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Dive into the research topics where Liaojun Yao is active.

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Featured researches published by Liaojun Yao.


Composites Part A-applied Science and Manufacturing | 2018

Thickness effects on fibre-bridged fatigue delamination growth in composites

Liaojun Yao; Hao Cui; R.C. Alderliesten; Yi Sun; Licheng Guo

Abstract This paper provides an investigation on thickness effects on fibre-bridged fatigue delamination growth (FDG) in composite laminates. A modified Paris relation was employed to interpret experimental fatigue data. The results clearly demonstrated that both thickness and fibre bridging had negligible effects on FDG behaviors. Both energy principles and fractography analysis were subsequently performed to explore the physical reasons of this independence. It was found that the amount of energy release of a given crack growth was not only independent of fibre bridging, but also thickness. Fibre print was the dominant microscopic feature located on fracture surfaces, physically making the same energy dissipation during FDG. Furthermore, the present study provides extra evidence on the importance of using an appropriate similitude parameter in FDG studies. Particularly, the strain energy release rate (SERR) range applied around crack front was demonstrated as an appropriate similitude parameter for fibre-bridged FDG study.


Composites Part A-applied Science and Manufacturing | 2014

Discussion on the use of the strain energy release rate for fatigue delamination characterization

Liaojun Yao; René Alderliesten; Meiying Zhao; Rinze Benedictus


Composites Part A-applied Science and Manufacturing | 2014

Bridging effect on mode I fatigue delamination behavior in composite laminates

Liaojun Yao; René Alderliesten; Meiying Zhao; Rinze Benedictus


Composites Part A-applied Science and Manufacturing | 2014

Crack closure and fibre bridging during delamination growth in carbon fibre/epoxy laminates under mode I fatigue loading

Rafiullah Khan; René Alderliesten; Liaojun Yao; Rinze Benedictus


Composite Structures | 2016

The effect of fibre bridging on the Paris relation for mode I fatigue delamination growth in composites

Liaojun Yao; R.C. Alderliesten; Rinze Benedictus


Engineering Fracture Mechanics | 2015

The relation between the strain energy release in fatigue and quasi-static crack growth

Lucas Amaral; Liaojun Yao; René Alderliesten; Rinze Benedictus


Composites Part A-applied Science and Manufacturing | 2015

Interpreting the stress ratio effect on delamination growth in composite laminates using the concept of fatigue fracture toughness

Liaojun Yao; R.C. Alderliesten; Rinze Benedictus


Composites Part A-applied Science and Manufacturing | 2017

Stress ratio dependence of fibre bridging significance in mode I fatigue delamination growth of composite laminates

Liaojun Yao; Yi Sun; Meiying Zhao; R.C. Alderliesten; Rinze Benedictus


Composite Structures | 2017

Fibre bridging effect on the Paris relation for mode I fatigue delamination growth in composites with consideration of interface configuration

Liaojun Yao; Yi Sun; R.C. Alderliesten; Rinze Benedictus; Meiying Zhao


Composite Structures | 2017

A modified Paris relation for fatigue delamination with fibre bridging in composite laminates

Liaojun Yao; Yi Sun; Licheng Guo; Meiying Zhao; Liyong Jia; René Alderliesten; Rinze Benedictus

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Rinze Benedictus

Delft University of Technology

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Meiying Zhao

Northwestern Polytechnical University

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Yi Sun

Harbin Institute of Technology

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René Alderliesten

Delft University of Technology

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Licheng Guo

Harbin Institute of Technology

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R.C. Alderliesten

Delft University of Technology

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Hao Cui

Cranfield University

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Lucas Amaral

Delft University of Technology

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Youcai Xiao

Harbin Institute of Technology

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Yubao Zhen

Harbin Institute of Technology

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