PRESSURE-SENSITIVE ADHESIVE AND PRODUCTS
20190366685 ยท 2019-12-05
Inventors
Cpc classification
B32B11/02
PERFORMING OPERATIONS; TRANSPORTING
B32B2405/00
PERFORMING OPERATIONS; TRANSPORTING
B32B2264/00
PERFORMING OPERATIONS; TRANSPORTING
B32B5/28
PERFORMING OPERATIONS; TRANSPORTING
B32B5/22
PERFORMING OPERATIONS; TRANSPORTING
E04D5/10
FIXED CONSTRUCTIONS
B32B5/26
PERFORMING OPERATIONS; TRANSPORTING
B32B2395/00
PERFORMING OPERATIONS; TRANSPORTING
B32B5/02
PERFORMING OPERATIONS; TRANSPORTING
Y10T428/26
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y10T428/2865
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B32B2260/021
PERFORMING OPERATIONS; TRANSPORTING
E04D13/12
FIXED CONSTRUCTIONS
B32B19/00
PERFORMING OPERATIONS; TRANSPORTING
C09J195/00
CHEMISTRY; METALLURGY
Y10T428/2443
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y10T428/2835
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B32B7/12
PERFORMING OPERATIONS; TRANSPORTING
B32B5/30
PERFORMING OPERATIONS; TRANSPORTING
International classification
B32B7/12
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An asphalt base pressure-sensitive adhesive includes asphalt, an elastomer, residual pitch, as well as isoflour and optional oil and other inert fillers. The amount of elastomer is reduced by incorporating the residual pitch product which acts as an extender of the elastomer. Further, the isoflour further acts as an extender, and is compatible with the residual pitch. In a preferred embodiment, the pitch product is pine pitch.
Claims
1. A laminate comprising: a layer of a pressure sensitive adhesive having a first surface and a second surface, wherein the pressure sensitive adhesive comprises: 0.5 to 15% by weight of a thermoplastic elastomer; 0.5 to 25% by weight residual pitch; 10 to 50% by weight inert filler; 3 to 12% by weight oil; and asphalt, and wherein the pressure sensitive adhesive has low temperature flexibility and tack at an application temperature.
2. The laminate of claim 1 wherein said residual pitch is pine pitch.
3. The laminate of claim 1 further comprising an intermediate fibrous layer impregnated with the pressure sensitive adhesive.
4. The laminate of claim 1 wherein the pressure sensitive adhesive layer has a thickness of 20 mils to 60 mils.
5. The laminate of claim 1 wherein the pressure sensitive adhesive will bend around a 1 inch mandrel with a 90 turn in less than 2 seconds at 25 F.
6. The laminate of claim 1 wherein the pressure sensitive adhesive has a tack of equal to or greater than 0.4 at 78 F.
7. The laminate of claim 1 wherein the inert filler is composed of particles with an average particle size greater than 0.5 m and less than 50 m.
8. The laminate of claim 1 wherein the pressure sensitive adhesive is about 16% by weight inert filler.
9. The laminate of claim 1 wherein the pressure sensitive adhesive comprises 3 to 6% by weight residual pitch and 10 to 20% by weight inert filler.
10. The laminate of claim 1 further comprising: a polymeric membrane adhered to the first surface of the pressure sensitive adhesive, the polymeric membrane being selected from the group consisting of ethylene propylene diene M-class, polyvinyl chloride, and thermoplastic elastomer, rand a release layer is opposite the polymeric membrane.
11. The laminate of claim 1 further comprising: a non-tacky covering layer of gravel on the first surface, and a release layer is opposite the non-tacky covering layer.
12. A laminate comprising: a layer of a pressure sensitive adhesive having a first surface and second surface, wherein the pressure sensitive adhesive consists of: 0.5 to 15% by weight of a thermoplastic elastomer; 0.5 to 25% by weight residual pitch; 10 to 50% by weight inert filler; 3 to 12% by weight oil; and asphalt.
13. The laminate of claim 12 wherein the pressure sensitive adhesive consists of 3 to 6% by weight residual pitch and 10 to 20% by weight inert filler.
