scholarly journals A detailed analysis on the microstructure and compressive properties of selective laser melted Ti6Al4V lattice structures

2021 ◽  
Vol 198 ◽  
pp. 109292
Author(s):  
Jinguo Ge ◽  
Xingchen Yan ◽  
Yongping Lei ◽  
Mansur Ahmed ◽  
Peter O'Reilly ◽  
...  
Materials ◽  
2020 ◽  
Vol 13 (13) ◽  
pp. 2902 ◽  
Author(s):  
Xiaoyang Liu ◽  
Keito Sekizawa ◽  
Asuka Suzuki ◽  
Naoki Takata ◽  
Makoto Kobashi ◽  
...  

In the present study, in order to elucidate geometrical features dominating deformation behaviors and their associated compressive properties of lattice structures, AlSi10Mg lattice structures with three different unit cells were fabricated by laser powder bed fusion. Compressive properties were examined by compression and indentation tests, micro X-ray computed tomography (CT), together with finite element analysis. The truncated octahedron- unit cell (TO) lattice structures exhibited highest stiffness and plateau stress among the studied lattice structures. The body centered cubic-unit cell (BCC) and TO lattice structures experienced the formation of shear bands with stress drops, while the hexagon-unit cell (Hexa) lattice structure behaved in a continuous deformation and flat plateau region. The Hexa lattice structure densified at a smaller strain than the BCC and TO lattice structures, due to high density of the struts in the compressive direction. Static and high-speed indentation tests revealed that the TO and Hexa exhibited slight strain rate dependence of the compressive strength, whereas the BCC lattice structure showed a large strain rate dependence. Among the lattice structures in the present study, the TO lattice exhibited the highest energy absorption capacity comparable to previously reported titanium alloy lattice structures.


2021 ◽  
pp. 442-450
Author(s):  
Sandro Barone ◽  
Paolo Neri ◽  
Alessandro Paoli ◽  
Armando Viviano Razionale ◽  
Francesco Tamburrino

2020 ◽  
Vol 403 ◽  
pp. 126419
Author(s):  
Jinguo Ge ◽  
Jian Huang ◽  
Yongping Lei ◽  
Peter O'Reilly ◽  
Mansur Ahmed ◽  
...  

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