• IEC 60840 REDLINE : 4.0

    Withdrawn A Withdrawn Standard is one, which is removed from sale, and its unique number can no longer be used. The Standard can be withdrawn and not replaced, or it can be withdrawn and replaced by a Standard with a different number.

    POWER CABLES WITH EXTRUDED INSULATION AND THEIR ACCESSORIES FOR RATED VOLTAGES ABOVE 30 KV (U[M] = 36 KV) UP TO 150 KV (U[M] = 170 KV) - TEST METHODS AND REQUIREMENTS

    Available format(s):  Hardcopy, PDF, PDF 3 Users, PDF 5 Users, PDF 9 Users

    Withdrawn date:  02-06-2020

    Language(s):  English, English - French

    Published date:  01-01-2011

    Publisher:  International Electrotechnical Committee

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    Table of Contents - (Show below) - (Hide below)

    FOREWORD
    INTRODUCTION
    1 Scope
    2 Normative references
    3 Terms and definitions
    4 Voltage designations and materials
    5 Precautions against water penetration in cables
    6 Cable characteristics
    7 Accessory characteristics
    8 Test conditions
    9 Routine tests on cables and on the main insulation
       of prefabricated accessories
    10 Sample tests on cables
    11 Sample tests on accessories
    12 Type tests on cable systems
    13 Prequalification test of the cable system
    14 Type tests on cables
    15 Type tests on accessories
    16 Electrical tests after installation
    Annex A (informative) - Determination of the cable
            conductor temperature
    Annex B (normative) - Rounding of numbers
    Annex C (informative) - List of type, prequalification
            and extension of prequalification tests for cable
            systems, cables and accessories
    Annex D (normative) - Method of measuring resistivity
            of semi-conducting screens
    Annex E (normative) - Water penetration test
    Annex F (normative) - Tests on components of cables
            with a longitudinally applied metal tape or
            foil, bonded to the oversheath
    Annex G (normative) - Tests of outer protection for joints
    Annex H (normative) - Determination of hardness of
            HEPR insulations
    Bibliography

    Abstract - (Show below) - (Hide below)

    Describes test methods and requirements for power cable systems, cables alone and accessories alone, for fixed installations and for rated voltages above 30 kV (U[m] = 36 kV) up to and including 150 kV (U[m] = 170 kV).

    General Product Information - (Show below) - (Hide below)

    Committee TC 20
    Development Note Stability date: 2018. (11/2017)
    Document Type Redline
    Publisher International Electrotechnical Committee
    Status Withdrawn
    Superseded By
    Supersedes

    Standards Referencing This Book - (Show below) - (Hide below)

    IEC 60811-3-1:1985 Common test methods for insulating and sheathing materials ofelectric cables - Part 3: Methods specific to PVC compounds -Section One: Pressure test at high temperature - Tests forresistance to cracking
    IEC 61443:1999+AMD1:2008 CSV Short-circuit temperature limits of electric cables with rated voltages above 30 kV (Um = 36 kV)
    IEC 60228:2004 Conductors of insulated cables
    IEC 60811-4-1:2004 Insulating and sheathing materials of electric and optical cables - Common test methods - Part 4-1: Methods specific to polyethylene and polypropylene compounds - Resistance to environmental stress cracking - Measurement of the melt flow index - Carbon black and/or mineral filler content measurement in polyethylene by direct combustion - Measurement of carbon black content by thermogravimetric analysis (TGA) - Assessment of carbon black dispersion in polyethylene using a microscope
    IEC 60885-3:2015 RLV Electrical test methods for electric cables - Part 3: Test methods for partial discharge measurements on lengths of extruded power cables
    IEC 60332-1-2:2004+AMD1:2015 CSV Tests on electric and optical fibre cables under fire conditions - Part 1-2: Test for vertical flame propagation for a single insulatedwire or cable - Procedure for 1 kW pre-mixed flame
    IEC 60230:1966 Impulse tests on cables and their accessories
    IEC 60811-1-2:1985 Common test methods for insulating and sheathing materials of electric cables - Part 1: Methods for general application - Section Two: Thermal ageing methods
    IEC 60183:2015 Guidance for the selection of high-voltage A.C. cable systems
    IEC 60853-2:1989 Calculation of the cyclic and emergency current rating of cables. Part 2: Cyclic rating of cables greater than 18/30 (36) kV and emergency ratings for cables of all voltages
    IEC 60811-1-1:1993+AMD1:2001 CSV Common test methods for insulating and sheathing materials of electric cables and optical cables - Part 1-1: Methods for general application - Measurement of thickness and overall dimensions - Tests for determining the mechanical properties
    IEC 60229:2007 Electric cables - Tests on extruded oversheaths with a special protective function
    IEC 60811-1-3:1993+AMD1:2001 CSV Common test methods for insulating and sheathing materials of electric and optical cables - Part 1-3: General application -Methods for determining the density - Water absorption tests - Shrinkage test
    IEC 60060-1:2010 High-voltage test techniques - Part 1: General definitions and test requirements
    IEC 60811-1-4:1985 Common test methods for insulating and sheathing materials of electric cables - Part 1: Methods for general application - Section Four: Tests at low temperature
    ISO 48:2010 Rubber, vulcanized or thermoplastic Determination of hardness (hardness between 10 IRHD and 100 IRHD)
    IEC 60811-2-1:1998+AMD1:2001 CSV Common test methods for insulating and sheathing materials of electric and optical cables - Part 2-1: Methods specific to elastomeric compounds - Ozone resistance, hot set and mineral oil immersion tests
    IEC 60811-3-2:1985 Common test methods for insulating and sheathing materials of electric cables - Part 3: Methods specific to PVC compounds - Section Two: Loss of mass test - Thermal stability test
    IEC 60287-1-1:2006+AMD1:2014 CSV Electric cables - Calculation of the current rating - Part 1-1:Current rating equations (100 % load factor) and calculation of losses - General
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