14. The laminate of claim 13 wherein the residual pitch is pine pitch.
15. The laminate of claim 12 further comprising an intermediate fibrous layer impregnated with the pressure sensitive adhesive.
16. The laminate of claim 12 wherein the pressure sensitive adhesive layer has a thickness of 20 to about 60 mils.
17. The laminate of claim 12 wherein the pressure sensitive adhesive will bend around a 1 inch mandrel with a 90 turn in less than 2 seconds at 25 F.
18. The laminate of claim 12 wherein the pressure sensitive adhesive has a tack of equal to or greater than 0.4 at 78 F.
19. The laminate of claim 12 further comprising: a polymeric membrane adhered to the first surface of the pressure sensitive adhesive, the polymeric membrane being selected from the group consisting of ethylene propylene diene M-class, polyvinyl chloride, and thermoplastic elastomer, and a release layer is opposite the polymeric membrane.
20. The laminate of claim 12 further comprising: a non-tacky covering layer of gravel on the first surface, and a release layer is opposite the non-tacky covering layer.
Description
BRIEF DESCRIPTION OF THE DRAWING
[0011]
[0012]
DETAILED DESCRIPTION
[0013] A pressure-sensitive adhesive according to the present invention incorporates asphalt, a thermoplastic elastomer, and a pitch component. Further, the composition can include ground foam, oil, and an inorganic filler material.
[0014] Generally, any suitable asphalt may be incorporated into the pressure sensitive adhesive. As is known in the art, asphalt may be obtained from naturally occurring sources or as one of the cuts during distillation of petroleum. As such, the composition of asphalt may vary by refining source and by petroleum source. Furthermore, the asphalt may be oxidized as is known in the art.
[0015] The asphalt must be compatible with the rubber that is selected, and must be tacky at the application temperature. Thus, it cannot be an extremely hard asphalt.
[0016] Asphalt generally contains various fractions of hydrocarbons, such as polycyclic hydrocarbons, and may also contain some polar elements. Asphalt generally has a softening point of between about 85 F. and about 200 F., but the softening point may be higher depending on the petroleum source and the various hydrocarbon fractions. The penetration of the asphalt may be between about 5 and about 300 decimillimeters at 77 F. with a 100 g load applied for 5 seconds, but is preferably about 180 decimillimeters.
[0017] Asphalt is also graded by its rheological properties, for example, by its viscosity. The asphalt viscosity will generally be between about 200 and 3000 poises at 140 F. The asphalt may be AC-3, AC-5, AC-7.5, AC-10, AC-20, and AC-30. However, higher viscosity asphalts may be utilized in certain applications. Asphalts are available from Owens Corning, Toledo, Ohio; Valero, San Antonio, Tex.; Marathon, Houston, Tex.; and ConocoPhillips, Houston, Tex.
[0018] The elastomer provides a polymeric network that provides elongation and recovery to the adhesive. Further, it provides resistance to flow as long as the temperature does not reach the melting point of the elastomer. The elastomer also provides low temperature flexibility.
[0019] The elastomeric material may be any thermoplastic material that provides sufficient elastomeric-type, or non-linear elasticity to the adhesive composition.
[0020] Suitable polymeric materials may include styrene-butadiene-styrene (SBS), styrene-butadiene, styrene-ethylene/butylene-styrene (SEBS), styrene-isoprene-styrene (SIS), ethylene propylene diene M-class (EPDM) rubber, and polyam ides. These polymeric materials are commercially available from Kraton of Houston, Tex.; LCY Elastomers LP of Baytown, Tex.; and Arizona Chemical of Jacksonville, Fla.
[0021] Other suitable commercially available elastomeric materials include, SOLPRENE 411 high molecular weight radial styrene-butadiene block copolymer, SOLPRENE 4318 linear block copolymer, and SOLPRENE 1205 linear random-block styrene-butadiene copolymer, each available from Dynasol of Houston, Tex.
