This invention relates generally to rain gutters, and more particularly, to self-cleaning gutters.
Gutters perform useful functions including protecting houses and foundations from water damage. However, many people are injured each year from ladder falls while cleaning gutters. In addition, having gutters professionally cleaned can be costly since gutters generally have to be cleaned multiple times a year.
There are many products available designed to keep the gutters from clogging up, but they all have their drawbacks. Gutter sponges and screens tend to clog up over time, and solid gutter covers let debris such as pine and fir needles in along with water through openings.
There are multiple types of previously-proposed self-cleaning gutters. Each type has its own problems and disadvantages. Consequently, none of these gutters seems to be available commercially today.
Perhaps the most popular type is the content dumping type. These gutters can be turned upside down and have its content fall to the ground when cleaning is needed. Some of them have hinges and some of them can be rotated. The turning and rotating mechanisms include levers and chains. Main disadvantages of these systems include the fact that gutters are generally long and turning and rotating from one end or even from the middle would make long gutters twist significantly. In order to prevent twisting, gutters would have to be made quite stiff requiring significantly more material and manufacturing cost. In addition, these turning and rotating mechanisms can be quite complex thus can be costly and unreliable.
Other types include built-in cleaning tools such as coils and water-jets. However, each type has its own issues such as clogging and limited effectiveness. None of these systems seems to be commercially available, indicating that reliable and cost-effective implementations are likely not available.
The invention described herein is a gutter system designed to be completely self-cleaning without the drawbacks of previously-proposed self-cleaning gutters. The gutter system described herein is also designed to be highly cost-effective in manufacturing, installation, and maintenance.
In one embodiment, a self-cleaning gutter system comprises a gutter base having an upper surface and a lower surface. The upper surface slopes downward away from a roof of a house when the gutter base is mounted to a side of the house. A gutter flap is coupled to the upper surface of the gutter base by a hinge. The gutter flap is rotatable about the hinge between a first position wherein the gutter flap slopes upward away from the roof of the house to form substantially a v-shaped channel with respect to the upper surface of the gutter base and a second position wherein the gutter flap slopes downward away from the roof of the house to become substantially planar with the upper surface of the gutter base. An inflatable pneumatic gutter flap actuator is disposed between the gutter flap and the lower surface of the gutter base. A gutter controller is configured to inflate and deflate the inflatable pneumatic gutter flap actuator and thereby cause the gutter flap to move between the first and second positions.
The above and further advantages of this invention may be better understood by referring to the following description in conjunction with the accompanying drawings, in which like numerals indicate like structural elements and features in various figures. The drawings are not necessarily to scale, emphasis instead being placed upon illustrating the principles of the invention.
The self-cleaning gutter system in dry-weather configuration is shown in
In rainy weather, the gutter flap 102 is flipped up by inflating the pneumatic actuator 103 to form a V-shaped gutter as shown in
In one embodiment, the gutter base 101 has a stepped shape so that the top flat surface of the gutter base 101 that is closest to the house would lie in the same plane as the top surface of the gutter flap 102 when the gutter flap 102 is in down position as shown in
The controller 204 can also be equipped with a microprocessor with a wired or wireless connection to the internet so that the gutter flap 102 can be optimally controlled with up-to-date on-line local weather information and local weather forecast as well as the rain sensor 205 output. Other weather information such as temperature, wind, and humidity information can also be sensed or provided from internet, and can be used to control the gutter flap 102. For example, in the winter when there is snow on the roof, it may be desirable to put the flap down in order to prevent formation of ice dams which can damage the house. Although shown in
It is possible that the debris from the roof can be carried down into the gutter by the rain. However, the debris collected in the gutter will dry up and fall off the gutter in dry weather when the gutter flap 102 is down.
For the ends of the gutter, the end cap design has to accommodate the flap 102 going up and down as the weather changes.
For the downspout, it is difficult to make a hole in the moving gutter flap 102. Therefore, the hole 401 for the downspout can be made in the gutter base only 101 as shown in
The gutter base 101 can be attached to the house 105 using low-cost brackets 501 shown in
It is also possible to put heating coils 601 on the self-cleaning gutter as shown in
The self-cleaning gutter system can be made with low-cost materials such as aluminum or plastic for gutter base 101 and gutter flap 102, and weather-and-ultra-violet-ray-resistant rubber or silicone for gutter hinge 104 and pneumatic actuator 103. The simple design should result in high-reliability and low-cost operation with high durability.
