Laser metal-wire deposition (LMwD) exhibits a larger molten pool and layer height during printing, compared to powder bed fusion additive manufacturing; in the present study, these features revealed a more inhomogeneous but easily observable microstructure. The coaxial double laser used herein makes the energy distribution of the molten pool more complex than that afforded by a single laser source, and the microstructure of the LMwD parts was more heterogeneous as well. We observed the microstructure of Ti6Al4V by the double LMwD as-built samples by conducting a laboratory experiment and a simulation. The precipitated martensite (α’) phase was defined after eliminating the influence of the β element in an X-ray diffraction analysis, which h...
A cross-scale model of macro-micro coupling is established for the wire laser additive manufacturing...
Direct laser fabrication (DLF) is one of the advanced near-net shape processing technologies. The va...
In this work, the micro-laser metal wire deposition (μLMWD) with ms-pulsed wave emission and low dut...
Near-net shape processes, such as laser metal deposition (LMD), offer a unique combination of proces...
The effect of laser power on the resulting microstructure and microhardness of laser metal deposited...
Laser Metal Deposition (LMD) is promoting increased interest with regard to manufacturing parts of c...
AbstractThis paper presents our recent progress on the applications of laser metal deposited (LMD) T...
A detailed study was carried out to gain a better understanding of the microstructural differences b...
The additive manufacturing of titanium parts by laser metal deposition (LMD) offers a promising alte...
peer reviewedAdditive manufacturing processes such as laser cladding (LC) or selective laser melting...
The aeronautical sector is considering additive manufacturing as an alternative for the manufacture ...
Selective laser melting (SLM) and laser cladding were developed in the late 1990s as economic layer-...
Abstract: Laser metal deposition (LMD) is a manufacturing process, which can be used to manufacture ...
Selective laser melting is a promising powder-bed-based additive manufacturing technique for titaniu...
Directed energy high deposition-rate additive manufacturing processes involve a larger melt pool dia...
A cross-scale model of macro-micro coupling is established for the wire laser additive manufacturing...
Direct laser fabrication (DLF) is one of the advanced near-net shape processing technologies. The va...
In this work, the micro-laser metal wire deposition (μLMWD) with ms-pulsed wave emission and low dut...
Near-net shape processes, such as laser metal deposition (LMD), offer a unique combination of proces...
The effect of laser power on the resulting microstructure and microhardness of laser metal deposited...
Laser Metal Deposition (LMD) is promoting increased interest with regard to manufacturing parts of c...
AbstractThis paper presents our recent progress on the applications of laser metal deposited (LMD) T...
A detailed study was carried out to gain a better understanding of the microstructural differences b...
The additive manufacturing of titanium parts by laser metal deposition (LMD) offers a promising alte...
peer reviewedAdditive manufacturing processes such as laser cladding (LC) or selective laser melting...
The aeronautical sector is considering additive manufacturing as an alternative for the manufacture ...
Selective laser melting (SLM) and laser cladding were developed in the late 1990s as economic layer-...
Abstract: Laser metal deposition (LMD) is a manufacturing process, which can be used to manufacture ...
Selective laser melting is a promising powder-bed-based additive manufacturing technique for titaniu...
Directed energy high deposition-rate additive manufacturing processes involve a larger melt pool dia...
A cross-scale model of macro-micro coupling is established for the wire laser additive manufacturing...
Direct laser fabrication (DLF) is one of the advanced near-net shape processing technologies. The va...
In this work, the micro-laser metal wire deposition (μLMWD) with ms-pulsed wave emission and low dut...