[0022] Residual pitch products are by-products of processing plant material generally including a blend of fatty acids, esterified fatty acids, resin acids, and unsaponifiables. For instance, in one embodiment, the residual pitch product is a distillate of a by-product of a wood pulping process for making paper, which may contain various resin and fatty acids. Specifically, the residual pitch product may appear as a dark soft solid and may contain about 25 wt. % fatty acids and esterified acids, about 25 wt. % rosin acids, and unsaponifiables of about 7 wt. %.
[0023] The residual pitch product should have a lower softening point and a lower glass transition temperature than the asphalt. The residual pitch product can be pine pitch residue produced by heating resin obtained from conifers, which may contain resin acids. The residual pitch product may also be a tall oil rosin derivative, sometimes referred to as tall oil pitch or bottoms, or products from tall oil fractionation. Products from tall oil fractionation generally contain at least about 91 wt. % fatty acids, a maximum of about 3.0 wt. % rosin acids, and unsaponifiables of up to about 3 wt. %.
[0024] Residual pitch products are commercially available from, for example, Arizona Chemical, Jacksonville, Fla., such as SYLFAT DP-8 residual pitch product. Tall oil derivatives are also commercially available, such as TALLEX tall oil derivative from Meadwestvaco Corporation, Stamford, Conn.; and XTOL and LYTOR tall oil derivatives sold by Georgia-Pacific Chemicals LLC, Atlanta, Ga.
[0025] The pressure sensitive adhesive preferably includes an amount of isoflour which acts as a filler and further as a rubber extender, and is particularly compatible with the asphalt and the thermoplastic elastomer. The term isoflour specifically references ground polymeric rigid foam material wherein the polymer is either a polyisocyanurate or a polyisocyanate. This product may be obtained by simply grinding waste polyisocyanate or polyisocyanurate rigid foam insulation. Ground isocyanurate foam having the following particle size distribution worked well:
[0026] 0.55% was stopped by the #12 screen;
[0027] 22.25% was stopped by the #40 screen;
[0028] 43.65% was stopped by the #100 screen; and
[0029] 33.5% passed through the final screen.
[0030] A second filler material may also be added. This filler material is a solid inert particulate material. The average particle size of the filler material may vary and may depend upon the composition of the filler material, its cost for different average particle sizes of the filler material, and the application for which the sealant composition is made. Generally, as the average particle size is reduced, the viscosity of the adhesive composition increases. The inverse is also true, that is, as the average particle size is increased the viscosity is reduced. The average particle size may be less than about 50 m and is more often less than about 25 m. The average particle size is usually greater than about 0.5 m, and it may be greater than about 0.8 m, to reduce dusting during manufacturing.
[0031] Specific fillers include ceramic microspheres, glass beads (either hollow or solid), calcium carbonate, mica, talc, or gypsum or a combination thereof. Other suitable materials include granite, volcanic ash, barium sulfate, and ground-up rubber and/or plastic. By way of example, calcium carbonate powder is available from Huber Engineered Materials, Atlanta, Ga., under the trademark HUBERCARB G Series calcium carbonate. One product, HUBERCARB G 325 calcium carbonate powder, has a mean particle size of 10.5 m, a weight per gallon of 22.6 lbs/solid gallon, and a particle size screen analysis of 100% passing through a 100 mesh screen, 99.9% passing through a 200 mesh screen, and 99% passing through a 325 mesh screen.
[0032] The inert filler may also be recycled material such as ground tire, or other ground plastics such as PET.
[0033] As set forth above, the composition may further include an oil. Addition of the elastomer can act to reduce the tack. The oil can be added to restore the tack. Also, the oil acts to lower the softening point and lower the working viscosity of the product. One exemplary oil is naphthenic oil. Generally, naphthenic oils are classified as having less than about 60% paraffinic carbon and are often characterized by the ability to flow at low temperatures, unlike paraffinic oils. Naphthenic oils are available commercially, for example, from Ergon Refining, Inc. Jackson, Miss., sold under the tradename Hyprene, such as Hyprene L500, and another commercial source of oil includes Sunoco, Philadelphia, Pa.
