Nanomechanical experiments on 1-D and 2-D materials are typically conducted at quasi-static strain rates of 10−4/s, while their analysis using molecular dynamic (MD) simulations are conducted at ultra-high strain rates of 106/s and above. This large order of magnitude difference in the strain rates prevents a direct one-on-one comparison between experiments and simulations. In order to close this gap in strain rates, nanoscale actuation/sensing options were explored to increase the experimental strain rates. Using a combination of COMSOL multiphysics finite element simulations and experiments, it is shown that thermal actuation, which uses structural expansion due to Joule heating, is capable of executing uniaxial nanomechanical testing up ...
The mechanical testing of micro-electro-mechanical systems (MEMS) and nano-electro-mechanical system...
The authors thank the UK Engineering and Physical Sciences Research Council and the Max Planck Socie...
This paper presents the design and simulation of a novel MEMS device enabling the investigation of t...
Nanomechanical experiments on 1-D and 2-D materials are typically conducted at quasi-static strain r...
Nanoindentation is typically confined to quasi-static strain rates of testing. This poster presents ...
In-situ nanomechanical testing is commonly used to probe surface mechanical properties of bulk mater...
The design, fabrication, and characterization of a microelectromechanical systems (MEMS) stress-stra...
Abstract—This paper presents fabrication, characterization, and modeling of micro/nanoelectromechani...
In the first part of the talk, I will present two recently developed platforms for high temperature ...
Recent advances in electronics have enabled nanomechanical measurements with very low noise levels a...
This work presents development of a comprehensive electrical equivalent model for thermally actuated...
The authors observed resonances from multiple vibrational modes of individual silicon-carbide-based ...
The role of piezoelectric actuators in application at micro and nano scale has been growing over the...
This thesis describes new ways of operating high-frequency nanomechanical resonators and using them ...
Nanotechnology offers great promise for the development of nanodevices. Hence it becomes important t...
The mechanical testing of micro-electro-mechanical systems (MEMS) and nano-electro-mechanical system...
The authors thank the UK Engineering and Physical Sciences Research Council and the Max Planck Socie...
This paper presents the design and simulation of a novel MEMS device enabling the investigation of t...
Nanomechanical experiments on 1-D and 2-D materials are typically conducted at quasi-static strain r...
Nanoindentation is typically confined to quasi-static strain rates of testing. This poster presents ...
In-situ nanomechanical testing is commonly used to probe surface mechanical properties of bulk mater...
The design, fabrication, and characterization of a microelectromechanical systems (MEMS) stress-stra...
Abstract—This paper presents fabrication, characterization, and modeling of micro/nanoelectromechani...
In the first part of the talk, I will present two recently developed platforms for high temperature ...
Recent advances in electronics have enabled nanomechanical measurements with very low noise levels a...
This work presents development of a comprehensive electrical equivalent model for thermally actuated...
The authors observed resonances from multiple vibrational modes of individual silicon-carbide-based ...
The role of piezoelectric actuators in application at micro and nano scale has been growing over the...
This thesis describes new ways of operating high-frequency nanomechanical resonators and using them ...
Nanotechnology offers great promise for the development of nanodevices. Hence it becomes important t...
The mechanical testing of micro-electro-mechanical systems (MEMS) and nano-electro-mechanical system...
The authors thank the UK Engineering and Physical Sciences Research Council and the Max Planck Socie...
This paper presents the design and simulation of a novel MEMS device enabling the investigation of t...