The deformation behaviour of spray particles impacting upon a substrate under the oblique impact condition in cold spraying was investigated using finite element analysis(FEA)method.The effect of incidence angle of pa...The deformation behaviour of spray particles impacting upon a substrate under the oblique impact condition in cold spraying was investigated using finite element analysis(FEA)method.The effect of incidence angle of particle on the deformation of particle and substrate was examined.It is found that the contact area between the deformed particle and substrate decreases and the crater depth in the substrate reduces with increasing the tilting angle at the same impact velocity.The normal component of impact velocity takes an important role in the impacting process and formation of bonding.展开更多
基金the National Natural Science Foundation of China(Grant Nos.U2267252,12172123,and 12072109)the Natural Science Foundation of Hunan Province(Grant Nos.2022JJ20001 and 2021JJ40032)+2 种基金the Science and Technology Innovation Program of Hunan Province(Grant No.2022RC1200)the National Science Foundation(Grant Nos.DMR-1611180,1809640,and 2226508)the Army Research Office(Grant Nos.W911NF-13-1-0438 and W911NF-19-2-0049).
基金Project(50476075)supported by the National Natural Science Foundation of China
文摘The deformation behaviour of spray particles impacting upon a substrate under the oblique impact condition in cold spraying was investigated using finite element analysis(FEA)method.The effect of incidence angle of particle on the deformation of particle and substrate was examined.It is found that the contact area between the deformed particle and substrate decreases and the crater depth in the substrate reduces with increasing the tilting angle at the same impact velocity.The normal component of impact velocity takes an important role in the impacting process and formation of bonding.