Erosion wear performance of a surface diffusion alloyed coating on pure magnesium
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Youping Ma
, Xiulan Li und Lei Yang
Abstract
Diffusion alloying processing is an emerging, environmentally friendly, surface engineering technique. In this study, we have utilized diffusion alloying processing to alloy aluminum and zinc mixed powder on pure magnesium for erosion wear protection. A stirring device was used for erosion testing. The treated and untreated samples were immersed in oil slurry and water slurry with quartz sand in suspension and rotated at a given speed. Scanning electron microscopy and X-ray diffraction were used to study the surface morphology and chemical composition of the coatings before and after erosion testing.
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© 2013, Carl Hanser Verlag, München
Artikel in diesem Heft
- Contents
- Contents
- Original Contributions
- Structure of composites consolidated from ball milled 7475 aluminum alloy and ZrO2 powders
- Isothermal section of the Al-Tb-V ternary system at 773 K
- Development of an atomic mobility database for disordered and ordered fcc phases in multicomponent Al alloys: focusing on binary systems
- Effect of additive and current density on microstructure and texture characteristics of copper electrodeposits
- Magnetic properties and microwave absorption properties of carbon fibers coated with FeCo alloy
- Effects of BN content on the structural and mechanical properties of a-SiBN ceramics
- Structural and relaxor characteristics of Ca0.18Sr0.226Ba0.594Nb2O6
- Study on the dielectric properties of CaCu3Ti4O12 ceramics using the one-dimensional Ising model
- Erosion wear performance of a surface diffusion alloyed coating on pure magnesium
- Evaluation of the quality of cladding deposited on continuous steel casting rolls
- Investigating the machinability of austempered ductile irons with dual matrix structures
- Simple preperation of CuO nanoparticles and submicron spheres via ultrasonic spray pyrolysis (USP)
- Fabrication of transparent Nd:YAG ceramic by vacuum sintering with CaF2 additive
- Synthesis and characterization of new Bi2FeNiO6 material using a citric acid assisted gel combustion technique
- Processing and characterization of up-converting Er3+ doped (Lu0.5Y0.5)2O3 nanophosphor
- People
- People
- DGM News
- DGM News
Artikel in diesem Heft
- Contents
- Contents
- Original Contributions
- Structure of composites consolidated from ball milled 7475 aluminum alloy and ZrO2 powders
- Isothermal section of the Al-Tb-V ternary system at 773 K
- Development of an atomic mobility database for disordered and ordered fcc phases in multicomponent Al alloys: focusing on binary systems
- Effect of additive and current density on microstructure and texture characteristics of copper electrodeposits
- Magnetic properties and microwave absorption properties of carbon fibers coated with FeCo alloy
- Effects of BN content on the structural and mechanical properties of a-SiBN ceramics
- Structural and relaxor characteristics of Ca0.18Sr0.226Ba0.594Nb2O6
- Study on the dielectric properties of CaCu3Ti4O12 ceramics using the one-dimensional Ising model
- Erosion wear performance of a surface diffusion alloyed coating on pure magnesium
- Evaluation of the quality of cladding deposited on continuous steel casting rolls
- Investigating the machinability of austempered ductile irons with dual matrix structures
- Simple preperation of CuO nanoparticles and submicron spheres via ultrasonic spray pyrolysis (USP)
- Fabrication of transparent Nd:YAG ceramic by vacuum sintering with CaF2 additive
- Synthesis and characterization of new Bi2FeNiO6 material using a citric acid assisted gel combustion technique
- Processing and characterization of up-converting Er3+ doped (Lu0.5Y0.5)2O3 nanophosphor
- People
- People
- DGM News
- DGM News