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Norm

ÖNORM EN ISO 3385

Issue date: 2014 10 01

Flexible cellular polymeric materials - Determination of fatigue by constant-load pounding (ISO 3385:2014)

This International Standard specifies a method for the determination of loss in thickness and loss in hardness of flexible cellular materials intended for use in load-bea...
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Publisher:
Austrian Standards International
Format:
Digital | 17 Pages
Language:
German | English | Download GER/ENG
Optionally co-design standards:
This International Standard specifies a method for the determination of loss in thickness and loss in hardness of flexible cellular materials intended for use in load-bearing applications such as upholstery. It provides a means of assessing the service performance of flexible cellular materials based on rubber latex or polyurethane used in load-bearing upholstery. The method is applicable both to standard size test pieces cut from slabstock material and to shaped components. The measured loss in thickness and loss in hardness are related to, but are not necessarily the same as, the losses likely to occur in service. This International Standard is not intended to function as a detailed engineering design specification for fatigue apparatus.
ÖNORM EN ISO 3385
2014 10 01
Flexible cellular polymeric materials - Determination of fatigue by constant-load pounding (ISO 3385...
Norm
ÖNORM EN ISO 3385
2010 06 15
Flexible cellular polymeric materials - Determination of fatigue by constant-load pounding (ISO 3385...
Norm
ÖNORM EN ISO 3385
2008 10 01
Flexible cellular polymeric materials - Determination of fatigue by constant-load pounding (ISO 3385...
Norm
ÖNORM EN ISO 3385
1995 08 01
Flexible cellular polymeric materials - Determination of fatigue by constant-load pounding (ISO 3385...
Norm
Historie aufklappen
Norm
ISO 2439:2008
Issue date : 2008 12 03
Flexible cellular polymeric materials — Determination of hardness (indentation technique)
Norm
ISO 3385:2014
Issue date : 2014 07 14
Flexible cellular polymeric materials — Determination of fatigue by constant-load pounding