Investigation of mechanical properties of tubular aluminum foams
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Arif Uzun
, Halil Karakoc , Ugur Gokmen , Hanifi Cinici und Mehmet Turker
Abstract
This manuscript focuses on the mechanical behavior under compressive and bending loadings of tubular aluminum foams. The tubular structures were manufactured using the powder metallurgy technique. Tubular aluminum foams were fabricated by heating foamable precursor materials above their melting temperature in a mould. The influence of important parameters such as wall thickness and density of foam on the mechanical properties was investigated. It was found that the 6 mm thick specimen showed a lower collapse strength than the thicker 9 mm specimen. Despite the decrease in densities of the samples, the collapse strength increased with the increase in wall thickness. The reduction of approximately 33% in wall thickness (from t = 9 mm to 6 mm) decreased the bending performance of the tubular aluminum foams by approximately 50%.
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© 2016, Carl Hanser Verlag, München
Artikel in diesem Heft
- Contents
- Contents
- Original Contributions
- In-situ annealing and computation study of cube texture development in a commercial aluminum alloy
- Dislocation dynamics modeling of plastic deformation in single-crystal copper at high strain rates
- Investigation of mechanical properties of tubular aluminum foams
- Dependence of microstructure, microhardness, tensile strength and electrical resistivity on growth rates for directionally solidified Zn-Al-Sb eutectic alloy
- Effects of temperature on fatigue limits and fracture morphologies of 40Cr steels formed by warm extrusion
- Synthesis of an oxidation-resistant SiC coating on graphite and modeling analysis with thermodynamics calculations
- Improved corrosion inhibition of 3-amino-1,2,4-triazole on mild steel electrode in HCl solution using surface nanocrystallization
- Chunky graphite formation in ductile cast irons: effect of silicon, carbon and rare earths
- Fabrication of 3D porous MoS2–GO nanocomposite monolith as a promising adsorbent
- Short Communications
- Two-stage method of synthesis of ultrafine powder of α-phase metallic cobalt
- Developing a multifunctional bio-ceramics composite based on β-tricalcium phosphate working as a single carrier for calcium supplement and low-dose drugs
- DGM News
- DGM News
Artikel in diesem Heft
- Contents
- Contents
- Original Contributions
- In-situ annealing and computation study of cube texture development in a commercial aluminum alloy
- Dislocation dynamics modeling of plastic deformation in single-crystal copper at high strain rates
- Investigation of mechanical properties of tubular aluminum foams
- Dependence of microstructure, microhardness, tensile strength and electrical resistivity on growth rates for directionally solidified Zn-Al-Sb eutectic alloy
- Effects of temperature on fatigue limits and fracture morphologies of 40Cr steels formed by warm extrusion
- Synthesis of an oxidation-resistant SiC coating on graphite and modeling analysis with thermodynamics calculations
- Improved corrosion inhibition of 3-amino-1,2,4-triazole on mild steel electrode in HCl solution using surface nanocrystallization
- Chunky graphite formation in ductile cast irons: effect of silicon, carbon and rare earths
- Fabrication of 3D porous MoS2–GO nanocomposite monolith as a promising adsorbent
- Short Communications
- Two-stage method of synthesis of ultrafine powder of α-phase metallic cobalt
- Developing a multifunctional bio-ceramics composite based on β-tricalcium phosphate working as a single carrier for calcium supplement and low-dose drugs
- DGM News
- DGM News