ASTM F50-2007 Standard Practice for Continuous Sizing and Counting of Airborne Particles in Dust-Controlled Areas and Clean Rooms Using Instruments Capable of Detecting Single Sub-.pdf
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1、Designation: F 50 07Standard Practice forContinuous Sizing and Counting of Airborne Particles inDust-Controlled Areas and Clean Rooms Using InstrumentsCapable of Detecting Single Sub-Micrometre and LargerParticles1This standard is issued under the fixed designation F 50; the number immediately follo
2、wing the designation indicates the year of originaladoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. A superscriptepsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 This practice co
3、vers the determination of the particleconcentration, by number, and the size distribution of airborneparticles in dust-controlled areas and clean rooms, for particlesin the size range of approximately 0.01 to 5.0 m. Particleconcentrations not exceeding 3.5 3 106particles/m3(100 000/ft3) are covered
4、for all particles equal to and larger than theminimum size measured.1.2 This practice uses an airborne single particle countingdevice (SPC) whose operation is based on measuring the signalproduced by an individual particle passing through the sensingzone. The signal must be directly or indirectly re
5、lated toparticle size.NOTE 1The SPC type is not specified here. The SPC can be aconventional optical particle counter (OPC), an aerodynamic particlesizer, a condensation nucleus counter (CNC) operating in conjunction witha diffusion battery or differential mobility analyzer, or any other devicecapab
6、le of counting and sizing single particles in the size range of concernand of sampling in a cleanroom environment.1.3 Individuals performing tests in accordance with thispractice shall be trained in use of the SPC and shall understandits operation.1.4 Since the concentration and the particle size di
7、stributionof airborne particles are subject to continuous variations, thechoice of sampling probe configuration, locations and sam-pling times will affect sampling results. Further, the differencesin the physical measurement, electronic and sample handlingsystems between the various SPCs and the dif
8、ferences inphysical properties of the various particles being measured cancontribute to variations in the test results. These differencesshould be recognized and minimized by using a standardmethod of primary calibration and by minimizing variability ofsample acquisition procedures.1.5 Sample acquis
9、ition procedures and equipment may beselected for specific applications based on varying cleanroomclass levels. Firm requirements for these selections are beyondthe scope of this practice; however, sampling practices shall bestated that take into account potential spatial and statisticalvariations o
10、f suspended particles in clean rooms.NOTE 2General references to cleanroom classifications follow Fed-eral Standard 209E, latest revision. Where airborne particles are to becharacterized in dust-controlled areas that do not meet these classifica-tions, the latest revision of the pertinent specificat
11、ion for these areas shallbe used.1.6 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 limitat
12、ions prior to use. For specific hazardsstatements, see Section 8.2. Referenced Documents2.1 ASTM Standards:2D 1356 Terminology Relating to Sampling and Analysis ofAtmospheresF 328 Practice for Calibration of an Airborne ParticleCounter Using Monodisperse Spherical Particles3F 649 Practice for Second
13、ary Calibration of Airborne Par-ticle Counter Using Comparison Procedures3F 658 Practice for Calibration of a Liquid-Borne ParticleCounter Using an Optical System Based Upon LightExtinction32.2 U.S. Federal Standard:Federal Standard No. 209E, Clean Room and Work Station1This practice is under the ju
14、risdiction of ASTM Committee E21 on SpaceSimulation and Applications of Space Technology and is the direct responsibility ofSubcommittee E21.05 on Contamination.Current edition approved Nov. 1, 2007. Published November 2007. Originallyapproved in 1965. Last previous edition approved in 2001 as F 50
15、92 (2001)e12For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.3Withdrawn.1Copyright ASTM International, 100 Barr
16、 Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.Requirements, Controlled Environment4,52.3 Other Documents:6ISO 14644-1 Cleanrooms and Associated Controlled Envi-ronments, Classification of air cleanlinessISO 14644-2 Cleanrooms and Associated Controlled Envi-ronments, Spe
17、cifications for testing and monitoring toprove continued compliance with ISO 14644-13. Terminology3.1 Definitions of Terms Specific to This Standard:3.1.1 dust-controlled areaa clean room or clean workspace in which airborne and deposited particulate contamina-tion levels, or both, are controlled on
18、 the basis of a documentedstandard such as Federal Standard 209E.3.1.2 dynamic rangethe particle size range, expressed as amultiple of the minimum measured size, over which the SPCcan measure particles with size resolution of 10 % or less.3.1.3 particle concentrationthe number of individual par-ticl
19、es per unit volume of ambient temperature and pressure air,particles/m3or particles/ft3.3.1.4 particle sizeequivalent diameter of a particle de-tected by an SPC.3.1.4.1 DiscussionThe equivalent diameter is the diam-eter of a reference sphere of known size and physical charac-teristics (for example,
20、refractive index when using an OPC;density when using an aerodynamic particle sizer; etc) andgenerating the same response in the SPC sensing zone as theparticle being measured. Spherical particles are used forcalibration of the SPCs considered here. The SPC response isrelated to the size, shape, ori
21、entation and physical properties ofthe particle passing through the SPC sensing zone. If an opticalparticle counter is used, the geometry of the optical system, aswell as the spectral distribution of the illuminating lightinfluences the reported particle size. If a condensation nucleuscounter with a
22、 size-fractionation device is used, the SPCoperating parameters and the particle properties that affect thenucleation efficiency and, for example, the diffusion coeffi-cient, will influence reported data. The SPC instruction manualshould make the user aware of the effects of such factors on theindic
23、ated particle size data.3.1.5 primary calibrationcalibration with standard refer-ence particles for particle size and (optionally) concentration.Initially carried out by the SPC manufacturer.3.1.6 resolutionthe capability of the SPC to differentiatebetween particles with small difference in size.3.1
24、.6.1 DiscussionIt can be quantified as the ratio of thesquare root of the difference between the measured and actualvariances of a monosized particle size distribution to the meandiameter of those monosize particles, using procedures asshown in Practice F 658.3.1.7 standardizationsecondary calibrati
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