EP4473171A1 - Method for constructing a roof system using adhesive transfer films adhering construction components - Google Patents
Method for constructing a roof system using adhesive transfer films adhering construction componentsInfo
- Publication number
- EP4473171A1 EP4473171A1 EP23716082.5A EP23716082A EP4473171A1 EP 4473171 A1 EP4473171 A1 EP 4473171A1 EP 23716082 A EP23716082 A EP 23716082A EP 4473171 A1 EP4473171 A1 EP 4473171A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- adhesive body
- adhesive
- layer
- planar surface
- construction
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
Links
Classifications
-
- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04D—ROOF COVERINGS; SKY-LIGHTS; GUTTERS; ROOF-WORKING TOOLS
- E04D11/00—Roof covering, as far as not restricted to features covered by only one of groups E04D1/00 - E04D9/00; Roof covering in ways not provided for by groups E04D1/00 - E04D9/00, e.g. built-up roofs, elevated load-supporting roof coverings
- E04D11/02—Build-up roofs, i.e. consisting of two or more layers bonded together in situ, at least one of the layers being of watertight composition
-
- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04D—ROOF COVERINGS; SKY-LIGHTS; GUTTERS; ROOF-WORKING TOOLS
- E04D5/00—Roof covering by making use of flexible material, e.g. supplied in roll form
- E04D5/14—Fastening means therefor
- E04D5/148—Fastening means therefor fastening by gluing
Definitions
- Embodiments of the present invention provide an adhesive transfer film and its use in adhering construction components. Particular embodiments are directed toward methods of constructing roof systems, the method including adhering one or more layers of construction boards, such as insulation board, within the roof system by using the transfer film.
- Pressure-sensitive adhesives have been used in the construction industry.
- polymeric single-ply membranes including a layer of pressure-sensitive adhesive have been used.
- the pressure-sensitive adhesive is used to secure the membrane to the underlying surface.
- the membrane provides a weather-protective layer for the roof system.
- These membrane composites are advantageously installed by the so-called “peel-and-stick” method. Numerous advantages are realized by using peel-and-stick methods including reduced installation time and labor, as well as the fact that the adhered systems can be formed without the use of significant volatile organic compounds.
- membranes carrying a pressure-sensitive adhesive are relatively straightforward since efficient techniques are available for applying the pressuresensitive adhesive to the membrane within a factory setting.
- the pressuresensitive adhesive can be efficiently applied to the surface of a membrane as a hot-melt composition using relatively common coating techniques.
- One or more embodiments of the present invention provide a method for constructing a roof system, the method comprising (i) applying an adhesive transfer film composite to a roof substrate, where the adhesive transfer film composite includes an adhesive body having first and second planar surfaces and a release member removably attached to the second planar surface of the adhesive body, where the adhesive body is devoid of a carrier layer, and where the adhesive body includes a crosslinked network of acrylate-based polymers, whereby said step of applying secures the first planar surface of the adhesive body to the roof substrate; (ii) removing the release member to thereby expose the second planar surface of the adhesive body; and (hi) applying a construction element to the second planar surface of the adhesive body to thereby adhere the construction element to the substrate.
- Fig. 4 is a cross-sectional view of a roof system constructed according to embodiments of the invention.
- the composite is provided to the location of installation (e.g. at a roof site) in the form of a roll.
- the skilled person appreciates that in order for the roll to be useful, it must be capable of being unwound and installed into place within the roof system.
- the nature of the release member is therefore important. For example, where the composite includes a single release member, as shown in Fig. 1, both surfaces of the release member are adapted to be released from the adhesive body. In other words, as the skilled person will appreciate, in order to roll composite 11 onto itself, first planar surface 15 of adhesive body 13 will contact top surface 27 of release member 23 when rolled.
- the composite includes two opposed release members.
- Fig. 2 shows composite 11' including adhesive body 13, first release member 23, and second release member 33.
- First release member 23 includes contacting surface 25 and opposed surface 27.
- Second release member 33 includes contacting surface 37 and opposed surface 35. Contacting surface 25 of release member 23 is removably attached to first surface 17 of adhesive body 13. Similarly, contacting surface 37 of release member 33 is removably attached to first surface 15 of adhesive body 13.
