ASTM B963-2014 Standard Test Methods for Oil Content Oil-Impregnation Efficiency and Surface-Connected Porosity of Sintered Powder Metallurgy &40 PM&41 Products Using Archimedes&rs.pdf
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1、Designation: B963 13B963 14Standard Test Methods forOil Content, Oil-Impregnation Efficiency, andInterconnectedSurface-Connected Porosity of SinteredPowder Metallurgy (PM) Products Using ArchimedesPrinciple1This standard is issued under the fixed designation B963; the number immediately following th
2、e designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.This standard has been approved for
3、use by agencies of the U.S. Department of Defense.1. Scope*1.1 This standard describes three related test methods that cover the measurement of physical properties of oil-impregnatedpowder metallurgy products.1.1.1 Determination of the volume percent of oil contained in the material.1.1.2 Determinat
4、ion of the efficiency of the oil-impregnation process.1.1.3 Determination of the percent interconnectedsurface-connected porosity by oil impregnation.1.2 With the exception of the values for density and the mass used to determine density, for which the use of the gram per cubiccentimetre (g/cm3) and
5、 gram (g) units is the long-standing industry practice, the values in inch-pound units are to be regarded asstandard. The values given in parentheses are mathematical conversions to SI units that are provided for information only and arenot considered standard.1.3 This standard does not purport to a
6、ddress all of the safety concerns, if any, associated with its use. It is the responsibilityof the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatorylimitations prior to use.2. Referenced Documents2.1 ASTM Standards:2B243 Terminol
7、ogy of Powder MetallurgyD1217 Test Method for Density and Relative Density (Specific Gravity) of Liquids by Bingham PycnometerD1298 Test Method for Density, Relative Density, or API Gravity of Crude Petroleum and Liquid Petroleum Products byHydrometer MethodE456 Terminology Relating to Quality and S
8、tatisticsE691 Practice for Conducting an Interlaboratory Study to Determine the Precision of a Test Method3. Terminology3.1 Definitions of powder metallurgy (PM) terms can be found in Terminology B243. Additional descriptive material isavailable in the Related Material section of Vol. 02.05 of the A
9、nnual Book of ASTM Standards.4. Summary of Test Method4.1 The part or test specimen is first weighed in air. It is then oil impregnated to fill the surface-connected porosity and thespecimen is reweighed. The test specimen is then weighed when immersed in water and its volume calculated based onArch
10、imedes principle. The oil is then removed and the specimen is reweighed.1 These test methods are under the jurisdiction ofASTM Committee B09 on Metal Powders and Metal Powder Products and are the direct responsibility of SubcommitteeB09.04 on Bearings.Current edition approved April 1, 2013Sept. 1, 2
11、014. Published June 2013September 2014. Originally approved in 2008. Last previous edition approved in 20112013 asB963 11.13. DOI: 10.1520/B0963-13.10.1520/B0963-14.2 For referencedASTM standards, visit theASTM website, www.astm.org, or contactASTM Customer Service at serviceastm.org. For Annual Boo
12、k of ASTM Standardsvolume information, refer to the standards Document Summary page on the ASTM website.This document is not an ASTM standard and is intended only to provide the user of an ASTM standard an indication of what changes have been made to the previous version. Becauseit may not be techni
13、cally possible to adequately depict all changes accurately, ASTM recommends that users consult prior editions as appropriate. In all cases only the current versionof the standard as published by ASTM is to be considered the official document.*A Summary of Changes section appears at the end of this s
14、tandardCopyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States14.2 The oil content of an oil-impregnated part or test specimen is then calculated as a percentage of the volume of the specimen.This may be done for the as-received and the fully
15、 oil-impregnated specimen.4.3 The oil-impregnation effciency is calculated by dividing the as-received oil content by the fully impregnated oil content andexpressing the result as a percentage.4.4 The volume percentage of interconnectedsurface-connected porosity (as measured by oil impregnation) is
16、then calculatedbased on the amount of oil in the fully oil-impregnated specimen.5. Significance and Use5.1 Oil content values are generally contained in specifications for oil-impregnated PM bearings.5.2 The oil-impregnation efficiency provides an indication of how well the as-received parts had bee
17、n impregnated.5.3 The desired self-lubricating performance of PM bearings requires a minimum amount of interconnectedsurface-connectedporosity and satisfactory oil impregnation of the interconnectedsurface-connected porosity. A minimum oil content is specified.5.4 The results from these test methods
18、 may be used for quality control or compliance purposes.6. Apparatus6.1 Analytical BalancePrecision single-pan balance that will permit readings within 0.01% of the test specimen mass. SeeTable 1.6.2 Water ContainerA glass beaker or other suitable transparent container should be used to contain the
19、water.NOTE 1A transparent container makes it easier to see air bubbles adhering to the test specimen and specimen support when immersed in water.NOTE 2For the most precise determination, the water container should be of a size that the level of the water does not rise more than0.10 in. (2.5 mm) when
20、 the test specimen is lowered into the water.6.3 WaterDistilled or deionized water to which 0.05 to 0.1 volume percent of a wetting agent has been added to reduce theeffects of surface tension.NOTE 3Degassing the water by evacuation, boiling, or ultrasonic agitation helps to prevent air bubbles from
21、 collecting on the test specimen andsupport when immersed in water.6.4 Test Specimen Support for Weighing in WaterTwo typical arrangements are shown in Fig. 1. The suspension wire may betwisted around the test specimen or the test specimen may be supported in a wire basket that is attached to the su
22、spension wire.For either arrangement, a single corrosion-resistant wirefor example, austenitic stainless steel, copper, or nichromeshall beused for the basket and suspension wire. The maximum recommended diameter of suspension wire to be used for various massranges is shown in Table 2.NOTE 4For the
23、most precise determinations, it is important that the mass and volume of all supporting wires immersed in water be minimized.6.5 Oil for Oil-ImpregnationThe same type of oil that was used to impregnate the parts originally.6.5.1 If parts are not already impregnated, oil with a viscosity of 20 to 65
24、cSt or 100 to 300 SSU (20 10-6 to 65 10-6 m2/s)at 100 F (38 C) has been found to be suitable.6.6 Vacuum Impregnation ApparatusEquipment for impregnation of the part or test specimen with oil.6.7 ThermometerA thermometer with an accuracy of 1 F (0.5 C) to measure the temperature of the water.6.8 Soxh
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