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Featured researches published by Zhaoyu Chen.


Computers & Mathematics With Applications | 2012

Modelling and parameter re-identification of nanoindentation of soft polymers taking into account effects of surface roughness

Zhaoyu Chen; Stefan Diebels

In this paper the characterisation of polymers by nanoindentation is investigated numerically by the use of the inverse method. Effects of the surface roughness are explicitly considered. The boundary value problems of the nanoindentation of two polymers, PDMS and silicone rubber, are modelled with the FE code ABAQUS^(R). The model parameters are re-identified by using an evolution strategy based on the concept of the numerical optimisation. The surface roughness effects are investigated numerically by explicitly taking into account the roughness profile in the model. At first the surface roughness is chosen to have a simple representation considering only one-level of asperities described by a sine function. The influence of the surface roughness is quantified as a function of the sine parameters as well as of the indentation parameters. Moreover, it is verified that the real surface topography can be characterised by using multi-level or simple one-level of protuberance-on-protuberance sinusoidal roughness strain-energy function. profiles. The effects of the surface roughness are investigated with respect to the force-displacement data and the identified model parameters. These numerical results are expected to offer a deep insight into the influence of the real surface roughness at the results of indentation tests.


Archive of Applied Mechanics | 2012

Nanoindentation of hyperelastic polymer layers at finite deformation and parameter re-identification

Zhaoyu Chen; Stefan Diebels


Computational Materials Science | 2013

Identification of finite viscoelasticity and adhesion effects in nanoindentation of a soft polymer by inverse method

Zhaoyu Chen; Stefan Diebels; Nicolas J. Peter; A. Schneider


Mechanics of Materials | 2013

Macroindentation of a soft polymer: Identification of hyperelasticity and validation by uni/biaxial tensile tests

Zhaoyu Chen; Tobias Scheffer; Henning Seibert; Stefan Diebels


Materials & Design | 2015

Microtensile testing of open-cell metal foams — Experimental setup, micromechanical properties

Anne Jung; M. Wocker; Zhaoyu Chen; H. Seibert


Pamm | 2011

Numerical investigation of nanoindentation of viscoelastic polymer layers and parameters re‐identification

Zhaoyu Chen; Stefan Diebels


Archive of Applied Mechanics | 2015

Indentation of PU at different scales and computational modeling: identification of viscoelasticity and quantification of adhesion effects

Zhaoyu Chen; Stefan Diebels


Pamm | 2015

Numerical analysis of Ni/Al hybrid metal foams using the finite cell method

Stephan Heinze; Zhaoyu Chen; Anne Jung; Stefan Diebels; Alexander Düster


Archive | 2017

Nanoindentation of Hybrid Foams

Anne Jung; Zhaoyu Chen; Stefan Diebels


Pamm | 2015

Characterization of Ni/Al hybrid foam from atomic to microscale

Zhaoyu Chen; Anne Jung; Stephan Heinze; Alexander Düster; Stefan Diebels

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Alexander Düster

Hamburg University of Technology

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Stephan Heinze

Hamburg University of Technology

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