ISO 20501-2003 Fine ceramics (advanced ceramics advanced technical ceramics) - Weibull statistics for strength data《细陶瓷(高级陶瓷、高级工业陶瓷) 强度数据的维伯统计》.pdf
《ISO 20501-2003 Fine ceramics (advanced ceramics advanced technical ceramics) - Weibull statistics for strength data《细陶瓷(高级陶瓷、高级工业陶瓷) 强度数据的维伯统计》.pdf》由会员分享,可在线阅读,更多相关《ISO 20501-2003 Fine ceramics (advanced ceramics advanced technical ceramics) - Weibull statistics for strength data《细陶瓷(高级陶瓷、高级工业陶瓷) 强度数据的维伯统计》.pdf(38页珍藏版)》请在麦多课文档分享上搜索。
1、 Reference number ISO 20501:2003(E) ISO 2003INTERNATIONAL STANDARD ISO 20501 First edition 2003-12-01 Fine ceramics (advanced ceramics, advanced technical ceramics) Weibull statistics for strength data Cramiques techniques Statistiques Weibull des donnes de rsistance ISO 20501:2003(E) PDF disclaimer
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4、e; the PDF-creation parameters were optimized for printing. Every care has been taken to ensure that the file is suitable for use by ISO member bodies. In the unlikely event that a problem relating to it is found, please inform the Central Secretariat at the address given below. ISO 2003 All rights
5、reserved. Unless otherwise specified, no part of this publication may be reproduced or utilized in any form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from either ISO at the address below or ISOs member body in the country of the re
6、quester. ISO copyright office Case postale 56 CH-1211 Geneva 20 Tel. + 41 22 749 01 11 Fax + 41 22 749 09 47 E-mail copyrightiso.org Web www.iso.org Published in Switzerland ii ISO 2003 All rights reservedISO 20501:2003(E) ISO 2003 All rights reserved iiiContents Page Foreword iv 1 Scope 1 2 Terms a
7、nd definitions. 1 2.1 Defect populations 1 2.2 Mechanical testing 2 2.3 Statistical terms 3 2.4 Weibull distributions. 4 3 Symbols . 5 4 Significance and use 6 5 Method A: maximum likelihood parameter estimators for single flaw populations 7 5.1 General. 7 5.2 Censored data . 7 5.3 Likelihood functi
8、ons . 7 5.4 Bias correction 8 5.5 Confidence intervals. 9 6 Method B: maximum likelihood parameter estimators for competing flaw populations 11 6.1 General. 11 6.2 Censored data . 12 6.3 Likelihood functions . 12 7 Procedure. 13 7.1 Outlying observations 13 7.2 Fractography . 13 7.3 Graphical repres
9、entation 13 8 Test report 16 Annex A (informative) Converting to material-specific strength distribution parameters 17 Annex B (informative) Illustrative examples 19 Annex C (informative) Test specimens with unidentified fracture origin . 26 Annex D (informative) Fortran program . 29 Bibliography .
10、33 ISO 20501:2003(E) iv ISO 2003 All rights reservedForeword ISO (the International Organization for Standardization) 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. Ea
11、ch member body interested in a subject for which a technical committee has been established has the right to be 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 Internatio
12、nal Electrotechnical Commission (IEC) on all matters of electrotechnical standardization. International Standards are drafted in accordance with the rules given in the ISO/IEC Directives, Part 2. The main task of technical committees is to prepare International Standards. Draft International Standar
13、ds adopted by the technical committees are circulated to the member bodies for voting. Publication as an International Standard requires approval by at least 75 % of the member bodies casting a vote. Attention is drawn to the possibility that some of the elements of this document may be the subject
14、of patent rights. ISO shall not be held responsible for identifying any or all such patent rights. ISO 20501 was prepared by Technical Committee ISO/TC 206, Fine ceramics. INTERNATIONAL STANDARD ISO 20501:2003(E) ISO 2003 All rights reserved 1Fine ceramics (advanced ceramics, advanced technical cera
15、mics) Weibull statistics for strength data 1 Scope This International Standard covers the reporting of uniaxial strength data and the estimation of probability distribution parameters for advanced ceramics which fail in a brittle fashion. The failure strength of advanced ceramics is treated as a con
16、tinuous random variable. Typically, a number of test specimens with well-defined geometry are brought to failure under well-defined isothermal loading conditions. The load at which each specimen fails is recorded. The resulting failure stresses are used to obtain parameter estimates associated with
17、the underlying population distribution. This International Standard is restricted to the assumption that the distribution underlying the failure strengths is the two-parameter Weibull distribution with size scaling. Furthermore, this International Standard is restricted to test specimens (tensile, f
18、lexural, pressurized ring, etc.) that are primarily subjected to uniaxial stress states. Subclauses 5.4 and 5.5 outline methods of correcting for bias errors in the estimated Weibull parameters, and to calculate confidence bounds on those estimates from data sets where all failures originate from a
19、single flaw population (i.e., a single failure mode). In samples where failures originate from multiple independent flaw populations (e.g., competing failure modes), the methods outlined in 5.4 and 5.5 for bias correction and confidence bounds are not applicable. Measurements of the strength at fail
20、ure are taken for one of two reasons: either for a comparison of the relative quality of two materials, or the prediction of the probability of failure (or alternatively the fracture strength) for a structure of interest. This International Standard permits estimates of the distribution parameters w
21、hich are needed for either. In addition, this International Standard encourages the integration of mechanical property data and fractographic analysis. 2 Terms and definitions For the purposes of this document, the following terms and definitions apply. 2.1 Defect populations 2.1.1 censored strength
22、 data strength measurements (i.e., a sample) containing suspended observations such as that produced by multiple competing or concurrent flaw populations NOTE Consider a sample where fractography clearly established the existence of three concurrent flaw distributions (although this discussion is ap
23、plicable to a sample with any number of concurrent flaw distributions). The three concurrent flaw distributions are referred to here as distributions A, B, and C. Based on fractographic analyses, each specimen strength is assigned to a flaw distribution that initiated failure. In estimating paramete
24、rs that characterize the strength distribution associated with flaw distribution A, all specimens (and not just those that failed from type-A flaws) must be incorporated in the analysis to assure efficiency and accuracy of the resulting parameter estimates. The strength of a specimen that failed by
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