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IEC TS 60695-5-2:2002

Superseded
Superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

View Superseded by
superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

Fire hazard testing - Part 5-2: Corrosion damage effects of fire effluent - Summary and relevance of test methods
Available format(s)

Hardcopy , PDF 1 User , PDF 3 Users , PDF 5 Users , PDF 9 Users

Superseded date

31-12-2021

Language(s)

English - French

Published date

30-09-2002

FOREWORD
INTRODUCTION
1 Scope
2 Normative references
3 Terms and definitions
4 Classification of test methods
   4.1 Introduction
   4.2 Test specimen
   4.3 Fire model
   4.4 The nature of the corrosivity measurement
5 Published test methods
   5.1 Introduction
   5.2 Tests for the determination of halogen acid in
        combustion gases
   5.3 Tests for the determination of the acidity and
        conductivity of combustion gases dissolved in an
        aqueous solution
   5.4 Test for the determination of corrosive gases by
        using the copper mirror test in ASTM D 2671-00 [9]
   5.5 Static method (ISO 11907-2 [10])
   5.6 Travelling furnace method (ISO 11907-3 [11])
   5.7 Cone corrosimeter method
6 Leakage current and metal loss (IEC 60695-5-3)
   6.1 Purpose and principle
   6.2 Test specimen
   6.3 Corrosion targets
   6.4 Test method
7 Overview of methods and relevance of data
Annex A (informative) Acidity and conductivity of aqueous
        solutions - Test methods
Annex B (informative) Determination of repeatability and
        reproducibility - Comparative tests of solutions of
        combustion gases
Bibliography
Figures
Tables

IEC TS 60695-5-2:2002 Gives a summary of the test methods that are used in the assessment of the corrosivity of fire effluent. It presents a brief summary of test methods in common use, either as international standards or national or industry standards. It includes special observations on their relevance, for electrotechnical products and their materials, to real fire scenarios and gives recommendations on their use.

Committee
TC 89
DevelopmentNote
Stability Date: 2017. (10/2012)
DocumentType
Technical Specification
Pages
53
PublisherName
International Electrotechnical Committee
Status
Superseded
SupersededBy
Supersedes

Standards Relationship
JIS C 0077:1999 Identical
UNE 20672-5-2:2000 Identical
AS 60695.5.2-2006 Identical
NEN NPR IEC/TS 60695-5-2 : 2002 Identical
SAC GB/T 5169.36 : 2015 Identical
JIS C 60695-5-2:1999 Identical

