Selective laser melting (SLM) additive manufacturing of pure tungsten encounters nearly all intractable difficulties of SLM metals fields due to its intrinsic properties. The key factors, including powder characteristics, layer thickness, and laser parameters of SLM high density tungsten are elucidated and discussed in detail. The main parameters were designed from theoretical calculations prior to the SLM process and experimentally optimized. Pure tungsten products with a density of 19.01 g/cm3 (98.50% theoretical density) were produced using SLM with the optimized processing parameters. A high density microstructure is formed without significant balling or macrocracks. The formation mechanisms for pores and the densification behaviors are...
Recent technical improvements of additive manufacturing (AM) have shifted the application of these p...
Selective Laser Melting (SLM) is an Additive Manufacturing process in which a part is built in a lay...
Tungsten is an outstanding material and due to its properties like highest melting point and tensile...
Selective laser melting (SLM) is an additive manufacturing technique which enables fabrication of th...
High-density pure tungsten (W) fabricated ...
The mechanical and microstructural properties of pure tungsten produced using Laser Bed Additive Man...
Additive manufacturing using tungsten, a brittle material, is difficult because of its high melting ...
In this study we consider the role of the pure tungsten powder interaction with processing condition...
Selective Laser Melting (SLM) is a leading Additive Manufacturing (AM) technology used for high valu...
© 2019 Elsevier Ltd Selective laser melting (SLM) was used to fabricate tungsten heavy alloy (WHA) w...
Laser Powder Bed Fusion is a leading additive manufacturing technology, which has been used successf...
Additive Manufacturing (AM) is the process that allows the production of complex geometry and ligh...
Selective laser melting (SLM) was used to fabricate different W-Ni-Fe tungsten heavy alloy grades (N...
Recent technical improvements of additive manufacturing (AM) have shifted the application of these p...
Selective Laser Melting (SLM) is a particular rapid prototyping, 3D printing, or Additive Manufactur...
Recent technical improvements of additive manufacturing (AM) have shifted the application of these p...
Selective Laser Melting (SLM) is an Additive Manufacturing process in which a part is built in a lay...
Tungsten is an outstanding material and due to its properties like highest melting point and tensile...
Selective laser melting (SLM) is an additive manufacturing technique which enables fabrication of th...
High-density pure tungsten (W) fabricated ...
The mechanical and microstructural properties of pure tungsten produced using Laser Bed Additive Man...
Additive manufacturing using tungsten, a brittle material, is difficult because of its high melting ...
In this study we consider the role of the pure tungsten powder interaction with processing condition...
Selective Laser Melting (SLM) is a leading Additive Manufacturing (AM) technology used for high valu...
© 2019 Elsevier Ltd Selective laser melting (SLM) was used to fabricate tungsten heavy alloy (WHA) w...
Laser Powder Bed Fusion is a leading additive manufacturing technology, which has been used successf...
Additive Manufacturing (AM) is the process that allows the production of complex geometry and ligh...
Selective laser melting (SLM) was used to fabricate different W-Ni-Fe tungsten heavy alloy grades (N...
Recent technical improvements of additive manufacturing (AM) have shifted the application of these p...
Selective Laser Melting (SLM) is a particular rapid prototyping, 3D printing, or Additive Manufactur...
Recent technical improvements of additive manufacturing (AM) have shifted the application of these p...
Selective Laser Melting (SLM) is an Additive Manufacturing process in which a part is built in a lay...
Tungsten is an outstanding material and due to its properties like highest melting point and tensile...