Heat and fire resistant gel seal
11364398 · 2022-06-21
Assignee
Inventors
Cpc classification
F16L21/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L5/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16J15/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A62C2/065
HUMAN NECESSITIES
International classification
F16J15/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
C09D5/18
CHEMISTRY; METALLURGY
Abstract
A combination seal connects a filter or an equipment component to a base. The combination seal includes a seal material and flecks or particles made of intumescent material interspersed within the seal material. The flecks or particles of intumescent material undergo a chemical change when exposed to flames or heat and expand to maintain seal effectiveness and longevity without compromise.
Claims
1. An apparatus that seals a filter to a base and will continue to seal the filter to the base when exposed to heat in the event of hot air or fire, comprising: a seal housing between the filter and the base wherein said seal housing has a first side and a second side opposite said first side; a seal unit in said seal housing; wherein said seal unit is a combination seal unit that substantially fills said seal housing and extends continuously from said first side to said second side, wherein said seal unit includes a gel seal material that extends continuously from said first side to said second side of said seal housing, first individual interspersed particles of intumescent material interspersed within said gel seal material wherein each of said first individual interspersed particles are surrounded by said gel seal material wherein said first individual interspersed particles of intumescent material activate at a first temperature when exposed to the heat at said first temperature and form expanding bubbles that harden into a first dense heat insulating multi-cellular char, second individual interspersed particles of intumescent material interspersed within said gel seal material wherein each of said second individual interspersed particles are surrounded by said gel seal material, wherein said combination seal unit substantially fills said seal housing and extends continuously from said first side to said second side and is the only material in said seal housing, wherein said first individual interspersed particles of intumescent material and said second individual interspersed particles of intumescent material are different, wherein said second individual interspersed particles of intumescent material activate at a second temperature when exposed to the heat at said second temperature that is higher than said first temperature and form expanding bubbles that harden into a second dense heat insulating multi-cellular char, wherein said first individual interspersed particles of intumescent material interspersed within said gel seal material and said second individual interspersed particles of intumescent material interspersed within said gel seal material are of different expatiation ratios; and an extension blade that extends from the filter into said seal housing between said first side and said second side of said seal housing opposite said first side and into said seal unit and into said gel seal material with said first individual interspersed particles of intumescent material interspersed within said gel seal material and said second individual interspersed particles of intumescent material interspersed within said gel seal material that extends continuously from said first side to said second side of said seal housing and wherein said seal housing is positioned relative to the filter and the base to seal the filter to the base and w ill continue to seal in the event of hot air or fire.
2. An apparatus that seals a filter to a base and w ill continue to seal the filter to the base when exposed to heat in the event of hot air or fire, comprising: a seal housing between the filter and the base wherein said seal housing has a first side and a second side opposite said first side; a seal unit in said seal housing wherein said seal unit is a combination seal unit that substantially fills said seal housing and extends continuously from said first side to said second side and is the only material in said seal housing, wherein said seal unit includes a seal material wherein said seal material is a gel seal material that extends continuously from said first side to said second side of said seal housing, first individual particles of intumescent material interspersed within said gel seal material wherein each of said first individual particles are surrounded by said gel seal material wherein said first individual particles of intumescent material activate at a first temperature when exposed to the heat a said first temperature and form expanding bubbles that harden into a first dense heat insulating multi-cellular char, and second individual particles of intumescent material interspersed within said gel seal material wherein each of said first individual particles are surrounded by said gel seal material and said second individual particles are located interspersed with said first individual particles of intumescent material wherein said second individual particles of intumescent material activate at a second temperature when exposed to the heat at said second temperature that is lower than said first temperature and form expanding bubbles that harden into a second dense heat insulating multi-cellular char, wherein said first individual particles of intumescent material interspersed within said gel seal material and said second individual particles of intumescent material interspersed within said gel seal material are of different expatiation ratios, and an extension blade that extends from the filter into said seal housing between said first side and said second side of said seal housing opposite said first side and into said seal unit and into said gel seal material with said first individual particles of intumescent material interspersed within said gel seal material and said second individual particles of intumescent material interspersed within said gel seal material that extends continuously from said first side to said second side of said seal housing, and wherein said seal unit is positioned relative to the filter and the base to seal the filter to the base and w ill continue to seal in the event of hot air or fire.