ISO 11907-1:1998 Plastics Smoke generation Determination of the corrosivity of fire effluents Part 1: Guidance
BS EN 60695-1-40:2014 Fire hazard testing Guidance for assessing the fire hazard of electrotechnical products. Insulating liquids
09/30166429 DC : 0 BS 8492 - TELECOMMUNICATIONS EQUIPMENT AND TELECOMMUNICATIONS CABLING - CODE OF PRACTICE FOR FIRE PERFORMANCE AND PROTECTION
ISO/IEC 18010:2002 Information technology Pathways and spaces for customer premises cabling
NF EN 60695-5-1 : 2003 FIRE HAZARD TESTING - PART 5-1: CORROSION DAMAGE EFFECTS OF FIRE EFFLUENT - GENERAL GUIDANCE
IEC 60695-1-40:2013 Fire hazard testing - Part 1-40: Guidance for assessing the fire hazard of electrotechnical products - Insulating liquids
BS 7846:2000 Electric cables. 600/1000 V armoured fire-resistant cables having thermosetting insulation and low emission of smoke and corrosive gases when affected by fire
EN 60695-1-11:2015 Fire hazard testing - Part 1-11: Guidance for assessing the fire hazard of electrotechnical products - Fire hazard assessment
BS 8573:2012 Electric cables. Thermosetting insulated, non-armoured cables with a voltage of 600/1 000V, for fixed installations, having low emissions of smoke and corrosive gases when affected by fire
07/30169689 DC : 0 BS EN 60695-1-10 - FIRE HAZARD TESTING - PART 1-10: GUIDANCE FOR ASSESSING THE FIRE HAZARD OF ELECTROTECHNICAL PRODUCTS - GENERAL GUIDELINES
I.S. EN 60695-1-11:2015 FIRE HAZARD TESTING - PART 1-11: GUIDANCE FOR ASSESSING THE FIRE HAZARD OF ELECTROTECHNICAL PRODUCTS - FIRE HAZARD ASSESSMENT
PD IEC/TR 62222:2012 Fire performance of communication cables installed in buildings
BS 7211:1998 Electric cables. Thermosetting insulated, non-armoured cables for voltages up to and including 450/750 V, for electric power, lighting and internal wiring, and having low emission of smoke and corrosive gases when affected by fire
16/30336629 DC : 0 BS 8492 - TELECOMMUNICATIONS EQUIPMENT AND TELECOMMUNICATIONS CABLING - CODE OF PRACTICE FOR FIRE PERFORMANCE AND PROTECTION
18/30369843 DC : DRAFT APR 2018 BS ISO 11907-1 - PLASTICS - SMOKE GENERATION - DETERMINATION OF THE CORROSIVITY OF FIRE EFFLUENTS - PART 1: GENERAL REQUIREMENTS AND APPLICABILITY
BS EN 60695-1-11:2015 Fire hazard testing Guidance for assessing the fire hazard of electrotechnical products. Fire hazard assessment
13/30281097 DC : 0 BS EN 60695-1-11 ED 2.0 - FIRE HAZARD TESTING - PART 1-11: GUIDANCE FOR ASSESSING THE FIRE HAZARD OF ELECTROTECHNICAL PRODUCTS - FIRE HAZARD ASSESSMENT
BS ISO 10840:2008 Plastics. Guidance for the use of standard fire tests
12/30269145 DC : 0 BS EN 60695-1-40 ED 1.0 - FIRE HAZARD TESTING - PART 1-40: GUIDANCE FOR ASSESSING THE FIRE HAZARD OF ELECTROTECHNICAL PRODUCTS - INSULATING LIQUIDS
I.S. EN 60695-1-40:2014 FIRE HAZARD TESTING - PART 1-40: GUIDANCE FOR ASSESSING THE FIRE HAZARD OF ELECTROTECHNICAL PRODUCTS - INSULATING LIQUIDS
BS ISO 11907-1:1998 Plastics. Smoke generation. Determination of the corrosivity of fire effluents Guidance
ASTM D 6113 : 2016 : REDLINE Standard Test Method for Using a Cone Calorimeter to Determine Fire-Test-Response Characteristics of Insulating Materials Contained in Electrical or Optical Fiber Cables
UNE-EN 60695-1-40:2014 Fire hazard testing - Part 1-40: Guidance for assessing the fire hazard of electrotechnical products - Insulating liquids
CSA ISO/IEC 18010 :2004 INFORMATION TECHNOLOGY - PATHWAYS AND SPACES FOR CUSTOMER PREMISES CABLING
IEC 60695-1-11:2014 Fire hazard testing - Part 1-11: Guidance for assessing the fire hazard of electrotechnical products - Fire hazard assessment
IEC TR 62222:2012 Fire performance of communication cables installed in buildings
CEI EN 60695-5-1 : 2003 FIRE HAZARD TESTING - PART 5-1: CORROSION DAMAGE EFFECTS OF FIRE EFFLUENT - GENERAL GUIDANCE
05/30135949 DC : DRAFT JUL 2005 IEC 60695-1-30 ED 2 - FIRE HAZARD TESTING - PART 1-30: GUIDANCE FOR ASSESSING THE FIRE HAZARD OF ELECTROTECHNICAL PRODUCTS - USE OF PRESELECTION TESTING PROCEDURES
12/30244462 DC : 0 BS 8573 - ELECTRIC CABLES - THERMOSETTING INSULATED, NON-ARMOURED CABLES WITH A VOLTAGE OF 600/1000 V, FOR FIXED INSTALLATIONS, HAVING LOW EMISSIONS OF SMOKE AND CORROSIVE WHEN AFFECTED BY FIRE
UNE-EN 60695-1-11:2016 Fire hazard testing - Part 1-11: Guidance for assessing the fire hazard of electrotechnical products - Fire hazard assessment
BS EN 60695-5-1:2003 Fire hazard testing. Assessment of potential corrosion damage by fire effluent General guidance
07/30169687 DC : 0 BS EN 60695-1-11 - FIRE HAZARD TESTING - PART 1-11: GUIDANCE FOR ASSESSING THE FIRE HAZARD OF ELECTROTECHNICAL PRODUCTS - FIRE HAZARD ASSESSMENT
CSA ISO/IEC 18010 : 2004 : INC : AMD 1 : 2006 : R2012 INFORMATION TECHNOLOGY - PATHWAYS AND SPACES FOR CUSTOMER PREMISES CABLING
CEI EN 60695-1-40 : 2014 FIRE HAZARD TESTING - PART 1-40: GUIDANCE FOR ASSESSING THE FIRE HAZARD OF ELECTROTECHNICAL PRODUCTS - INSULATING LIQUIDS
EN 60695-1-40:2014 Fire hazard testing - Part 1-40: Guidance for assessing the fire hazard of electrotechnical products - Insulating liquids

