Electric strength of insulating materials - Test methods - Part 2: Additional requirements for tests using direct voltage

L'IEC 60243-2:2013 donne les exigences complémentaires à celles de la CEI 60243-1 pour la détermination de la rigidité diélectrique des matériaux isolants solides sous tension continue. Cette troisième édition annule et remplace la deuxième édition parue en 2001 et constitue une révision éditoriale.
Cette publication doit être lue conjointement avec la CEI 60243-1:2013.

Rigidité diélectrique des matériaux isolants - Méthodes d'essai - Partie 2: Exigences complémentaires pour les essais à tension continue

L'IEC 60243-2:2013 donne les exigences complémentaires à celles de la CEI 60243-1 pour la détermination de la rigidité diélectrique des matériaux isolants solides sous tension continue. Cette troisième édition annule et remplace la deuxième édition parue en 2001 et constitue une révision éditoriale.
Cette publication doit être lue conjointement avec la CEI 60243-1:2013.

General Information

Status
Published
Publication Date
25-Nov-2013
Current Stage
PPUB - Publication issued
Start Date
28-Feb-2014
Completion Date
26-Nov-2013
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IEC 60243-2:2013 - Electric strength of insulating materials - Test methods - Part 2: Additional requirements for tests using direct voltage
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IEC 60243-2 ®
Edition 3.0 2013-11
INTERNATIONAL
STANDARD
NORME
INTERNATIONALE
Electric strength of insulating materials – Test methods –
Part 2: Additional requirements for tests using direct voltage

Rigidité diélectrique des matériaux isolants – Méthodes d’essai –
Partie 2: Exigences complémentaires pour les essais à tension continue
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IEC 60243-2 ®
Edition 3.0 2013-11
INTERNATIONAL
STANDARD
NORME
INTERNATIONALE
Electric strength of insulating materials – Test methods –

Part 2: Additional requirements for tests using direct voltage

Rigidité diélectrique des matériaux isolants – Méthodes d’essai –

Partie 2: Exigences complémentaires pour les essais à tension continue

INTERNATIONAL
ELECTROTECHNICAL
COMMISSION
COMMISSION
ELECTROTECHNIQUE
PRICE CODE
INTERNATIONALE
CODE PRIX J
ICS 17.220.99; 29.035.01 ISBN 978-2-8322-1200-4

– 2 – 60243-2 © IEC:2013
CONTENTS
FOREWORD . 3
1 Scope . 5
2 Normative references . 5
3 Terms and definitions . 5
4 Significance of the test . 5
5 Electrodes and test specimens . 6
6 Conditioning before tests . 6
7 Surrounding medium . 6
8 Electrical apparatus . 6
8.1 Voltage source . 6
8.2 Voltage measurement . 7
9 Procedure . 7
10 Mode of increase of voltage . 7
11 Criterion of breakdown . 7
12 Number of tests . 7
13 Report . 7
Bibliography . 8

60243-2 © IEC:2013 – 3 –
INTERNATIONAL ELECTROTECHNICAL COMMISSION
____________
ELECTRIC STRENGTH OF INSULATING MATERIALS –
TEST METHODS –
Part 2: Additional requirements for tests using direct voltage

FOREWORD
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8) Attention is drawn to the Normative references cited in this publication. Use of the referenced publications is
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patent rights. IEC shall not be held responsible for identifying any or all such patent rights.
International Standard IEC 60243-2 has been prepared by technical committee 112:
Evaluation and qualification of electrical insulation materials and systems
This third edition cancels and replaces the second edition published in 2001, and constitutes
an editorial revision.
This standard shall be read in conjunction with IEC 60243-1.
The text of this standard is based on the following documents:
CDV Report on voting
112/245/CDV 112/266A/RVC
– 4 – 60243-2 © IEC:2013
Full information on the voting for the approval of this standard can be found in the report on
voting indicated in the above table.
This publication has been drafted in accordance with the ISO/IEC Directives, Part 2.
A list of all parts in the IEC 60243 series, published under the general title Electric strength of
insulating materials – Test methods, can be found on the IEC website.
The committee has decided that the contents of this publication will remain unchanged until
the stability date indicated on the IEC web site under "http://webstore.iec.ch" in the data
related to the specific publication. At this date, the publication will be
• reconfirmed,
• withdrawn,
• replaced by a revised edition, or
• amended.
60243-2 © IEC:2013 – 5 –
ELECTRIC STRENGTH OF INSULATING MATERIALS –
TEST METHODS –
Part 2: Additional requirements for tests using direct voltage

1 Scope
This part of IEC 60243 gives requirements additional to those in IEC 60243-1 for the
determination of the electric strength of solid insulating materials under direct voltage stress.
2 Normative references
The following documents, in whole or in part, are normatively referenced in this document and
are indispensable for its application. For dated references, only the edition cited applies. For
undated references, the latest edition of the referenced document (including any
amendments) applies.
IEC 60243-1:2013, Electric strength of insulating materials – Test methods – Part 1: Tests at
power frequencies
3 Terms and definitions
For the purposes of this document, the terms and definitions in IEC 60243-1:2013 apply.
4 Significance of the test
In addition to the requirements of Clause 4 of IEC 60243-1:2013, the following points shall be
considered when using direct-voltage tests.
For a non-homogeneous test specimen, with alternating voltage, the distribution of voltage
stress within the test specimen is determined by impedance (largely capacitive). With an
increasing direct voltage, the voltage distribution may still be largely capacitive but depends
partly on the rate of voltage increase. The resistive voltage distribution, after constant voltage
application, represents the steady-state condition. The choice between direct or alternating
voltage depends upon the purpose for which the breakdown test is to be used and, to some
extent, on the intended application of the material.
Upon direct voltage application, the following currents result: the capacitive current, the
electric absorption current, the leakage current and, in some cases, partial discharge
currents.
In addition, for materials with dissimilar layers or discontinuities, the voltage distribution
across the test specimen is also influenced, as a result of interfacial polarization, by charges
of opposite polarity, which may a
...

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