- adhesive body 13 which may also be referred to as an adhesive layer 13, includes a pressure-sensitive adhesive.
- the adhesive body is substantially pressure-sensitive adhesive; for example, the adhesive body may include a homogeneous (or substantially homogeneous) mass of pressure-sensitive adhesive. Reference may also be made to a 100% adhesive body.
- the adhesive body is devoid of a backing substrate, such as a fabric backing, which commonly serves as a substrate or carrier layer in many tapes.
- the adhesive body is a cured, hot-melt pressure sensitive adhesive.
- Cured pressure-sensitive adhesives that are useful in practicing the present invention are known in the art as described, for example, in International Publ. No. WO 2015/042258, which is incorporated herein by reference.
- the curable hot-melt adhesive that may be used for forming the cured pressure-sensitive adhesive layer may be an acrylic-based hot-melt adhesive.
- the acrylic-based holt-melt adhesive is a polyacrylate, which may also be referred to as acrylate-based polymers or polyacrylate elastomer.
- the acrylic-based hot-melt adhesive may include two or more chemically distinct p o lya cry late s.
- useful polyacrylates include one or more units defined by the formula: where each R 1 is individually hydrogen or a hydrocarbyl group and each R 2 is individually a hydrocarbyl group.
- hydrocarbyl groups include, for example, alkyl, cycloalkyl, substituted cycloalkyl, alkenyl, cycloalkenyl, substituted cycloalkenyl, aryl, substituted aryl, aralkyl, alkaryl, allyl, and alkynyl groups, with each group containing in the range of from 1 carbon atom, or the appropriate minimum number of carbon atoms to form the group, up to about 20 carbon atoms.
- the polyacrylates that are useful for forming the adhesive body in the practice of this invention may be characterized by a glass transition temperature (Tg) of less than 0 °C, in other embodiments less than -20 °C, in other embodiments less than -30 °C.
- useful polyacrylates may be characterized by a Tg of from about -70 to about 0 °C, in other embodiments from about -50 to about -10 °C, and in other embodiments from about -40 to about -20 °C.
- These units may derive from copolymerizable photoinitiators including acetophenone or benzophenone derivatives.
- copolymerizable photoinitiators including acetophenone or benzophenone derivatives.
- These polyacrylate elastomers and the coating compositions formed therefrom are known as disclosed in U.S. Patent Nos 7,304,119 and 7,358,319, which are incorporated herein by reference.
- Useful adhesive compositions are commercially available in the art.
- useful adhesives include those available under the tradename acResin (BASF), those available under the tradename AroCure (Ashland Chemical), Loctite Duro-Tak (Henkel), and NovaMeltRC (NovaMelt).
- these hot-melt adhesives may be cured (i.e., crosslinked) by UV light.
- the methods of this invention employ an adhesive transfer film to secure one or more construction articles, such as construction boards, into a roof system.
- These methods generally include contacting a planar surface of the adhesive body to a roof substrate, removing a release member to expose the upper planar surface of the adhesive body, and contacting the construction article to the upper surface of the adhesive body. In so doing, the construction article is adhered to the roof substrate.
- installation process 101 includes a step 103 of providing a roll of an adhesive transfer film composite, and a step 105 of positioning the roll on a surface of the roof, which may be referred to as a substrate.
- the process further includes a step 107 of unwinding the roll, which may also be referred to as a step of unrolling the roll.
- the process may include a step 109 of removing the lower release member so that a surface of the adhesive body can be contacted to the roof substrate.
- the nature of the composite can impact the order in which the various steps of the installation process are performed.
- the process may allow for simultaneously performing step 109 of unrolling and step 111 of contactingthe adhesive to the substrate (e.g. the adhesive is contacted duringthe unrolling step).
- Step 113 of applying pressure can likewise be performed conjunction with the steps of unwinding and contacting.
- a force can be applied, such as by a roller, at a location downstream of where the composite roll is unrolled and contacted to the substrate.
- first layer of insulation board 205 is disposed above roof deck 203.
- first layer of insulation 205 may include a plurality of insulation boards (which may be referred to as board stock) arranged in a pattern that may be conventionally employed in the art, such as a staggered pattern.