To summarize, the automatic self-cleaning gutter system does not collect leaves, needles, or debris in dry weather yet functions in the same way as a normal gutter in rainy weather. In dry weather mode with the flap down, debris easily slides off the gutter surfaces. When rain is detected by the rain sensor, the flap automatically goes up and the gutter functions as a normal V-shaped gutter that can readily handle heavy rainfall. The gutter system can be made highly reliable, manufacturable, and cost effective due to its simple design utilizing low-cost components. Implementation of the gutter system is expected to result in significant savings in gutter cleaning costs as well as prevention of injuries and deaths associated with gutter cleaning.
While the principles have been described herein in conjunction with a number of embodiments, it is evident that many alternatives, modifications, and variations would be or are apparent to those of ordinary skill in the applicable arts. References to “one embodiment” or “an embodiment” or “another embodiment” means that a particular, feature, structure or characteristic described in connection with the embodiment is included in at least one embodiment described herein. References to an embodiment within the specification do not necessarily all refer to the same embodiment. The features illustrated or described in connection with one embodiment may be combined with the features of other embodiments. Accordingly, it is intended to embrace all such alternatives, modifications, equivalents, and variations that are within the spirit and scope of the principles described herein.
Number | Name | Date | Kind |
---|---|---|---|
538108 | Freeze | Apr 1895 | A |
3091055 | Hegedusich | May 1963 | A |
3157002 | Herman | Nov 1964 | A |
4072285 | Greenwood | Feb 1978 | A |
4116008 | Ward | Sep 1978 | A |
4226057 | Wolcott | Oct 1980 | A |
4411108 | Kerester | Oct 1983 | A |
4413449 | Faye | Nov 1983 | A |
4561616 | Robinson | Dec 1985 | A |
4634312 | Sterzel | Jan 1987 | A |
4669232 | Wyatt | Jun 1987 | A |
4696131 | Schreffler | Sep 1987 | A |
4745709 | Johnson | May 1988 | A |
4837987 | Fender | Jun 1989 | A |
5127133 | Brucker | Jul 1992 | A |
5146718 | Baskett | Sep 1992 | A |
5184435 | Sherman | Feb 1993 | A |
5197237 | Owens | Mar 1993 | A |
5274965 | Jackson | Jan 1994 | A |
5317843 | Sheehan | Jun 1994 | A |
5335460 | Smith, Jr. | Aug 1994 | A |
5357719 | Lewis | Oct 1994 | A |
5526611 | Leahy | Jun 1996 | A |
5548931 | Bryant | Aug 1996 | A |
5649681 | Faye | Jul 1997 | A |
5746027 | Bonerb | May 1998 | A |
5802774 | Kardacz | Sep 1998 | A |
5893239 | Leahy | Apr 1999 | A |
5896706 | Pike | Apr 1999 | A |
5989357 | Vilhauer, Jr. et al. | Nov 1999 | A |
6240679 | Smalara | Jun 2001 | B1 |
6668491 | Bonerb | Dec 2003 | B1 |
7051402 | Rigby | May 2006 | B1 |
7152376 | Wyatt | Dec 2006 | B2 |
7428799 | Frelier | Sep 2008 | B1 |
7581356 | Balkum | Sep 2009 | B1 |
7891141 | Kennedy | Feb 2011 | B2 |
8127503 | Kaiser | Mar 2012 | B2 |
8141302 | Desotell et al. | Mar 2012 | B2 |
8464474 | Johnson | Jun 2013 | B2 |
8511000 | Rees | Aug 2013 | B2 |
8650809 | Kaiser | Feb 2014 | B2 |
9010028 | Hutchings, Jr. | Apr 2015 | B2 |
20030033756 | Adams | Feb 2003 | A1 |
20090183438 | Walker | Jul 2009 | A1 |
20110067319 | Anthony | Mar 2011 | A1 |
Number | Date | Country | |
---|---|---|---|
20190017274 A1 | Jan 2019 | US |
Number | Date | Country | |
---|---|---|---|
62533599 | Jul 2017 | US |