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Norm

ISO 4802-2:2016

Issue date: 2016 06 13

Glassware — Hydrolytic resistance of the interior surfaces of glass containers — Part 2: Determination by flame spectrometry and classification

ISO 4802-2:2016 specifies: a) methods for determining the hydrolytic resistance of the interior surfaces of glass containers when subjected to attack by water at (121 ±...
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Withdrawn : 2023 12 04
Publisher:
International Organization for Standardization
Format:
Digital | 14 Pages
Language:
English
Currently valid:

ISO 4802-2:2016 specifies:

a) methods for determining the hydrolytic resistance of the interior surfaces of glass containers when subjected to attack by water at (121 ± 1) °C for (60 ± 1) min. The resistance is measured by determining the amount of sodium and other alkali metal or alkaline earth oxides in the extraction solution using flame atomic emission or absorption spectrometry (flame spectrometry);

b) a classification of glass containers according to the hydrolytic resistance of the interior surfaces determined by the methods specified in ISO 4802-2:2016.

The test method specified in ISO 4802-2:2016 might not be applicable to containers whose surfaces have been treated with silicon (e.g. containers that are ready for direct filling).

ISO 4802-2:2023
2023 12 04
Glassware — Hydrolytic resistance of the interior surfaces of glass containers — Part 2: Determinati...
Norm
ISO 4802-2:2016
2016 06 13
Glassware — Hydrolytic resistance of the interior surfaces of glass containers — Part 2: Determinati...
Norm
ISO 4802-2:2010
2010 03 24
Glassware — Hydrolytic resistance of the interior surfaces of glass containers — Part 2: Determinati...
Norm
ISO 4802-2:1988
1988 12 29
Glassware — Hydrolytic resistance of the interior surfaces of glass containers — Part 2: Determinati...
Norm
ISO 4802:1982
1982 05 01
Glass — Hydrolytic resistance of the interior surfaces of glass containers — Methods of test
Norm
Historie aufklappen
Norm
ISO 4802-2:2023
Issue date : 2023 12 04
Glassware — Hydrolytic resistance of the interior surfaces of glass containers — Part 2: Determination by flame spectrometry and classification