<?xml version="1.0" encoding="UTF-8"?><rss xmlns:dc="http://purl.org/dc/elements/1.1/" xmlns:content="http://purl.org/rss/1.0/modules/content/" xmlns:atom="http://www.w3.org/2005/Atom" version="2.0"><channel><title><![CDATA[The Advantages of Synthetic Oils over Mineral oils]]></title><description><![CDATA[<p><strong>The Advantages of Synthetic Oils over Mineral oils</strong></p>
<p>Extended oil drain periods<br />
Better wear protection and therefore extended engine life<br />
Most synthetics give better MPG<br />
They flow better when cold and are more thermally stable when hot<br />
Surface-active meaning a thin layer of oil on the surfaces at all times (in ester based oils)</p>
<p><strong>How Synthetic oils Achieve these Benefits</strong></p>
<p><strong>Stable Basestocks</strong><br />
Synthetic oils are designed from pure, uniform synthetic basestocks, they contain no contaminants or<br />
unstable molecules which are prone to thermal and oxidative break down.<br />
Because of their uniform molecular structure, synthetic lubricants operate with less internal and<br />
external friction than petroleum oils which have a non-uniform molecular structure.<br />
The result is better heat control, and less heat means less stress to the lubricant.</p>
<p><strong>Higher Percentage of Basestock</strong><br />
Synthetic oils contain a higher percentage of lubricant basestock than petroleum oils do.<br />
This is because multi-viscosity oils need a great deal of pour point depressant and viscosity improvers<br />
to operate as a multigrade.<br />
The basestocks actually do most of the lubricating. More basestocks mean a longer oil life.</p>
<p><strong>Additives Used Up More Slowly</strong><br />
Petroleum basestocks are much more prone to oxidation than synthetic oils. Oxidation inhibitors are<br />
needed in greater quantities in petroleum oils as they are used up more quickly.<br />
Synthetic oils do oxidize, but at a much slower rate therefore oxidation inhibiting additives are used up<br />
more slowly.<br />
Synthetic oils provide for better ring seal than petroleum oils do. This minimizes blow-by and reduces<br />
contamination by combustion by-products. As a result, corrosion inhibiting additives have less work to<br />
do and will last much longer in a synthetic oil.</p>
<p><strong>Excellent Heat Tolerance</strong><br />
Synthetics are simply more tolerant to extreme heat than petroleum oils are. When heat builds up<br />
within an engine, petroleum oils quickly begin to burn off. They are more volatile. The lighter<br />
molecules within petroleum oils turn to gas and what's left are the large molecules that are harder to<br />
pump.<br />
Synthetics have far more resistance as they are more thermally stable to begin with and can take<br />
higher temperatures for longer periods without losing viscosity.</p>
<p><strong>Heat Reduction</strong><br />
One of the major factors affecting engine life is component wear and/or failure, which is often the<br />
result of high temperature operation. The uniformly smooth molecular structure of synthetic oils gives<br />
them a much lower coefficient friction (they slip more easily over one another causing less friction)<br />
than petroleum oils.<br />
Less friction means less heat and heat is a major contributor to engine component wear and failure,<br />
synthetic oils significantly reduce these two detrimental effects.<br />
Since each molecule in a synthetic oil is of uniform size, each is equally likely to touch a component<br />
surface at any given time, thus moving a certain amount of heat into the oil stream and away from the<br />
component. This makes synthetic oils far superior heat transfer agents than conventional petroleum<br />
oils.</p>
<p><strong>Greater Film Strength</strong><br />
Petroleum motor oils have very low film strength in comparison to synthetics. The film strength of a<br />
lubricant refers to it's ability to maintain a film of lubricant between two objects when extreme pressure<br />
and heat are applied.<br />
Synthetic oils will typically have a film strength of 5 to 10 times higher than petroleum oils of<br />
comparable viscosity.<br />
Even though heavier weight oils typically have higher film strength than lighter weight oils, an sae 30<br />
or 40 synthetic will typically have a higher film strength than an sae 50 or sae 60 petroleum oil.<br />
A lighter grade synthetic can still maintain proper lubricity and reduce the chance of metal to metal<br />
contact. This means that you can use oils that provide far better fuel efficiency and cold weather<br />
protection without sacrificing engine protection under high temperature, high load conditions.<br />
Obviously, this is a big plus, because you can greatly reduce both cold temperature start-up wear and<br />
