Published July 2009 | Version v1
Journal article

The Effect of Toluene Solution on the Hydrogen Absorption of the Mg-Ti Alloy Prepared by Synthetic Alloying

  • 1. 1Center for Nuclear Fuel Technology, BATAN Kawasan Puspiptek, Serpong, Tangerang 15314, Banten, Indonesia (Indonesia)
  • 2. 2 Center for Nuclear Industry Materials Technology, BATAN Kawasan Puspiptek, Serpong, Tangerang 15314, Banten, Indonesia (Indonesia)

Description

The synthesis and characterization of the Mg-Ti alloy have been carried out through a mechanical alloying technique under toluene solution. The Mg and Ti powders are milled for 10, 20, and 30 h in a high energy ball mill. The milled alloys are then hydrided at a temperature of 300 oC in order to investigate the possibility used for hydrogen storage materials. The refinement analyses of the x-ray diffraction patterns show that mechanical alloying of the Mg-Ti powders under toluene solution results in the formation of the TiH2 and Mg2Ti phases. Quantitative analyses indicate that the mass fractions of the TiH2 and Mg2Ti phases are 62.90 % and 30.60 %, while the value for Mg and Ti amount to 2.6 wt% and 1.25 wt%. On hydriding at a temperature of 300 oC, the milled powders are transformed into Mg2TiH4, TiH2 and -MgH2 phases with the mass fractions of 25.48 wt%, 64.0 wt%, and 10.52 wt%, respectively. Microstructure analyses show that before milling the shape of particle is mostly a ball shape, after 30 h of milling the shape of particles changes into polygonal shape, and upon hydriding the shape of particles changes from a polygonal shape into an irregular one. The final composition of the specimen after hydriding exhibits that Mg-Ti alloy can be promoted as a hydrogen storage material (author)

Additional details

Publishing Information

Journal Title
Atom Indonesia
Journal Volume
35
Journal Issue
2
Journal Page Range
p. 127-136
ISSN
0126-1568
CODEN
ATINDD

Optional Information

Notes
20 refs.; 3 tab.; 7 figs.