Multi-material adhesively bonded structures: Characterisation and modelling of their rate-dependent performance

Author:

Lißner M.,Erice B.,Alabort E.,Thomson D.,Cui H.,Kaboglu C.,Blackman B.R.K.,Gude M.,Petrinic N.

Funder

Rolls-Royce, United Kingdom

Publisher

Elsevier BV

Subject

Industrial and Manufacturing Engineering,Mechanical Engineering,Mechanics of Materials,Ceramics and Composites

Reference51 articles.

1. Advanced design for lightweight structures: Review and prospects;Braga,2014

2. Lightweight CFRP wheel w ith electric motor;Schweizer;Auto Tech Rev,2012

3. Adhesively bonded joints in composite materials: An overview;Banea;Proc Inst Mech Eng L,2009

4. Strain-based methodology for mixed-mode I+II fracture: A new partitioning method for bi-material adhesively bonded joints;Arouche;J Adhesion,2019

5. Bang CS, Kim JG, Lee DG. Fracture toughness enhancement with reinforcing fibers for adhesively bonded joints under repeated thermal shocks. In: 18th International conference on composite materials; 2011. p. 1–6.

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