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Tungsten tetraboride, an inexpensive superhard material
by
Mohammadi, Reza
, Xie, Miao
, Lech, Andrew T
, Yeung, Michael T
, Kaner, Richard B
, Weaver, Beth E
, Tolbert, Sarah H
in
air
/ Borides
/ Boron
/ boron compounds
/ Bulk modulus
/ Diffraction
/ energy-dispersive X-ray analysis
/ Gravimetric analysis
/ Hardness
/ Materials
/ Materials science
/ Melting
/ Metals
/ Physical Sciences
/ powders
/ Rhenium
/ Solid solutions
/ Thermogravimetric analysis
/ thermogravimetry
/ Transition metals
/ Tungsten
/ X-ray diffraction
/ X-ray spectroscopy
2011
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Tungsten tetraboride, an inexpensive superhard material
by
Mohammadi, Reza
, Xie, Miao
, Lech, Andrew T
, Yeung, Michael T
, Kaner, Richard B
, Weaver, Beth E
, Tolbert, Sarah H
in
air
/ Borides
/ Boron
/ boron compounds
/ Bulk modulus
/ Diffraction
/ energy-dispersive X-ray analysis
/ Gravimetric analysis
/ Hardness
/ Materials
/ Materials science
/ Melting
/ Metals
/ Physical Sciences
/ powders
/ Rhenium
/ Solid solutions
/ Thermogravimetric analysis
/ thermogravimetry
/ Transition metals
/ Tungsten
/ X-ray diffraction
/ X-ray spectroscopy
2011
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Tungsten tetraboride, an inexpensive superhard material
by
Mohammadi, Reza
, Xie, Miao
, Lech, Andrew T
, Yeung, Michael T
, Kaner, Richard B
, Weaver, Beth E
, Tolbert, Sarah H
in
air
/ Borides
/ Boron
/ boron compounds
/ Bulk modulus
/ Diffraction
/ energy-dispersive X-ray analysis
/ Gravimetric analysis
/ Hardness
/ Materials
/ Materials science
/ Melting
/ Metals
/ Physical Sciences
/ powders
/ Rhenium
/ Solid solutions
/ Thermogravimetric analysis
/ thermogravimetry
/ Transition metals
/ Tungsten
/ X-ray diffraction
/ X-ray spectroscopy
2011
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Journal Article
Tungsten tetraboride, an inexpensive superhard material
2011
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Overview
Tungsten tetraboride (WBâ) is an interesting candidate as a less expensive member of the growing group of superhard transition metal borides. WBâ was successfully synthesized by arc melting from the elements. Characterization using powder X-ray diffraction (XRD) and energy-dispersive X-ray spectroscopy (EDX) indicates that the as-synthesized material is phase pure. The zero-pressure bulk modulus, as measured by high-pressure X-ray diffraction for WBâ, is 339 GPa. Mechanical testing using microindentation gives a Vickers hardness of 43.3 ± 2.9 GPa under an applied load of 0.49 N. Various ratios of rhenium were added to WBâ in an attempt to increase hardness. With the addition of 1 at.% Re, the Vickers hardness increased to approximately 50 GPa at 0.49 N. Powders of tungsten tetraboride with and without 1 at.% Re addition are thermally stable up to approximately 400 °C in air as measured by thermal gravimetric analysis.
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