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ASTM International - ASTM D6795-02(2007)

Standard Test Method for Measuring the Effect on Filterability of Engine Oils After Treatment with Water and Dry Ice and a Short (30-min) Heating Time

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Organization: ASTM International
Publication Date: 1 May 2007
Status: inactive
Page Count: 6
ICS Code (Lubricants, industrial oils and related products): 75.100
significance And Use:

It is normal for some of the combustion products of an internal combustion engine to penetrate into the engine lubricant and be retained in it.

When an engine is run for a period of time... View More

scope:

1.1 This test method covers the determination of the tendency of an oil to form a precipitate that can plug an oil filter. It simulates a problem that may be encountered in a new engine run for a short period of time, followed by a long period of storage with some water in the oil.

This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.

Document History

July 1, 2019
Standard Test Method for Measuring the Effect on Filterability of Engine Oils After Treatment with Water and Dry Ice and a Short (30?min) Heating Time
5.1 It is normal for some of the combustion products of an internal combustion engine to penetrate into the engine lubricant and be retained in it. 5.2 When an engine is run for a period of time and...
July 1, 2019
Standard Test Method for Measuring the Effect on Filterability of Engine Oils After Treatment with Water and Dry Ice and a Short (30 min) Heating Time
5.1 It is normal for some of the combustion products of an internal combustion engine to penetrate into the engine lubricant and be retained in it. 5.2 When an engine is run for a period of time and...
May 1, 2019
Standard Test Method for Measuring the Effect on Filterability of Engine Oils After Treatment with Water and Dry Ice and a Short (30 min) Heating Time
5.1 It is normal for some of the combustion products of an internal combustion engine to penetrate into the engine lubricant and be retained in it. 5.2 When an engine is run for a period of time and...
May 1, 2013
Standard Test Method for Measuring the Effect on Filterability of Engine Oils After Treatment with Water and Dry Ice and a Short (30 min) Heating Time
5.1 It is normal for some of the combustion products of an internal combustion engine to penetrate into the engine lubricant and be retained in it. 5.2 When an engine is run for a period of time and...
May 1, 2010
Standard Test Method for Measuring the Effect on Filterability of Engine Oils After Treatment with Water and Dry Ice and a Short (30-min) Heating Time
It is normal for some of the combustion products of an internal combustion engine to penetrate into the engine lubricant and be retained in it. When an engine is run for a period of time and then...
December 1, 2008
Standard Test Method for Measuring the Effect on Filterability of Engine Oils After Treatment with Water and Dry Ice and a Short (30-min) Heating Time
It is normal for some of the combustion products of an internal combustion engine to penetrate into the engine lubricant and be retained in it. When an engine is run for a period of time and then...
ASTM D6795-02(2007)
May 1, 2007
Standard Test Method for Measuring the Effect on Filterability of Engine Oils After Treatment with Water and Dry Ice and a Short (30-min) Heating Time
It is normal for some of the combustion products of an internal combustion engine to penetrate into the engine lubricant and be retained in it. When an engine is run for a period of time and then...
April 10, 2002
Standard Test Method for Measuring the Effect on Filterability of Engine Oils After Treatment with Water and Dry Ice and a Short (30-min) Heating Time
1.1 This test method covers the determination of the tendency of an oil to form a precipitate that can plug an oil filter. It simulates a problem that may be encountered in a new engine run for a...
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