Nowadays quick fabrication of mechanical spare and replacement has become more and more necessary. This is the main reason why rapid prototyping and additive manufacturing has spread in several fields, including sensor manufacturing. In this work, we propose a Fused-Deposition-Fabricated Electro-Mechanical System (FDFEMS) accelerometer sensor. As the name suggests, it was implemented with Fused Deposition Modelling (FDM) additive manufacturing and material switching capabilities of the E3D ToolChanger motion platform. Fabrication process is based on insulating plastic to implement the mechanical structure of the device, conducting plastic to manufacture the actual differential capacitance sensing element and soluble material for sacrificial...
In this thesis several advances are made to the emerging field of 3D printed mechanical sensors. Tec...
This paper presents a new approach for the fabrication of a three-axis capacitive MEMS accelerometer...
3D-printing techniques are attracting a lot of interest in the sensors community as promising fabric...
In this work, additive manufacturing and wet metallization process are combined to fabricate three p...
In this paper, the innovative fabrication process for electro-mechanical sensors, born from the smar...
This work shows the feasibility of fully Fused-Deposition-Modeling (FDM) printed capacitive and resi...
In this master's project, the design for the additive manufacturing of a joystick has been created t...
In this work the design, fabrication and testing of the first 3D-printed and wet metallized capaciti...
The objective of this work is to demonstrate how the flexure properties of ABS plastic in a 3D print...
3D printing has gained popularity in recency from the benefits of reducing material waste and its re...
AbstractThis paper presents a three-axis capacitive MEMS accelerometer implemented by fabricating la...
In the last few years, additive manufacturing has been investigated as a promising production method...
This paper presents a new fabrication approach and a design for the fabrication of a three-axis capa...
The aim of the work is the realization and modelling of a simple capacitive displacement sensor with...
This paper presents a three axis capacitive MEMS accelerometer including individual lateral and vert...
In this thesis several advances are made to the emerging field of 3D printed mechanical sensors. Tec...
This paper presents a new approach for the fabrication of a three-axis capacitive MEMS accelerometer...
3D-printing techniques are attracting a lot of interest in the sensors community as promising fabric...
In this work, additive manufacturing and wet metallization process are combined to fabricate three p...
In this paper, the innovative fabrication process for electro-mechanical sensors, born from the smar...
This work shows the feasibility of fully Fused-Deposition-Modeling (FDM) printed capacitive and resi...
In this master's project, the design for the additive manufacturing of a joystick has been created t...
In this work the design, fabrication and testing of the first 3D-printed and wet metallized capaciti...
The objective of this work is to demonstrate how the flexure properties of ABS plastic in a 3D print...
3D printing has gained popularity in recency from the benefits of reducing material waste and its re...
AbstractThis paper presents a three-axis capacitive MEMS accelerometer implemented by fabricating la...
In the last few years, additive manufacturing has been investigated as a promising production method...
This paper presents a new fabrication approach and a design for the fabrication of a three-axis capa...
The aim of the work is the realization and modelling of a simple capacitive displacement sensor with...
This paper presents a three axis capacitive MEMS accelerometer including individual lateral and vert...
In this thesis several advances are made to the emerging field of 3D printed mechanical sensors. Tec...
This paper presents a new approach for the fabrication of a three-axis capacitive MEMS accelerometer...
3D-printing techniques are attracting a lot of interest in the sensors community as promising fabric...