high temperature/high load engine wear using a low viscosity oil.</p>
<p><strong>Engine Deposit Reduction</strong><br />
Petroleum oils tend to leave sludge, varnish and deposits behind after thermal and oxidative break<br />
down. They're better than they used to be, but it still occurs.<br />
Deposit build-up leads to a significant reduction in engine performance and engine life as well as<br />
increasing the chance of costly repairs.<br />
Synthetic oils have far superior thermal and oxidative stability and they leave engines virtually varnish,<br />
deposit and sludge-free.</p>
<p><strong>Better Cold Temperature Fluidity</strong><br />
Synthetic oils do not contain the paraffins or other waxes which dramatically thicken petroleum oils<br />
during cold weather. As a result, they tend to flow much better during cold temperature starts and<br />
begin lubricating an engine almost immediately. This leads to significant engine wear reduction, and,<br />
therefore, longer engine life.</p>
<p><strong>Improved Fuel Economy</strong><br />
Because of their uniform molecular structure, synthetic oils are tremendous friction reducers. Less<br />
friction leads to increased fuel economy and improved engine performance.<br />
This means that more energy released from the combustion process can be transferred directly to the<br />
wheels due to the lower friction. Acceleration is more responsive and more powerful, using less fuel in<br />
the process.<br />
In a petroleum oil, lighter molecules tend to boil off easily, leaving behind much heavier molecules<br />
which are difficult to pump. The engine loses more energy pumping these heavy molecules than if it<br />
were pumping lighter ones.<br />
Since synthetic oils have more uniform molecules, fewer of these molecules tend to boil off and when<br />
they do, the molecules which are left are of the same size and pumpability is not affected.</p>
<p>Synthetics are better and in many ways, they are basically better by design as they are created by<br />
chemists in laboratories for a specific purpose, rather than being modified from something that came<br />
out of the ground to be as good as they can for a purpose.</p>
<p>Cheers</p>
<p>Tim</p>
]]></description><link>https://www.uk-mx3.com/topic/2665/the-advantages-of-synthetic-oils-over-mineral-oils</link><generator>RSS for Node</generator><lastBuildDate>Sat, 11 Jul 2026 00:20:15 GMT</lastBuildDate><atom:link href="https://www.uk-mx3.com/topic/2665.rss" rel="self" type="application/rss+xml"/><pubDate>Fri, 19 Jul 2013 14:55:43 GMT</pubDate><ttl>60</ttl><item><title><![CDATA[Reply to The Advantages of Synthetic Oils over Mineral oils on Fri, 19 Jul 2013 14:55:43 GMT]]></title><description><![CDATA[<p><strong>The Advantages of Synthetic Oils over Mineral oils</strong></p>
<p>Extended oil drain periods<br />
Better wear protection and therefore extended engine life<br />
Most synthetics give better MPG<br />
They flow better when cold and are more thermally stable when hot<br />
Surface-active meaning a thin layer of oil on the surfaces at all times (in ester based oils)</p>
<p><strong>How Synthetic oils Achieve these Benefits</strong></p>
<p><strong>Stable Basestocks</strong><br />
Synthetic oils are designed from pure, uniform synthetic basestocks, they contain no contaminants or<br />
unstable molecules which are prone to thermal and oxidative break down.<br />
Because of their uniform molecular structure, synthetic lubricants operate with less internal and<br />
external friction than petroleum oils which have a non-uniform molecular structure.<br />
The result is better heat control, and less heat means less stress to the lubricant.</p>
<p><strong>Higher Percentage of Basestock</strong><br />
Synthetic oils contain a higher percentage of lubricant basestock than petroleum oils do.<br />
This is because multi-viscosity oils need a great deal of pour point depressant and viscosity improvers<br />
to operate as a multigrade.<br />
The basestocks actually do most of the lubricating. More basestocks mean a longer oil life.</p>
<p><strong>Additives Used Up More Slowly</strong><br />
Petroleum basestocks are much more prone to oxidation than synthetic oils. Oxidation inhibitors are<br />
needed in greater quantities in petroleum oils as they are used up more quickly.<br />
Synthetic oils do oxidize, but at a much slower rate therefore oxidation inhibiting additives are used up<br />
more slowly.<br />
Synthetic oils provide for better ring seal than petroleum oils do. This minimizes blow-by and reduces<br />
contamination by combustion by-products. As a result, corrosion inhibiting additives have less work to<br />
do and will last much longer in a synthetic oil.</p>
<p><strong>Excellent Heat Tolerance</strong><br />
Synthetics are simply more tolerant to extreme heat than petroleum oils are. When heat builds up<br />
