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NEN-EN-ISO 1518-1

Paints and varnishes - Determination of scratch resistance - Part 1: Constant-loading method

inactive
Organization: NEN
Publication Date: 1 July 2019
Status: inactive
Page Count: 22
ICS Code (Paints and varnishes): 87.040
scope:

A substantial number of problems in physics, chemical physics, and biology, are modeled through reaction-diffusion equations to describe temperature distribution or chemical substance concentration. For problems arising from ecology, sociology, or population dynamics, they describe the density of some populations or species. In this book the state variable is a concentration, or a density according to the cases. The reaction function may be complex and include time delays terms that model various situations involving maturation periods, resource regeneration times, or incubation periods. The dynamics may occur in heterogeneous media and may depend upon a small or large parameter, as well as the reaction term. From a purely formal perspective, these parameters are indexed by n. Therefore, reaction-diffusion equations give rise to sequences of Cauchy problems.

Document History

March 1, 2023
Paints and varnishes - Determination of scratch resistance - Part 1: Constant-loading method
This document specifies a test method for determining, under defined conditions, the resistance of a single coating or a multi-coat system of paint, varnish or related product to penetration, by...
NEN-EN-ISO 1518-1
July 1, 2019
Paints and varnishes - Determination of scratch resistance - Part 1: Constant-loading method
A substantial number of problems in physics, chemical physics, and biology, are modeled through reaction-diffusion equations to describe temperature distribution or chemical substance concentration....
June 1, 2011
Paints and varnishes - Determination of scratch resistance - Part 1: Constant-loading method
This part of ISO 1518 specifies a test method for determining under defined conditions the resistance of a single coating or a multi-coat system of paint, varnish or related product to penetration by...

References

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