In this paper we present our recent efforts to develop an in situ tensile test device for thermo-mechanical characterization of interfaces between single-walled carbon nanotubes (SWCNTs) and metals. For the mechanical tests, the chosen loading condition is a pull-out test. After summarizing results of maximum stresses calculated from molecular dynamics simulations and obtained from in situ scanning electron microscope experiments we outline the requirement for an in situ experimental method with atomic resolution to study the mechanics of SWCNT-metal interfaces in further detail. To this purpose, we designed, fabricated and characterized a silicon-based micromechanical test stage with a thermal actuator for pull-out tests inside a transmiss...
We have developed and tested the world’s smallest material testing system for the in situ mechanical...
Carbon nanotubes (CNTs) possess unique electrical, thermal, and mechanical properties which have led...
Ever since carbon nanotubes were discovered in 1991, they have been subjected to numerous tests to ...
This paper presents an in situ pull-out test device to characterize interfaces between single-walled...
In this paper we present results of our recent efforts to understand the mechanical interface behavi...
Abstract—In situ mechanical characterization of nanostruc-tures, such as carbon nanotubes and metall...
In this paper, we present our results of experimental and numerical pull-out tests on carbon nanotub...
In this paper we present results of our recent efforts to understand the mechanical interface behavi...
The need to characterize nanometer-scale materials and structures has grown tremendously in the past...
A new analytical model is developed for interpreting tensile loading data on "templated carbon ...
Vor dem Hintergrund zukünftiger Sensoren, basierend auf dem piezoresistiven Effekt von einwandigen K...
[[abstract]]A real-time and non-contact method using scanning electron microscopy is demonstrated fo...
In situ electron microscopy tensile tests of nanowires and carbon nanotubes performed using a MEMS-b...
AbstractWe present force-displacement data simulated with molecular dynamics of quasi-static displac...
This paper addresses the design and optimization of thermal actuators employed in a novel MEMS-base...
We have developed and tested the world’s smallest material testing system for the in situ mechanical...
Carbon nanotubes (CNTs) possess unique electrical, thermal, and mechanical properties which have led...
Ever since carbon nanotubes were discovered in 1991, they have been subjected to numerous tests to ...
This paper presents an in situ pull-out test device to characterize interfaces between single-walled...
In this paper we present results of our recent efforts to understand the mechanical interface behavi...
Abstract—In situ mechanical characterization of nanostruc-tures, such as carbon nanotubes and metall...
In this paper, we present our results of experimental and numerical pull-out tests on carbon nanotub...
In this paper we present results of our recent efforts to understand the mechanical interface behavi...
The need to characterize nanometer-scale materials and structures has grown tremendously in the past...
A new analytical model is developed for interpreting tensile loading data on "templated carbon ...
Vor dem Hintergrund zukünftiger Sensoren, basierend auf dem piezoresistiven Effekt von einwandigen K...
[[abstract]]A real-time and non-contact method using scanning electron microscopy is demonstrated fo...
In situ electron microscopy tensile tests of nanowires and carbon nanotubes performed using a MEMS-b...
AbstractWe present force-displacement data simulated with molecular dynamics of quasi-static displac...
This paper addresses the design and optimization of thermal actuators employed in a novel MEMS-base...
We have developed and tested the world’s smallest material testing system for the in situ mechanical...
Carbon nanotubes (CNTs) possess unique electrical, thermal, and mechanical properties which have led...
Ever since carbon nanotubes were discovered in 1991, they have been subjected to numerous tests to ...