Nanocrystallization of interfacial microstructure of deformed particles in cold sprayed Ti6Al4V deposits

The low temperature solid deposition characteristics of cold spraying technology are conducive to the remanufacturing/repair of oxidation sensitive titanium alloy in the atmosphere. Ti6Al4V alloy deposits prepared by cold spray (CS) usually show porous microstructure due to insufficient plastic defo...

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Main Authors: Lijing Yang, Pei Wang, Xiaotao Luo, Huan Li, Haiyu Yang, Shaopeng Wang, Qingyu Li
Format: Article
Language:English
Published: Elsevier 2021-11-01
Series:Materials & Design
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S0264127521006729
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spelling doaj-f663bab1589b41dfa102e717996db23c2021-09-23T04:36:06ZengElsevierMaterials & Design0264-12752021-11-01210110117Nanocrystallization of interfacial microstructure of deformed particles in cold sprayed Ti6Al4V depositsLijing Yang0Pei Wang1Xiaotao Luo2Huan Li3Haiyu Yang4Shaopeng Wang5Qingyu Li6Northwest Institute for Non-ferrous Metal Research, Xi’an, Shaanxi 710016, China; Corresponding author.Northwest Institute for Non-ferrous Metal Research, Xi’an, Shaanxi 710016, ChinaState Key Laboratory for Mechanical Behavior of Materials, School of Materials Science Engineering, Xi’an Jiaotong University, Xi’an, Shaanxi 710049, ChinaNorthwest Institute for Non-ferrous Metal Research, Xi’an, Shaanxi 710016, ChinaNorthwest Institute for Non-ferrous Metal Research, Xi’an, Shaanxi 710016, ChinaNorthwest Institute for Non-ferrous Metal Research, Xi’an, Shaanxi 710016, ChinaNorthwest Institute for Non-ferrous Metal Research, Xi’an, Shaanxi 710016, ChinaThe low temperature solid deposition characteristics of cold spraying technology are conducive to the remanufacturing/repair of oxidation sensitive titanium alloy in the atmosphere. Ti6Al4V alloy deposits prepared by cold spray (CS) usually show porous microstructure due to insufficient plastic deformation of Ti6Al4V alloy particles. The interfacial bonding and the microstructural evolution mechanisms of Ti6Al4V particles during cold spray are still unclear. In this study, the Ti6Al4V deposits were prepared by cold spray with nitrogen as process gas at a temperature of 800 °C and a pressure of 4 MPa. The micron CT results show that the porosity is 8.25%. The deformation ultrafine grain zone and un-deformation martensitic laths zone at the bonding interface between Ti6Al4V particles were observed. The EBSD results show that the grain orientation signal was only detected at the edge of the particles deformation area and the 23% of grain sizes detected by EBSD are less than 500 nm, which indicates that the nanocrystallization induced by dynamic recrystallization occurs at the inter-particle boundaries between cold-sprayed Ti6Al4V particles. The TEM and SADPs demonstrate a gradient structure consisting of equiaxed nanograins zone, crushing dendrites transition zone and original martensitic laths zone from the interface to the core of particles.http://www.sciencedirect.com/science/article/pii/S0264127521006729Cold sprayTitanium alloyInterfaceMicrostructureNanocrystallization
collection DOAJ
language English
format Article
sources DOAJ
author Lijing Yang
Pei Wang
Xiaotao Luo
Huan Li
Haiyu Yang
Shaopeng Wang
Qingyu Li
spellingShingle Lijing Yang
Pei Wang
Xiaotao Luo
Huan Li
Haiyu Yang
Shaopeng Wang
Qingyu Li
Nanocrystallization of interfacial microstructure of deformed particles in cold sprayed Ti6Al4V deposits
Materials & Design
Cold spray
Titanium alloy
Interface
Microstructure
Nanocrystallization
author_facet Lijing Yang
Pei Wang
Xiaotao Luo
Huan Li
Haiyu Yang
Shaopeng Wang
Qingyu Li
author_sort Lijing Yang
title Nanocrystallization of interfacial microstructure of deformed particles in cold sprayed Ti6Al4V deposits
title_short Nanocrystallization of interfacial microstructure of deformed particles in cold sprayed Ti6Al4V deposits
title_full Nanocrystallization of interfacial microstructure of deformed particles in cold sprayed Ti6Al4V deposits
title_fullStr Nanocrystallization of interfacial microstructure of deformed particles in cold sprayed Ti6Al4V deposits
title_full_unstemmed Nanocrystallization of interfacial microstructure of deformed particles in cold sprayed Ti6Al4V deposits
title_sort nanocrystallization of interfacial microstructure of deformed particles in cold sprayed ti6al4v deposits
publisher Elsevier
series Materials & Design
issn 0264-1275
publishDate 2021-11-01
description The low temperature solid deposition characteristics of cold spraying technology are conducive to the remanufacturing/repair of oxidation sensitive titanium alloy in the atmosphere. Ti6Al4V alloy deposits prepared by cold spray (CS) usually show porous microstructure due to insufficient plastic deformation of Ti6Al4V alloy particles. The interfacial bonding and the microstructural evolution mechanisms of Ti6Al4V particles during cold spray are still unclear. In this study, the Ti6Al4V deposits were prepared by cold spray with nitrogen as process gas at a temperature of 800 °C and a pressure of 4 MPa. The micron CT results show that the porosity is 8.25%. The deformation ultrafine grain zone and un-deformation martensitic laths zone at the bonding interface between Ti6Al4V particles were observed. The EBSD results show that the grain orientation signal was only detected at the edge of the particles deformation area and the 23% of grain sizes detected by EBSD are less than 500 nm, which indicates that the nanocrystallization induced by dynamic recrystallization occurs at the inter-particle boundaries between cold-sprayed Ti6Al4V particles. The TEM and SADPs demonstrate a gradient structure consisting of equiaxed nanograins zone, crushing dendrites transition zone and original martensitic laths zone from the interface to the core of particles.
topic Cold spray
Titanium alloy
Interface
Microstructure
Nanocrystallization
url http://www.sciencedirect.com/science/article/pii/S0264127521006729
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