- layer 205 includes first board 205A and second board 205B.
- First layer of insulation board 205 may optionally be secured to roof deck 203 via mechanical fasteners 221, 221'.
- two or more boards within a single layer of boards are secured to the substrate (i.e. the underlying layer) via a common film adhesive.
- boards 209A, 209B, and 209C may be adhered to the substrate (i.e. first layer of insulation board 205) via a common adhesive film 231.
- membrane layer 217 Disposed above (relative to deck 203) coverboard layer 213 is a membrane layer 217.
- membrane layer 217 may be formed from a plurality of membrane panels seemed together to form a water impervious layer to protect the building structure.
- Membrane layer 217 can be secured to the roof deck, either directly or indirectly, by employing various techniques known in the art.
- membrane layer 217, and specifically the individual membrane panels of layer 217 can be mechanically attached to roof deck 203.
- the membrane panels of membrane layer 217 can be adhered to the underlying substrate such as coverboard layer 213.
- the various panels of layer 217 can carry a pressure-sensitive layer.
- the construction boards employed in practicing the present invention may include a foam body.
- the foam body of the construction boards may include an insulating foam.
- insulating foams that can be used include foamed polystyrene, such as expanded polystyrene, and polyurethane and/or polyisocyanurate foam.
- the foam body is a polyisocyanurate or polyurethane foam.
- polyisocyanurate and/or polyurethane foams can be manufactured by mixing a first stream that includes an isocyanate-containing compound with a second stream that includes an isocyanate-reactive compound.
- the first stream i.e., the stream including an isocyanate-containing compound
- the second stream i.e., the stream including an isocyanate-reactive compound
- the reaction that ensues produces a foam that, according to one or more kinetic and/or thermodynamic properties, develops over a period of time.
- the term developing foam will be understood to refer to the mixture of the polyurethane and/or polyisocyanurate reactants as they exist prior to cure, which when the reaction mixture is appreciably immobile (e.g., is no longer flowable).
- the A-side stream may only contain the isocyanate-containing compound. In one or more embodiments, multiple isocyanate- containing compounds may be included in the A-side. In other embodiments, the A-side stream may also contain other constituents such as, but not limited to, flame-retardants, surfactants, blowing agents and other non-isocyanate-reactive components. In one or more embodiments, the complementary constituents added to the A-side are non-isocyanate reactive.
- the B-side stream may only include the isocyanate-reactive compound. In one or more embodiments, multiple isocyanate-reactive compounds may be included in the B-side. In other embodiments, the B-side stream may also contain other constituents such as, but not limited to, flame-retardants, surfactants, blowing agents and other non-isocyanate-containing components. In particular embodiments, the B-side includes an isocyanate reactive compound and a blowing agent. In these or other embodiments, the B-side may also include flame retardants, catalysts, emulsifiers/solubilizers, surfactants, fillers, fungicides, anti-static substances, water and other ingredients that are conventional in the art.
- Catalysts which are believed to initiate the polymerization reaction between the isocyanate and the polyol, as well as a trimerization reaction between free isocyanate groups when polyisocyanurate foam is desired, may be employed. While some catalysts expedite both reactions, two or more catalysts may be employed to achieve both reactions.
- Useful catalysts include salts of alkali metals and carboxylic acids or phenols, such as, for example potassium octoate; mononuclear or polynuclear Mannich bases of condensable phenols, oxocompounds, and secondary amines, which are optionally substituted with alkyl groups, aryl groups, or aralkyl groups; tertiary amines, such as pentamethyldiethylene triamine (PMDETA), 2,4,6-tris [(dimethylamino) methyl] phenol, triethyl amine, tributyl amine, N- methyl morpholine, and N-ethyl morpholine; basic nitrogen compounds, such as tetra alkyl ammonium hydroxides, alkali metal hydroxides, alkali metal phenolates, and alkali metal acholates; and organic metal compounds, such as tin(ll)-salts of carboxylic acids, tin(l
- Surfactants, emulsifiers, and/or solubilizers may also be employed in the production of polyurethane and polyisocyanurate foams in order to increase the compatibility of the blowing agents with the isocyanate and polyol components.
