Mechanics of biomaterials

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  • University/Institute Name Loughborough University
  • Attendance Type On Campus (Full Time)
  • Position Duration3 years
  • Position Funding Type PhD Studentship
  • Unspecified Unspecified

Position Details (PhD Program)

Understanding mechanical properties and performance of various biological materials and tissues and their responses to different loading and environmental conditions is becoming increasingly important for development of new medical procedures and devices. Learn more at Mechanics of biomaterials from the Loughborough University.

Key facts of the  Mechanics of biomaterials Mechanics of biomaterials programme offered by  Loughborough University Loughborough University

Such materials, in contrast to traditional structural materials, demonstrate complex hierarchical microstructures formed by constituents with rather non-trivial mechanical behaviours (e.g. non-linear high deformations). 

Additionally, they are characterised by a high extent of variability in their microstructure and properties affected by many factors, including age, health state, nutrition, exercise etc. All these features presuppose development of new experimental, analytical and numerical approaches to assess and predict deformation, damage and fracture behaviour of biological materials and their main constituents. 

The project will be based on a combination of experimental and numerical techniques (to accommodate expertise and skills of a candidate in the best possible way) focused on characterisation and quantification of interaction between microstructure (morphology) and mechanical properties and performance of biological materials at various length and time scales. 

Among potential characterisation and testing techniques are nano- and micro-indentation, X-ray micro computed tomography, DMA (dynamic mechanical analysis) and microscopy as well as different loading schemes (including creep, relaxation and/or dynamic loading). Numerical analysis will be based on multi-scale schemes employing finite elements, smooth particle hydrodynamics etc. and can include development of special elements, subroutines or codes.

  • To obtain additional information about the program, we kindly suggest that you visit the programme website, where you can find further details and relevant resources.

Research Areas & Fields of Study involved in the position

Position Start Date