ISO 11907-3:1998 Plastics Smoke generation Determination of the corrosivity of fire effluents Part 3: Dynamic decomposition method using a travelling furnace
DIN 53436-1:2015-12 GENERATION OF THERMAL DECOMPOSITION PRODUCTS FROM MATERIALS FOR THEIR ANALYTIC-TOXICOLOGICAL TESTING - PART 1: DECOMPOSITION APPARATUS AND DETERMINATION OF TEST TEMPERATURE
ISO/TR 9122-1:1989 Toxicity testing of fire effluents Part 1: General
EN 50267-2-1:1998 Common test methods for cables under fire conditions - Tests on gases evolved during combustion of materials from cables - Part 2-1: Procedures - Determination of the amount of halogen acid gas
IEC 60695-5-1:2002 Fire hazard testing - Part 5-1: Corrosion damage effects of fire effluent - General guidance
IEC 60695-1-1:1999 Fire hazard testing - Part 1-1: Guidance for assessing the fire hazard of electrotechnical products - General guidelines
IEC 60695-4:2012 Fire hazard testing - Part 4: Terminology concerning fire tests for electrotechnical products
IEC 60754-1:2011 Test on gases evolved during combustion of materials from cables - Part 1: Determination of the halogen acid gas content
ISO 11907-2:1995 Plastics Smoke generation Determination of the corrosivity of fire effluents Part 2: Static method
IEC 60754-2:2011 Test on gases evolved during combustion of materials from cables - Part 2: Determination of acidity (by pH measurement) and conductivity
IEC GUIDE 104:2010 The preparation of safety publications and the use of basic safety publications and group safety publications
EN 50267-2-3:1998 Common test methods for cables under fire conditions - Tests on gases evolved during combustion of materials from cables - Part 2-3: Procedures - Determination of degree of acidity of gases for cables by determination of the weighted average of pH and conductivity
EN 50267-2-2:1998 Common test methods for cables under fire conditions - Tests on gases evolved during combustion of materials from cables - Part 2-2: Procedures - Determination of degree of acidity of gases for materials by measuring pH and conductivity
ASTM D 2671 : 2013 Standard Test Methods for Heat-Shrinkable Tubing for Electrical Use
ISO 11907-4:1998 Plastics — Smoke generation — Determination of the corrosivity of fire effluents — Part 4: Dynamic decomposition method using a conical radiant heater
IEC TS 60695-5-3:2003 Fire hazard testing - Part 5-3: Corrosion damage effects of fire effluent - Leakage-current and metal-loss test method
ASTM D 5485 : 2016 : REDLINE Standard Test Method for Determining the Corrosive Effect of Combustion Products Using the Cone Corrosimeter

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