Experimental and Numerical Study of Al2219 Powders Deposition on Al2219-T6 Substrate by Cold Spray: Effects of Spray Angle, Traverse Speed, and Standoff Distance

被引:2
|
作者
Zhang, Zheng [1 ]
Meng, Tzee Luai [1 ]
Lee, Coryl Jing Jun [1 ]
Wei, Fengxia [1 ]
Ba, Te [2 ]
Zhang, Zhi-Qian [2 ]
Pan, Jisheng [1 ]
机构
[1] ASTAR, Inst Mat Res & Engn IMRE, 2 Fusionopolis Way,Innovis 08-03, Singapore 138634, Singapore
[2] ASTAR, Inst High Performance Comp IHPC, 1 Fusionopolis Way,Connexis 16-16, Singapore 138632, Singapore
关键词
cold spray; spray angle; traverse speed; standoff distance; finite element modeling; CFD; PARTICLE-VELOCITY; EFFICIENCY; BEHAVIOR; NOZZLE;
D O I
10.3390/ma16155240
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Cold spray (CS) is an emerging technology for repairing and 3D additive manufacturing of a variety of metallic components using deformable metal powders. In CS deposition, gas type, gas pressure, gas temperature, and powder feed rate are the four key process parameters that have been intensively studied. Spray angle, spray gun traverse speed, and standoff distance (SoD) are the other three process parameters that have been less investigated but are also important, especially when depositing on uneven substrates or building up 3D freeform structures. Herein, the effects of spray angle, traverse speed, and SoD during CS deposition have been investigated holistically on a single material system (i.e., Al2219 powders on Al2219-T6 substrate). The coatings' mass gain, thickness, porosity, and residual stress have been characterized, and the results show that spray angle and traverse speed exercise much more effects than SoD in determining coatings' buildup. Finite element method (FEM) modeling and computational fluid dynamic (CFD) simulation have been carried out to understand the effects of these three parameters for implementing CS as repairing and additive manufacturing using aluminum-based alloy powders.
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页数:20
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