IEC TR 62797-2013 International comparison of measurements of the magnetic moment using Vibrating Sample Magnetometers (VSM) and Superconducting Quantum Interfe.pdf
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1、 IEC/TR 62797 Edition 1.0 2013-08 TECHNICAL REPORT International comparison of measurements of the magnetic moment using vibrating sample magnetometers (VSM) and superconducting quantum interference device (SQUID) magnetometers IEC/TR 62797:2013(E) colour inside THIS PUBLICATION IS COPYRIGHT PROTECT
2、ED Copyright 2013 IEC, Geneva, Switzerland 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 IEC or IECs mem
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9、797 Edition 1.0 2013-08 TECHNICAL REPORT International comparison of measurements of the magnetic moment using vibrating sample magnetometers (VSM) and superconducting quantum interference device (SQUID) magnetometers INTERNATIONAL ELECTROTECHNICAL COMMISSION V ICS 29.030 PRICE CODE ISBN 978-2-8322-
10、1018-5 Registered trademark of the International Electrotechnical Commission Warning! Make sure that you obtained this publication from an authorized distributor. colour inside 2 TR 62797 IEC:2013(E) CONTENTS FOREWORD . 4 INTRODUCTION . 6 1 Scope . 7 2 Overview 7 3 Samples . 8 3.1 Hard ferrites 8 3.
11、2 Magnetic tapes 8 4 Measuring quantities and measuring conditions 8 4.1 General . 8 4.2 Hard ferrite spheres 8 4.3 Magnetic tape samples 9 4.4 Role of the measuring temperature 9 5 Analysis of the measured quantities . 10 Annex A (informative) International comparison of measurements of the magneti
12、c moment using vibrating sample magnetometers and SQUID magnetometers 15 Annex B (informative) Participants . 30 Bibliography 31 Figure 1 Isotropic and anisotropic ferrites: standard deviations 12 Figure 2 Magnetic tape samples: standard deviations 12 Figure 3 Isotropic and anisotropic ferrites: wei
13、ghted uncertainties 13 Figure 4 Magnetic tape samples: weighted uncertainties 13 Figure 5 Normalized best values y y / iof the coercive field strength H cJand maximum energy product (BH) max. 14 Figure A.1 Dispersion of the J 800kvalues measured by the participating laboratories on the isotropic fer
14、rite sample HF-Iso1 . 16 Figure A.2 Dispersion of the J rvalues measured by the participating laboratories on the isotropic ferrite sample HF-Iso1 17 Figure A.3 Dispersion of the H cJvalues measured by the participating laboratories on the isotropic ferrite sample HF-Iso1 . 18 Figure A.4 Dispersion
15、of the H cBvalues measured by the participating laboratories on the isotropic ferrite sample HF-Iso1 . 19 Figure A.5 Dispersion of the (BH) maxvalues measured by the participating laboratories on the isotropic ferrite sample HF-Iso1 20 Figure A.6 Dispersion of the J 800kvalues measured by the partic
16、ipating laboratories on the anisotropic ferrite sample HF-Aniso1 21 Figure A.7 Dispersion of the J rvalues measured by the participating laboratories on the anisotropic ferrite sample HF-Aniso1. 22 Figure A.8 Dispersion of the H cJvalues measured by the participating laboratories on the anisotropic
17、ferrite sample HF-Aniso1 23 Figure A.9 Dispersion of the H cBvalues measured by the participating laboratories on the anisotropic ferrite sample HF-Aniso1 24 Figure A.10 Dispersion of the (BH) maxvalues measured by the participating laboratories on the anisotropic ferrite sample HF-Aniso1 25 Figure
18、A.11 Dispersion of the m 400kvalues measured by the participating laboratories on the magnetic tape sample A1 26 TR 62797 IEC:2013(E) 3 Figure A.12 Dispersion of the m rvalues measured by the participating laboratories on the magnetic tape sample A1 . 27 Figure A.13 Dispersion of the S = m r /m 400k
19、values measured by the participating laboratories on the magnetic tape sample A1 28 Figure A.14 Dispersion of the H cJvalues measured by the participating laboratories on the magnetic tape sample A1 . 29 Table A.1 Magnetic polarization value J 800kat H a= H peak= 800 kA/m measured by the participati
20、ng laboratories on the isotropic hard ferrite HF-Iso1 . 15 Table A.2 Remanent magnetic polarization J rmeasured by the participating laboratories on the isotropic hard ferrite HF-Iso1 17 Table A.3 Coercive field H cJmeasured by the participating laboratories on the isotropic hard ferrite HF-Iso1 18
21、Table A.4 Coercive field H cBmeasured by the participating laboratories on the isotropic hard ferrite HF-Iso1 19 Table A.5 Maximum energy product (BH) maxmeasured by the participating laboratories on the isotropic hard ferrite HF- Iso1 . 20 Table A.6 Magnetic polarization value J 800kat H a= H peak=
22、 800 kA/m measured by the participating laboratories on the anisotropic hard ferrite HF-Aniso1 . 21 Table A.7 Remanent magnetic polarization J rmeasured by the participating laboratories on the anisotropic hard ferrite HF-Aniso1. 22 Table A.8 Coercive field H cJmeasured by the participating laborato
23、ries on the anisotropic hard ferrite HF-Aniso1 . 23 Table A.9 Coercive field H cBmeasured by the participating laboratories on the anisotropic hard ferrite HF-Aniso1 . 24 Table A.10 Maximum energy product (BH) maxmeasured by the participating laboratories on the anisotropic hard ferrite HF- Aniso1 2
24、5 Table A.11 Magnetic moment m 400kmeasured at at H a= H peak= 400 kA/m by the participating laboratories on the magnetic tape sample 1A 26 Table A.12 Remanent magnetic moment m rmeasured by the participating laboratories on the magnetic tape sample 1A 27 Table A.13 Squareness ratio S = m r /m 400km
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