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MSS SP-100-2020: Qualification Requirements for Elastomer Diaphragms for Nuclear Service Diaphragm Valves

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208

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MSS SP-110-2010: Ball Valves Threaded, Socket-Welding, Solder Joint, Grooved and Flared Ends

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161

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MSS SP-108-2020: Resilient-Seated Cast Iron Eccentric Plug Valves

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197

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MSS SP-109-2022: Weld-Fabricated, Copper Solder-Joint Pressure Fittings

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131

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MSS SP-104-2022: Wrought Copper, Solder-Joint Pressure Fittings

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MSS SP-106-2019: Cast Copper Alloy Flanges and Flanged Fittings: Class 125, 150, and 300

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MSS SP-119-2025: Factory-Made Wrought Belled-End Pipe Fittings for Socket-Welding

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MSS SP-114-2018: Corrosion Resistant Pipe Fittings Threaded and Socket Welding Class 150 and 1000

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ISO 19927:2018

ISO 19927:2018 Fibre-reinforced plastic composites – Determination of interlaminar strength and modulus by double beam shear test

CDN $233.00

Description

This document specifies a procedure for determining the interlaminar strength, and modulus, by double beam shear (DBS) tests of fibre-reinforced plastic composites.

The method is suitable for use with glass or carbon fibre-reinforced plastic composites with thermoset matrices, providing an acceptable interlaminar failure is obtained.

This document only applies to laminate with a symmetrical and balanced lay‚Äêup as it avoids bending/twisting or bending/extension coupling deformations (see 6.2). The preferred lay-up is unidirectional, with fibres aligned along the specimen (axial) length.

The suitability of the test for specific lay-ups, matrices and fibres (e.g. natural) are assessed by trial tests to ensure the correct delamination failures are obtained.

Edition

1

Published Date

2018-08-13

Status

PUBLISHED

Pages

21

Language Detail Icon

English

Format Secure Icon

Secure PDF

Abstract

This document specifies a procedure for determining the interlaminar strength, and modulus, by double beam shear (DBS) tests of fibre-reinforced plastic composites.

The method is suitable for use with glass or carbon fibre-reinforced plastic composites with thermoset matrices, providing an acceptable interlaminar failure is obtained.

This document only applies to laminate with a symmetrical and balanced lay‚Äêup as it avoids bending/twisting or bending/extension coupling deformations (see 6.2). The preferred lay-up is unidirectional, with fibres aligned along the specimen (axial) length.

The suitability of the test for specific lay-ups, matrices and fibres (e.g. natural) are assessed by trial tests to ensure the correct delamination failures are obtained.

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