CEN TR 16369-2012 Use of control charts in the production of concrete《使用控制图在混凝土的生产》.pdf
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1、raising standards worldwideNO COPYING WITHOUT BSI PERMISSION EXCEPT AS PERMITTED BY COPYRIGHT LAWBSI Standards PublicationUse of control charts in the production of concretePD CEN/TR 16369:2012National forewordThis Published Document is the UK implementation of CEN/TR 16369:2012. The UK participatio
2、n in its preparation was entrusted by Technical CommitteeB/517, Concrete, to Subcommittee B/517/1, Concrete production and testing.A list of organizations represented on this committee can be obtained on request to its secretary.This publication does not purport to include all the necessary provisio
3、ns of a contract. Users are responsible for its correct application. The British Standards Institution 2012.Published by BSI Standards Limited 2012 ISBN 978 0 580 76828 6 ICS 03.120.30; 91.100.30Compliance with a British Standard cannot confer immunity from legal obligations.This Published Document
4、was published under the authority of the Standards Policy and Strategy Committee on 30 November2012.Amendments issued since publicationDate Text affectedPUBLISHED DOCUMENTPD CEN/TR 16369:2012TECHNICAL REPORT RAPPORT TECHNIQUE TECHNISCHER BERICHT CEN/TR 16369 October 2012 ICS 91.100.30; 03.120.30 Eng
5、lish Version Use of control charts in the production of concrete Utilisation des cartes de contrle pour la production du bton Anwendung von Qualittsregelkarten bei der Herstellung von Beton This Technical Report was approved by CEN on 20 May 2012. It has been drawn up by the Technical Committee CEN/
6、TC 104. CEN members are the national standards bodies of Austria, Belgium, Bulgaria, Croatia, Cyprus, Czech Republic, Denmark, Estonia, Finland, Former Yugoslav Republic of Macedonia, France, Germany, Greece, Hungary, Iceland, Ireland, Italy, Latvia, Lithuania, Luxembourg, Malta, Netherlands, Norway
7、, Poland, Portugal, Romania, Slovakia, Slovenia, Spain, Sweden, Switzerland, Turkey and United Kingdom. EUROPEAN COMMITTEE FOR STANDARDIZATION COMIT EUROPEN DE NORMALISATION EUROPISCHES KOMITEE FR NORMUNG Management Centre: Avenue Marnix 17, B-1000 Brussels 2012 CEN All rights of exploitation in any
8、 form and by any means reserved worldwide for CEN national Members. Ref. No. CEN/TR 16369:2012: EPD CEN/TR 16369:2012CEN/TR 16369:2012 (E) 2 Contents Page Foreword 4Introduction .51 Scope 72 Symbols and abbreviations 73 Statistics for Concrete 83.1 Normal distribution of strength 83.2 Characteristic
9、 strength and target strength .83.3 Standard deviation 103.4 Setting the target strength . 134 Simple Data Charts . 145 Shewhart Charts . 155.1 Introduction . 155.2 Shewhart action criteria . 165.2.1 Points beyond UCL or LCL 165.2.2 Points beyond UWL or LWL 165.2.3 Patterns within control limits 165
10、.3 Control of standard deviation 165.4 Example Shewhart chart 165.5 Modified application of Shewhart control chart 176 CUSUM . 196.1 Introduction . 196.2 Controlling mean strength . 226.3 Controlling standard deviation 226.4 Controlling correlation . 236.5 Design of V-mask 246.6 Action following cha
11、nge 247 Multivariable and Multigrade Analysis . 267.1 General . 267.2 Multivariable 267.3 Multigrade 278 Speeding the Response of the System 288.1 Early age testing . 288.2 Family of mixes concept 289 Guidance on Control Systems 309.1 Abnormal Results . 309.2 Handling mixes outside the concrete fami
12、ly . 309.3 Handling mixes not controlled by compressive strength requirements 319.4 Test rates . 329.5 Action following change 3310 EN 206-1 Conformity Rules for Compressive Strength 3310.1 Basic requirements for conformity of compressive strength 3310.2 Assessment period . 3410.3 Conformity rules f
13、or compressive strength . 3410.4 Achieving an AOQL of 5 % with CUSUM 3610.5 Non-conformity . 3711 Implementing Control Systems . 3812 CUSUM Example . 38PD CEN/TR 16369:2012CEN/TR 16369:2012 (E) 3 12.1 Reference mix and concrete family . 3812.2 Main relationship . 3912.3 Applying adjustments . 4012.4
14、 CUSUM calculation 4112.5 CUSUM action following change . 4512.6 Further data and a change in standard deviation 47Bibliography 51PD CEN/TR 16369:2012CEN/TR 16369:2012 (E) 4 Foreword This document (CEN/TR 16369:2012) has been prepared by Technical Committee CEN/TC 104 “Concrete and related products”
15、, the secretariat of which is held by DIN. Attention is drawn to the possibility that some of the elements of this document may be the subject of patent rights. CEN and/or CENELEC shall not be held responsible for identifying any or all such patent rights. PD CEN/TR 16369:2012CEN/TR 16369:2012 (E) 5
16、 Introduction It is safe to assume that ever since manufacturing commenced, attempts have been made to control the process in order to improve quality and drive down costs. The application of statistical techniques to manufacturing was first developed by physicist Walter A. Shewhart of the Bell Tele
17、phone Laboratories in 1924. Shewhart continued to develop the idea and in 1931 he published a book on statistical quality control 1. Shewhart recognised that within a manufacturing process there were not only natural variations inherent in the process, which affected quality but there were also vari
18、ations that could not be explained. Shewhart recognised that it is possible to set limits on the natural variation of any process so that fluctuations within these limits could be explained by chance causes, but any variation outside of these limits, special variations, would represent a change in t
19、he underlying process. Shewharts concept of natural and special variations is clearly relevant to the production of concrete at a ready-mixed plant or precast factory and the requirement to achieve a specified compressive strength. Natural variations exist in the process due to variation in the raw
20、materials (aggregate grading, chemical composition, etc), batching accuracy, plant performance, sampling and testing, etc. Special causes of variation outside of the natural variations could be due to changed constituent materials being used, weigh-scales losing accuracy, a new batcher, problems wit
21、h testing equipment, etc. Control charts have found widespread use in the concrete industry in both ready-mixed concrete and precast concrete sectors as a tool for quality control. Control charts can be applied to monitor a range of product characteristics (e.g. cube/cylinder strength, consistence,
22、w/c ratio), constituent materials (aggregate grading, cement strengths, etc.) or production (batching accuracy). Their most common application of control charts is as a means of continuously assessing compressive strength results in order to: check whether target strengths are being achieved; measur
23、e the variations from target (all products vary); identify magnitude of any variation; objectively define action required (e.g. change w/c ratio) to get the process back on target; identify periods and concretes where the strength was less than specified so that investigations can be carried out and
24、 corrective action taken. The use of control charts should not be treated in isolation from the rest of production control. For example routine checking and maintenance of weigh equipment will minimise the risk of a weigh-scale failure. Control charts provide information about the process, but the i
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