FOLDABLE, BOOT LOADABLE, INSERTABLE AIR DAMPER DEVICE
20220099331 · 2022-03-31
Inventors
- Mark VOTAW (North Canton, OH, US)
- Dennis LAUGHLIN (Chardon, OH, US)
- Al ZELCZER (University Heights, OH, US)
- Howard ZELCZER (Brooklyn, NY, US)
- Lenny ROTH (University Heights, OH, US)
- Vladimir SIPERSHTEYN (Independence, OH, US)
- Joseph RAMUNNI (Wadsworth, OH, US)
- Bill MOLICA (Willowick, OH, US)
Cpc classification
F24F13/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y10T29/49863
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F24F13/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F13/1413
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F2221/36
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F2013/1466
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y10T29/49826
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
F24F13/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F13/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A system for controlling the flow of air through ductwork includes a foldably tensioned boot loadable air damper device and a method of installing same. The damper device includes an actuator having a retractable member and a pivoting member, wherein the pivoting member is operatively connected to the retractable member of the actuator. The damper device also includes at least one support base supporting the actuator and the pivoting member with respect to each other, a foldable damper blade attached to the pivoting member, and at least one tensioned hinge member operatively connected to the foldable damper blade for unfolding the damper blade. The damper device may be inserted through a register boot and into a ductwork when folded.
Claims
1. A boot loadable air damper device for controlling the flow of air through ductwork, the air damper device comprising: an actuator having a retractable member; a pivoting member, wherein said pivoting member is operatively connected to said retractable member of said actuator; at least one support base supporting said actuator and said pivoting member with respect to each other; a magnetic foldable sheet member attached to the support base, the magnetic foldable sheet member is configured to magnetically secure the damper device to an inner surface of the ductwork; a foldable damper blade attached to said pivoting member, the foldable damper blade comprising a rigid central blade member, a first side blade member hingedly attached to a first side of the central blade member at a first tensioned hinge, and a second side blade member hingedly attached to a second side of the central blade member at a second tensioned hinge, the foldable damper blade being foldable at the first and second tensioned hinges which bias the first side blade member and the second side blade member towards an unfolded state and, when fully unfolded into the unfolded state, at least one stop member acting against the first and second tensioned hinges restricts further unfolding of the foldable damper blade relative to the central blade member; and a sealing member of a flexible material encompassing a periphery of the foldable damper blade; wherein, when fully unfolded into the unfolded state, the foldable damper blade is movable between an open position and a closed position by actuating the retractable member to pivot the pivoting member operatively connected to the central blade member and thereby move the foldable damper blade attached to the pivoting member, the foldable damper blade restricting air flow through the ductwork when in the closed position and the unfolded state; and wherein said air damper device is configured to be installed through a register boot into ductwork when said foldable damper blade and the magnetic foldable sheet member are each folded to compact the air damper device.
2. The boot loadable air damper device as defined in claim 1, wherein said air damper device is configured to be installed through a register boot into ductwork when said foldable damper blade and the magnetic foldable sheet member are each folded to compact the air damper device.
3. The boot loadable air damper device as defined in claim 1, wherein said actuator is an air pressure actuator.
4. The boot loadable air damper device as defined in claim 1, wherein said actuator is an electro-mechanical actuator.
5. The boot loadable air damper device as defined in claim 4, wherein said electro-mechanical actuator further comprises a portable power supply.
6. The boot loadable air damper device as defined in claim 1, wherein said pivoting member further comprises at least two pins.
7. The boot loadable air damper device as defined in claim 6, wherein said at least two pins are nylon pins.
8. The boot loadable air damper device as defined in claim 1, wherein the tensioned hinge member includes a spring.
9. The boot loadable air damper device as defined in claim 1, wherein the foldable damper blade includes a first side and a second side that is opposite from the first side, and the tensioned hinge is attached to the first side and the stop member is attached to the second side.
10. The boot loadable air damper device as defined in claim 9, wherein the pivoting member is attached the first side.
11. The boot loadable air damper device as defined in claim 1, wherein, when fully unfolded into the unfolded state, the foldable damper blade is substantially planar.
12. The boot loadable air damper device of claim 1, wherein the foldable damper blade is a monolithic, wherein the first and second side blade members are integral with the rigid central blade member.
13. The boot loadable air damper device of claim 12, wherein the first and second side blade members are separated from the rigid central blade member via perforations, and wherein the first and second side blade members are angled relative to each other when the foldable damper blade is at least partially folded into the folded state.
14. The boot loadable air damper device as defined in claim 1, wherein the magnetic foldable sheet member is a sheet of magnetic material.
