ASTM F312-1997(2003) Standard Test Methods for Microscopical Sizing and Counting Particles from Aerospace Fluids on Membrane Filters《膜滤器上航空流体中颗粒微观大小的测定及计数》.pdf
《ASTM F312-1997(2003) Standard Test Methods for Microscopical Sizing and Counting Particles from Aerospace Fluids on Membrane Filters《膜滤器上航空流体中颗粒微观大小的测定及计数》.pdf》由会员分享,可在线阅读,更多相关《ASTM F312-1997(2003) Standard Test Methods for Microscopical Sizing and Counting Particles from Aerospace Fluids on Membrane Filters《膜滤器上航空流体中颗粒微观大小的测定及计数》.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: F 312 97 (Reapproved 2003)Standard Test Methods forMicroscopical Sizing and Counting Particles fromAerospace Fluids on Membrane Filters1This standard is issued under the fixed designation F 312; the number immediately following the designation indicates the year oforiginal adoption or,
2、in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 These test methods cover the determination of the sizedistribution and quantity
3、of particulate matter contaminationfrom aerospace fluids isolated on a membrane filter. Themicroscopical techniques described may also be applied toother properly prepared samples of small particles. Two testmethods are described for sizing particles as follows:1.1.1 Test Method AParticle sizes are
4、measured as thediameter of a circle whose area is equal to the projected area ofthe particle.1.1.2 Test Method BParticle sizes are measured by theirlongest dimension.1.2 The test methods are intended for application to particlecontamination determination of aerospace fluids, gases, sur-faces, and en
5、vironments.1.3 These test methods do not provide for sizing particlessmaller than 5 m.NOTE 1Results of these methods are subject to variables inherent inany statistical method. The use of these methods as a standard for initiallyestablishing limits should be avoided unless ample tolerances are permi
6、s-sible.1.4 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Refe
7、renced Documents2.1 ASTM Standards:F 302 Practice for Field Sampling of Aerospace Fluids inContainers2F 303 Practices for Sampling Aerospace Fluids from Com-ponents2F311 Practice for ProcessingAerospace Liquid Samples forParticulate Contamination Analysis Using Membrane Fil-ters3F 314 Test Method fo
8、r Identification of Metallic and Fi-brous Contaminants in Aerospace Fluids3F 318 Practice for Sampling Airborne Particulate Contami-nation in Clean Rooms for Handling Aerospace Fluids23. Terminology3.1 Definitions:3.1.1 unit areathe area selected for counting particles.This may be the area of a reti
9、cle grid or some subdivisionthereof, the area of one imprinted membrane grid, or any otheraccurately calibrated area.3.1.2 effective filter areathe area of the membrane whichentraps the particles to be counted.3.1.3 particle sizethe size of a particle as defined by areacomparison or by its longest d
10、imension.4. Summary of Test Methods4.1 The membrane is examined through a microscope andthe particles counted according to size or size categories usinga calibrated reticle. The total number of particles present isestimated by statistical methods from the actual number ofparticles counted. Either si
11、zing Test Method A or B may beselected according to the preference and results expected.5. Significance and Use5.1 Reported particle size measurement is a function of boththe actual particle dimension and shape factor as well as theparticular physical or chemical properties of the particle beingmeas
12、ured. Caution is required when comparing data frominstruments operating on different physical or chemical param-eters or with different particle size measurement ranges.Sample acquisition, handling and preparation can also affectthe reported particle size results.6. Apparatus6.1 Microscope, capable
13、of resolving the smallest particlesto be counted and producing a flat field of view.1These test methods are under the jurisdiction of ASTM Committee E21 onSpace Simulation and Application of Space Technologies are the direct responsi-bility of Subcommittee E21.05 on Contamination.Current edition app
14、roved April 10, 1997. Published November 1997. Originallypublished as F 312 69. Last previous edition F 312 96.2Annual Book of ASTM Standards, Vol 10.05.3Annual Book of ASTM Standards, Vol 14.02.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, Unit
15、ed States.6.1.1 The following optic combinations are recommended:Magnification Ocular ObjectiveMinimumNumericalAperture503 103 53 0.151003 103 103 0.252003 103 203 0.50Similar ocular-objective combinations resulting in magnifi-cations of 50 6 103, 100 6 103, and 200 6 203 may beused. The optimum equ
16、ipment is a compound binocularmicroscope. Conventional stereo microscopes will not meetthese requirements.6.2 Mechanical Stage, capable of traversing the entireeffective filter area.6.3 Stage Micrometer, with 0.1 and 0.01-mm subdivisions.6.4 Provisions for variable high-intensity external obliqueinc
17、ident illumination and for a focusing condenser. A flexibleor jointed arm is desirable.6.5 Reticles, inscribed with reference markings that can becalibrated to represent the following dimensions:Magnification Size, m Tolerance, m200 6 203 5 60.815 61.2100 6 103 15 61.525 62.050 6 103 50 62.550 62.51
18、00 65.06.5.1 The reticles shall be as follows:6.5.1.1 Reticle A, Globe and Circle Pattern, provides ameans for correlation of the microscopic method with auto-matic counter methods. Reticle A uses the diameter of a circlefor its comparison of a particle, and automatic counter methodsuse either a par
19、ticle volume, projected area, or particle areameasurements which are all directly related to the diameter.6.5.1.2 Reticle B, Linear Scale, provides for measurementof the longest linear dimension technique.NOTE 2Some reticles combine both patterns in one reticle.6.6 Tally Counter, hand operated, for
20、recording particlecounts.7. Sampling7.1 Collect and process the sample in accordance with theapplicable methods of the American Society for Testing andMaterials, as follows: Practice F 302, Practice F311, PracticeF 318, and Practices F 303.8. Calibration8.1 The sizing reticle shall be calibrated at
21、each magnifica-tion by comparing the reference divisions noted in 6.3 with therulings on the stage micrometer. Detailed calibration proce-dures and a discussion of errors are given in Appendix X1.8.2 The area extrapolation factor used for statistical count-ing is determined by the ratio of the area
22、counted to the totaleffective area of the membrane filter.8.2.1 Unit AreaMeasure the size of the appropriate unitarea with the stage micrometer or previously calibrated reticleand calculate its area.8.2.2 Effective Filter Area (Note 3)Measure the diameterof the effective filter area with a scale, ca
23、liper, or calibratedmechanical stage and calculate the total area. Area = pr2,where r is the radius of the effective circle.NOTE 3Where accurate effective filtering area measurements arerequired, a colored pigment solution should be filtered through thefiltration apparatus as described in Practice F
24、311.8.2.3 Area Extrapolation FactorThe total particle countfor a given size range is determined as follows:Ct5 C 3 Ae!/Au3 N! (1)where:Ct= total extrapolated count,C = actual particle count,Ae= effective filter area,Au= unit area, andN = number of unit areas counted.9. Procedure9.1 While exact detai
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