AbstractLong, open-ended, hollow sandwich cylinders with ultralightweight cellular cores are optimized under uniform internal pressure for minimum weight design. Five different core topologies are considered: Kagomé truss, single-layered pyramidal truss, double-layered pyramidal truss, single-layered corrugated core and double-layered corrugated core. The highly porous cellular materials are homogenized to obtain effective constitutive relations. Close-formed solutions are presented for the forces and stresses in individual structural members of the sandwich, which are then validated by finite element calculations. Optimization of the sandwich-walled hollow cylinder is achieved using a quadratic optimizer, subjected to the constraints that ...
Lattice truss cores are an emerging family of synthetic periodic materials that can add multifunctio...
Lattice truss cores are an emerging family of synthetic periodic materials that can add multifunctio...
AbstractThe paper analyses the mechanical performance of a novel cellular structure, proposed as cor...
All metallic, hollow sandwich cylinders having ultralight two-dimensional (2D) prismatic cores are o...
Lightweight metallic sandwich plates comprising periodic truss cores and solid facesheets are optima...
AbstractLightweight metallic sandwich plates comprising periodic truss cores and solid facesheets ar...
Prismatic metallic sandwich tubes subject to internal moving shock loads are optimally designed for ...
Sandwich structures with foldcores are regarded as a promising alternative to conventional honeycom...
Sandwich structures with foldcores are regarded as a promising alternative to conventional honeycom...
AbstractLightweight metallic sandwich plates comprising periodic truss cores and solid facesheets ar...
The compressive behaviors and failure maps of lightweight all-metallic sandwich cylinders with pyram...
The compressive behaviors and failure maps of lightweight all-metallic sandwich cylinders with pyram...
Ultralight sandwich structures comprising of low-density core with stiff facings have attracted sign...
Ultralight sandwich structures comprising of low-density core with stiff facings have attracted sign...
To get a strong, stiff and weight efficient cylindrical shell, a novel carbon fiber reinforced corru...
Lattice truss cores are an emerging family of synthetic periodic materials that can add multifunctio...
Lattice truss cores are an emerging family of synthetic periodic materials that can add multifunctio...
AbstractThe paper analyses the mechanical performance of a novel cellular structure, proposed as cor...
All metallic, hollow sandwich cylinders having ultralight two-dimensional (2D) prismatic cores are o...
Lightweight metallic sandwich plates comprising periodic truss cores and solid facesheets are optima...
AbstractLightweight metallic sandwich plates comprising periodic truss cores and solid facesheets ar...
Prismatic metallic sandwich tubes subject to internal moving shock loads are optimally designed for ...
Sandwich structures with foldcores are regarded as a promising alternative to conventional honeycom...
Sandwich structures with foldcores are regarded as a promising alternative to conventional honeycom...
AbstractLightweight metallic sandwich plates comprising periodic truss cores and solid facesheets ar...
The compressive behaviors and failure maps of lightweight all-metallic sandwich cylinders with pyram...
The compressive behaviors and failure maps of lightweight all-metallic sandwich cylinders with pyram...
Ultralight sandwich structures comprising of low-density core with stiff facings have attracted sign...
Ultralight sandwich structures comprising of low-density core with stiff facings have attracted sign...
To get a strong, stiff and weight efficient cylindrical shell, a novel carbon fiber reinforced corru...
Lattice truss cores are an emerging family of synthetic periodic materials that can add multifunctio...
Lattice truss cores are an emerging family of synthetic periodic materials that can add multifunctio...
AbstractThe paper analyses the mechanical performance of a novel cellular structure, proposed as cor...