- Surfactants may serve two purposes. First, they may help to emulsify/solubilize all the components so that they react completely. Second, they may promote cell nucleation and cell stabilization.
- Exemplary surfactants include silicone co-polymers or organic polymers bonded to a silicone polymer.
- surfactants can serve both functions, it may also be useful to ensure emulsification/solubilization by using enough emulsifiers/solubilizers to maintain emulsification/solubilization and a minimal amount of the surfactant to obtain good cell nucleation and cell stabilization.
- surfactants include Pelron surfactant 9920, Goldschmidt surfactant B8522, and GE 6912.
- U.S. Patent Nos. 5,686,499 and 5,837,742 are incorporated herein by reference to show various useful surfactants.
- Suitable emulsifiers/solubilizers include DABCO Ketene 20AS (Air Products), and Tergitol NP-9 (nonylphenol + 9 moles ethylene oxide).
- Flame Retardants may be used in the production of polyurethane and polyisocyanurate foams, especially when the foams contain flammable blowing agents such as pentane isomers.
- Useful flame retardants include tri(monochloropropyl) phosphate (a.k.a. tris(chloro-propyl) phosphate), tri-2 -chloroethyl phosphate (a.k.a tris(chloro-ethyl) phosphate), phosphonic acid, methyl ester, dimethyl ester, and diethyl ester.
- U.S. Patent No. 5,182,309 is incorporated herein by reference to show useful blowing agents.
- An isocyanurate is a trimeric reaction product of three isocyanates forming a six-membered ring.
- the ratio of the equivalence of NCO groups (provided by the isocyanate- containing compound or A-side) to isocyanate-reactive groups (provided by the isocyanate- containing compound or B side) may be referred to as the index or ISO index.
- the index is 1.00, which is referred to as an index of 100, and the mixture is said to be stoichiometrically equal.
- the index increases. Above an index of about 150, the material is generally known as a polyisocyanurate foam, even though there are still many polyurethane linkages that may not be trimerized. When the index is below about 150, the foam is generally known as a polyurethane foam even though there may be some isocyanurate linkages.
- polyisocyanurate and polyurethane will be used interchangeably unless a specific ISO index is referenced.
- the concentration of the isocyanate-containing compound to the isocyanate-reactive compounds within the respective A-side and B-side streams is adjusted to provide the foam product with an ISO index of from about 150 to about 400, in other embodiments from about 170 to about 350, and in other embodiments from about 190 to about 330, and in other embodiments from about 220 to about 280.
- less than 40 pbw, in other embodiments less than 36 pbw, and in other embodiments less than 33 pbw alkane blowing agent per 100 pbw of polyol may be used. In one or more embodiments, from about 12 to about 40, in other embodiments from about 14 to about 36, and in other embodiments from about 18 to about 33 of alkane blowing agent per 100 parts by weight of polyol may be used.
- less than 50, in other embodiments less than 45 pbw, and in other embodiments less than 40 pbw hydrofluoroolefin blowing agent per 100 pbw of polyol may be used. In one or more embodiments, from about 15 to about 50, in other embodiments from about 18 to about 45, and in other embodiments from about 20 to about 40 of hydrofluoroolefin blowing agent per 100 parts by weight of polyol may be used.
- the foam body may include a polyurethane and/or polyisocyanurate foam.
- a foam is a cellular structure that may include an interconnected network of solid struts or plates that form the edges and faces of cells. These cellular structures may, in one or more embodiments, also be defined by a “relative density” that is less than 0.8, in other embodiments less than 0.5, and in other embodiments less than 0.3. As those skilled in the art will appreciate, “relative density” refers to the density of the cellular material divided by that of the solid from which the cell walls are made. As the relative density increases, the cell walls thicken and the pore space shrinks such that at some point there is a transition from a cellular structure to one that is better defied as a solid containing isolated pores.
