Set up measurement equipment, carried out experiments to characterize the magnetic-dependent viscoelastic behavior for soft magneto-rheological elastomers.
Developing constitutive model to depict the magnetic-dependent viscoelastic behavior for soft magneto-rheological elastomers
Followed up with ABAQUS user-defined element encoding to predict the magneto-mechanical behavior of soft magneto-rheological elastomer-based structures.
Applying research fundings and supervision the research for two master students.
Education
Doctor of Philosophy - Engineering Mechanics
KTH Royal Institute of Technology
Stockholm/Sweden
09.2016 - 09.2020
Master of Science - Civil Engineering
Wuhan University of Technology
Wuhan/ China
09.2013 - 06.2016
Bachelor of Science - Civil Engineering
Yangtze University
Jingzhou/ China
09.2009 - 06.2013
Skills
Characterization of the magneto-mechanical behavior of magneto-rheological elastomers
Constitutive modeling of the nonlinear viscoelastic behavior of smart material under finite strains
Encoding of the user-defined element in finite element software (ABAQUS)
Vibration control
Publications
Bochao Wang et al. Modeling the influence of magnetic fields to the viscoelastic behavior of soft magnetorheological elastomers under finite strains. International Journal of Plasticity 164 (2023): 103578.
Bochao Wang et al. The influence of particle chain-magnetic field spatial location, frequency, dynamic strain amplitude and the prestrain on the mechanical performance of anisotropic magneto-rheological elastomers. Polymer Testing 104 (2021) : 104711.
Bochao Wang et al. Magneto-sensitive rubber in a vehicle application context-exploring the potential. Frontiers in Materials 8 (2021): 659780.
Bochao Wang and Leif Kari. Constitutive model of isotropic magneto-sensitive rubber with amplitude, frequency, magnetic and temperature dependence under a continuum mechanics basis. Polymers 13.3 (2021): 472.
Lejon Jonas, Bochao Wang * and Leif Kari. A constitutive model of the dynamic shear modulus dependence on temperature, prestrain, dynamic strain amplitude and magnetic field for magneto-sensitive elastomer. International Journal of Solids and Structures 219 (2021): 106-119.
Bochao Wang and Leif Kari. A visco-elastic-plastic constitutive model of isotropic magneto-sensitive rubber with amplitude, frequency and magnetic dependency. International Journal of Plasticity 132 (2020): 102756.
Bochao Wang and Leif Kari. A nonlinear constitutive model by spring, fractional derivative and modified bounding surface model to represent the amplitude, frequency and magnetic dependency for Magneto-sensitive rubber. Journal of Sound and Vibration 438 (2019): 344-352.
Bochao Wang and Leif Kari. Modeling and vibration control of a smart vibration isolation system based on magneto-sensitive rubber. Smart Materials and Structures 28.6 (2019): 065026.
Projects
Young Scientists Fund of the National Natural Science Foundation of China (Grant No. 122024341002875). Project title: Optimization design and damage mechanism of anti-fatigue magnetorheological elastomer.
Fellowship of China Postdoctoral Science Foundation (Grant No. 2022M713045). Project title: Mechanism and application of magneto-controlled dynamic surface wrinkling based on magneto-sensitive elastomer