ISO TTA 3-2001 Polycrystalline materials - Determination of residual stresses by neutron diffraction《多晶材料 中子衍射法测定剩余应力》.pdf
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1、TECHNOLOGY ISOITTA 3 TRENDS ASSESSMENT First edition 200 1 -09- 1 5 Polycrystalline materials - Determination of residual stresses by neutron diffraction Matriaux polycristallins - Dtermination des contraintes rsiduelles par diffraction neutronique Reference number ISOiTTA 3:2001 (E) ISOITTA 32001 (
2、E) PDF disclaimer This PDF file may contain embedded typefaces. In accordance with Adobes licensing policy, this file may be printed or viewed but shall not be edited unless the typefaces which are embedded are licensed to and installed on the computer performing the editing. In downloading this fil
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4、lative to the file; the PDF-creation parameters were optimized for printing. Every care has been taken to ensure that the file is suitable for use by IS0 member bodies. In the unlikely event that a problem relating to it is found, please inform the Central Secretariat at the address given below. o I
5、S02001 All rights 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 IS0 at the address below or ISOs member body in the
6、 country of the requester. IS0 copyright office Case postale 56 CH-121 1 Geneva 20 Tel. + 41 22 749 O1 11 Fax + 41 22 749 O9 47 E-mail copyrightiso.ch Web www.iso.ch Printed in Switzerland II 0 IS0 2001 -All rights reserved ISOITTA 3:2001(E) ISOITTA Page FOREWORD . iv EXECUTIVE SUMMARY . v BACKGROUN
7、D . vi REFERENCES ix Participants in VAMAS TWA 20 x Participants in RESTAND . xi Introduction xi1 1 . 2 . 3 . 4 . 5 . 6 . 7 . 8 . 9 . Scope 1 Symbols and abbreviations 2 Calibration procedure . 10 Summary of method . 4 Materials characterisation 16 Recording and measurement procedures . 18 Calculati
8、on of stress . 20 Reliability of results . 25 Reporting 26 ANNEX A . Recording and measurement procedures . 28 ANNEX B - Determination of uncertainties in a measurand 37 ANNEX C - Recommendations for a standard strain scanner base-plate . 42 Bibliography 48 O IS0 2001 -All rights reserved iii ISOITT
9、A 3:2001(E) FOREWORD The International Organisation for Standardisation (ISO) is a worldwide federation of national standards bodies. It is responsible for preparing International Standards through IS0 technical committees in association with other international organisations and national government
10、al and non-governmental agencies. The Versailles Project on Advanced Materials and Standards (VAMAS) supports trade in high technology products through international collaborative projects aimed at providing the technical basis for drafting codes of practice and specifications for advanced materials
11、. The scope of the collaboration embraces all agreed aspects of enabling science and technology which are required as a precursor to the drafting of standards for advanced materials. The VAMAS activity emphasises collaboration on pre-standards measurement research, intercomparison of test results, a
12、nd consolidation of existing views on priorities for standardisation action. IS0 Technology Trend Assessment (ISOTTA) documents are published under a memorandum of understanding concluded between IS0 and VAMAS. They enable the technical innovations and developments emerging from a VAMAS activity to
13、be published at an early stage prior to their incorporation into a Standard. Whilst ISO/TTAs are not Standards, it is intended that they will be able to be used as a basis for standards development in the future by the various existing standards agencies. This particular ISO/TTA reports the findings
14、 of a comprehensive round-robin study which was carried out by VAMAS Technical Working Area (TWA) 20 to investigate the feasibility of measuring residual stresses in crystalline materials by neutron diffraction. It was supported by a European (EU) project RESTAND (Residual Stress Standard using Neut
15、ron Diffraction) aimed at demonstrating that the techniques developed can be applied to real components. iv O IS0 2001 -All rights reserved ISO/TTA 3:2001(E) EXECUTIVE SUMMARY Neutron diffraction is a relatively new method for determining residual (and applied) stresses in crystalline materials. It
16、is similar to the X-ray technique for surface determinations. However because neutrons are not charged, neutron diffraction can be used to obtain residual stresses non-destructively to a depth of several centimetres in most materials of practical interest. No standard is currently available for maki
17、ng these measurements. An international project, under the auspices of VAMAS (Versailles Agreement on Advanced Materials and Standards), Technical Working Area 20 (TWA 20) was initiated in January 1996 to carry out the under-pinning research necessary to develop a standard. The investigation involve
18、d most of the neutron sources worldwide which are capable of making the measurements. A series of round-robin specimens including a shrink-fit aluminium alloy ring and plug assembly, a ceramic matrix composite, a nickel alloy shot-peened plate and a ferritic steel weldment were examined. This study
19、was supported by a European (EU) project RESTAND (Residual Stress Standard using Neutron Diffraction) which was started in December 1997 to demonstrate the usefulness of the technique to a range of practical applications and to develop confidence in the method for industry. This document gives the b
20、ackground to the VAMAS TWA 20 and RESTAND projects. It outlines the main findings and indicates the precautions that are required to achieve accurate positioning and alignment of specimens (and components) in the neutron beam and the analysis required to obtain reliable results. It also shows that s
21、pecial attention is needed in dealing with near-surface measurements because of surface aberration effects. It is demonstrated that, provided the recommended procedures are followed, a positional tolerance of k 0,l mm can be achieved with an accuracy in strain of to give a resolution in residual str
22、ess of f 7 to 20 MPa in most materials of practical interest. O IS0 2001 -All rights reserved V ISOITTA 3:2001 (E) BACKGROUND Neutron diffraction is a technique that can be applied for determining residual (and applied) stresses in crystalline materials l-31. With the method, elastic strain is measu
23、red and stress calculated using the elastic properties of the material. The depth to which these measurements can be made non-destructively within specimens or components depends on their size and shape. It is also dependent on the neutron scattering and absorption characteristics of the materials o
24、f which they are made. Typically the depths to which these measurements can be obtained are up to a few centimetres in most materials of practical interest. No standard or code of practice is available for making residual stress measurements by neutron diffraction. As a consequence VAMAS TWA 20 (Ver
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