To better understand the impact of complex structure on mechanical properties in additively manufactured ceramics, truss structures were 3D printed in preceramic polymer and mechanically evaluated in the pyrolyzed SiOC state. Specimens were printed using digital light processing with a siloxane polymer resin blend. Four different designs were printed: two bending-dominant Kelvin cell structures, a stretching-dominant octet structure, and a mixture of the two with geometries chosen for equivalent stiffness. Mechanical characterization was done at multiple length scales: uniaxial compression to evaluate the entire truss structure, and three-point flexure to assess individual beam elements. After pyrolysis, it was found that truss designs exhi...
Sandwich structures are widely used due to their light weight, high specific strength, and high spec...
In recent years, the advancement in additive manufacturing have enable the fabrication of complex la...
This paper focuses on the compression behavior of additively manufactured or three-dimensional print...
To better understand the impact of complex structure on mechanical properties in additively manufact...
To better understand the impact of complex structure on mechanical properties in additively manufact...
Mechanical properties of 3D printed ceramics with structural advantage were investigated. Three str...
Cellular materials, often called lattice materials, are increasingly receiving attention for their u...
The current study investigates the performance of Additive Manufactured (AM) silica (SiO2) scaffolds...
Additive manufacturing enables the exploration of process-structure-property relationships in cerami...
Natural porous materials adjust their resulting mechanical properties by the optimal use of matter a...
The need for high-performance and lightweight materials which have superior mechanical performance h...
This research focuses on the compression and tensile behavior of three-dimensional printed polymer l...
This paper focuses on the compression behavior of additively manufactured or three-dimensional print...
Sandwich structures are widely used due to their light weight, high specific strength, and high spec...
In recent years, the advancement in additive manufacturing have enable the fabrication of complex la...
This paper focuses on the compression behavior of additively manufactured or three-dimensional print...
To better understand the impact of complex structure on mechanical properties in additively manufact...
To better understand the impact of complex structure on mechanical properties in additively manufact...
Mechanical properties of 3D printed ceramics with structural advantage were investigated. Three str...
Cellular materials, often called lattice materials, are increasingly receiving attention for their u...
The current study investigates the performance of Additive Manufactured (AM) silica (SiO2) scaffolds...
Additive manufacturing enables the exploration of process-structure-property relationships in cerami...
Natural porous materials adjust their resulting mechanical properties by the optimal use of matter a...
The need for high-performance and lightweight materials which have superior mechanical performance h...
This research focuses on the compression and tensile behavior of three-dimensional printed polymer l...
This paper focuses on the compression behavior of additively manufactured or three-dimensional print...
Sandwich structures are widely used due to their light weight, high specific strength, and high spec...
In recent years, the advancement in additive manufacturing have enable the fabrication of complex la...
This paper focuses on the compression behavior of additively manufactured or three-dimensional print...