Effect of hot extrusion on the microstructure of a particulate reinforced magnesium matrix composite

A particulate reinforced magnesium matrix composite fabricated by stir casting was extruded at 250 °C with an extrusion ratio of 12:1 and constant RAM speed of 15 mm/s. Extrusion of the composite causes large scale dynamic recrystallization resulting in a fine matrix microstructure. The reinforcing...

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Published inMaterials science & engineering. A, Structural materials : properties, microstructure and processing Vol. 465; no. 1; pp. 78 - 84
Main Authors Wang, X.J., Wu, K., Zhang, H.F., Huang, W.X., Chang, H., Gan, W.M., Zheng, M.Y., Peng, D.L.
Format Journal Article
LanguageEnglish
Published Amsterdam Elsevier B.V 15.09.2007
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Abstract A particulate reinforced magnesium matrix composite fabricated by stir casting was extruded at 250 °C with an extrusion ratio of 12:1 and constant RAM speed of 15 mm/s. Extrusion of the composite causes large scale dynamic recrystallization resulting in a fine matrix microstructure. The reinforcing particles stimulate dynamic recrystallization, and dynamic recrystallization in the composite is sensitive to the particle content on a local scale. The particle distribution of the composite before and after extrusion was studied using a window technique. It is found that the segregation of particles in the as-cast composite is largely eliminated by extrusion and the particle distribution is significantly improved. Extrusion-induced damage to the reinforcement is observed in the extruded composites, and the particle fracture induced by extrusion is also sensitive to the particle content on a local scale.
AbstractList A particulate reinforced magnesium matrix composite fabricated by stir casting was extruded at 250 deg C with an extrusion ratio of 12:1 and constant RAM speed of 15mm/s. Extrusion of the composite causes large scale dynamic recrystallization resulting in a fine matrix microstructure. The reinforcing particles stimulate dynamic recrystallization, and dynamic recrystallization in the composite is sensitive to the particle content on a local scale. The particle distribution of the composite before and after extrusion was studied using a window technique. It is found that the segregation of particles in the as-cast composite is largely eliminated by extrusion and the particle distribution is significantly improved. Extrusion-induced damage to the reinforcement is observed in the extruded composites, and the particle fracture induced by extrusion is also sensitive to the particle content on a local scale.
A particulate reinforced magnesium matrix composite fabricated by stir casting was extruded at 250 °C with an extrusion ratio of 12:1 and constant RAM speed of 15 mm/s. Extrusion of the composite causes large scale dynamic recrystallization resulting in a fine matrix microstructure. The reinforcing particles stimulate dynamic recrystallization, and dynamic recrystallization in the composite is sensitive to the particle content on a local scale. The particle distribution of the composite before and after extrusion was studied using a window technique. It is found that the segregation of particles in the as-cast composite is largely eliminated by extrusion and the particle distribution is significantly improved. Extrusion-induced damage to the reinforcement is observed in the extruded composites, and the particle fracture induced by extrusion is also sensitive to the particle content on a local scale.
Author Peng, D.L.
Zheng, M.Y.
Wang, X.J.
Zhang, H.F.
Huang, W.X.
Gan, W.M.
Chang, H.
Wu, K.
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Issue 1
Keywords Extrusion
PSN
Magnesium matrix composite
Dynamic recrystallization
Particle fracture
Stir casting
Scanning electron microscopy
Metal matrix composite
Segregation
Particle motion
Rupture
Dynamical recrystallization
Composite material
Dispersion strengthened metal
Casting
Optical microscopy
Transmission electron microscopy
Magnesium alloy
Microstructure
Damaging
Language English
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Elsevier
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Snippet A particulate reinforced magnesium matrix composite fabricated by stir casting was extruded at 250 °C with an extrusion ratio of 12:1 and constant RAM speed of...
A particulate reinforced magnesium matrix composite fabricated by stir casting was extruded at 250 deg C with an extrusion ratio of 12:1 and constant RAM speed...
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StartPage 78
SubjectTerms Applied sciences
Cold working, work hardening; annealing, quenching, tempering, recovery, and recrystallization; textures
Cross-disciplinary physics: materials science; rheology
Dispersion hardening metals
Dynamic recrystallization
Exact sciences and technology
Extrusion
Fractures
Magnesium matrix composite
Materials science
Mechanical properties and methods of testing. Rheology. Fracture mechanics. Tribology
Metals. Metallurgy
Particle fracture
Physics
Powder metallurgy. Composite materials
Production techniques
PSN
Stir casting
Treatment of materials and its effects on microstructure and properties
Title Effect of hot extrusion on the microstructure of a particulate reinforced magnesium matrix composite
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