Determination and evaluation of the interlaminar shear modulus of polyvinyl butyral using fibre optic sensors

Author:

Weimar ThorstenORCID,Hammer Christian

Abstract

AbstractThe method of fibre optic strain measurement based on Rayleigh signal analysis enables the detection of the deformation behaviour of laminated glass and the modelling of its load-bearing characteristics. The measurement system is already calibrated for glass surfaces by studies of Chair of Building Structure at Universität Siegen. In addition to discretely measuring systems, such as strain gauges, the distributed measurement system is particularly suitable for the determination of the interlaminar shear modulus. The sensors used in bending tests on laminated glass supplement the deformation measurements taken with strain gauges and inductive displacement sensors. The study describes the results of the shear modulus of viscoelastic interlayers made of polyvinyl butyral and provides the basis to define and evaluate a model for the finite element analysis.

Funder

Universität Siegen

Publisher

Springer Science and Business Media LLC

Subject

Building and Construction,Architecture,Civil and Structural Engineering

Reference25 articles.

1. Altenbach H (1993) Modelling and analysis of multilayered shells based on the Timoshenko-type theory with 6 degrees of freedom. In: Mechanics of composite materials. Springer, Berlin

2. ASTM D 4255 (2007) Standard test method für in-plane shear properties of polymer matrix composite materials by the rail shear method. ASTM, West Conshohocken

3. DIN EN 572-2 (2012) Glass in building—basic soda lime silicate glass products—Part 2: Float glass. German version. Beuth, Berlin

4. DIN EN 1288-3 (2007) Glass in building—determination of the bending strength of glass—Part 3: Test with specimen supported at two points (four point bending). German version. Beuth, Berlin

5. DIN EN 16613 (2020) Glass in building—Laminated glass and laminated safety glass—Determination of interlayer viscoelastic properties. German version. Beuth, Berlin

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