CA2041784A1 - Reinforcement for roofing membranes and process for making reinforced roofing membranes - Google Patents

Reinforcement for roofing membranes and process for making reinforced roofing membranes

Info

Publication number
CA2041784A1
CA2041784A1 CA 2041784 CA2041784A CA2041784A1 CA 2041784 A1 CA2041784 A1 CA 2041784A1 CA 2041784 CA2041784 CA 2041784 CA 2041784 A CA2041784 A CA 2041784A CA 2041784 A1 CA2041784 A1 CA 2041784A1
Authority
CA
Canada
Prior art keywords
grid
polyester
yarns
lightweight
high strength
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.)
Abandoned
Application number
CA 2041784
Other languages
French (fr)
Inventor
D. Mark Woiceshyn
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Saint Gobain Technical Fabrics Canada Ltd
Original Assignee
Bay Mills Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Bay Mills Ltd filed Critical Bay Mills Ltd
Publication of CA2041784A1 publication Critical patent/CA2041784A1/en
Abandoned legal-status Critical Current

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  • Synthetic Leather, Interior Materials Or Flexible Sheet Materials (AREA)
  • Laminated Bodies (AREA)

Abstract

Abstract of Invention A reinforcement for roofing membranes comprises a lightweight over-under, non-woven construction of polyester yarns. The fabric may be substituted for polyester mats in roofing membranes and provides advantages when so used. A process of manufacturing roofing membranes using such mats is also disclosed.

Description

2 ~ 1 ~ 7 ~ Li 380.64 TITLE

REINFORCEMENT FOR ROOFING MEMBRANES AND
PROCESS FOR MAKING REINFORCED ROOFING MEMBRANES

This invention relates to roofing membranes made from asphalt or other bituminous material. The invention comprises a process for making reinforced roofing membranes and a reinforcing layer for roofing membranes.

Backaround of the Invention For a long time roofing membranes were made from organic felts saturated with bituminous materials such as asphalt or modified bitumen. For several years, those membranes have been improved by adding polyester or fiberglass open grids for strength and fiberglass mats for dimensional stability. See, for example, commonly assigned United States Patents 4,491,617 and 4,539,254.

In this art, it is still generally believed necessary, even with the improved high strength grids, to continue to utilize during manufacture and retain in the final product an organic felt or mat of some kind, such as a polyester mat, to provide adhesion of bitumen to the reinforcing elements, to increase stiffness, to increase bulk, and to provide toughness to resist ..

2 ~ 8 '1 punctures. In addition, during processing in vats of high temperature bituminous material, such mats hold the grids of the high strength reinforcing elements in place and together inside the bituminous material. For example, without a polyester mat, a high-strength polyester scrim used for reinforcing comes apart in the vat of hot bituminous material during manufacture of the roofing membrane. In addition, high strength grids manufactured without a polyester mat to hold them together have a tendency to "pull-out" from the glass mat and come to the surface of the roofing membrane.
This occurs while the membrane is being coated with bituminous material or during the cooling stages. It is desirable, however, that the polyester grid remain embedded inside the bitumen.

As an example, one current reinforcement for roofing membranes comprises a heavy polyester, open-grid scrim (2.67 x 2.67 yarns per inch, 1000 denier, about 2.0 ounces per square yard) laminated to a lightweight polyester mat (0.5 ounce per square yard, about 17 grams per square meter). This polyester grid/mat product is led with a fiberglass mat (3.75 ounces per square yard) through a vat of bituminous material to create a roofing membrane coated on both sides with bituminous material. During processing the polyester grid is sandwiched between the two mats. One purpose of the polyester mat during this processing is to hold the polyester grid yarns against the fiberglass mat.
Without such a lightweight polyester mat, the polyester grid, which is held together with a thermoplastic adhesive (without any mechanical fastening at the cross-overs of the grid), would have a tendency to come apart and/or pull out to the surface of the membrane during impregnation with hot bituminous material.

~, ~

A problem with this roofing membrane, however, is delamination of the top and bottom bituminous layers in the final product. While the porosity of the lightweight polyester mat is high and saturates rapidly, the polyester mat does not allow the bituminous layers on either side of it to adhere to each other to a great degree. One method used to reduce this problem is to go to the extra step of needle-punching holes in such mats to promote saturation and adhesion, but this added manufacturing step requires additional expense.

