Current developments and trends in microelectronics are focused on thin layers and novel materials. This leads to application of different test and measurement methods, which are capable to measure basic mechanical properties of such materials on micro-scale and nano-scale. This paper focuses on application of the nanoindentation technique. It is one of the most common method for investigating the mechanical material properties (especially thin layers). In order to extract the basic elastic and elasto-plastic mechanical properties the numerical optimization algorithms were used as a support for the tests in combination with the FE-model of the nanoindentation process
A viable approach to obtain mechanical properties such as Young’s modulus and hardness, is testing o...
Nanoindentation technique is commonly used to characterize the mechanical properties of thin films. ...
International audienceThis work presents an approach to simultaneously identify reliableelasto-plast...
Current developments and trends in microelectronics are focused on thin layers and novel materials. ...
Current developments and trends in microelectronics are focused on thin layers and novel materials. ...
One of the major topics in novel microelectronics are thin film materials - especially their mechani...
Nanoindentation is one of the most known method for investigating the properties of thin films. The ...
A deconvolution method that combines nanoindentation testing with finite element analysis was develo...
Obtaining material data for thin metal layers is a mayor issue in the reliability assessment of micr...
The mechanical properties of implanted layers and thin films on dissimilar substrates are difficult ...
Nanoindentation technique is commonly used to characterize nanomechanical properties of micro- and n...
The nanoindentation experiment is an established technique for the determination of Hardness and You...
We present a methodology based on finite-element modeling of nanoindentation data to extract reliabl...
Thin solid films were extensively used in the making of solar cells, cutting tools, magnetic recordi...
Nanoindentation is a widely recognized method for characterizing the mechanical properties of thin f...
A viable approach to obtain mechanical properties such as Young’s modulus and hardness, is testing o...
Nanoindentation technique is commonly used to characterize the mechanical properties of thin films. ...
International audienceThis work presents an approach to simultaneously identify reliableelasto-plast...
Current developments and trends in microelectronics are focused on thin layers and novel materials. ...
Current developments and trends in microelectronics are focused on thin layers and novel materials. ...
One of the major topics in novel microelectronics are thin film materials - especially their mechani...
Nanoindentation is one of the most known method for investigating the properties of thin films. The ...
A deconvolution method that combines nanoindentation testing with finite element analysis was develo...
Obtaining material data for thin metal layers is a mayor issue in the reliability assessment of micr...
The mechanical properties of implanted layers and thin films on dissimilar substrates are difficult ...
Nanoindentation technique is commonly used to characterize nanomechanical properties of micro- and n...
The nanoindentation experiment is an established technique for the determination of Hardness and You...
We present a methodology based on finite-element modeling of nanoindentation data to extract reliabl...
Thin solid films were extensively used in the making of solar cells, cutting tools, magnetic recordi...
Nanoindentation is a widely recognized method for characterizing the mechanical properties of thin f...
A viable approach to obtain mechanical properties such as Young’s modulus and hardness, is testing o...
Nanoindentation technique is commonly used to characterize the mechanical properties of thin films. ...
International audienceThis work presents an approach to simultaneously identify reliableelasto-plast...