The “Holy Grail” of metal additive manufacturing is to manufacture reliable high-performance metal parts with no or a minimal need of post processing. However, Ti-6Al-4V parts made by selective laser melting (SLM) often suffer from poor ductility and low toughness because of the predominant acicular α′ martensite contained in columnar prior-β grains. In practice, post heat treatment is necessary. To overcome this deficiency, we have explored designing innovative SLM processing routes to turn the unfavoured α′ martensite, via in-situ decomposition, into lamellar (α+β) microstructures with tuneable characteristic length scales. Such lamellar (α+β) microstructures lead to superior mechanical properties which markedly exceed ASTM standards and ...
Ti–6Al–4V parts made by the additive manufacturing (AM) technique selective laser melting (SLM) gene...
Current post-process heat treatments applied to selective laser melting produced Ti-6Al-4V do not ac...
Current post-process heat treatments applied to selective laser melting produced Ti-6Al-4V do not ac...
The "Holy Grail" of metal additive manufacturing is to manufacture reliable high-performan...
Recent progress has shown that Ti-6Al-4V fabricated by selective laser melting (SLM) can achieve a f...
The Achilles' heel of additively manufactured Ti-6Al-4V by selective laser melting (SLM) is its infe...
Novel ultrafine lamellar (a + b) microstructures comprising ultrafine (200-300 nm) a-laths and retaine...
Novel ultrafine lamellar (α + β) microstructures comprising ultrafine (~200–300 nm) α-laths and reta...
Among laser additive manufacturing, selective laser melting (SLM) is one of the most popular methods...
Selective laser melting (SLM) is an additive manufacturing technique that can produce complex functi...
Additive manufacturing (AM) is a technology of enormous potential, yet also of enormous complexity. ...
Selective laser melting is a promising powder-bed-based additive manufacturing technique for titaniu...
Selective laser melting (SLM) is a powerful additive manufacturing (AM) technology, of which the mos...
Introduction Additive manufacturing (AM) is a technology of enormous potential, yet also of high co...
Selective laser melting is a promising powder-bed-based additive manufacturing technique for titaniu...
Ti–6Al–4V parts made by the additive manufacturing (AM) technique selective laser melting (SLM) gene...
Current post-process heat treatments applied to selective laser melting produced Ti-6Al-4V do not ac...
Current post-process heat treatments applied to selective laser melting produced Ti-6Al-4V do not ac...
The "Holy Grail" of metal additive manufacturing is to manufacture reliable high-performan...
Recent progress has shown that Ti-6Al-4V fabricated by selective laser melting (SLM) can achieve a f...
The Achilles' heel of additively manufactured Ti-6Al-4V by selective laser melting (SLM) is its infe...
Novel ultrafine lamellar (a + b) microstructures comprising ultrafine (200-300 nm) a-laths and retaine...
Novel ultrafine lamellar (α + β) microstructures comprising ultrafine (~200–300 nm) α-laths and reta...
Among laser additive manufacturing, selective laser melting (SLM) is one of the most popular methods...
Selective laser melting (SLM) is an additive manufacturing technique that can produce complex functi...
Additive manufacturing (AM) is a technology of enormous potential, yet also of enormous complexity. ...
Selective laser melting is a promising powder-bed-based additive manufacturing technique for titaniu...
Selective laser melting (SLM) is a powerful additive manufacturing (AM) technology, of which the mos...
Introduction Additive manufacturing (AM) is a technology of enormous potential, yet also of high co...
Selective laser melting is a promising powder-bed-based additive manufacturing technique for titaniu...
Ti–6Al–4V parts made by the additive manufacturing (AM) technique selective laser melting (SLM) gene...
Current post-process heat treatments applied to selective laser melting produced Ti-6Al-4V do not ac...
Current post-process heat treatments applied to selective laser melting produced Ti-6Al-4V do not ac...