3. An apparatus that seals a filter to a base and w ill continue to seal the filter to the base when exposed to heat in the event of hot air or fire having: a seal housing between the filter and the base wherein said seal housing has a first side and a second side opposite said first side; a seal unit in said seal housing; wherein said seal unit is a combination seal unit that substantially fills said seal housing and extends continuously from said first side to said second side and is the only material in said seal housing, wherein said seal unit includes a gel seal material that extends continuously from said first side to said second side of said seal housing, first individual interspersed particles of intumescent material interspersed within said gel seal material wherein each of said first individual interspersed particles are surrounded by said gel seal material wherein said first individual interspersed particles of intumescent material activate at a first temperature when exposed to the heat at said first temperature and form expanding bubbles that harden into a first dense heat insulating multi-cellular char, second individual interspersed particles of intumescent material interspersed within said gel seal material wherein each of said second individual interspersed particles are surrounded by said gel seal material, wherein said first individual interspersed particles of intumescent material and said second individual interspersed particles of intumescent material are different, wherein said second individual interspersed particles of intumescent material activate at a second temperature when exposed to the heat at said second temperature that is higher than said first temperature and form expanding bubbles that harden into a second dense heat insulating multi-cellular char, wherein said first individual interspersed particles of intumescent material interspersed within said gel seal material and said second individual interspersed particles of intumescent material interspersed within said gel seal material are of different expatiation ratios; and an extension blade that extends from the filter into said seal housing between said first side and said second side of said seal housing opposite said first side and into said seal unit and into said gel seal material with said first individual interspersed particles of intumescent material interspersed within said gel seal material and said second individual interspersed particles of intumescent material interspersed within said gel seal material that extends continuously from said first side to said second side of said seal housing and wherein said seal housing is positioned relative to the filter and the base to seal the filter to the base and will continue to seal in the event of hot air or fire; the improvement consisting of: said combination seal unit consists of said gel seal material, said first individual interspersed particles of intumescent material, and said second individual interspersed particles of intumescent material that substantially fills said seal housing and extends continuously from said first side to said second side and is the only material in said seal housing.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The accompanying drawings, which are incorporated into and constitute a part of the specification, illustrate specific embodiments of the apparatus, systems, and methods and, together with the general description given above, and the detailed description of the specific embodiments, serve to explain the principles of the apparatus, systems, and methods.
(2)
(3)
(4)
(5)
(6)
(7)
(8)
DETAILED DESCRIPTION OF SPECIFIC EMBODIMENTS
(9) Referring to the drawings, to the following detailed description, and to incorporated materials, detailed information about the apparatus, systems, and methods is provided including the description of specific embodiments. The detailed description serves to explain the principles of the apparatus, systems, and methods. The apparatus, systems, and methods are susceptible to modifications and alternative forms. The application is not limited to the particular forms disclosed. The application covers all modifications, equivalents, and alternatives falling within the spirit and scope of the apparatus, systems, and methods as defined by the claims.
(10) The inventor's apparatus, systems, and methods provide a system that seals a filter or equipment component to a base and will continue to seal the filter or equipment component to the base in the event of hot air or fire. The inventor's apparatus, systems, and methods include a combination seal between the filter or equipment component and the base. The combination seal includes a seal material and interspersed flecks or particles of intumescent material interspersed in the seal material. The combination seal is positioned relative to the filter or equipment component and the base to seal the filter or equipment component to the base. Upon the event of a fire the combination seal will expand to continue to seal the filter to the base in the event of hot air or fire.
Various Examples of Combination Seal
(11) Referring now to the drawings and in particular to
(12) Referring again to
(13) Component 102—filter,
(14) Component 104—base or filter support,
(15) Component 106—enclosure such as a wall, ceiling or floor,
(16) Component 108—flow of the fluid,
(17) Component 110—seal housing,
(18) Component 112—combination seal,
(19) Component 114—extension or blade that extends into the seal material,
(20) Component 116—seal material,
(21) Component 118—interspersed flecks or particles of intumescent material,
(22) Component 120—seal material,
(23) Component 122—interspersed flecks or particles of a first intumescent material,
(24) Component 124—interspersed flecks or particles of a second intumescent material,
(25) Component 126—seal material,
(26) Component 128—interspersed flecks or particles of a first intumescent material, and
(27) Component 130—interspersed flecks or particles of a second intumescent material.
(28) Referring now to
(29) Referring now to
(30) The gel seal material 116 and the flecks or particles 118 intumescent material undergo a chemical change when exposed to heat or flames, becoming viscous then forming expanding bubbles that harden into a dense, heat insulating multi-cellular char. This expanding char seals, insulates, and protects mating surfaces and joints, helping to prevent warping, subsequent leakage and damage.
(31) Referring now to
(32) The gel seal material 120 intumescent material and the flecks or particles 122 and 124 intumescent material undergo a chemical change when exposed to heat or flames, becoming viscous then forming expanding bubbles that harden into a dense, heat insulating multi-cellular char. This expanding char seals, insulates, and protects mating surfaces and joints, helping to prevent warping, subsequent leakage and damage. The flecks or particles 122 and 124 are different. In one embodiment, the flecks or particles 122 and the flecks or particles 124 are of different types. For example, the flecks or particles 122 are made of an intumescent material that activates at a lower temperature and the flecks or particles 124 are made of an intumescent material that activates at a higher temperature. They can also be of different expatiation ratios.
