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Discontinuous carbon fiber-reinforced thermoplastics (DCFRTP) are promising materials for the fabrication of complex parts.
We report fabrication of complex 3D channels using these molds with polydimethylsiloxane (PDMS) polymer.
This study provides a novel route for the fabrication of complex Mo parts.
Advancements in fabrication techniques have enabled fabrication of complex scaffolds with adjustable and controlled properties.
The fabrication of complex device structures often requires deposition of Indium tin oxide (ITO) thin films on temperature sensitive substrates.
Therefore, the fabrication of complex and heterogeneous tissues is considered as the next step of bioprinting and biofabrication techniques.
Fabrication of complex and multi-articulated mechanisms is often seen as a time consuming and demanding process.
This work represents our initial effort towards the fabrication of complex nanopatterns with automated scanning probe lithography (SPL).
RP technologies allow the design and fabrication of complex scaffold geometries with a fully interconnected pore network.
The microstructural design demonstrated here can be exploited in AM fabrication of complex components requiring challenging high-temperature mechanical performance.
Additive manufacture (AM) enables innovative structural design, including the fabrication of complex lattice structures with unique engineering characteristics.
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