- the thickness of the facer material may vary; for example, it may be from about
Landscapes
- Engineering & Computer Science (AREA)
- Architecture (AREA)
- Civil Engineering (AREA)
- Structural Engineering (AREA)
- Laminated Bodies (AREA)
- Roof Covering Using Slabs Or Stiff Sheets (AREA)
- Adhesives Or Adhesive Processes (AREA)
- Adhesive Tapes (AREA)
- Application Of Or Painting With Fluid Materials (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US202263306699P | 2022-02-04 | 2022-02-04 | |
| PCT/US2023/062048 WO2023150751A1 (en) | 2022-02-04 | 2023-02-06 | Method for constructing a roof system using adhesive transfer films adhering construction components |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| EP4473171A1 true EP4473171A1 (en) | 2024-12-11 |
Family
ID=85979617
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP23716082.5A Pending EP4473171A1 (en) | 2022-02-04 | 2023-02-06 | Method for constructing a roof system using adhesive transfer films adhering construction components |
Country Status (7)
| Country | Link |
|---|---|
| US (1) | US20250137256A1 (en) |
| EP (1) | EP4473171A1 (en) |
| JP (1) | JP2025505454A (en) |
| CN (1) | CN118632964A (en) |
| CA (1) | CA3248145A1 (en) |
| MX (1) | MX2024009275A (en) |
| WO (1) | WO2023150751A1 (en) |
Families Citing this family (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP7732043B2 (en) * | 2024-06-07 | 2025-09-01 | Jfe鋼板株式会社 | Building material panel and connected structure using building material panel |
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| US5093206A (en) | 1990-03-09 | 1992-03-03 | E. I. Du Pont De Nemours And Company | Curable laminated article of epdm elastomer and ethylene-containing polymer |
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| US5260111A (en) | 1991-08-08 | 1993-11-09 | Bridgestone Corporation | Thermoplastic films for heat seaming roof sheeting and method for covering roofs |
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| US5859114A (en) | 1994-10-27 | 1999-01-12 | Bridgestone/Firstone, Inc. | Adhesive tape compositions and method for covering roofs |
| EP0736640A1 (en) | 1995-03-31 | 1996-10-09 | Bridgestone/Firestone, Inc. | Mineral filled EDPM membrane compositions with improved adhesion performance |
| US5635014A (en) | 1995-06-19 | 1997-06-03 | Gr Systems | Press apparatus and methods for fusing overlapped thermoplastic sheet materials |
| US5686499A (en) | 1995-10-27 | 1997-11-11 | Basf Corporation | Polyurethane foams containing high levels of silicone-containing surfactant polymer to improve flame retardance and aged K-factors |
| US5837742A (en) | 1995-10-27 | 1998-11-17 | Basf Corporation | Method of making a polyurethane foam having improved flame retardance and aged k-factors |
| US5804661A (en) | 1996-02-21 | 1998-09-08 | Bridgestone/Firestone, Inc. | EPDM flashing compositions |
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| DE10221402A1 (en) | 2002-05-14 | 2003-11-27 | Tesa Ag | Production of solvent-free polyacrylate melt adhesives is effected continuously, with polymerization followed by extrusion to remove and recycle the solvent |
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| CA2954854C (en) * | 2014-07-18 | 2022-11-22 | Firestone Building Products Co., LLC | Construction boards having a pressure-sensitive adhesive layer |
| CA3018752C (en) | 2016-03-25 | 2022-06-07 | Firestone Building Products Company, Llc | Fully-adhered roof system adhered and seamed with a common adhesive |
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-
2023
- 2023-02-06 US US18/835,574 patent/US20250137256A1/en active Pending
- 2023-02-06 MX MX2024009275A patent/MX2024009275A/en unknown
- 2023-02-06 EP EP23716082.5A patent/EP4473171A1/en active Pending
- 2023-02-06 CN CN202380019647.6A patent/CN118632964A/en active Pending
- 2023-02-06 CA CA3248145A patent/CA3248145A1/en active Pending
- 2023-02-06 JP JP2024545906A patent/JP2025505454A/en active Pending
- 2023-02-06 WO PCT/US2023/062048 patent/WO2023150751A1/en not_active Ceased
Also Published As
| Publication number | Publication date |
|---|---|
| CA3248145A1 (en) | 2023-08-10 |
| MX2024009275A (en) | 2024-08-09 |
| CN118632964A (en) | 2024-09-10 |
| JP2025505454A (en) | 2025-02-26 |
| WO2023150751A1 (en) | 2023-08-10 |
| US20250137256A1 (en) | 2025-05-01 |
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