Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Gradient Coating of Laser Cladding TiB2/Ti-Based Alloy on Titanium Alloy Surface

View through CrossRef
The technology of the TiB2/TiB cladding layer addresses the issue of the insufficient wear resistance of cup-shaped parts composed of titanium alloy materials. In order to eliminate the cracking problem of laser cladding TiB2/Ti-based alloy, 30%TiB2/Ti-based alloy gradient coating was prepared on the surface of titanium alloy by laser cladding in this study. The results revealed that the microstructure of the matrix and the cladding layer is metallurgically bonded. The microstructures of the cladding layer appear as rod-like and coarse-grained features on the surface, and fine needle-like and small-grained morphologies inside. The fine needle-like TiB precipitated in situ from the melt has a flat interface with Ti and exhibits a low degree of interfacial mismatch, while the interface between small particle-like TiB and Ti is wavy and has a high degree of interfacial mismatch. The gradual increase in the amount of TiB is present from the surface to the bottom of the cladding layer, while the amount of unmelted TiB2 particles decreases. The chemical structure of the cladding layer is mainly presented as TiB2, TiB and α-Ti phases. The maximum hardness of the cladding layer is 725 HV0.2, where it is more than twice the hardness of the substrate. The fretting wear resistance of the cladding layer is better than that of the titanium alloy substrate under low loads (50 N–100 N), while a high load (more than 150 N) triggers a reverse outcome.
Title: Gradient Coating of Laser Cladding TiB2/Ti-Based Alloy on Titanium Alloy Surface
Description:
The technology of the TiB2/TiB cladding layer addresses the issue of the insufficient wear resistance of cup-shaped parts composed of titanium alloy materials.
In order to eliminate the cracking problem of laser cladding TiB2/Ti-based alloy, 30%TiB2/Ti-based alloy gradient coating was prepared on the surface of titanium alloy by laser cladding in this study.
The results revealed that the microstructure of the matrix and the cladding layer is metallurgically bonded.
The microstructures of the cladding layer appear as rod-like and coarse-grained features on the surface, and fine needle-like and small-grained morphologies inside.
The fine needle-like TiB precipitated in situ from the melt has a flat interface with Ti and exhibits a low degree of interfacial mismatch, while the interface between small particle-like TiB and Ti is wavy and has a high degree of interfacial mismatch.
The gradual increase in the amount of TiB is present from the surface to the bottom of the cladding layer, while the amount of unmelted TiB2 particles decreases.
The chemical structure of the cladding layer is mainly presented as TiB2, TiB and α-Ti phases.
The maximum hardness of the cladding layer is 725 HV0.
2, where it is more than twice the hardness of the substrate.
The fretting wear resistance of the cladding layer is better than that of the titanium alloy substrate under low loads (50 N–100 N), while a high load (more than 150 N) triggers a reverse outcome.

Related Results

Laser Cladded Surface Hardening Coating With Gradient of Mechanical Properties
Laser Cladded Surface Hardening Coating With Gradient of Mechanical Properties
The present dissertation “Laser Cladded Surface Hardening Coating with Gradient of Mechanical Properties” is devoted to the research of laser cladding process for obtaining high qu...
Effects of Ni-Ti Content on Mechanical Properties of Laser Cladding A100-(Ni-Ti) Coatings
Effects of Ni-Ti Content on Mechanical Properties of Laser Cladding A100-(Ni-Ti) Coatings
Among many methods to enhance the crack resistance of laser cladding coatings, adjusting the composition of laser cladding material is the most simple, feasible, and effective meth...
CALCULATION OF THE STRESS-STRAIN STATE OF THE CLADDING LAYER DURING CLADDING (WELDING) BY EXPLOSION
CALCULATION OF THE STRESS-STRAIN STATE OF THE CLADDING LAYER DURING CLADDING (WELDING) BY EXPLOSION
Purpose. Development of a mathematical model of the process of elastoplastic deformation of the cladding layer of a layered workpiece during welding (cladding) by explosion with th...
Laser cladding layer height automatic detecting control
Laser cladding layer height automatic detecting control
Laser cladding layer height was uniformity, which will directly affect the quality of laser cladding surface and processing accuracy. Right through the laser cladding layer height ...
Effect of Y-TZP on Mechanical Properties of Al2O3-TiB2 Ceramics
Effect of Y-TZP on Mechanical Properties of Al2O3-TiB2 Ceramics
The effect of Y-TZP additive on the mechanical properties of Al2O3-TiB2 ceramics was investigated. The results indicate that Y-TZP additive can enhance the flexure strength and fra...
The coherent growth and mechanical properties of non-isostructural TiN/TiB2 nanomultilayers
The coherent growth and mechanical properties of non-isostructural TiN/TiB2 nanomultilayers
TiN/TiB2 nanomutlialyers with different TiB2 layer thickne ss were prepared using multi-target magnetron sputtering method. The effects of TiB2 layer thickness on the growth stru...
Microstructure and properties of spiral gradient coating prepared by laser cladding
Microstructure and properties of spiral gradient coating prepared by laser cladding
Abstract In this study, laser additive manufacturing technology is utilized with the objective of controlling the internal stress of the cladding layer to maintain i...
Laser cladded Cr–W–C co-based alloy layer with enhanced hardness, wear resistance, and corrosion resistance on 30CrNi2MoV steel
Laser cladded Cr–W–C co-based alloy layer with enhanced hardness, wear resistance, and corrosion resistance on 30CrNi2MoV steel
To mitigate the vulnerability of 30CrNi2MoV steel to wear-induced failure and corrosion degradation in extreme service scenarios (i.e., high-temperature/high-load sliding condition...

Back to Top