(33) Referring now to
(34) The seal material 126 intumescent material and the flecks or particles 128 and 130 intumescent material undergo a chemical change when exposed to heat or flames, becoming viscous then forming expanding bubbles that harden into a dense, heat insulating multi-cellular char. This expanding char seals, insulates, and protects mating surfaces and joints, helping to prevent warping, subsequent leakage and damage. The seal material 126 and the flecks or particles 128 and 130 are made of intumescent material; however, the intumescent materials are different. The flecks or particles 128 and the flecks or particles 130 are of different types. For example, the flecks or particles 128 are and the flecks or particles 130 are of different sizes and densities. The flecks or particles 128 are larger and the flecks or particles 130 are smaller. The flecks or particles 128 are of a first density and the flecks or particles 130 are of a second and different density.
(35) Referring now to
(36) Component 202—filter,
(37) Component 204—base or filter support,
(38) Component 206—enclosure such as a wall, ceiling or floor,
(39) Component 208—flow of the fluid,
(40) Component 210—seal housing,
(41) Component 212—first seal unit,
(42) Component 214—second seal unit, and
(43) Component 216—extension or blade that extends into the seal.
(44) The first seal unit 212 in this embodiment is interspersed with flecks or particles and flecks or particles made of intumescent materials. The first seal unit 212 interspersed with flecks or particles and flecks or particles made of intumescent materials can be made according to the embodiments of
(45) The second seal unit 214 is made of uniform intumescent material. The first seal unit 212 interspersed with flecks or particles made of intumescent materials is located below the second seal unit 214 made of uniform intumescent material. In the event of a fire or hot air the first seal unit 212 interspersed with flecks or particles made of intumescent materials and the second seal unit 214 made of uniform intumescent material will expand to maintain an effective seal.
(46) Referring now to
(47) Component 202—filter,
(48) Component 204—base or filter support,
(49) Component 206—enclosure such as a wall, ceiling or floor,
(50) Component 208—flow of the fluid,
(51) Component 210—seal housing,
(52) Component 212—first seal unit,
(53) Component 214—second seal unit, and
(54) Component 216—extension or blade that extends into the seal.
(55) The first seal unit 212 in this embodiment is interspersed with flecks or particles and flecks or particles made of intumescent materials. The first seal unit 212 interspersed with flecks or particles and flecks or particles made of intumescent materials can be made according to the embodiments of
(56) The second seal unit 214 is made of uniform intumescent material. The first seal unit 212 interspersed with flecks or particles made of intumescent materials is located above the second seal unit 214 made of uniform intumescent material. In the event of a fire or hot air the first seal unit 212 interspersed with flecks or particles made of intumescent materials and the second seal unit 214 made of uniform intumescent material will expand to maintain an effective seal.
(57) Referring now to
(58) Component 302—filter,
(59) Component 304—base or filter support,
(60) Component 306—enclosure such as a wall, ceiling or floor,
(61) Component 308—flow of the fluid,
(62) Component 310—seal housing,
(63) Component 312—first seal unit,
(64) Component 314—second seal unit, and
(65) Component 316—third seal unit.
(66) The first seal unit 312 and the second seal unit 314 in this embodiment are interspersed with flecks or particles and flecks or particles made of intumescent materials; however, the number of particles per volume are different in first seal unit 312 than they are in the second seal unit 314. The first seal unit 312 and the second seal unit 314 that are interspersed with flecks or particles and flecks or particles made of intumescent materials can be made according to the embodiment of
(67) In other embodiments, the first seal unit 312 and the second seal unit 314 that are interspersed with flecks or particles and flecks or particles made of intumescent materials can be made according to the embodiments of
(68) The third seal unit 316 is made of uniform intumescent material.
(69) The first seal unit 312 containing less flecks or particles per volume is located below the third seal unit 316 made of uniform intumescent material. The second seal unit 314 containing more flecks or particles per volume is located above the third seal unit 316 made of uniform intumescent material. In the event of a fire or hot air the seal units 312, 314, and 316 will expand to maintain an effective seal.
(70) Referring now to
(71) Component 302—filter,
(72) Component 304—base or filter support,
(73) Component 306—enclosure such as a wall, ceiling or floor,
(74) Component 308—flow of the fluid,
(75) Component 310—seal housing,
(76) Component 312—first seal unit,
(77) Component 314—second seal unit, and
(78) Component 316—third seal unit.
