor Oil (AZF) provides top-of-the-mark protection and performance that customers expect from Signature Series.
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Monday, January 26, 2015

Cold-Temperature Performance is not Just Reserved for Sub-Zero Conditions



Cold-Temperature Performance is not Just Reserved for Sub-Zero Conditions

Startup lubrication is directly affected by a lubricant’s cold-flow ability, and the impact is felt at higher temperatures than most consumers realize. An oil’s cold-temperature performance refers to its ability to flow when the engine is cold, or below typical operating temperature (212°F), and not simply to what feels cold to humans – even some summer days can be cold to an engine.

Pour point has been defined as the lowest temperature at which a motor oil will continue to flow under prescribed conditions. ASTM D97 spells out the standardized procedure for determining
an oil’s pour point. After heating it to 45°C (113°F) the sample is slowly cooled and tilted sideways every time the temperature drops 3°C (5°F). When the oil stops flowing it has reached the pour point.

AMSOIL synthetic motor oils have lower pour points and better cold-cranking capabilities than petroleum-based products. Long after petroleum oils have solidified, AMSOIL synthetic motor oils continue to flow.

The problems with cold weather go beyond this, however. Motor oils really need to be heated well above the pour point to achieve the desired pumping viscosity. Even at just below freezing (32°F), motor oil can become difficult to pump into the engine. It sits in the pan while the friction from
moving parts heats the engine and conducts this heat down into the pan. As you can imagine, this lack of oil in an engine with fast moving parts has consequences. Cold-weather start-ups are a leading cause of engine wear.

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Wednesday, January 7, 2015

Premium Protection for High-Horsepower Ford Mustangs




AMSOIL has expanded the Signature Series line to include a robust 5W-50 synthetic motor oil formulated specifically for high-horsepower Ford Mustang engines. Signature Series 5W-50 Synthetic Motor Oil (AMR) provides top-of-the-mark protection and performance that customers expect from Signature Series, and it is excellent for all Mustang engines calling for a 5W-50 viscosity.

www.durableoil.com
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Thursday, January 1, 2015

Combat Fuel Issues with AMSOIL Diesel Fuel Additives

Combat Fuel Issues with AMSOIL Diesel Fuel Additives



Poor diesel fuel quality can foul injectors, accelerate injector pump wear, lead to rough running, impede starting and cause cold-temperature stalling. AMSOIL diesel fuel additives effectively combat these issues and help improve diesel engine performance.


Diesel Injector Clean
• Addresses problems with high-pressure common-rail (HPCR) engines
• Cleans dirty injectors
• Provides optimal lubricity to help protect the fuel pump and injectors from wear

Diesel Cold Flow
• Combats fuel gelling
• Improves cold-flow ability up to 20ºF
• Enhances cold-weather reliability

Diesel Injector Clean + Cold Flow
• Provides the benefits of Diesel Injector Clean and Diesel Cold Flow in one convenient package

Diesel Cetane Boost
• Maximizes horsepower
• Helps increase fuel economy
• Improves startability

Diesel Recovery
• Quickly dissolves gelled fuel
• Thaws frozen fuel filters
• Performs well with all diesel fuels
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Monday, December 29, 2014

AMSOIL Signature Series Synthetic Motor Oil Excels in Double-Length Performance Test





The Sequence IIIG Engine Test (ASTM D7320) is designed to evaluate automotive motor oils for oil thickening, piston deposits, oil consumption and engine wear during moderately high-speed, high-temperature service. It must be passed for motor oil to meet the API SN and ILSAC GF-5 motor oil specifications. Results in the 100-hour test are an important indicator of how well a motor oil will perform in real-world service.

Because Signature Series has historically performed well in the test, AMSOIL decided to push the envelope and subject the oil to a double-length (200-hour) Sequence IIIG Engine Test.Signature Series 5W-30 Synthetic Motor Oil not only passed the double-length test, it did so with flying colors. Results show the oil delivered outstanding wear protection, deposit control and oxidative stability after 200 hours of testing. AMSOIL is not aware of another motor oil that has passed a double-length Sequence IIIG Engine Test.
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