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Gravier
Robert A. Gravier, Edina, MN US
| Patent application number | Description | Published |
|---|---|---|
| 20090000234 | CONCRETE BLOCKS WITH NON-GEOMETRIC FACE SURFACES - Concrete blocks having face surfaces embossed with non-geometric patterns. The blocks may be of various sizes with some having faces surfaces with lengths and heights that are multiples other blocks. The blocks may have multiple sizes, colors or combinations of colors, face surface patterns, and set back configurations. Also, walls formed from such blocks and mold boxes usable in the formation of the blocks are included. | 01-01-2009 |
Sebastien Gravier, Frahier FR
| Patent application number | Description | Published |
|---|---|---|
| 20080196794 | BULK METALLIC GLASS/METAL COMPOSITES PRODUCED BY CODEFORMATION - The invention is related to bulk metallic glass/metal alloys, a method for their production and their uses. Especially, the invention is concerned with composite materials resulting from the co-deformation of a bulk metallic glass and a metal. | 08-21-2008 |
Sébastien Gravier, Vizille FR
| Patent application number | Description | Published |
|---|---|---|
| 20100057381 | IMPOSING AND DETERMINING STRESS IN SUB-MICRON SAMPLES - This invention provides a method and device for imposing and determining mechanical stress and/or strain, on micro-scale and nano-scale beams, films or multi-layers of materials such as metallic materials, polymer materials, ceramic materials, carbon-based materials and silicon-based materials using a set of micro- or nano-machines. The present invention also provides methods to derive and modify various properties or state of such nano- or microstructures, among others mechanical properties, and to measure the external stimulus that they are subjected to. | 03-04-2010 |
Sébastien Gravier, Vizille FR
| Patent application number | Description | Published |
|---|---|---|
| 20100057381 | IMPOSING AND DETERMINING STRESS IN SUB-MICRON SAMPLES - This invention provides a method and device for imposing and determining mechanical stress and/or strain, on micro-scale and nano-scale beams, films or multi-layers of materials such as metallic materials, polymer materials, ceramic materials, carbon-based materials and silicon-based materials using a set of micro- or nano-machines. The present invention also provides methods to derive and modify various properties or state of such nano- or microstructures, among others mechanical properties, and to measure the external stimulus that they are subjected to. | 03-04-2010 |
