Classical methods of material testing become extremely complicated or impossible at micro-/nanoscale. At the same time, depth-sensing indentation (DSI) can be applied without much change at various length scales. However, interpretation of the DSI data needs to be done carefully, as length-scale dependent effects, such as adhesion, should be taken into account. This review paper is focused on different DSI approaches and factors that can lead to erroneous results, if conventional DSI methods are used for micro-/nanomechanical testing, or testing soft materials. We also review our recent advances in the development of a method that intrinsically takes adhesion effects in DSI into account: the Borodich–Galanov (BG) method, and its extended va...
Fundamental relations for depth-sensing nanoindentation are derived for indenters of various shapes ...
INST: L_200The depth-sensing indentation technique is a versatile experimental method, which allows ...
An overview of development of indentation techniques and connections between contact mechanics and m...
Classical methods of material testing become extremely complicated or impossible at micro-/nanoscale...
The term ‘biological material’ includes many meanings, and here it means materials that constitute l...
Depth-sensing indentation experiments are a very important tool for estimating mechanical properties...
The depth-sensing indentation (DSI) is currently one of the main experimental techniques for studyin...
Depth sensing indentations are indentation experiments in which the load and the displace-ment of a ...
Nowadays many indentation techniques are being commonly employed for determining some mechanical pro...
Abstract A biomaterial is a material used and adapted for medical applications. In order to extend ...
Nanoindentation techniques provide a unique opportunity to obtain mechanical properties of materials...
Characterization of the mechanical and surface properties of soft materials is important in a number...
Nanoindentation is a popular experimental technique for characterization of the mechanical propertie...
Nanoindentation is ideal for the characterization of inhomogeneous biological materials. However, th...
This book presents a comprehensive and unifying approach to analytical identification of material pr...
Fundamental relations for depth-sensing nanoindentation are derived for indenters of various shapes ...
INST: L_200The depth-sensing indentation technique is a versatile experimental method, which allows ...
An overview of development of indentation techniques and connections between contact mechanics and m...
Classical methods of material testing become extremely complicated or impossible at micro-/nanoscale...
The term ‘biological material’ includes many meanings, and here it means materials that constitute l...
Depth-sensing indentation experiments are a very important tool for estimating mechanical properties...
The depth-sensing indentation (DSI) is currently one of the main experimental techniques for studyin...
Depth sensing indentations are indentation experiments in which the load and the displace-ment of a ...
Nowadays many indentation techniques are being commonly employed for determining some mechanical pro...
Abstract A biomaterial is a material used and adapted for medical applications. In order to extend ...
Nanoindentation techniques provide a unique opportunity to obtain mechanical properties of materials...
Characterization of the mechanical and surface properties of soft materials is important in a number...
Nanoindentation is a popular experimental technique for characterization of the mechanical propertie...
Nanoindentation is ideal for the characterization of inhomogeneous biological materials. However, th...
This book presents a comprehensive and unifying approach to analytical identification of material pr...
Fundamental relations for depth-sensing nanoindentation are derived for indenters of various shapes ...
INST: L_200The depth-sensing indentation technique is a versatile experimental method, which allows ...
An overview of development of indentation techniques and connections between contact mechanics and m...