THERMAL BREAK SYSTEM AND METHOD FOR DOORS AND WINDOWS
20170254142 ยท 2017-09-07
Assignee
Inventors
Cpc classification
E06B7/2316
FIXED CONSTRUCTIONS
E06B7/26
FIXED CONSTRUCTIONS
E06B7/14
FIXED CONSTRUCTIONS
E06B2001/707
FIXED CONSTRUCTIONS
E06B3/723
FIXED CONSTRUCTIONS
E06B1/32
FIXED CONSTRUCTIONS
E05B17/0075
FIXED CONSTRUCTIONS
E06B7/2312
FIXED CONSTRUCTIONS
E06B7/16
FIXED CONSTRUCTIONS
E06B7/22
FIXED CONSTRUCTIONS
International classification
E06B7/14
FIXED CONSTRUCTIONS
Abstract
A door frame including an inside steel panel having a first inner surface and a first outer surface, and a C-shaped section with a first portion of the C-shaped section extending parallel to the inner surface of the inside steel panel; an outside steel panel having a second inner surface and a second outer surface, and a U-shaped section with a second portion of the C-shaped section extending perpendicular to the second inner surface of the outside steel panel; a first insulating material interposed between the first portion of the C-shaped section of the inside steel panel and the second inner surface of the outside steel panel to thermally isolate the inside steel panel and the outside steel panel from each other, and said inside steel panel and outside steel panel being secured together to form a thermal break system.
Claims
1. A door assembly comprising: a door frame including an inside steel panel having a first inner surface and a first outer surface, and a C-shaped section with a first portion of the C-shaped section extending parallel to the inner surface of the inside steel panel; an outside steel panel having a second inner surface and a second outer surface, and a U-shaped section with a second portion of the C-shaped section extending perpendicular to the second inner surface of the outside steel panel; a first insulating material interposed between the first portion of the C-shaped section of the inside steel panel and the second inner surface of the outside steel panel to thermally isolate the inside steel panel and the outside steel panel from each other, and said inside steel panel and outside steel panel being secured together to form a thermal break system; and a doorjamb including a threshold comprising a second insulating material positioned between a first threshold portion and second threshold portion, wherein the first threshold portion is sloped to allow rainwater to discharge from the assembly; a third insulating material positioned above the second threshold portion adjacent to the second insulating material; a fourth and fifth insulating material positioned below the door fame, wherein the fourth insulating material is mounted parallel to a bottom portion of the door frame and the fifth insulating material is positioned at a right angle adjacent to the fourth insulating material proximal to the inside steel panel.
2. The door assembly of claim 1, further comprising a kerfed drop seal positioned on the bottom portion of the door frame, wherein the kerfed drop seal comprises is a drip bead and a plurality of bottom sweeps.
3. The door assembly of claim 1, further comprising an internal pressure seal positioned above the second threshold portion, wherein the internal pressure reduces air infiltration.
4. The door assembly of claim 3, wherein the internal pressure seal is positioned between the third and fifth insulating materials.
5. A door assembly comprising: a door frame including a first side having a first inner surface, a first outer surface, a first edge, and a second edge, the distance between the first edge and second edge defining a first width; a first panel located at the first edge extending perpendicularly from the first inner surface at a first depth; a second panel located at the second edge extending perpendicularly from the first inner surface at a second depth; a first land perpendicularly connected to the first panel extending parallel to the first inner surface, the first land having a first length; a second land perpendicularly connected to the second panel extending parallel to the first inner surface, the second land having a second length; a second side having a second inner surface, a second outer surface, a third edge, and a fourth edge, the distance between the third edge and fourth edge defining a second width; a third panel located at the third edge extending perpendicularly from the second inner surface at a third depth; a fourth panel located at the fourth edge extending perpendicularly from the second inner surface at a fourth depth; a first thermal break having a third width positioned between the first land and the second inner surface adjacent to the third panel; a second thermal break having a fourth width positioned between the second land and the second inner surface adjacent to the fourth panel; the first width and the second width being identical; the first length, and third width being identical; the second length, and the fourth width being identical; the first depth and the second depth being identical; the third depth and the fourth depth being identical; wherein the outer surface of the first side is exposed to an external environment and the second outer surface of the second side is exposed to an internal environment; the third and fourth depths are greater than the first and second depths which correspond to the first and second thermal breaks being positioned closer to the external environment improving efficiency; and a plurality of metal screws clamping the first land and the first thermal break together and the second land and the second thermal break together, the plurality of metal screws providing mechanical strength.
6. The door assembly of claim 5, further comprising a first adhesive means joining the first thermal break, the second inner surface, and the third panel together; and a second adhesive means joining the second thermal break, the second inner surface, and the fourth panel together.
