期刊论文详细信息
Journal of Materials Research and Technology
Lightweight 3D printed Ti6Al4V-AlSi10Mg hybrid composite for impact resistance and armor piercing shielding
Miha Brojan1  Maksim Antonov2  Ramin Rahmani3 
[1] Corresponding author.;Laboratory for Nonlinear Mechanics, Faculty of Mechanical Engineering, University of Ljubljana, Askerceva 6, SI-1000 Ljubljana, Slovenia;Department of Mechanical and Industrial Engineering, Tallinn University of Technology, Ehitajate tee 5, 19086 Tallinn, Estonia;
关键词: Selective laser melting;    Spark plasma sintering;    Armor piercing shielding;    Finite element analysis;   
DOI  :  
来源: DOAJ
【 摘 要 】

In this research, metallic lightweight ductile composites made from Ti and Al alloys are tested against dynamic impact. 3D printed Ti6Al4V cellular lattice structures with different strut diameters and cell sizes were sintered inside an AlSi10Mg powder during the low-pressure low-temperature process and investigated experimentally and analytically. Four novelties of the present study are: (1) Ti6Al4V-AlSi10Mg composite with local or overall impact reinforcement, (2) combination of selective laser melting (SLM) and spark plasma sintering (SPS) techniques to produce hybrid composites, (3) multiple impact test method with in-situ monitoring of sample acceleration, (4) coupling of SolidWorks and ANSYS finite element software to model and simulate penetration depth, stress distribution, deformation of uniform and gradient architecture lattices due to projectile impact. The volume fraction of the Ti6Al4V lattice (influenced by cell size and strut diameter) has a pivotal role in impact resistance. The results show that composites with smaller cell size with thinner strut diameter has similar performance to those with larger cell size with thicker struts, due to equal volume fraction. The good performance of the thickest strut possible per unit cell demonstrates the pivotal role and direct relationship of the volume fraction of the Ti6Al4V lattice for the impact resistance. In addition, the simulation results show that a uniform lattice structure with a higher volume fraction leads to a shallow penetration, while a gradient lattice hinders shape distortion.

【 授权许可】

Unknown   

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