The compressive strength of 99.999% pure aluminum as a function of pressure to 215 GPa has been determined from the linewidth analysis of high-pressure x-ray diffraction patterns recorded with beveled-diamond anvil cell. The strength is found to increase linearly from 0.3(1) GPa at zero pressure to 5.0(2) GPa at 200 GPa. The data to 55 GPa with flat anvil diamond cell suggest that the strength of 99.999% pure aluminum increases from 0.21(8) GPa at zero pressure to 1.1(1) GPa at 55 GPa and the extrapolated strength at 200 GPa is 3.3(4). Significantly larger strength obtained with beveled-diamond anvil cell most likely arises due to larger radial stress gradients than in the case of flat anvils. The strength of aluminum is compared with those...
The elasticity and plasticity of materials at high pressure are of great importance for the fundamen...
The analysis of the diffraction data under nonhydrostatic stress condition created in a diamond anvi...
Samples of VC0:85 sandwiched between aluminum disks were compressed in a diamond anvil cell and X-ra...
The compressive strength of 99.999% pure aluminum as a function of pressure to 215 GPa has been dete...
X-ray diffraction patterns from platinum foil 300 nm grain size have been recorded up to 330 GPa...
International audienceOver the past 60 years, the diamond anvil cell (DAC) has been developed into a...
Two gold powder samples, one with average crystallite size of x2248;30 nm (n-Au) and another with x2...
The experimental setups based on the principle of opposed anvils have been extensively used in x-ray...
Research at high pressures has revealed that the elemental metals, most of which have simple crysta...
The diamond anvil cell (DAC) can be used to compress samples to a few megabars, and the use of synch...
Helium is commonly used as a pressure transmitting medium to render the sample pressure hydrostatic ...
During recent decades the number of high-pressure crystallographic studies has rapidly increased. Th...
The diamond anvil cell (DAC) can be used to compress samples to a few megabars, and the use of synch...
Hydrostaticity under high pressure of several materials from solid, fluid to gas, which are widely u...
Abstract. Strength properties of materials under static and dynamic loading are essential quantities...
The elasticity and plasticity of materials at high pressure are of great importance for the fundamen...
The analysis of the diffraction data under nonhydrostatic stress condition created in a diamond anvi...
Samples of VC0:85 sandwiched between aluminum disks were compressed in a diamond anvil cell and X-ra...
The compressive strength of 99.999% pure aluminum as a function of pressure to 215 GPa has been dete...
X-ray diffraction patterns from platinum foil 300 nm grain size have been recorded up to 330 GPa...
International audienceOver the past 60 years, the diamond anvil cell (DAC) has been developed into a...
Two gold powder samples, one with average crystallite size of x2248;30 nm (n-Au) and another with x2...
The experimental setups based on the principle of opposed anvils have been extensively used in x-ray...
Research at high pressures has revealed that the elemental metals, most of which have simple crysta...
The diamond anvil cell (DAC) can be used to compress samples to a few megabars, and the use of synch...
Helium is commonly used as a pressure transmitting medium to render the sample pressure hydrostatic ...
During recent decades the number of high-pressure crystallographic studies has rapidly increased. Th...
The diamond anvil cell (DAC) can be used to compress samples to a few megabars, and the use of synch...
Hydrostaticity under high pressure of several materials from solid, fluid to gas, which are widely u...
Abstract. Strength properties of materials under static and dynamic loading are essential quantities...
The elasticity and plasticity of materials at high pressure are of great importance for the fundamen...
The analysis of the diffraction data under nonhydrostatic stress condition created in a diamond anvi...
Samples of VC0:85 sandwiched between aluminum disks were compressed in a diamond anvil cell and X-ra...