~ccordingly, a need exists to overcome the above noted drawbacks and produce better and more economical products.

SUMMARY OF THE PRESENT INVENTION

In the process of the present invention, a roofing membrane is made by selecting a lightweight polyester fabric that consists essentially of a lightweight non-woven open grid of an over-under construction scrim.
Surprisingly, this fabric may replace the organic, polyester mats previously used and has advantages of cost and performance over such mats.

The finished roofing membrane product of this invention has much improved resistance to delamination, which has been demonstrated dramatically at lap joints that are formed in a roof when the final product is installed.
Because of increased strength between the layers, the lap joint strength increases considerably. This is important since a great many roof failures occur because of weak lap joints.
As used herein, "over-under construction" refers to a non-woven fabric in which yarns in the cross-machine 2 ~ r direction (the "fill" yarns) are held between pairs o~
yarns in the machine direction. The pairs of yarns in the machine direction are essentially one above the other, and the fill yarns pass between the yarns in the pair. Thus, the upper machine-direction yarns lie in one plane, the lower machine direction yarns lie in a second plane, and the fill yarns lie between them in an intermediate plane. Therefore, wherever a fill yarn crosses a pair of machine-direction yarns, one machine-direction yarn is over, and one machine-direction yarn is under, the fill yarn. Such non-woven fabrics may typically be held together by adhesives.

Because of their over-under construction, the machine-direction yarns can hold high quantities of adhesive:
the adhesive accumulates between the two yarns in each pair and binds them together well, holding the fill yarns securely between them. This reduces the tendency of the lightweight non-woven polyester fabric, which has no mechanical connection at the cross-over points, to come apart during processing.

The process of this invention further comprises combining the above over-under fabric with a high strength, open grid reinforcing fabric, preferably a non-woven fabric of high tenacity polyester without mechanical connections at its yarn cross-over points.
In accordance with this invention, the lightweight over-under grid and the high strength grid may then be led through a vat of hot bituminous material, without any organic felt or polyester mat. As in prior processes, appropriate rollers or doctor blades are used, and the bituminous material coats the grids and forms a roofing membrane. The grids do not come apart in the hot vat and the high strength grid does not pull out of or come to the surface of the membrane. In ~ ~ d~ ~ J ~ ~

addition, the final product has a reduced tendency to delaminate.

The process of the present invention may also comprise laminating the above two layers -- the high strength, open grid reinforcing fabric and the light weight over-under non-woven polyester fabric -- together under heat and pressure to create a single fabric before leading them through the bituminous material with a third fabric, preferably a fiberglass mat. The process may also comprise laminating all three layers together before leading them through the bituminous material.
In addition, the invention may comprise combining the lightweight over-under fabric, the high strength fabric and a fiberglass mat with a fourth or more layers of fabric before leading them through the bituminous material.

As used herein "mat" refers to an entangled mass of filaments. These filaments may be either staple filaments of lengths preferably above 25 millimeters (one inch) or continuous filaments. The filaments may be held together by adhesives, binders, finishes, felting, or by the melting under heat and pressure of certain thermoplastic filaments in the mat. A typical polyester mat of the prior art, which the lightweight polyester open grid of the present invention replaces, is known in the trade as "Reemay." As used in roofing membrane construction, lightweight polyester mats are typically much less porous than fiberglass mats, and hence, two layers of bituminous material bind together through fiberglass mats with a much stronger bond than through a lightweight polyester mat. "Mechanically fastened at yarn crossover points" refers to fabrics made by processes such as conventional weaving or weft-inserted warp~knit fabrics, in which knitting yarns are used to hold crossing yarns together.

- 2 ~ L~

In the over-under fabric of the present invention we prefer to use polyester yarns having from about 30 to about 300 denier in the fill or cross-machine direction and from about 30 to about 300 denier yarns in the machine direction. When calculating denier of yarns in the machine direction, both the under-yarn and the over-yarn are counted together; hence, a denier of 100 in the machine direction is in fact a 50 denier under-yarn together with a 50 denier over-yarn. It is most preferable to use 60 to 150 denier yarns in the over-under construction fabrics.

