\u3cp\u3eThe need for personalised and smart products drives the development of structural electronics with mass-customisation capability. A number of challenges need to be overcome in order to address the potential of complete free form manufacturing of electronic devices. One key challenge is the integration of conductive structures and components into 3D printed devices by combining different materials and printing techniques that have nearly incompatible printing conditions. In this paper, several methods to integrate electronic circuits and components into a 3D printed structure are discussed. The functional performance of the resulting structures is described. Structural parts were manufactured with a stereolithography-based 3D printi...
A novel embedding process combining the use an ultrasonic solid-state welding technique coupled with...
Abstract 3D printing has seen much progress in recent decades with the introduction of new materials...
Nowadays, the interest in the additive manufacturing (AM) field is not only from a technological poi...
The need for personalised and smart products drives the development of structural electronics with m...
The need for personalised and smart products drives the development of structural electronics with m...
The need for personalised and smart products drives the development of structural electronics with m...
The need for personalised and smart products drives the development of structural electronics with m...
The need for personalised and smart products drives the development of structural electronics with m...
The need for personalised and smart products drives the development of structural electronics with m...
3D structural electronics is a new paradigm in fabricating electronics with high design complexity. ...
The ability to form arbitrary 3D structures provides the next level of complexity and a greater degr...
Recent research has focused on the fabrication freedom of 3D printing to not only create conceptual...
Recent research has focused on the fabrication freedom of 3D printing to not only create conceptual...
In business, the time required to shepherd a new product through the phases of concept, design, prot...
In business, the time required to shepherd a new product through the phases of concept, design, prot...
A novel embedding process combining the use an ultrasonic solid-state welding technique coupled with...
Abstract 3D printing has seen much progress in recent decades with the introduction of new materials...
Nowadays, the interest in the additive manufacturing (AM) field is not only from a technological poi...
The need for personalised and smart products drives the development of structural electronics with m...
The need for personalised and smart products drives the development of structural electronics with m...
The need for personalised and smart products drives the development of structural electronics with m...
The need for personalised and smart products drives the development of structural electronics with m...
The need for personalised and smart products drives the development of structural electronics with m...
The need for personalised and smart products drives the development of structural electronics with m...
3D structural electronics is a new paradigm in fabricating electronics with high design complexity. ...
The ability to form arbitrary 3D structures provides the next level of complexity and a greater degr...
Recent research has focused on the fabrication freedom of 3D printing to not only create conceptual...
Recent research has focused on the fabrication freedom of 3D printing to not only create conceptual...
In business, the time required to shepherd a new product through the phases of concept, design, prot...
In business, the time required to shepherd a new product through the phases of concept, design, prot...
A novel embedding process combining the use an ultrasonic solid-state welding technique coupled with...
Abstract 3D printing has seen much progress in recent decades with the introduction of new materials...
Nowadays, the interest in the additive manufacturing (AM) field is not only from a technological poi...