In this work, we investigated tessellating cellular (or lattice) structures for use in a low thermal expansion machine frame. We proposed a concept for a lattice structure with tailorable effective coefficient of thermal expansion (CTE). The design is an assembly of two parts: a lattice outer part and a cylindrical inner part, which are made of homogenous materials with different positive CTEs. Several lattice design variations were investigated and their thermal and mechanical performance analysed using a finite element method. Our numerical models showed that a lattice design using Nylon 12 and ultra-high molecular weight polyethylene could yield an effective in-plane CTE of 1 × 10−9 K−1 (cf. 109 × 10−6 K−1 for solid Nylon 12). This paper...
Tuning the Co-efficient of Thermal Expansion (CTE) of a component is traditionally limited by materi...
Controlling the thermal expansion of materials is of great technological importance. Uncontrolled th...
The geometry and constituent materials of metastructures can be used to engineer the thermal expansi...
In this work, we investigated tessellating cellular (or lattice) structures for use in a low thermal...
In this work, we investigated tessellating cellular (or lattice) structures for use in a low thermal...
This thesis focused on the mechanisms involved in negative thermal expansion of 2D/3D lattice struct...
Ice floating on water is a great manifestation of negative thermal expansion (NTE) in nature. The li...
The coefficient of thermal expansion (CTE) of architected materials, as opposed to that of conventio...
A study of the mechanical fatigue behavior of a Ti–6Al–4V lattice structure designed to exhibit cont...
Numerous structures that are used in the aerospace and automobile industries, microelectronics, and ...
The unexpected thermal distortions and failures in engineering raise the big concern about thermal e...
Microscale bi-material lattices with near zero thermal expansion are designed to create a thermally ...
Lattice structures, whose manufacturing has been enabled by additive technologies, are gaining growi...
Systems in extreme thermal environments are susceptible to severe temperature changes. Variations in...
Tailoring the architectural characteristics of lattice materials at different length scales, from na...
Tuning the Co-efficient of Thermal Expansion (CTE) of a component is traditionally limited by materi...
Controlling the thermal expansion of materials is of great technological importance. Uncontrolled th...
The geometry and constituent materials of metastructures can be used to engineer the thermal expansi...
In this work, we investigated tessellating cellular (or lattice) structures for use in a low thermal...
In this work, we investigated tessellating cellular (or lattice) structures for use in a low thermal...
This thesis focused on the mechanisms involved in negative thermal expansion of 2D/3D lattice struct...
Ice floating on water is a great manifestation of negative thermal expansion (NTE) in nature. The li...
The coefficient of thermal expansion (CTE) of architected materials, as opposed to that of conventio...
A study of the mechanical fatigue behavior of a Ti–6Al–4V lattice structure designed to exhibit cont...
Numerous structures that are used in the aerospace and automobile industries, microelectronics, and ...
The unexpected thermal distortions and failures in engineering raise the big concern about thermal e...
Microscale bi-material lattices with near zero thermal expansion are designed to create a thermally ...
Lattice structures, whose manufacturing has been enabled by additive technologies, are gaining growi...
Systems in extreme thermal environments are susceptible to severe temperature changes. Variations in...
Tailoring the architectural characteristics of lattice materials at different length scales, from na...
Tuning the Co-efficient of Thermal Expansion (CTE) of a component is traditionally limited by materi...
Controlling the thermal expansion of materials is of great technological importance. Uncontrolled th...
The geometry and constituent materials of metastructures can be used to engineer the thermal expansi...