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Why Sub-micron Purification MattersWho needs purification at the sub-micron level? The Misconceptions This may seem like a reasonable question. After all, most conventional filtration systems are content with filtering particles to the 10 micron level the big boulders that can grind, pit, and dent components. Moreover, the ISO standard codes for measuring fluid cleanliness have three numbers a 4-micron, a 6-micron, and a 14-micron measurement. In truth, the reason why the ISO standard measures to 4 microns is because most mechanical filteration simply isn't able to remove particles smaller than 3 microns. While it is possible to make finer filters (e.g. going to one-micron filters), it is impractical. A one-micron filter builds up substantial back pressure, plugging the system. If the filter doesn't blow, it rapidly plugs from contamination and requires frequent and expensive changeouts. Another reason that ISO codes stop at 4-microns is because it is difficult to measure particle counts at the 3-micron size without some highly advanced and costly instrumentation. Tolerances of Critical Components In order to understand whether purification at the sub-micron level matters, it is important to understand the components that lubrication is designed to protect. Components such as bearings, gears, pumps, pistons, valves, etc. operate at extremely high speeds, temperatures, and pressures. They also operate at very low tolerances. The following chart shows the typical thickness of the lubricating fluid in several common components:
*0.001 inches = 25.4 microns As the above table shows large, mission critical machinery runs on slivers of oil that frequently run into the micron and sub-micron range. The Concentration of Destructive Small Particles We now know that the tolerances in these components is extremely small. Now let's take a look at the typical composition of oil contamination (graphs provided by Noria Corporation):
These curves reveal two things:
If we now marry the facts about component clearances to the facts about the prevalence of small destructive particles, it means that traditional mechanical filtration fails to remove the vast majority of the destructive particles circulating through high-performance machinery. Why ISOPur Sub-Micron Purification Matters Sub-micron purification never mattered in the past because there has never been an effective method. Therefore, industry stopped at 3 micron filtration. Unfortunately, for mission critical equipment, 3-microns is simply not efficient in removal of the hardest and most damaging contamination. These particles form varnish, sludge, and cause significant wear. Sub-micron purification matters today because there is a solution. ISOPur is the first company to deliver an effective, cost-efficient sub-micron purification solution. ISOPur Balanced Charge Purification effectively removes nearly all contaminants greater than 0.1 micron in size. ISOPur removes particle contamination; ferrous and non-ferrous wear debris, products of oxidation, and bacterial/biological contamination. ISOPur BCA is an order of magnitude improvement over the finest mechanical filters. |
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| Purification 101: Studies have shown that improving the oil's ISO code from 17/14 to 13/10 can double bearing life. | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
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2003-2005 Copyright. ISOPur and Balanced Charge Agglomeration are trademarks of ISOPur Fluid Technologies, Inc. ISOPur reserves the right to change specifications without notice.
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