Showing posts with label nanotribology. Show all posts
Showing posts with label nanotribology. Show all posts

Tuesday, June 21, 2011

Nanoscratching & Nanotribology: Scratches

In some applications it is more interesting to look at the behavior of materials under shear force rather than normal force. In this case the nanoindentation probe can be used to form nanoscratches.

This image shows a series of nanoscratches across a region of a polished tooth section of composite structure. The scratches are more deep in the darker regions which were assumed to be softer as more material was removed from these regions upon polishing. It is thought that these harder regions might prevent fractures from propagating through the tooth region, allowing the tooth to remain functional after a crack. The lack of material piled up on the sides of the scratch indicates that the deformation if primarily fracture and not plastic in nature.

This is a very striking demonstration of nanoscratching. A single scratch was made on a polished tooth section in the region at the interface of the enamel and dentin. A very deep trough with pile-up due to plastic deformation is seen in the dentin, while there is a very shallow scratch with very little sign of plastic deformation in the enamel, consistent with fracture deformation.

Thanks to Dr. Greg Erickson, FSU Biology.

Nanoindentation & Nanotribology: Indents

The mechanial properties of surfaces are often different than those of bulk materials. A diamond probe can be used to perform nano-indentations of materials at known normal force in the range of 1 to 100 μN. Knowing the contact area of the nano-indenter and the normal indentation force one can determine a nano-hardness number.

In addition one can study the mode of deformation. This image shows a nano-indentation of glass with a normal force of roughly 10 μN. The pile-up on the side of the indentation is indicative of plastic deformation. These nano-indentations are generally performed in arrays of increasing normal force, or, as in this case, they can be placed at a region of interest. The nano-indentation probe itself is used to image after the indentation so the image quality is slightly reduced.