15. A method for inserting a boot loadable air damper device into a ductwork, the steps comprising: providing a boot loadable air damper device comprising: an actuator having a retractable member; a pivoting member, wherein said pivoting member is operatively connected to said retractable member of said actuator; at least one support base, supporting said actuator and said pivoting member with respect to each other; a magnetic foldable sheet member attached to the support base and adapted to magnetically secure the damper device to the inner surface of a ductwork; a foldable damper blade attached to said pivoting member, the foldable damper blade comprising a rigid central blade member, a first side blade member hingedly attached to a first side of the central blade member at a first tensioned hinge, and a second side blade member hingedly attached to a second side of the central blade member at a second tensioned hinge, the foldable damper blade being foldable at the first and second tensioned hinges which bias the first side blade member and the second side blade member towards an unfolded state and, when fully unfolded into the unfolded state, at least one stop member acting against the first and second tensioned hinges restricts further unfolding of the foldable damper blade relative to the central blade member; and a sealing member of a flexible material encompassing a periphery of the foldable damper blade; folding at least first side blade member and the second side blade member of the foldable damper blade together; inserting the air damper device through a register boot into a ductwork; and releasing at least the foldable damper blade.
16. The method of claim 15, wherein folding the first and second side blade members of the foldable damper blade together further comprises folding the foldable sheet member over the foldable damper blade.
17. The method of claim 15, wherein the foldable damper blade includes a pair of blade members movable relative to each other between a folded state and an unfolded state, and releasing the foldable damper blade further comprises unfolding the pair of blade members into an unfolded state.
18. The method of claim 17, further comprising: utilizing the actuator to position the foldable damper blade when in the unfolded state, wherein the foldable damper blade is movable between an open position and a closed position by actuating the retractable member to pivot the pivoting member and thereby move the foldable damper blade attached to the pivoting member, the foldable damper blade restricting air flow through the ductwork when in the closed position and the unfolded state.
19. The method of claim 15, wherein the magnetic foldable sheet member is a sheet of magnetic material.
20. The method of claim 15, wherein the foldable damper blade is a monolithic, wherein the first and second side blade members are integral with the rigid central blade member, and wherein the first and second side blade members are separated from the rigid central blade member via perforations, and wherein the first and second side blade members are angled relative to each other when the foldable damper blade is at least partially folded into the folded state.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011]
[0012]
[0013]
[0014]
[0015]
[0016]
[0017]
[0018]
[0019]
[0020]
DETAILED DESCRIPTION
[0021]
[0022] The pivoting member 120 may be constructed of a plastic or metallic material that may be strong enough to withstand pressures or external forces that may be exerted on the damper device 10. Moreover, the pivoting member 120 may include pivoting pins 190 that allow the pivoting member 120 to be connected to the retractable member 110 and the support base 130.
[0023] With continued reference to
[0024] With reference to
[0025] Additionally, the foldable damper blade 160 may further include a sealing member 150 (e.g., a gasket), which may be a flexible material, such as rubber, that encompasses the periphery of the foldable damper blade 160. The sealing member 150 may be in the same shape as the foldable damper blade 160, but may be larger than the foldable damper blade 160, as shown in
[0026] With continued reference to
[0027] With continued reference to
[0028] With reference to
[0029]
[0030] With continued reference to
[0031] Once the damper device 10 is positioned in the ductwork and the foldable damper blade 160 “unfolded,” the user may then position the foldable damper blade 160 by utilizing the actuator 100. In an embodiment of the present invention wherein the actuator 100 is driven by air pressure, the user may attach an air supply hose to the adapter 180 before inserting the damper device 10 into the ductwork, in order to inject air into the actuator 100 from an air pump. Depending on the amount and/or duration of air added into the actuator 100, the foldable damper blade's 160 position, with respect to the actuator 100, may change between a first position that may allow the most amount of air flow through the ductwork, as shown in
[0032] In another embodiment of the present invention wherein the actuator 100 is powered by electricity, the user may “plug” the actuator 100 into a power source such as a battery, an electronic controller providing power, or any other power source known to one of ordinary skill in the art capable of providing the appropriate electrical power. Depending on the utilization of a power supplied actuator that may retract and extend the retractable member 110, the foldable damper blade's 160 position, with respect to the actuator 100, may change between a first position that may allow the most amount of air flow through the ductwork, as shown in
[0033] In summary, a foldably tensioned boot loadable air damper device for controlling the flow of air through ductwork, and a method of installing same are disclosed. The damper device includes an actuator having a retractable member and a pivoting member, wherein the pivoting member is operatively connected to the retractable member of the actuator. The damper device also includes at least one support base supporting the actuator and the pivoting member with respect to each other, a foldable damper blade attached to the pivoting member, and at least one tensioned hinge member operatively connected to the foldable damper blade for unfolding the damper blade. The damper device may be loaded through a register boot and into a ductwork when folded.
[0034] While the claimed subject matter of the present application has been described with reference to certain embodiments, it will be understood by those skilled in the art that various changes may be made and equivalents may be substituted without departing from the scope of the claimed subject matter. In addition, many modifications may be made to adapt a particular situation or material to the teachings of the claimed subject matter without departing from its scope. Therefore, it is intended that the claimed subject matter not be limited to the particular embodiment disclosed, but that the claimed subject matter will include all embodiments falling within the scope of the appended claims.