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ISO 4666-1:2010

Current

Current

The latest, up-to-date edition.

Rubber, vulcanized — Determination of temperature rise and resistance to fatigue in flexometer testing — Part 1: Basic principles

Available format(s)

Hardcopy , PDF , PDF 3 Users , PDF 5 Users , PDF 9 Users

Language(s)

French, English

Published date

09-29-2010

US$73.00
Excluding Tax where applicable

ISO 4666-1:2010 establishes general principles for flexometer testing and defines the terms used.

Flexometer testing makes possible predictions regarding the durability of rubbers in finished articles subject to dynamic flexing in service such as tyres, bearings, supports, V-belts, and cable-pulley insert rings. However, owing to the wide variations in service conditions, no simple correlation between the accelerated tests specified in the various parts of ISO 4666 and service performance can be assumed.

Committee
ISO/TC 45/SC 2
DevelopmentNote
Supersedes ISO/DIS 4666-1. (09/2010)
DocumentType
Standard
Pages
10
PublisherName
International Organization for Standardization
Status
Current
Supersedes

Standards Relationship
SAC GB/T 1687-1 : 2016 Identical
SAC GB/T 16871 : 1997 Identical
UNI ISO 4666-1 : 2011 Identical
NF ISO 4666-1 : 2010 Identical
BS 903-A49:1984 Identical
NFT 46 045 : 1986 Similar to
NEN ISO 4666-1 : 2010 Identical
BS ISO 4666-1:2010 Identical

17/30357593 DC : 0 BS ISO 4666-4 - RUBBER, VULCANIZED - DETERMINATION OF TEMPERATURE RISE AND RESISTANCE TO FATIGUE IN FLEXOMETER TESTING - PART 4: CONSTANT-STRESS FLEXOMETER
08/30168345 DC : DRAFT JULY 2008 BS ISO 15136-1 - DOWNHOLE EQUIPMENT FOR PETROLEUM AND NATURAL GAS INDUSTRIES - PROGRESSING CAVITY PUMP SYSTEMS FOR ARTIFICIAL LIFT - PART 1: PUMPS
ISO 4666-3:2016 Rubber, vulcanized — Determination of temperature rise and resistance to fatigue in flexometer testing — Part 3: Compression flexometer (constant-strain type)
UNE 53514:2015 Rubber vulcanized. Determination of temperature rise and resistance to fatigue in flexometer testing. Compression flexometer
16/30334939 DC : 0 BS ISO 4666-3 - RUBBER, VULCANIZED - DETERMINATION OF TEMPERATURE RISE AND RESISTANCE TO FATIGUE IN FLEXOMETER TESTING - PART 3: COMPRESSION FLEXOMETER (CONSTANT-STRAIN TYPE)
BS ISO 6943:2017 Rubber, vulcanized. Determination of tension fatigue
ISO 6943:2017 Rubber, vulcanized Determination of tension fatigue
ISO 4632-1:1982 Rubber, vulcanized Classification Part 1: Description of the classification system
UNI ISO 4666-2 : 2009 RUBBER, VULCANIZED - DETERMINATION OF TEMPERATURE RISE AND RESISTANCE TO FATIGUE IN FLEXOMETER TESTING - PART 2: ROTARY FLEXOMETER
BS ISO 4666-3:2016 Rubber, vulcanized. Determination of temperature rise and resistance to fatigue in flexometer testing Compression flexometer (constant-strain type)
BS ISO 4666-4:2007 Rubber, vulcanized. Determination of temperature rise and resistance to fatigue in flexometer testing Constant-stress flexometer
06/30113809 DC : DRAFT APR 2006 ISO 4666-4 - RUBBER, VULCANIZED - DETERMINATION OF TEMPERATURE RAISE AND RESISTANCE TO FATIGUE IN FLEXOMETER TESTING - PART 4: CONSTANT STRESS FLEXOMETER
09/30184526 DC : DRAFT MAY 2009 BS ISO 4666-3 - RUBBER, VULCANIZED - DETERMINATION OF TEMPERATURE RISE AND RESISTANCE TO FATIQUE IN FLEXOMETER TESTING - PART 3: COMPRESSION FLEXOMETER (CONSTANT-STRAIN TYPE)
ISO 4666-2:2008 Rubber, vulcanized Determination of temperature rise and resistance to fatigue in flexometer testing Part 2: Rotary flexometer
ISO 4666-4:2007 Rubber, vulcanized Determination of temperature rise and resistance to fatigue in flexometer testing Part 4: Constant-stress flexometer

ISO 23529:2016 Rubber General procedures for preparing and conditioning test pieces for physical test methods
ISO 6943:2017 Rubber, vulcanized Determination of tension fatigue
ISO 132:2017 Rubber, vulcanized or thermoplastic Determination of flex cracking and crack growth (De Mattia)
ISO 4664-1:2011 Rubber, vulcanized or thermoplastic — Determination of dynamic properties — Part 1: General guidance
ISO 4664-2:2006 Rubber, vulcanized or thermoplastic — Determination of dynamic properties — Part 2: Torsion pendulum methods at low frequencies

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