HOLLOW ARTICLE WITH OPTIMIZED INTERNAL STRUCTURAL MEMBERS
A composite panel includes a first skin layer, an intermediate structural core, and a second skin layer. The first and second skin layers are disposed on opposing sides of the intermediate structural core. The intermediate structural core provides a geometric array of structural members, the arrangement of which is defined using topology optimization.
1 . A composite panel comprising:
a first skin layer;
an intermediate structural core; and
a second skin layer,
wherein the first and second skin layers are disposed on opposing sides of the intermediate structural core, and
wherein the intermediate structural core provides a geometric array of structural members, the arrangement of which is defined using topology optimization such that the composite panel can perform based on predefined performance constraints.
2 . The composite panel according to claim 1 , wherein the composite panel is a load bearing structural floor.
3 . The composite panel according to claim 1 , wherein a covering is disposed on an outside surface of at least one of the first and second skin layers.
4 . The composite panel according to claim 3 , further comprising a reinforcement layer disposed between the outside surface of the at least one of the first and second skin layers and the covering, the reinforcement layer covering at least a portion of the outside surface to which it is applied.
5 . The composite panel according to claim 1 , further comprising a reinforcement layer disposed on an outside surface of at least one of the first and second skin layers, the reinforcement layer covering at least a portion of the outside surface to which it is applied.
6 . The composite panel according to claim 1 , wherein the geometric array of structural members is a plurality of geometric cells arranged in a repeating pattern over an area of the composite panel.
7 . The composite panel according to claim 6 , wherein each geometric cell of the plurality of geometric cells includes at least one structural rib, at least one structural node and at least one structural web.
8 . The composite panel according to claim 7 , wherein the at least one structural rib, the at least one structural node and the at least one structural web are aligned to extend transversely relative to a plane of the composite panel.
9 . The composite panel according to claim 1 , wherein the structural core is separately formed from an injection molding process as an open-cell structure.
10 . The composite panel according to claim 1 , wherein the structural core is integrally formed on at least one of the first and second skin layers.
11 . The composite panel according to claim 1 , wherein the structural core is formed using an additive manufacturing methodology.