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ISO 11092

Textiles - Physiological Effects - Measurement of Thermal and Water-Vapour Resistance under Steady-State Conditions (Sweating Guarded-Hotplate Test); (CEN EN 31092:1993)

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Organization: ISO
Publication Date: 1 January 1993
Status: inactive
Page Count: 16
ICS Code (Textiles in general): 59.080.01
scope:

This International Standard specifies methods for the measurement of the thermal resistance and watervapour resistance, under steady-state conditions, of e.g. fabrics, films, coatings, foams and leather, including multilayer assemblies, for use in clothing, quilts, sleeping bags, upholstery and similar textile or textile-like products.

The application of this measurement technique is restricted to a maximum thermal resistance and watervapour resistance which depend on the dimensions and construction of the apparatus used (e.g. 2 m2.K/W and 700 m2.Pa/W respectively, for the minimum specifications of the equipment referred to in this International Standard).

The test conditions used in this Standard are not intended to represent specific comfort situations, and Performance specifications in relation to physiological comfort are not stated.

Document History

September 1, 2014
Textiles - Physiological effects - Measurement of thermal and watervapour resistance under steady-state conditions (sweating guardedhotplate test)
This International Standard specifies methods for the measurement of the thermal resistance and water-vapour resistance, under steady-state conditions, of e.g. fabrics, films, coatings, foams and...
September 15, 2012
Textiles - Physiological effects - Measurement of thermal and water-vapour resistance under steady-state conditions (sweating guarded-hotplate test) AMENDMENT 1
A description is not available for this item.
ISO 11092
January 1, 1993
Textiles - Physiological Effects - Measurement of Thermal and Water-Vapour Resistance under Steady-State Conditions (Sweating Guarded-Hotplate Test); (CEN EN 31092:1993)
This International Standard specifies methods for the measurement of the thermal resistance and watervapour resistance, under steady-state conditions, of e.g. fabrics, films, coatings, foams and...

References

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