ASTM F24-2009 Standard Method for Measuring and Counting Particulate Contamination on Surfaces《表面颗粒状污染物的计数和测量标准方法》.pdf
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1、Designation: F 24 09Standard Test Method forMeasuring and Counting Particulate Contamination onSurfaces1This standard is issued under the fixed designation F 24; the number immediately following the designation indicates the year of originaladoption or, in the case of revision, the year of last revi
2、sion. A number in parentheses indicates the year of last reapproval. A superscriptepsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method covers the size distribution analysis ofparticulate contamination, 5 m or greater in size, either on, orwashed
3、 from, the surface of small electron-device components.A maximum variation of two to one (633 % of the average oftwo runs) should be expected for replicate counts on the samesample.1.2 The values stated in SI units are to be regarded asstandard. No other units of measurement are included in thisstan
4、dard.2. Terminology2.1 Definitions:2.1.1 particulate contaminanta discrete quantity of matterthat is either foreign to the surface on which it rests or may bewashed from the surface on which it rests by the ultrasonicenergy procedure herein described.2.1.2 particle sizethe maximum dimension of the p
5、article.2.1.3 fibera particle longer than 100 m and with a lengthto width ratio of greater than 10:1.2.1.4 planar surfacea surface that does not move out ofthe depth of field of the microscope when the area to beobserved is traversed under the highest magnification to beused.3. Summary of Method3.1
6、This test method comprises two procedures for prepar-ing specimens for microscopical analysis: one for adheredparticles on planar surfaces and the second for particulatecontamination removed from irregular surfaces.3.2 A single optical analysis procedure is presented forparticle enumeration in state
7、d size ranges.3.3 For planar surfaces, the component is mounted on asuitable flat support and mounted on the microscope stage. Forirregular surface components, the contamination is removed bysubjecting the component to an ultrasonic cavitation field whileimmersed in water containing a detergent.3.4
8、The contamination is subsequently transferred to amembrane filter disk by filtration and then examined micro-scopically.3.5 Microscopical analysis of the contaminant is conductedat two magnifications using a gating measurement techniquewith oblique incident lighting.3.6 Particles are counted in thre
9、e size ranges: 100 m, 25to 100 m, 5 to 25 m, and fibers.3.7 For low-contamination levels on irregularly shapedcomponents, a procedure for running a blank is described.3.8 The method requires strict adherence to the proceduresfor cleaning apparatus.4. Apparatus4.1 Microscope, with mechanical stage, a
10、pproximately 45and 1003. For 1003 magnification, the recommended objec-tive is 10 to 123 (but a minimum of 63) with a numericalaperture of 0.15 minimum. The optimum equipment is abinocular microscope with a micrometer stage. A stereomicro-scope should not be used in this procedure.4.2 Ocular Microme
11、ter,B particulate contamination;size distribution analysis; surfacesAPPENDIXES(Nonmandatory Information)(Informative)X1. SELECTION OF ULTRASONIC EQUIPMENTX1.1 To provide uniform and reliable ultrasonic energy, thefollowing factors should be considered in selecting the equip-ment:X1.1.1 The type of t
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