Lattice Heat Transfer (LHT) structures provide superior structural support while improving the heat transfer coefficient through their high surface-to-volume ratios. By using current Additive Manufacturing (AM) technologies, LHT with highly complex structures is possible. In this study, the design concept of LHT is further improved by implementing a thermomechanical topology optimization method. With utilization of design-dependent heat source, the method can be applied to generate stiffer LHT structures under mechanical and thermomechanical loads, without decreasing their thermal performance; relative to a design made of a uniform LHT having the same mass fraction. Two numerical examples are presented to illustrate how to use the proposed ...
Traditional cooling structures in gas turbines greatly improve the high temperature resistance of tu...
In this paper, an autonomous thermal management design process based on a topological optimisation a...
Additive manufacturing allows the fabrication parts and tools of high complexity. This capability ch...
In the last few years, the rapid diffusion of components produced through additive manufacturing pro...
This work presents a topology optimization approach for lattice structures subjected to thermal and ...
Purpose This paper aims to establish a multiscale topology optimization method for the optimal desi...
To realize the full potential of additive manufacturing (AM) techniques, a lattice structure design ...
Heat sinks have manifold applications, from micro-electronics to nuclear fusion reactors. Their perf...
Topology optimization and lattice design strategies are excellent tools within the design for additi...
General topology optimization optimizes material layout within a given design space based on structu...
During the injection molding cycle, molten material is injected at high pressure inside the mold and...
The recent development of additive manufacturing has allowed complex geometries such as multi-layere...
The higher design flexibility offered by additive manufacturing (AM) allows for radical improvement...
With the inherent usage of the computer when dealing with additive manufacturing, it only makes sens...
Tailoring the architectural characteristics of lattice materials at different length scales, from na...
Traditional cooling structures in gas turbines greatly improve the high temperature resistance of tu...
In this paper, an autonomous thermal management design process based on a topological optimisation a...
Additive manufacturing allows the fabrication parts and tools of high complexity. This capability ch...
In the last few years, the rapid diffusion of components produced through additive manufacturing pro...
This work presents a topology optimization approach for lattice structures subjected to thermal and ...
Purpose This paper aims to establish a multiscale topology optimization method for the optimal desi...
To realize the full potential of additive manufacturing (AM) techniques, a lattice structure design ...
Heat sinks have manifold applications, from micro-electronics to nuclear fusion reactors. Their perf...
Topology optimization and lattice design strategies are excellent tools within the design for additi...
General topology optimization optimizes material layout within a given design space based on structu...
During the injection molding cycle, molten material is injected at high pressure inside the mold and...
The recent development of additive manufacturing has allowed complex geometries such as multi-layere...
The higher design flexibility offered by additive manufacturing (AM) allows for radical improvement...
With the inherent usage of the computer when dealing with additive manufacturing, it only makes sens...
Tailoring the architectural characteristics of lattice materials at different length scales, from na...
Traditional cooling structures in gas turbines greatly improve the high temperature resistance of tu...
In this paper, an autonomous thermal management design process based on a topological optimisation a...
Additive manufacturing allows the fabrication parts and tools of high complexity. This capability ch...