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A. Matinmanesh
A. Matinmanesh
St. Michael's Hospital
Materials science
Fracture toughness
Strain energy release rate
Composite material
Coating
5
Papers
41
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Evaluating the critical strain energy release rate of bioactive glass coatings on Ti6Al4V substrates after degradation
2018
Journal of The Mechanical Behavior of Biomedical Materials
A. Matinmanesh
Yiming Li
A. Nouhi
Paul Zalzal
Emil H. Schemitsch
Mark R. Towler
M. Papini
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Citations (2)
Characterization and fracture property of different strontium-containing borate-based glass coatings for Ti6Al4V substrates
2017
Journal of Non-crystalline Solids
Yiming Li
A. Matinmanesh
Declan J. Curran
Emil H. Schemitsch
Paul Zalzal
M. Papini
Anthony W. Wren
Mark R. Towler
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Citations (11)
Quantifying the mode II critical strain energy release rate of borate bioactive glass coatings on Ti6Al4V substrates
2017
Journal of The Mechanical Behavior of Biomedical Materials
A. Matinmanesh
Yiming Li
Owen M. Clarkin
Paul Zalzal
Emil H. Schemitsch
Mark R. Towler
M. Papini
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Citations (2)
Quantitative evaluation of the adhesion of bioactive glasses onto Ti6Al4V substrates
2016
Materials & Design
A. Matinmanesh
Omar Rodriguez
Mark R. Towler
Paul Zalzal
Emil H. Schemitsch
M. Papini
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Citations (12)
Silica-Based and Borate-Based, Titania-Containing Bioactive Coatings Characterization: Critical Strain Energy Release Rate, Residual Stresses, Hardness, and Thermal Expansion
2016
Journal of Functional Biomaterials
Omar Rodriguez
A. Matinmanesh
Sunjeev Phull
Emil H. Schemitsch
Paul Zalzal
Owen M. Clarkin
M. Papini
Mark R. Towler
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Citations (14)
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