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Fine ceramics (advanced ceramics, advanced technical ceramics) – Test method for air purification performance of semiconducting photocatalytic materials – Part 1: Removal of nitric oxide (ISO 22197-1:2016, IDT) (First revision)
MS ISO 22197-1:2018
Status : 1st Revision
Format : PDF

This document specifies a test method for the determination of the air-purification performance of materials that contain a photocatalyst or have photocatalytic films on the surface, usually made from ....Read more semiconducting metal oxides, such as titanium dioxide or other ceramic materials, by continuous exposure of a test piece to the model air pollutant under illumination with ultraviolet light. This document is intended for use with different kinds of materials, such as construction materials in flat sheet, board or plate shape, that are the basic forms of materials for various applications. This document also applies to materials in honeycomb-form and to plastic or paper materials if they contain ceramic microcrystals and composites. This document does not apply to powder or granular photocatalytic materials.

This test method is usually applicable to photocatalytic materials produced for air purification. This method is not suitable for the determination of other performance attributes of photocatalytic materials, i.e. decomposition of water contaminants, self-cleaning, antifogging and antibacterial actions. It concerns the removal of nitric oxide.
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Fine ceramics (advanced ceramics, advanced technical ceramics) – Vocabulary (ISO 20507:2014, IDT) (First revision)
MS ISO 20507:2018
Status : 1st Revision
Format : PDF

This International Standard is a vocabulary, which provides a list of terms and associated definitions typically used for fine ceramic (advanced ceramic, advanced technical ceramic) materials, product ....Read more s, applications, properties, and processes. This International Standard contains, in separate lists, those abbreviations which have found general acceptance in the scientific and technical literature; they are given together with the corresponding terms and definitions or descriptions.

In this International Standard, the terms are defined using the term “fine ceramic”. The definitions apply equally to “advanced ceramics” and “advanced technical ceramics”, which are considered to be equivalent.

This International Standard does not include terms which, though used in the field of fine ceramics, are of a more general nature and are also well known in other fields of technology.
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Fine ceramics (advanced ceramics, advanced technical ceramics) – Test method for linear thermal expansion of monolithic ceramics by push-rod technique (ISO 17562:2016, IDT) (First revision)
MS ISO 17562:2018
Status : 1st Revision
Format : PDF

This International Standard specifies a method for the determination of the linear thermal expansion and the linear thermal expansion coefficient of monolithic ceramics from near liquid nitrogen tempe ....Read more rature up to a maximum temperature of 2 000 °C. Close

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Fine ceramics (advanced ceramics, advanced technical ceramics) – Test method for elastic moduli of monolithic ceramics at room temperature by sonic resonance (ISO 17561:2016, IDT) (First revision)
MS ISO 17561:2018
Status : 1st Revision
Format : PDF

This International Standard describes the method of test for determining the dynamic elastic moduli of fine ceramics at room temperature by sonic resonance. This International Standard is for fine cer ....Read more amics that are elastic, homogeneous and isotropic. Close

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Fine ceramics (advanced ceramics, advanced technical ceramics) – Test method for flexural strength of monolithic ceramics at room temperature (ISO 14704:2016, IDT) (Second revision)
MS ISO 14704:2018
Status : 2nd Revision
Format : PDF

This International Standard specifies a test method for determining the flexural strength of monolithic fine ceramics, and whisker- or particulate-reinforced ceramic composites, at room temperature an ....Read more d applies to materials with grain size less than 200 μm. This test method may be used for materials development, quality control, characterization and design data-generation purposes. Close

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METHODS OF TESTING AGGREGATES : PART 5 : METHODS FOR DETERMINATION OF PARTICLE SHAPE
MS 30 : PART 5 : 1995
Status : Original
Format : PDF

This Section of MS 30 : Part 5 describes the method for determining the flakiness index of coarse aggregate.

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METHODS OF TESTING AGGREGATES : PART 15 : METHODS FOR DETERMINATION OF ACID-SOLUBLE MATERIAL IN FINE AGGREGATES
MS 30 : PART 15 : 1995
Status : Original
Format : PDF

This Part of MS 30 describes a method of determining the amount of acid soluble material in both of the size fractions of fine aggregate, all passing a 5.00 mm test sieve, separated by sieving on a 60 ....Read more 0 mm test sieve. Close

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METHODS OF TESTING AGGREGATES : PART 14 : METHODS FOR DETERMINATION OF SULPHATE CONTENT
MS 30 : PART 14 : 1995
Status : Original
Format : PDF

This Part of MS 30 describes two methods for determining the sulphate content of
aggregates.

The first method determines the water-soluble sulphate content of aggregates, which a ....Read more pplies to natural and synthetic aggregates to be used as drainage materials or for fill or hard core, e.g. unbound roadbases or sub-bases or foundations.

The second method determines the total sulphate content of aggregates, which applies to aggregates used in concrete and cement bound materials.
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Methods of testing cement – Part 5: Pozzolanicity test for pozzolanic cement (First revision) (EN 196-5:2011)
MS EN 196-5:2022
Status : 1st Revision
Format : PDF

This European Standard specifies the method of measuring the pozzolanicity of pozzolanic cements conforming to [1] EN 197-1. This standard does not apply to Portland pozzolana cements or to pozzolanas ....Read more .

This method constitutes the reference procedure.
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Masonry cement – Part 1: Composition, specifications and conformity criteria (Third revision) (EN 413-1:2011)
MS EN 413-1:2022
Status : 3rd Revision
Format : PDF

This European Standard specifies the definition and composition of masonry cements as commonly used in Europe for the production of mortar for bricklaying and blocklaying and for rendering and plaster ....Read more ing. It includes physical, mechanical and chemical requirements and defines strength classes. EN 413-1 also states the conformity criteria and the related rules. Necessary durability requirements are also given.

NOTE For normal applications the information given in EN 413-1, in EN 998-1 and in EN 998-2 is generally sufficient. However, in special cases, an exchange of additional information between the masonry cement producer and user can be helpful. The details of such an exchange are not within the scope of EN 413-1 but should be dealt with in accordance with national standards or other regulations or can be agreed between the parties concerned.
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