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Homepage>BS Standards>81 GLASS AND CERAMICS INDUSTRIES>81.060 Ceramics>81.060.30 Advanced ceramics>BS EN 1894:2005 Advanced technical ceramics. Mechanical properties of ceramic composites at high temperature under inert atmosphere. Determination of shear strength by compression loading of notched specimens
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immediate downloadReleased: 2005-05-06
BS EN 1894:2005 Advanced technical ceramics. Mechanical properties of ceramic composites at high temperature under inert atmosphere. Determination of shear strength by compression loading of notched specimens

BS EN 1894:2005

Advanced technical ceramics. Mechanical properties of ceramic composites at high temperature under inert atmosphere. Determination of shear strength by compression loading of notched specimens

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Standard number:BS EN 1894:2005
Pages:14
Released:2005-05-06
ISBN:0 580 45998 5
Status:Standard
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BS EN 1894:2005


This standard BS EN 1894:2005 Advanced technical ceramics. Mechanical properties of ceramic composites at high temperature under inert atmosphere. Determination of shear strength by compression loading of notched specimens is classified in these ICS categories:
  • 81.060.30 Advanced ceramics
This document specifies the conditions for determination of the inter-laminar shear strength of ceramic matrix composite materials with continuous fibre reinforcement for temperatures up to 2 000 °C under a vacuum, or a gas atmosphere, which is inert to the material under test, by loading of notched specimens in compression. NOTE 1 The use of a vacuum or a gas atmosphere is aimed at avoiding changes of the material to be tested due to chemical reaction with its environment during the test. This document applies to all ceramic matrix composites with continuous fibre reinforcement, unidirectional (1D), bidirectional (2D), and tridirectional (xD, with 2 < x < 3), loaded along one principal axis of reinforcement. NOTE 2 Care should be exercised in interpreting the results of the test method to obtain absolute values of the inter-laminar shear strength of ceramic matrix composites for design purposes. .