within an engine, petroleum oils quickly begin to burn off. They are more volatile. The lighter<br />
molecules within petroleum oils turn to gas and what's left are the large molecules that are harder to<br />
pump.<br />
Synthetics have far more resistance as they are more thermally stable to begin with and can take<br />
higher temperatures for longer periods without losing viscosity.</p>
<p><strong>Heat Reduction</strong><br />
One of the major factors affecting engine life is component wear and/or failure, which is often the<br />
result of high temperature operation. The uniformly smooth molecular structure of synthetic oils gives<br />
them a much lower coefficient friction (they slip more easily over one another causing less friction)<br />
than petroleum oils.<br />
Less friction means less heat and heat is a major contributor to engine component wear and failure,<br />
synthetic oils significantly reduce these two detrimental effects.<br />
Since each molecule in a synthetic oil is of uniform size, each is equally likely to touch a component<br />
surface at any given time, thus moving a certain amount of heat into the oil stream and away from the<br />
component. This makes synthetic oils far superior heat transfer agents than conventional petroleum<br />
oils.</p>
<p><strong>Greater Film Strength</strong><br />
Petroleum motor oils have very low film strength in comparison to synthetics. The film strength of a<br />
lubricant refers to it's ability to maintain a film of lubricant between two objects when extreme pressure<br />
and heat are applied.<br />
Synthetic oils will typically have a film strength of 5 to 10 times higher than petroleum oils of<br />
comparable viscosity.<br />
Even though heavier weight oils typically have higher film strength than lighter weight oils, an sae 30<br />
or 40 synthetic will typically have a higher film strength than an sae 50 or sae 60 petroleum oil.<br />
A lighter grade synthetic can still maintain proper lubricity and reduce the chance of metal to metal<br />
contact. This means that you can use oils that provide far better fuel efficiency and cold weather<br />
protection without sacrificing engine protection under high temperature, high load conditions.<br />
Obviously, this is a big plus, because you can greatly reduce both cold temperature start-up wear and<br />
high temperature/high load engine wear using a low viscosity oil.</p>
<p><strong>Engine Deposit Reduction</strong><br />
Petroleum oils tend to leave sludge, varnish and deposits behind after thermal and oxidative break<br />
down. They're better than they used to be, but it still occurs.<br />
Deposit build-up leads to a significant reduction in engine performance and engine life as well as<br />
increasing the chance of costly repairs.<br />
Synthetic oils have far superior thermal and oxidative stability and they leave engines virtually varnish,<br />
deposit and sludge-free.</p>
<p><strong>Better Cold Temperature Fluidity</strong><br />
Synthetic oils do not contain the paraffins or other waxes which dramatically thicken petroleum oils<br />
during cold weather. As a result, they tend to flow much better during cold temperature starts and<br />
begin lubricating an engine almost immediately. This leads to significant engine wear reduction, and,<br />
therefore, longer engine life.</p>
<p><strong>Improved Fuel Economy</strong><br />
Because of their uniform molecular structure, synthetic oils are tremendous friction reducers. Less<br />
friction leads to increased fuel economy and improved engine performance.<br />
This means that more energy released from the combustion process can be transferred directly to the<br />
wheels due to the lower friction. Acceleration is more responsive and more powerful, using less fuel in<br />
the process.<br />
In a petroleum oil, lighter molecules tend to boil off easily, leaving behind much heavier molecules<br />
which are difficult to pump. The engine loses more energy pumping these heavy molecules than if it<br />
were pumping lighter ones.<br />
Since synthetic oils have more uniform molecules, fewer of these molecules tend to boil off and when<br />
they do, the molecules which are left are of the same size and pumpability is not affected.</p>
<p>Synthetics are better and in many ways, they are basically better by design as they are created by<br />
chemists in laboratories for a specific purpose, rather than being modified from something that came<br />
out of the ground to be as good as they can for a purpose.</p>
<p>Cheers</p>
<p>Tim</p>
]]></description><link>https://www.uk-mx3.com/post/2665</link><guid isPermaLink="true">https://www.uk-mx3.com/post/2665</guid><dc:creator><![CDATA[oilman]]></dc:creator><pubDate>Fri, 19 Jul 2013 14:55:43 GMT</pubDate></item></channel></rss>