This article reports research on the development and implementation of new methods for structurally integrated and recyclable polymer based electronic products via multi-head fused deposition modelling (FDM) 3D printing. The focus of this research is to propose an efficient FDM-3D printing process utilising multiple filaments with no interruption of the process to ensure the multi-material electronic product achieved is structurally integrated. Such research is an attempt towards development of recyclable rigid electronic structures via multi-material 3D printing, i.e., multiple conductive nanomaterial embedded thermoplastic and non-conductive thermoplastic layers (in coil forms, herein). Six radio frequency identification (RFID) tag coil g...
The 3 dimensional printing (3DP), called to additive manufacturing (AM) or rapid prototyping (RP), i...
Additive manufacturing, or three-dimensional (3D) printing, offers a unique solution for fabricating...
Fused Deposition Modeling (FDM) 3D printing is an additive manufacturing technique used to fabricate...
Fused deposition modeling (FDM) is limited by the availability of application specific functional ma...
The rise of 3D printing technology, with fused deposition modeling as one of the simplest and most w...
Many of today\u27s high-tech products are approaching their technological limits. For example, the m...
This paper aims to address current limitations of 3D printed conductive materials through the develo...
In this work, three-dimensional (3D) printing system based on fused deposition modeling (FDM) is use...
The 3 dimensional printing (3DP), called to additive manufacturing (AM) or rapid prototyping (RP), i...
Conducting polymers (CPs) have been attracting great attention in the development of (bio)electronic...
Abstract Three‐dimensional (3D) printing has received extensive attention due to its unique multidim...
ABSTRACT: The utilization of 3D printing of highly conductive (σ ≈ 2350 S m−1) polymer composite str...
Conductive Polymer Composites (CPCs) have recently gained an extensive scientific interest as feedst...
The 3 dimensional printing (3DP), called to additive manufacturing (AM) or rapid prototyping (RP), i...
Additive manufacturing, or three-dimensional (3D) printing, offers a unique solution for fabricating...
Fused Deposition Modeling (FDM) 3D printing is an additive manufacturing technique used to fabricate...
Fused deposition modeling (FDM) is limited by the availability of application specific functional ma...
The rise of 3D printing technology, with fused deposition modeling as one of the simplest and most w...
Many of today\u27s high-tech products are approaching their technological limits. For example, the m...
This paper aims to address current limitations of 3D printed conductive materials through the develo...
In this work, three-dimensional (3D) printing system based on fused deposition modeling (FDM) is use...
The 3 dimensional printing (3DP), called to additive manufacturing (AM) or rapid prototyping (RP), i...
Conducting polymers (CPs) have been attracting great attention in the development of (bio)electronic...
Abstract Three‐dimensional (3D) printing has received extensive attention due to its unique multidim...
ABSTRACT: The utilization of 3D printing of highly conductive (σ ≈ 2350 S m−1) polymer composite str...
Conductive Polymer Composites (CPCs) have recently gained an extensive scientific interest as feedst...
The 3 dimensional printing (3DP), called to additive manufacturing (AM) or rapid prototyping (RP), i...
Additive manufacturing, or three-dimensional (3D) printing, offers a unique solution for fabricating...
Fused Deposition Modeling (FDM) 3D printing is an additive manufacturing technique used to fabricate...