Future microrobotic applications require actuators that can generate a high actuation force in a limited volume. Up to now, little research has been performed on the development of pneumatic or hydraulic microactuators, although they offer great prospects in achieving high force densities. In addition, large actuation strokes and high actuation speeds can be achieved by these actuators. This paper describes a fabrication process for piston-cylinder pneumatic and hydraulic actuators based on etching techniques, UV-definable polymers, and low-temperature bonding. Prototype actuators with a piston area of 0.15 mm2 have been fabricated in order to validate the production process. These actuators achieve actuation forces of more than 0.1 N and s...
In order to improve the power density of microactuators, recent research focuses on the applicabilit...
AbstractCompliant pneumatic micro-actuators are interesting for applications requiring large strokes...
Recent research revealed that microactuators driven by pressurized fluids are able to generate high ...
Future microrobotic applications require actuators that can generate a high actuation force in a lim...
ABSTRACT Applications where a microsystem has to interface with the outside world are often face the...
To improve the force output of microactuators, this work focuses on actuators driven by pressurized ...
In order to improve the power density of microactuators, recent research focuses on the applicabilit...
In order to improve the power density of microactuators, recent research focuses on the applicabilit...
The development of MEMS actuators is rapidly evolving and continuously new progress in terms of effi...
The development of MEMS actuators is rapidly evolving and continuously new progress in terms of effi...
Future microrobotic applications require actuators that can generate a high actuation force and stro...
Introduction: Recently 3D printing has received an increasing attention on the area of actuators. It...
Although 3D printing has the potential to provide greater customization and to reduce the costs of c...
Objective: The objective of this study was to develop and evaluate a 3D printed hydraulic actuation ...
Compliant pneumatic micro-actuators are interesting for applications requiring large strokes and for...
In order to improve the power density of microactuators, recent research focuses on the applicabilit...
AbstractCompliant pneumatic micro-actuators are interesting for applications requiring large strokes...
Recent research revealed that microactuators driven by pressurized fluids are able to generate high ...
Future microrobotic applications require actuators that can generate a high actuation force in a lim...
ABSTRACT Applications where a microsystem has to interface with the outside world are often face the...
To improve the force output of microactuators, this work focuses on actuators driven by pressurized ...
In order to improve the power density of microactuators, recent research focuses on the applicabilit...
In order to improve the power density of microactuators, recent research focuses on the applicabilit...
The development of MEMS actuators is rapidly evolving and continuously new progress in terms of effi...
The development of MEMS actuators is rapidly evolving and continuously new progress in terms of effi...
Future microrobotic applications require actuators that can generate a high actuation force and stro...
Introduction: Recently 3D printing has received an increasing attention on the area of actuators. It...
Although 3D printing has the potential to provide greater customization and to reduce the costs of c...
Objective: The objective of this study was to develop and evaluate a 3D printed hydraulic actuation ...
Compliant pneumatic micro-actuators are interesting for applications requiring large strokes and for...
In order to improve the power density of microactuators, recent research focuses on the applicabilit...
AbstractCompliant pneumatic micro-actuators are interesting for applications requiring large strokes...
Recent research revealed that microactuators driven by pressurized fluids are able to generate high ...