7. The door assembly of claim 5, further comprising a doorjamb including a threshold comprising a third thermal break positioned between a first threshold portion and second threshold portion, wherein the first threshold portion is sloped to allow rainwater to discharge from the assembly.
8. The door assembly of claim 5, further comprising a kerfed drop seal positioned on a bottom portion of the door frame, wherein the kerfed drop seal comprises is a drip bead and a plurality of bottom sweeps.
9. The door assembly of claim 5, further comprising an internal pressure seal positioned above the second threshold portion, wherein the internal pressure reduces air infiltration.
10. An assembly comprising: a frame including an inside steel panel having a first inner surface and a first outer surface, and a C-shaped section with a first portion of the C-shaped section extending parallel to the inner surface of the inside steel panel; an outside steel panel having a second inner surface and a second outer surface, and a U-shaped section with a second portion of the C-shaped section extending perpendicular to the second inner surface of the outside steel panel; a first insulating material interposed between the first portion of the C-shaped section of the inside steel panel and the second inner surface of the outside steel panel to thermally isolate the inside steel panel and the outside steel panel from each other, and said inside steel panel and outside steel panel being secured together to form a thermal break system.
11. The assembly of claim 10, wherein the frame is a door frame.
12. The assembly of claim 10, wherein the frame is a window frame.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0010] Other features and advantages of the present invention will become apparent when the following detailed description is read in conjunction with the accompanying drawings, in which:
[0011]
[0012]
[0013]
DESCRIPTION OF PREFERRED EMBODIMENT
[0014] The following description is provided to enable any person skilled in the art to make and use the invention and sets forth the best modes contemplated by the inventor of carrying out their invention. Various modifications, however, will remain readily apparent to those skilled in the art, since the general principles of the present invention have been defined herein to specifically provide a thermal break system and method for doors and windows.
[0015]
[0016] Still referring now to
[0017] It is a particular advantage of the present invention that the insulating strips 8 are positioned completely towards tube 2 of the assembly, or the the outside, that is the thermal break is positioned closer to the exterior. This configuration reduces the mass on the outside panel or side 2. Further since the weight of the door is carried by the side 1, it lowers stress on door joints and reduces exposure of the outside panel to elements which improves efficiency. The tube assemblies may be constructed of steel, aluminum, copper or aluminum alloy, or any other conductive material that would require a thermal break in order to control heat transfer. This design approach can be very effective in reducing the energy exchange, energy conservation in cold areas play a positive role. It is a particular advantage of the present invention to protect the doors and windows in cold areas to prevent damage to the doors and windows via frost.
[0018]
[0019]
[0020] In one embodiment, a kerfed drop seal 29 positioned on the bottom edge of the door is provided. It is a particular advantage that the drop seal is a combined drip bead 30 and bottom sweeps 31. The drip bead is a downward slope element or drip guard to direct rainwater to slope 25. The bottom sweeps prevents air and water outside from entering into the building from the outside and provides the heat insulation effect. In one embodiment, three bottoms sweeps are provided. An internal pressure seal 32 is included above the center of the inner threshold portion above space 33, wherein the seal provides insulation while reducing air infiltration. The dotted lines show the seal deflected in the space under pressure.
[0021] It should further be noted that throughout the entire disclosure, the labels such as left, right, front, back, top, bottom, forward, reverse, clockwise, counter clockwise, up, down, or other similar terms such as upper, lower, aft, fore, vertical, horizontal, oblique, proximal, distal, parallel, perpendicular, transverse, longitudinal, etc. have been used for convenience purposes only and are not intended to imply any particular fixed direction or orientation. Instead, they are used to reflect relative locations and/or directions/orientations between various portions of an object.
[0022] In addition, reference to first, second, third, and etc. members throughout the disclosure (and in particular, claims) are not used to show a serial or numerical limitation but instead are used to distinguish or identify the various members of the group.
[0023] In addition, any element in a claim that does not explicitly state means for performing a specified function, or step for performing a specific function, is not to be interpreted as a means or step clause as specified in 35 U.S.C. Section 112, Paragraph 6. In particular, the use of step of, act of, operation of, or operational act of in the claims herein is not intended to invoke the provisions of 35 U.S.C. 112, Paragraph 6.
[0024] While the foregoing written description of the invention enables one of ordinary skill to make and use what is considered presently to be the best mode thereof, those of ordinary skill will understand and appreciate the existence of variations, combinations, and equivalents of the specific embodiment, method, and examples herein. The invention should therefore not be limited by the above described embodiment, method, and examples, but by all embodiments and methods within the scope and spirit of the invention as claimed.