ICEA T-25-425-2015 GUIDE FOR ESTABLISHING STABILITY OF VOLUME RESISTIVITY FOR SEMICONDUCTING POLYMERIC COMPONENTS OF POWER CALBES.pdf
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1、 GUIDE FOR ESTABLISHING STABILITY OF VOLUME RESISTIVITY FOR SEMICONDUCTING POLYMERIC COMPONENTS OF POWER CALBES ICEA T-25-425-2015 2015 by INSULATED CABLE ENGINEERS ASSOCIATION, INC. ICEA T-25-425-2015 Insulated Cable Engineers Assoc., Publication No. T-25-425-Revised 2015 Guide For Establishing Sta
2、bility Of Volume Resistivity For Semiconducting Polymeric Components Of Power Cables Published by Insulated Cable Engineers Association, Inc. Approved September 16, 2015 by Insulated Cable Engineers Association, Inc. Copyright 2015 by the Insulated Cable Engineers Association. All rights including
3、translation into other languages, reserved under the Universal Copyright Convention, the Berne Convention for the Protection of Literary and Artistic Works, and the International and Pan American Copyright Conventions. NOTICE AND DISCLAIMER The information in this publication was considered technica
4、lly sound by the consensus of persons engaged in the development and approval of the document at the time it was developed. Consensus does not necessarily mean that there is unanimous agreement among every person participating in the development of this document. The Insulated Cable Engineers Associ
5、ation, Inc. (ICEA) standards and guideline publications, of which the document contained herein is one, are developed through a voluntary consensus standards development process. This process brings together persons who have an interest in the topic covered by this publication. While ICEA administer
6、s the process and establishes rules to promote fairness in the development of consensus, it does not independently test, evaluate, or verify the accuracy or completeness of any information or the soundness of any judgements contained in its standards and guideline publications. ICEA disclaims liabil
7、ity for personal injury, property, or other damages of any nature whatsoever, whether special, indirect, consequential, or compensatory, directly or indirectly resulting from the publication, use of, application, or reliance on this document. ICEA disclaims and makes no guaranty or warranty, express
8、ed or implied, as to the accuracy or completeness of any information published herein, and disclaims and makes no warranty that the information in this document will fulfill any of your particular purposes or needs. ICEA does not undertake to guarantee the performance of any individual manufacturer
9、or sellers products or services by virtue of this standard or guide. In publishing and making this document available, ICEA is not undertaking to render professional or other services for or on behalf of any person or entity, nor is ICEA undertaking to perform any duty owed by any person or entity t
10、o someone else. Anyone using this document should rely on his or her own independent judgement or, as appropriate, seek the advice of a competent professional in determining the exercise of reasonable care in any given circumstances. Information and other standards on the topic covered by this publi
11、cation may be available from other sources, which the user may wish to consult for additional views or information not covered by this publication. ICEA has no power, nor does it undertake to police or enforce compliance with the contents of this document. ICEA does not certify, test, or inspect pro
12、ducts, designs, or installations for safety or health purposes. Any certification or other statement of compliance with any health or safety-related information in this document shall not be attributable to ICEA and is solely the responsibility of the certifier or maker of the statement. ICEA T-25-4
13、25-2015 Page i Copyright 2015 by the Insulated Cable Engineers Association, Incorporated. CONTENTS Page Foreword ii Scope iii Section 1 Samples 1 1.1 Samples . 1 Section 2 Specimens 1 2.1 Stress control layer (conductor shield) . 1 2.2 Insulation Shield Polymeric . 1 2.3 Semiconducting Jacket . 1 Se
14、ction 3 Electrodes . 1 3.1 High Degree of Accuracy 1 3.2 Lesser Degree of Accuracy . 2 Section 4 Test Equipment . 2 Section 5 Test Procedure 2 Section 6 Demonstration of Stability of Volume Resistivity . 3 ICEA T-25-425-2015 Page ii Copyright 2015 by the Insulated Cable Engineers Association, Incorp
15、orated. Foreword ICEA publications are adopted in the public interest and are designed to eliminate misunderstanding between the manufacturer and user and to assist the user in selecting and obtaining proper products for his particular need. Existence of an ICEA publication does not in any respect p
16、reclude the manufacture or use of products not conforming to the publication. The user of this publication is cautioned to observe any health or safety regulations and rules relative to the manufacture and use of cable covered by this document. T-25-425 was revised and approved by ICEA in September
17、16, 2015. Suggestions for improvements in this publication are welcome, and should be sent to ICEA at the address below. Insulated Cable Engineers Association, Inc. ICEA T-25-425-2015 Page iii Copyright 2015 by the Insulated Cable Engineers Association, Incorporated. Scope This guide applies to test
18、ing of extruded semiconducting polymeric components of power cable with extruded insulation. It describes a method of demonstrating the stability over a period of time of the volume resistivity (calculated from longitudinal resistance) of these components at temperatures up to the emergency operatin
19、g temperature of the cable. ICEA T-25-425-2015 Page iv Copyright 2015 by the Insulated Cable Engineers Association, Incorporated. ICEA T-25-425-2015 Page 1 Copyright 2015 by the Insulated Cable Engineers Association, Incorporated. Section 1 Samples 1.1 SAMPLES Representative samples shall be obtaine
20、d from lengths of completed extruded dielectric power cable with extruded shields. From these samples, test specimens shall be prepared for application of electrodes. Section 2 Specimens Longitudinal resistance samples shall be a minimum of 5.0 inches (127 mm) long. 2.1 STRESS CONTROL LAYER (CONDUCT
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