[0034] The pressure sensitive adhesive requires good low temperature characteristics. These low temperature characteristics can be measured by using the ASTM D-1970 method. Preferably, the adhesive will bend around a 1-inch mandrel with a 90 turn in less than 2 seconds at 25 F. The tack of the adhesive at 78 should be greater than or equal to 0.4 and, preferably, greater than or equal to 1. At 40 F., the tack should be greater than 0.2 and, preferably, greater than 0.4.
[0035] When used as a roofing product, the softening point of the adhesive should be greater than 190 F. Generally, it will be greater than 200 F., and, for some applications, the adhesive will be formulated to have a softening point greater than 260 F.
[0036] The primary component of the present invention will be the asphalt which is modified with the elastomer. The amount of elastomeric material added should be sufficient to provide a continuous network of the elastomeric molecules or at least sufficient to position the molecules of elastomeric materials sufficiently close to one another within the sealing composition to provide a measurable improvement of the flexibility of the sealant composition.
[0037] Generally, the adhesive composition will have 0.5-15 percent by weight of the elastomeric material. Since the elastomeric material is the most expensive component, it is desirable to minimize this content without adversely affecting the physical characteristics of the adhesive. In certain formulations, the content will be from 2 to about 13%, and in precise formulations may be from 5 to 10%.
[0038] The residual pitch product acts as a rubber extender when added to the asphalt. It markedly increases the flexibility and at the same time it reduces the tack. Therefore, the addition of the pitch allows one to decrease the rubber content. Generally, there will be from about 0.5% to 25% pitch. In certain formulations, this will be from 2-20% by weight with a narrower limit of 3-6%. The pitch also allows the reduction of peak temperature during rubber milling, from 370 F. to about 350 F., thus reducing the temperature degradation of the rubber.
[0039] The isoflour acts as a unique filler that is low density thereby extending the coating matrix without increasing the product weight. It also acts as a rubber extender that allows a reduction in the rubber content. This increases the softening point of the product without an increase in the rubber content. Thus, the amount of isoflour can be zero percent, but will generally be 0.5-25%. In certain formulations, it will be 1-15% by weight, and, in other formulations, 2.5-7.5% by weight.
[0040] In addition to the isoflour, other inert fillers can be used to extend the product and decrease the cost of the product. Generally, these would be present about 0-50% with 10-20% being used in certain formulations.
[0041] Likewise, the oil is an optional component in the present invention and it can be present in an amount from about 0-12% by weight, generally 3-12%. The balance of the formulation will then be the asphalt.
[0042] To formulate the adhesive composition, the residual pitch product and asphalt are heated to a temperature sufficient to reduce their viscosity and are mixed together. Generally, the mixing temperature will be from about 350 F. to 370 F. High shear mixing is used to blend the elastomeric material into a residual pitch product and asphalt mixture. Once the elastomeric material is mixed into the residual pitch product/asphalt mixture, the isoflour and inert filler are added. Additional gentle agitation may be used to thoroughly mix the filler into the mixture at the same time, any oil or other components are added.
[0043] A typical formulation can have the following components.
TABLE-US-00001 TABLE Asphalt 63.23% Pine Pitch 4.83% Iso-flour 3.00% SBS 4.83% Oil 8.09% Calcium Carbonate 16.02%
[0044] This product had a softening point of 229 F. Typically, an asphalt formulation with such a softening point would require 7-7.5% elastomerics in order to pass a cold bend test at 25 F.
[0045] The adhesive composition of the present invention can be formed into a film-like structure, either on a separate substrate, or coated with a substrate and then covered with a separate release sheet.
[0046] As shown in
[0047] The laminate 10 is formed by coating layer 14 with a molten layer of the adhesive 11 using a curtain coater. The thickness is established with a knife or calendar rollers. The adhesive is cooled under controlled circumstances and a release sheet 15 applied to the opposite side 12.
[0048] As shown in
[0049] This structure can be used in a variety of external applications. It can be applied to a roof structure as either a sealing layer or a protective layer, such as a walkway pad on a membrane roof.
[0050] This has been a description of the present invention along with the preferred method of practicing the present invention. However, the invention itself should only be defined by the appended claims, WHEREIN I CLAIM: