Electron beam melting of Ti-6Al-4V lattice and bulk components

Publish Year: 1399
نوع سند: مقاله کنفرانسی
زبان: English
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شناسه ملی سند علمی:

INCWI21_004

تاریخ نمایه سازی: 19 فروردین 1400

Abstract:

Additive manufacturing processes allow producing complex geometries, which include structures with enhanced mechanical performance and biomimetic properties. Amongthese structures, the interests in the use of lattice are increasing for both medical and mechanical applications. The mechanical behaviour of the structure is closely correlatedto its shape and dimension. However, up to now, far too little attention has been paid to this aspect. Hence, this work aims to explore the effect of geometry, dimension andrelative density of the cell structure on the compressive strength of specimens with lattice structures. For this purpose, various Lattice structures are designed with differentgeometries and dimensions. This approach leads to havi`ng structures with different relativity densities. Replicas of the designed structure are produced using Ti–6Al–4Vpowder processed by electron beam melting process. The samples are tested under compression. A new approach to calculate the absorbed energy up to failure by the latticestructure is presented. The results show a close relationship between the mechanical performance of the structure and the investigated parameters. In contrast with the current literature, the presented experimental data and a collection of the literature data highlight that the lattice structures with similar relative density do not exhibit the same Young’s modulus values.

Authors

Abdollah Saboori

Department of Management and Production Engineering (DIGEP), Politecnico di Torino, Corso duca Degli Abruzzi ۲۴, ۱۰۱۲۹, Torino, Italy

Manuela Galati,

Department of Management and Production Engineering (DIGEP), Politecnico di Torino, Corso duca Degli Abruzzi ۲۴, ۱۰۱۲۹, Torino, Italy

Luca Iuliano

Department of Management and Production Engineering (DIGEP), Politecnico di Torino, Corso duca Degli Abruzzi ۲۴, ۱۰۱۲۹, Torino, Italy