Lattice structures have a number of applications in aerospace, automobile and defense industries because of their high specific strength and stiffness. Additive manufacturing technology has allowed realizing various regular morphological cellularic structures with a combination of materials. In this study, the compressive performance of modified Kagome unit cell namely strut reinforced Kagome (SRK) of acrylonitrile butadiene styrene (ABS) ABSplus™ fabricated by fused deposition modeling (FDM) is investigated. The effect of the change in the geometric parameters such as diameter and height on the compressive properties is studied. The failure modes under uniaxial compression are simulated with the finite element simulations and the c...
Acrylonitrile–butadiene–styrene (ABS) is commonly used material in the fused deposition modeling (FD...
This paper discusses the behavior of the three-dimensional (3D) printed polymer lattice core structu...
With additive manufacturing increasingly being embraced in the area of sports technology, focus has ...
Lattice structures find immense application in lightweight structures for their high specific stren...
Additively manufactured lattice structures are finding wider applications as core materials because ...
Lightweight, high strength and high energy absorption material are of interest in aerospace, automob...
Cellular lattice structures have important applications in aerospace, automobile and defense industr...
Ultralight weight structures are today’s essential need in aerospace, marine and automotive industri...
Cellular lattice structures have important applications in aerospace, automobile and defense industr...
Sandwich structures with lattice cores exhibit high specific bending strength and stiffness when com...
Lattice structure is increasingly popular for application in aircrafts, motor-vehicles and bone impl...
This study investigated the effect of strut diameter size of fused deposition modelling (FDM) printe...
This Final Year Project (FYP) explores compression testing on kagome and Strut-Reinforced Kagome uni...
Lattice structure is a lightweight material that can be produced using the cutting edge additive lay...
To enhance the compressive properties of lattice structures, this paper proposes a fused deposition ...
Acrylonitrile–butadiene–styrene (ABS) is commonly used material in the fused deposition modeling (FD...
This paper discusses the behavior of the three-dimensional (3D) printed polymer lattice core structu...
With additive manufacturing increasingly being embraced in the area of sports technology, focus has ...
Lattice structures find immense application in lightweight structures for their high specific stren...
Additively manufactured lattice structures are finding wider applications as core materials because ...
Lightweight, high strength and high energy absorption material are of interest in aerospace, automob...
Cellular lattice structures have important applications in aerospace, automobile and defense industr...
Ultralight weight structures are today’s essential need in aerospace, marine and automotive industri...
Cellular lattice structures have important applications in aerospace, automobile and defense industr...
Sandwich structures with lattice cores exhibit high specific bending strength and stiffness when com...
Lattice structure is increasingly popular for application in aircrafts, motor-vehicles and bone impl...
This study investigated the effect of strut diameter size of fused deposition modelling (FDM) printe...
This Final Year Project (FYP) explores compression testing on kagome and Strut-Reinforced Kagome uni...
Lattice structure is a lightweight material that can be produced using the cutting edge additive lay...
To enhance the compressive properties of lattice structures, this paper proposes a fused deposition ...
Acrylonitrile–butadiene–styrene (ABS) is commonly used material in the fused deposition modeling (FD...
This paper discusses the behavior of the three-dimensional (3D) printed polymer lattice core structu...
With additive manufacturing increasingly being embraced in the area of sports technology, focus has ...