Methods and Apparatus for Providing an Improved Damper, Boot and Damper Combination and an Improved HVAC Duct System
A damper arrangement is described which moves dampers from a location closer to an air source to a boot located adjacent to a ceiling register, grill, or the like, thereby allowing technicians or owners to more readily make adjustments. A substantially flush boot collar mounting preserves leak free flow,and keeps insulation installation simple. An internal adjustment mechanism, such as a loop, avoids the need to pull the ceiling grill from the ceiling. Both insulation and subsequent adjustment are simplified.
This application is a continuation under 35 U.S.C. 119 of U.S. patent application Ser. No. 14/638,847 filed Mar. 4, 2015 for “Methods and Apparatus for Providing an improved Damper, Boot and Damper Combination and an Improved HVAC Duct System”, which in turn claims priority of U.S. Provisional Application Ser. No. 61/993,096 filed May 14, 2014. The disclosures of both such patent applications are hereby incorporated herein by reference in their Respective entireties, for all purposes.
FIELD OF THE INVENTIONThe present invention relates generally to improved heating, ventilation, and air conditioning (HVAC) systems and components, and, more particularly, to advantageous methods and apparatuses of providing an improved damper in a collar of a boot and its utilization in HVAC systems as addressed further herein.
BACKGROUND OF THE INVENTIONOne example of a prior art HVAC duct system 100 is shown in
One example of a prior art damper 200 suitably used as each of the dampers 131-136 in
A problem with approaches like those illustrated in
An alternative prior art approach to the damping arrangement of
As seen in
To address problems such as those presented by either of the embodiments illustrated in
In accordance with one aspect of the present invention, a damper for mounting inside a circular boot collar of a first diameter is provided. The damper comprises a circular damper plate of a second diameter slightly less than the first diameter; two opposing connectors arranged on opposite sides of the circular diameter plate; and an adjustment mechanism mounted on a bottom face of the circular damper plate and displaced from a center of the circular damper plate
According to a further aspect of the present invention, a damper and boot combination is provided that comprises a boot having a collar of a first diameter; a circular damper plate of a second diameter slightly less than the first diameter; two opposing connectors arranged on opposite sides of the circular diameter plate; an adjustment mechanism mounted on a bottom face of the circular damper plate and displaced from a center of the circular damper plate; and a mechanical mounting arrangement connecting with said connectors and mounting the damper plate substantially flush with an outer surface of the collar.
According to a further aspect of the invention, a heating, ventilation and air conditioning (HVAC) system is provided that comprises an air unit; a duct system terminating at a plurality of boots, each boot matched with a ceiling register; at least one of said plurality of boots comprising: a collar of a first diameter; a circular damper plate of a second diameter slightly less than the first diameter; two opposing connectors arranged on opposite sides of the circular diameter plate; and an adjustment mechanism mounted on a bottom face of the circular damper plate and displaced from a center of the circular damper plate.
A further aspect of the present invention addresses a method of adjusting air flow through a ceiling register of an HVAC system as addressed above comprising: inserting an adjustment tool through the ceiling register; engaging an adjustment loop on a circular damper; moving the circular damper plate; and disengaging the adjustment loop.
These and other features, aspects, techniques and advantages of the present invention will be apparent to those skilled in the art from the following detailed description, taken together with the accompanying drawings and claims.
While connectors 412 and 414 are shown flat in the plane of circular damper plate 410 in
The damper plate 410 as shown in
The damper plate 410 can suitably be 4″, 5″, 6″, 7″, 8″, 9″, 10″ or larger as desired to suit a desired context. The dampers and boots shown herein are preferably made of 26 gauge galvanized metal; however, it will be recognized that other materials may be suitably employed, such as aluminum, plastics of suitable strength and able to handle the temperature variations of their context of use, and the like. Further, other gauge metal consistent with any applicable building code or codes may also be used.
In the approach shown in
Unlike the handle 204 or wing nut 205 of
Those of skill in the art will appreciate from the present disclosure additional, alternative systems and methods for adapting the described approaches to other contexts and environments, in accordance with the disclosed principles of the present invention. Thus, while particular embodiments and applications of the present invention have been illustrated and described, it is to be understood that the invention is not limited to the precise construction and components disclosed herein and that various modifications, changes and variations which will be apparent to those of ordinary skill in the art may be made in the arrangement, operation and details of the method and apparatus of the present invention disclosed herein without departing from the spirit and scope of the invention. As one example, while particular diameter dampers and boots are shown here, it will be recognized that other sizes and shapes may be employed as desired. The same is true as to other components for which presently preferred dimensions are disclosed, but for which it will be recognized that variations may be made as desired to fit the needs of a particular installation.
Claims
1.-12. (canceled)
13. A damper, boot and damper adjustment mechanism combination comprising:
- a boot having a circular collar of a first diameter, the circular caller having an outermost surface;
- a circular damper plate of a second diameter slightly less than the first diameter;
- a mechanical connector arranged at least at one end of a diameter of the circular damper plate;
- an adjustment mechanism utilized by applying an adjustment force to a bottom face of the circular damper plate at a position displaced from a center of the circular damper plate; and
- a mechanical mounting arrangement for mounting the damper plate internally to the circular collar whereby the outermost surface of the circular collar is not substantially changed by the mechanical mounting arrangement.
14. The damper, boot and damper adjustment mechanism combination of claim 13 further comprising:
- a circular sleeve of insulation pulled snugly down over the outermost surface of said circular collar.
15. The damper, boot and damper adjustment mechanism combination of claim 13 wherein the mechanical connector comprises two diametrically opposed connectors arranged at opposite ends of the diameter of the circular damper plate.
16. The damper, boot and damper adjustment mechanism combination of claim 15 wherein the mechanical mounting arrangement comprises a rivet rotatably mounting each of the two diametrically opposed connectors to the circular boot collar with an outermost surface of the rivet substantially flush with the outermost surface of the circular collar of the boot.
17. The damper, boot and damper adjustment mechanism combination of claim 16 wherein the rivets clamp against the circular boot collar providing sufficient clamping force whereby the circular damper plate is not moved by normal air flow through the circular boot collar during use in a heating, ventilation and air conditioning system.
18. The damper, boot and damper adjustment mechanism combination of claim 13 further comprising:
- a lock mechanism to provide resistance to rotation so that once the circular damper plate is adjusted it will not move until physically readjusted.
19. The damper, boot and damper adjustment mechanism combination of claim 18 wherein the mechanical connector comprises two diametrically opposed connectors arranged at opposite ends of the diameter of the circular damper plate.
Type: Application
Filed: Sep 1, 2017
Publication Date: Mar 1, 2018
Inventor: Lee M. Hill (Raleigh, NC)
Application Number: 15/693,508