We prefer to space these yarns at yarn counts from about 3 x 3 to about 10 x 10 yarns per inch, and more preferably from 4 x 4 to 6 x 6, with a most preferable count being 6 x 4. (A pair of over-under machine direction yarns is considered as one yarn in these yarn count figures). The important factor is to have openings significantly larger than openings in the prior art lightweight mats, so that the bitumen on either side of the lightweight fabric passes through the fabric and binds together well with bitumen on the other side of the fabric, creating greater inter-ply adhesion than found in the prior art.

In making the lightweight fabric of this invention, it is preferable to use large amounts of binder to insure that the binding of the over-under yarns is great enough to hold the fill direction yarns during processing. It is preferable to use binder in the amount of about 60 to about 250 parts by weight of binder measured as "dry weight pick-up" (the weight of the binder picked up by the fabric without counting the weight of the liquid used to dissolve or disperse the binder for purposes of application to the fabric) relative to 100 parts by weight of the polyester fabric 2 ~ 7 ~ /~

to which it is applied. The most preferable range is about 100 to about 200 parts of binder, with the most preferable being about 150 parts. Binders for the fabrics of this invention may be thermoplastic, for example a polyvinylchloride, or thermosetting, for example an acrylic.

As an example, using a lightweight open grid of over-under polyester scrim fabric with 150 denier yarns and a 6 x 4 yarn/inch construction, the spaces between the yarn are large enough for asphalt to form a strong bond through the scrim fabric and improve adhesion in the final roofing membrane product. In spite of this openness, however, this scrim fabric has sufficient surface area to process smoothly during manufacture of the roofing product without coming apart. Moreover, a high strength grid processed between it and a fiberglass mat does not pull out dùring the dipping and coating process in hot bituminous material or in later cooling stages. Based on experience with prior art open grids held together by adhesive alone (without any mechanical connection at the crossover points), one would have expected this lightweight over-under construction grid to come apart and the high strength grid to come apart and/or pull out of the membrane during such processing.

~he above examples are not intended to limit the scope of the invention, which should be given the full breadth encompassed by the description herein and the following claims.

':
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Claims (4)

1. A process for manufacturing a roofing membrane that is free of any organic mat comprising the steps of, selecting a lightweight polyester fabric consisting essentially of an open grid of over-under construction, said grid comprising polyester yarns having about 30 to about 300 denier yarns in the machine direction, about 30 to about 300 denier yarns in the fill direction, a yarn per inch count of about 3 x 3 to about 10 x 10, and a dry weight pick-up of about 60 to about 250 parts by weight of binder to 100 parts by weight of polyester in the grid;
selecting a high strength reinforcing open grid;
and passing the lightweight polyester open grid, the high strength open grid and any additional reinforcements free of any organic mat through bituminous material to form the membrane.
2. The process of Claim 1 which comprises the additional step of laminating the lightweight polyester open grid and the high strength open grid together under heat and pressure before passing them through the bituminous material.
3. The process of Claim 1 in which the high-strength open grid is non-woven and free of mechanical fastenings at cross-over junctions of the yarns in the grid.
4. A puncture resisting and processability improving reinforcement for bituminous roofing membranes that contain high strength grids and are free of organic mats, the reinforcement consisting essentially of, a lightweight open grid of over-under construction, said grid having polyester yarns of about 30 to about 300 denier in the machine direction and about 30 to about 300 denier in the fill direction, a yarns per inch count of about 3 x 3 to about 10 x 10, and a dry weight pick-up of about 60 to about 250 parts of binder to 100 parts by weight of polyester in the grid, said lightweight grid being so arranged and constructed as to have sufficient binder and surface area to hold high strength grids inside bituminous material of a roofing membrane during manufacture of the roofing membrane.
CA 2041784 1990-05-08 1991-05-03 Reinforcement for roofing membranes and process for making reinforced roofing membranes Abandoned CA2041784A1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US52077090A 1990-05-08 1990-05-08
US520,770 1990-05-08

Publications (1)

Publication Number Publication Date
CA2041784A1 true CA2041784A1 (en) 1991-11-09

Family

ID=24073985

Family Applications (1)

Application Number Title Priority Date Filing Date
CA 2041784 Abandoned CA2041784A1 (en) 1990-05-08 1991-05-03 Reinforcement for roofing membranes and process for making reinforced roofing membranes

Country Status (1)

Country Link
CA (1) CA2041784A1 (en)

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