The fast growing of Additive Manufacturing (AM) leads us to study the functionality of parts built by these processes. Recently, the Electron Beam Melting process and the Direct Melting Laser Sintering process are used to produce parts in the biomedical and aeronautical fields. The Ti6Al4V is largely used in these fields. This paper present an experimental study of machining Ti6Al4V alloy produced by Electron Beam Melting (EBM) before and after HIPping (Hot Isostatic Pressing). The results shows that the hipping has no significant influence on specific cutting pressure.SCOPUS: cp.pinfo:eu-repo/semantics/publishe
Additive manufacturing (AM), applied to metal industry, is a family of processes that allows complex...
Ti-6Al-4V parts, produced by selective electron beam melting additive manufacturing, have been studi...
AbstractThe study aims at investigation of structure, properties and machinability rate of raw and t...
Electron Beam Melting (EBM) is an additive manufacturing process that presents a lower level of inte...
The powder-bed-fusion-based Electron Beam Melting (EBM) is rapidly gaining interest as a feasible pr...
Electron beam melting (EBM) is a powder based additive manufacturing technology used to produce part...
Electron beam melting (EBM) is a direct metal additive manufacturing technique which has been recent...
A batch of six Ti-6Al-4V plates (5 mm thick, 45 mm wide, 220 mm high) were fabricated by selective e...
Although additive manufacturing (AM) of difficult-to-machine materials can open new design possibili...
Evaluation of the high-temperature tensile properties of Ti-6Al-4V manufactured by electron beam mel...
Evaluation of the high-temperature tensile properties of Ti-6Al-4V manufactured by electron beam mel...
Using an electron beam melting (EBM) printing machine (Arcam A2X, Sweden), a matrix of 225 samples (...
Finite element analysis of cutting processes of difficult-to-cut alloys is attracting more and more ...
Defects in electron beam melting (EBM) manufactured Alloy 718 are inevitable to some extent, and are...
The composition, structure and mechanical properties of samples obtained from the titanium alloy Ti-...
Additive manufacturing (AM), applied to metal industry, is a family of processes that allows complex...
Ti-6Al-4V parts, produced by selective electron beam melting additive manufacturing, have been studi...
AbstractThe study aims at investigation of structure, properties and machinability rate of raw and t...
Electron Beam Melting (EBM) is an additive manufacturing process that presents a lower level of inte...
The powder-bed-fusion-based Electron Beam Melting (EBM) is rapidly gaining interest as a feasible pr...
Electron beam melting (EBM) is a powder based additive manufacturing technology used to produce part...
Electron beam melting (EBM) is a direct metal additive manufacturing technique which has been recent...
A batch of six Ti-6Al-4V plates (5 mm thick, 45 mm wide, 220 mm high) were fabricated by selective e...
Although additive manufacturing (AM) of difficult-to-machine materials can open new design possibili...
Evaluation of the high-temperature tensile properties of Ti-6Al-4V manufactured by electron beam mel...
Evaluation of the high-temperature tensile properties of Ti-6Al-4V manufactured by electron beam mel...
Using an electron beam melting (EBM) printing machine (Arcam A2X, Sweden), a matrix of 225 samples (...
Finite element analysis of cutting processes of difficult-to-cut alloys is attracting more and more ...
Defects in electron beam melting (EBM) manufactured Alloy 718 are inevitable to some extent, and are...
The composition, structure and mechanical properties of samples obtained from the titanium alloy Ti-...
Additive manufacturing (AM), applied to metal industry, is a family of processes that allows complex...
Ti-6Al-4V parts, produced by selective electron beam melting additive manufacturing, have been studi...
AbstractThe study aims at investigation of structure, properties and machinability rate of raw and t...