© 2019 Elsevier Ltd. All rights reserved.A full mechanical characterisation of three types of 3-D printed lattice cores was performed to evaluate the feasibility of using additive manufacturing (AM) of lightweight polymer-based sandwich panels for structural applications. Effects of the shape of three selected lattice structures on the compression, shear and bending strength has been experimentally investigated. The specimens tested were manufactured with an open source fused filament fabrication-based 3-D printer. These sandwich structures considered had skins made of polypropylene (PP)-flax bonded to the polylactic acid (PLA) lattice structure core using bi-component epoxy adhesive. The PP-flax and the PLA core structures were tested sepa...
Sandwich panel structures are widely used in aerospace, marine, and automotive applications because ...
Sandwich panel structures are widely used in aerospace, marine, and automotive applications because ...
Sandwich panel structures are widely used in aerospace, marine, and automotive applications because ...
International audienceA full mechanical characterisation of three types of 3-D printed lattice cores...
A full mechanical characterisation of three types of 3-D printed lattice cores was performed to eval...
A full mechanical characterisation of three types of 3-D printed lattice cores was performed to eval...
Sandwich structures have picked up ubiquity in engineering applications due to its lightweight natur...
Sandwich panel structures are widely used in aerospace, marine, and automotive applications because ...
Sandwich panel structures are widely used in aerospace, marine, and automotive applications because ...
Sandwich panel structures are widely used in aerospace, marine, and automotive applications because ...
Sandwich structures are widely used due to their light weight, high specific strength, and high spec...
Lattice structures possess exceptional mechanical strength resulting in highly efficient load suppor...
Sandwich panel structures are widely used in aerospace, marine, and automotive applications because ...
Sandwich panel structures are widely used in aerospace, marine, and automotive applications because ...
Sandwich panel structures are widely used in aerospace, marine, and automotive applications because ...
Sandwich panel structures are widely used in aerospace, marine, and automotive applications because ...
Sandwich panel structures are widely used in aerospace, marine, and automotive applications because ...
Sandwich panel structures are widely used in aerospace, marine, and automotive applications because ...
International audienceA full mechanical characterisation of three types of 3-D printed lattice cores...
A full mechanical characterisation of three types of 3-D printed lattice cores was performed to eval...
A full mechanical characterisation of three types of 3-D printed lattice cores was performed to eval...
Sandwich structures have picked up ubiquity in engineering applications due to its lightweight natur...
Sandwich panel structures are widely used in aerospace, marine, and automotive applications because ...
Sandwich panel structures are widely used in aerospace, marine, and automotive applications because ...
Sandwich panel structures are widely used in aerospace, marine, and automotive applications because ...
Sandwich structures are widely used due to their light weight, high specific strength, and high spec...
Lattice structures possess exceptional mechanical strength resulting in highly efficient load suppor...
Sandwich panel structures are widely used in aerospace, marine, and automotive applications because ...
Sandwich panel structures are widely used in aerospace, marine, and automotive applications because ...
Sandwich panel structures are widely used in aerospace, marine, and automotive applications because ...
Sandwich panel structures are widely used in aerospace, marine, and automotive applications because ...
Sandwich panel structures are widely used in aerospace, marine, and automotive applications because ...
Sandwich panel structures are widely used in aerospace, marine, and automotive applications because ...