Thermal barrier
The present disclosure describes methods of forming thermal barriers or breaks in tubular structures configured for inclusion in a variety of construction products and building features, such as doors and windows. Methods involve using one or more connector members to couple complementary extrusion profiles, which may comprise aluminum or other conductive materials. A low-conductivity material may then be deposited directly over the connector members coupling the extrusion profiles to form thermal barriers therebetween. At least a portion of the extrusion profiles may be knurled to improve the bond strength between the low-conductivity material, which may comprise polyurethane, and the extrusion profiles. Specialized components may be unnecessary to form the thermal barriers, such that the same connector members used to couple the extrusion profiles may be used to form the thermal barriers.
1 . A thermal barrier structure, comprising:
two extrusion profiles coupled via at least one connector member, the two extrusion profiles comprising terminal protrusions and opposing hammer portions that, together with the at least one connector member, form a longitudinal channel between the extrusion profiles, wherein the two extrusion profiles and the at least one connector member together define a tubular structure defining a hollow interior, and wherein the at least one connector member lacks serrations, teeth, hollow interiors, and flexible protrusions; and
a pourable elastomeric material cured within the longitudinal channel, opposite the hollow interior,
wherein the terminal protrusions define exterior surfaces of the extrusion profiles, and wherein terminal tips of the terminal protrusions define a maximum cross-sectional width of the longitudinal channel.
2 . The thermal barrier structure of claim 1 , wherein the pourable elastomeric material is bound directly to a surface of the at least one connector member.
3 . The thermal barrier structure of claim 1 , wherein the pourable elastomeric material comprises polyurethane.
4 . The thermal barrier structure of claim 1 , wherein the extrusion profiles comprise aluminum.
5 . The thermal barrier structure of claim 1 , wherein at least a portion of each of the extrusion profiles comprises a textured surface bound to the pourable elastomeric material.
6 . The thermal barrier structure of claim 1 , wherein an external surface of the at least one connector member, relative to the thermal barrier structure, is substantially smooth.
7 . The thermal barrier structure of claim 1 , wherein at least a portion of each of the extrusion profiles is crimped against the at least one connector member.
8 . The thermal barrier structure of claim 1 , wherein the at least one connector member comprises a first connector member and a second connector member.
9 . The thermal barrier structure of claim 8 , wherein with respect to each other, the first connector member and the second connector member are positioned on opposite sides of the tubular structure.
10 . The thermal barrier structure of claim 1 , wherein one of the two extrusion profiles is exterior-facing and one of the extrusion profiles is interior-facing.
11 . The thermal barrier structure of claim 1 , wherein a fill level of the pourable elastomeric material within the longitudinal channel is substantially equal to a height of the terminal protrusions.