ISO 16336-2014 Applications of statistical and related methods to new technology and product development process - Robust parameter design (RPD)《新技术和产品开发流程统计和相关.pdf
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1、 ISO 2014 Applications of statistical and related methods to new technology and product development process Robust parameter design (RPD) Application de mthodologies statistiques et connexes pour le dveloppement de nouvelles technologies et de nouveaux produits Modle paramtrique robuste INTERNATIONA
2、L STANDARD ISO 16336 First edition 2014-07-01 Reference number ISO 16336:2014(E) ISO 16336:2014(E)ii ISO 2014 All rights reserved COPYRIGHT PROTECTED DOCUMENT ISO 2014 All rights reserved. Unless otherwise specified, no part of this publication may be reproduced or utilized otherwise in any form or
3、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. ISO copyright office Case postale 56 CH-1
4、211 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 ISO 16336:2014(E) ISO 2014 All rights reserved iii Contents Page Foreword iv Introduction v 1 Scope . 1 2 Normative references 1 3 T erms and definitions and s ymbols 1 3.1 Ter
5、m and definitions 1 3.2 Symbols . 3 4 Robust parameter design Overview 4 4.1 Requirements . 4 4.2 Assessing the robustness of a system . 4 4.3 Robustness assessment through SN ratio . 6 4.4 An efficient method for assessing technical ideas Parameter design . 7 4.5 Two-step optimization (Strategy of
6、parameter design) 8 4.6 Determination of the optimum design 10 5 Assessment of robustness by SN ratio .10 5.1 Concepts of SN ratio 10 5.2 Types of SN ratio 11 5.3 Procedure of the quantification of robustness .11 5.4 Formulation of SN ratio: Calculation using decomposition of total sum of squares 13
7、 5.5 Some topics of SN ratio .19 6 Procedure of a parameter design experiment 20 6.1 General 20 6.2 (Step 1) Clarify the systems ideal function .20 6.3 (Step 2) Select a signal factor and its range 21 6.4 (Step 3) Select measurement method of output response.21 6.5 (Step 4) Develop noise strategy an
8、d select noise factors and their levels 21 6.6 (Step 5) Select control factors and their levels from design parameters 22 6.7 (Step 6) Assign experimental factors to inner or outer array .22 6.8 (Step 7) Conduct experiment and collect data .23 6.9 (Step 8) Calculate SN ratio, , and sensitivity, S .
9、23 6.10 (Step 9) Generate factorial effect diagrams on SN ratio and sensitivity .26 6.11 (Step 10) Select the optimum condition 28 6.12 (Step 11) Estimate the improvement in robustness by the gain 28 6.13 (Step 12) Conduct a confirmation experiment and check the gain and “reproducibility” .29 7 Case
10、 study Parameter design of a lamp cooling system 30 Annex A (informative) Comparison of a systems robustness using SN ratio 40 Annex B (informative) Case studies and SN r atio in v arious t echnical fields 47 Bibliography .72 ISO 16336:2014(E) Foreword ISO (the International Organization for Standar
11、dization) 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
12、 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 International Electrotechnical Commission (IEC) on all matters of electrotechnical standardization. The procedures use
13、d 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 o
14、f 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 identifie
15、d 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 on
16、the meaning of ISO specific terms and expressions related to conformity assessment, as well as information about ISOs adherence to the WTO principles in the Technical Barriers to Trade (TBT) see the following URL: Foreword - Supplementary information The committee responsible for this document is IS
17、O/TC 69, Applications of statistical methods, Subcommittee SC 8, Application of statistical and related methodology for new technology and product development.iv ISO 2014 All rights reserved ISO 16336:2014(E) Introduction Robust parameter design, also called parameter design, can be applied in produ
18、ct design stage to identify the optimum nominal values of design parameters based on the assessment of robustness of its function. Robustness assessment is performed as a consideration of overall loss during the products life cycle. The overall loss is composed of costs and losses at each stage of t
19、he products life. It includes all the costs incurred during not only its production stage, but also its disposal stages. When a product is not robust, the product causes many environmental and social economic losses (including losses to the manufacturer and the users) due to its poor quality caused
20、by functional variability throughout its usable lifetime from shipping to final disposal. Product suppliers have responsibilities and obligations to supply robust products to the market to avert losses and damages resulting from defects in the products. The aim of applying parameter design in produc
21、t design is to prevent defects, failures, and quality problems that can occur during the usage of the product. A robust product, an output of parameter design, is a product which is designed in such a way as to minimize users quality losses caused by defects, failures, and quality problems. Note tha
22、t defects, failures, and quality problems are caused by functional variability of a non-robust product. In parameter design, optimum nominal values of a products design parameters can be selected by treating a products design parameters as control factors and by assessing robustness under noise fact
23、ors. The use of parameter design at development and design stages makes it possible to determine the optimum product design and specification so that the product is robust in the market. At manufacturing stage, the product suppliers manufacture their products that meet the product specifications. On
24、e can optimize manufacturing processes to produce the products that meet the specifications. However, robustness against customers environment and products aging can be addressed only by product design. Robust parameter design methodology provides effective methods for achieving robustness through i
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