ISO TS 14411-1-2017 Preparation of particulate reference materials - Part 1 Polydisperse material based on picket fence of monodisperse spherical particles《微粒基准.pdf
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1、 ISO 2017 Preparation of particulate reference materials Part 1: Polydisperse material based on picket fence of monodisperse spherical particles Prparation des matriaux de rfrence ltat particulaire Partie 1: Matriaux polydisperss composs dun ensemble de particules sphriques monodisperses TECHNICAL S
2、PECIFICATION ISO/TS 14411-1 Reference number ISO/TS 14411-1:2017(E) First edition 2017-05 ISO/TS 14411-1:2017(E)ii ISO 2017 All rights reserved COPYRIGHT PROTECTED DOCUMENT ISO 2017, Published in Switzerland All rights reserved. Unless otherwise specified, no part of this publication may be reproduc
3、ed or utilized otherwise in any form or by any means, electronic or mechanical, including photocopying, or posting on the internet or an intranet, without prior written permission. Permission can be requested from either ISO at the address below or ISOs member body in the country of the requester. I
4、SO copyright office Ch. de Blandonnet 8 CP 401 CH-1214 Vernier, Geneva, Switzerland Tel. +41 22 749 01 11 Fax +41 22 749 09 47 copyrightiso.org www.iso.org ISO/TS 14411-1:2017(E)Foreword iv Introduction v 1 Scope . 1 2 Normative references 1 3 T erms, definitions and s ymbols 1 3.1 Terms and definit
5、ions . 1 3.2 Symbols . 2 4 Material requirements for preparing the individual monodisperse fractions .3 4.1 General description . 3 4.2 Requirements on the general properties of the material for individual pickets 3 5 Characterization of the individual monodisperse fractions . 4 5.1 Particle size di
6、stribution 4 5.2 Aspect ratio 5 5.3 Density . 5 5.4 Refractive index 5 6 Preparation of picket-fence distributions . 5 6.1 General . 5 6.2 Preparation of individual pickets 6 6.2.1 General 6 6.2.2 Preparation of suspensions from dry powders . 6 6.2.3 Determination of the particle mass fraction of su
7、spensions . 6 6.3 Preparation of a picket fence distribution. 6 6.3.1 General 6 6.3.2 Preparation from dry powders 6 6.3.3 Preparation from suspensions . 7 7 Estimation of uncertainties . 7 7.1 General . 7 7.2 Uncertainty of a volume-based size distribution due to limited number of particles counted
8、 . 7 7.3 Uncertainty of a number-based size distribution . 8 7.4 Picket-fence distributions composed of more than two kinds of quasi- monodisperse particles . 9 7.5 Uncertainty of a count base size distribution due to various number fraction .10 7.6 Uncertainty of a mass base size distribution due t
9、o various mass fractions .10 7.7 Uncertainty estimation based on the data before or after the mixing process 10 7.8 Uncertainty due to microscopic scale measurement 12 7.9 Uncertainty due to surrounding particles in microscopic measurement .12 7.10 Other uncertainty contributions 12 7.11 Combined un
10、certainty .12 Annex A (informative) Picket-fence distributions composed of more than two kinds of quasi-monodisperse particles .13 Annex B (informative) Example of reliability calculation for a mass-based cumulative size distribution transformed from the number-based size distribution .16 Annex C (i
11、nformative) Example of uncertainty estimation due to mixture fraction and sample size 19 Annex D (informative) Uncertainty estimation of various cases .21 Bibliography .28 ISO 2017 All rights reserved iii Contents Page ISO/TS 14411-1:2017(E) Foreword ISO (the International Organization for Standardi
12、zation) is a worldwide federation of national standards bodies (ISO member bodies). The work of preparing International Standards is normally carried out through ISO technical committees. Each member body interested in a subject for which a technical committee has been established has the right to b
13、e represented on that committee. International organizations, governmental and non-governmental, in liaison with ISO, also take part in the work. ISO collaborates closely with the International Electrotechnical Commission (IEC) on all matters of electrotechnical standardization. The procedures used
14、to develop this document and those intended for its further maintenance are described in the ISO/IEC Directives, Part 1. In particular the different approval criteria needed for the different types of ISO documents should be noted. This document was drafted in accordance with the editorial rules of
15、the ISO/IEC Directives, Part 2 (see www .iso .org/ directives). Attention is drawn to the possibility that some of the elements of this document may be the subject of patent rights. ISO shall not be held responsible for identifying any or all such patent rights. Details of any patent rights identifi
16、ed during the development of the document will be in the Introduction and/or on the ISO list of patent declarations received (see www .iso .org/ patents). Any trade name used in this document is information given for the convenience of users and does not constitute an endorsement. For an explanation
17、 on the voluntary nature of standards, the meaning of ISO specific terms and expressions related to conformity assessment, as well as information about ISOs adherence to the World Trade Organization (WTO) principles in the Technical Barriers to Trade (TBT) see the following URL: w w w . i s o .org/
18、iso/ foreword .html. This document was prepared by Technical Committee TC 24, Particle characterization including sieving, Subcommittee SC 4, Particle characterization.iv ISO 2017 All rights reserved ISO/TS 14411-1:2017(E) Introduction The measurement of the particle size distribution can be accompl
19、ished by a number of techniques which measure some 1-D characteristic of the particle and usually equate this to an equivalent size assuming ideal shapes (usually spherical). Thus, these techniques usually require or assume knowledge of some other constant in order to calculate the particle size dis
20、tribution. Each of these techniques measures different properties which makes the equivalent particle size a method-defined measurand. Comparability of results therefore requires application of the same methods, which in turn requires standardization. This unsatisfactory situation of fundamental lac
21、k of comparability could be improved by a better understanding of the effects influencing the various methods. Since the sample material represents the link between the different methods, it is of central importance that it should meet as many physical assumptions of the considered methods as possib
22、le. A feasible approach is mixing known amounts of spherical, monodisperse particle fractions to create a polydisperse mixture (“picket fence distribution”). The individual particles should be spherical, as many sizing methods assume the particles to be spherical. Using particles that are in fact sp
23、herical fulfils this assumption, so the results of the various methods should be the same as far as the particle shape is concerned. A further advantage of spherical particles is that their size can be described by a single parameter only, the particle diameter. The individual fractions of the mixtu
24、re need to be monodisperse, as only then it is possible to trace the particle diameter back to the standard meter with an acceptable uncertainty and to get mixtures of theoretically known particle size distributions in the end. These materials should be used as follows. The monodisperse particle fra
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