(79) The first seal unit 312 and the second seal unit 314 in this embodiment are interspersed with flecks or particles and flecks or particles made of intumescent materials; however, the number of particles per volume are different in first seal unit 312 than they are in the second seal unit 314. The first seal unit 312 and the second seal unit 314 that are interspersed with flecks or particles and flecks or particles made of intumescent materials can be made according to the embodiment of
(80) In other embodiments, the first seal unit 312 and the second seal unit 314 that are interspersed with flecks or particles and flecks or particles made of intumescent materials can be made according to the embodiments of
(81) The third seal unit 316 is made of uniform intumescent material.
(82) The first seal unit 312 containing less flecks or particles per volume is located below the third seal unit 316 made of uniform intumescent material. The second seal unit 314 containing more flecks or particles per volume is located below the first seal unit 312 containing less flecks or particles per volume. In the event of a fire or hot air the seal units 312, 314, and 316 will expand to maintain an effective seal.
(83) Referring now to
(84) Component 302—filter,
(85) Component 304—base or filter support,
(86) Component 306—enclosure such as a wall, ceiling or floor,
(87) Component 308—flow of the fluid,
(88) Component 310—seal housing,
(89) Component 312—first seal unit,
(90) Component 314—second seal unit, and
(91) Component 316—third seal unit.
(92) The first seal unit 312 and the second seal unit 314 in this embodiment are interspersed with flecks or particles and flecks or particles made of intumescent materials; however, the number of particles per volume are different in first seal unit 312 than they are in the second seal unit 314. The first seal unit 312 and the second seal unit 314 that are interspersed with flecks or particles and flecks or particles made of intumescent materials can be made according to the embodiment of
(93) In other embodiments, the first seal unit 312 and the second seal unit 314 that are interspersed with flecks or particles and flecks or particles made of intumescent materials can be made according to the embodiments of
(94) The third seal unit 316 is made of uniform intumescent material.
(95) The second seal unit 314 containing more flecks or particles per volume is located below the third seal unit 316 made of uniform intumescent material. The first seal unit 312 containing less flecks or particles per volume is located below the second seal unit 314 containing more flecks or particles per volume. In the event of a fire or hot air the seal units 312, 314, and 316 will expand to maintain an effective seal.
(96) Referring now to
(97) Referring again to
(98) Component 402—first ductwork,
(99) Component 404—second ductwork,
(100) Component 406—clamp,
(101) Component 408—first intumescent material seal unit,
(102) Component 410—second intumescent material seal unit, and
(103) Component 412—combination seal unit.
(104) Referring again to
(105) Although the description above contains many details and specifics, these should not be construed as limiting the scope of the application but as merely providing illustrations of some of the presently preferred embodiments of the apparatus, systems, and methods. Other implementations, enhancements and variations can be made based on what is described and illustrated in this patent document. The features of the embodiments described herein may be combined in all possible combinations of methods, apparatus, modules, systems, and computer program products. Certain features that are described in this patent document in the context of separate embodiments can also be implemented in combination in a single embodiment. Conversely, various features that are described in the context of a single embodiment can also be implemented in multiple embodiments separately or in any suitable subcombination. Moreover, although features may be described above as acting in certain combinations and even initially claimed as such, one or more features from a claimed combination can in some cases be excised from the combination, and the claimed combination may be directed to a subcombination or variation of a subcombination. Similarly, while operations are depicted in the drawings in a particular order, this should not be understood as requiring that such operations be performed in the particular order shown or in sequential order, or that all illustrated operations be performed, to achieve desirable results. Moreover, the separation of various system components in the embodiments described above should not be understood as requiring such separation in all embodiments.
(106) Therefore, it will be appreciated that the scope of the present application fully encompasses other embodiments which may become obvious to those skilled in the art. In the claims, reference to an element in the singular is not intended to mean “one and only one” unless explicitly so stated, but rather “one or more.” All structural and functional equivalents to the elements of the above-described preferred embodiment that are known to those of ordinary skill in the art are expressly incorporated herein by reference and are intended to be encompassed by the present claims. Moreover, it is not necessary for a device to address each and every problem sought to be solved by the present apparatus, systems, and methods, for it to be encompassed by the present claims. Furthermore, no element or component in the present disclosure is intended to be dedicated to the public regardless of whether the element or component is explicitly recited in the claims. No claim element herein is to be construed under the provisions of 35 U.S.C. 112, sixth paragraph, unless the element is expressly recited using the phrase “means for.”
(107) While the apparatus, systems, and methods may be susceptible to various modifications and alternative forms, specific embodiments have been shown by way of example in the drawings and have been described in detail herein. However, it should be understood that the application is not intended to be limited to the particular forms disclosed. Rather, the application is to cover all modifications, equivalents, and alternatives falling within the spirit and scope of the application as defined by the following appended claims.