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This book investigates the microstructural and mechanical
properties of titanium-tantalum (TiTa) alloy formed using selective
laser melting (SLM). TiTa has potential orthopaedic biomedical
applications thanks to its high strength to modulus ratio. However,
because it is difficult to obtain, it is still not widely used. The
book describes how SLM is utilized to form this alloy, and provides
a better understanding of the SLM process in porous lattice
structure fabrication and its control through statistical
modelling.
This book investigates the microstructural and mechanical
properties of titanium-tantalum (TiTa) alloy formed using selective
laser melting (SLM). TiTa has potential orthopaedic biomedical
applications thanks to its high strength to modulus ratio. However,
because it is difficult to obtain, it is still not widely used. The
book describes how SLM is utilized to form this alloy, and provides
a better understanding of the SLM process in porous lattice
structure fabrication and its control through statistical
modelling.
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