TY - JOUR
T1 - Cold Spray Additive Manufacturing of Ti6Al4V
T2 - Special Nozzle Design Using Numerical Simulation and Experimental Validation
AU - Cao, Congcong
AU - Li, Wenya
AU - Zhang, Zhengmao
AU - Yang, Xiawei
AU - Xu, Yaxin
N1 - Publisher Copyright:
© 2022 by the authors. Licensee MDPI, Basel, Switzerland.
PY - 2022/2
Y1 - 2022/2
N2 - Cold spray additive manufacturing (CSAM) shows great potential in titanium-alloy production as it is a solid-state process. However, data published so far have demonstrated the difficulty of producing dense and high-strength Ti alloy parts. Our previous studies have shown that nozzle design together with high-cost helium propulsive gas plays a crucial role in particle acceleration. In this work, special nozzles for Ti alloy were designed and validated experimentally with commercially available Ti6Al4V powder. Simulation results show that particle impact temperature increases remarkably for a long convergent length, while particle kinetic energy slightly increases, which is validated by experiments. The relationship between the particle impact temperature and practice diameter shows the first increase and then decrease. The experimental results show that as the nozzle convergent section becomes longer, the edges of the single-pass deposits become smoother, and the width, density, deposition efficiency, and microhardness of the single-pass deposits increase.
AB - Cold spray additive manufacturing (CSAM) shows great potential in titanium-alloy production as it is a solid-state process. However, data published so far have demonstrated the difficulty of producing dense and high-strength Ti alloy parts. Our previous studies have shown that nozzle design together with high-cost helium propulsive gas plays a crucial role in particle acceleration. In this work, special nozzles for Ti alloy were designed and validated experimentally with commercially available Ti6Al4V powder. Simulation results show that particle impact temperature increases remarkably for a long convergent length, while particle kinetic energy slightly increases, which is validated by experiments. The relationship between the particle impact temperature and practice diameter shows the first increase and then decrease. The experimental results show that as the nozzle convergent section becomes longer, the edges of the single-pass deposits become smoother, and the width, density, deposition efficiency, and microhardness of the single-pass deposits increase.
KW - additive manufacturing
KW - cold spray
KW - deposition efficiency
KW - Laval nozzle
KW - Ti6Al4V alloy
UR - http://www.scopus.com/inward/record.url?scp=85140717837&partnerID=8YFLogxK
U2 - 10.3390/COATINGS12020210
DO - 10.3390/COATINGS12020210
M3 - 文章
AN - SCOPUS:85140717837
SN - 2079-6412
VL - 12
JO - Coatings
JF - Coatings
IS - 2
M1 - 210
ER -