Nova Patents
CA2701477C

Improved sealing composition

Abstract

A sealant composition for the sealing of a punctured tyre including a liquid carrier, one or more viscosity and suspendingagents, one or more fillers and sealants, and one or more polyacrylates.

CA2701477C, drawing sheet 1
Sheet 1 of 2

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Granted
  4. Today

5 claims: 5 independent, 0 dependent

  1. 1
    CA 02701477 2015-11-06 WHAT <S CLAIMED IS 1. A sealant composition for the sealing of a punctured tyre including a liquid carrier selected from the group consisting of water, mixtures of water and propylene glycol, mixtures of water and ethylene glycol, mixtures of water, propylene glycol and ethylene glycol, and mixtures of propylene glycol and ethylene glycol, one or more viscosity and suspending agents selected from the group consisting of polysaccharide gum, carboxymethylcellulose, methylhydraxyethylcellulose, fumed silica and psyllium husk powder, one or more fillers and sealants selected from the group consisting of pulverised bark powder, pulverised peanut shells, pulverised fibrous material, pulverised cellulosic material, fine ground rubber crumb, ground plastics selected from polyamide, polypropylene, polystyrene, fine ground high/low density polyethylene and polyethyltétrahydrophtalate, powdered Equisetum arvense, tea powder, parsley powder, diatomite, bentonite, gum resin, sodium silicate and titanium dioxide; and one or more alkali metal polyacrylates. 2. A sealing composition as claimed in claim 1, wherein said one or more alkali metal polyacrylates is a sodium polyacrylate, 3. A sealing composition as claimed in any one of claims 1 and 2 further including one or more corrosion inhibitors selected from the group consisting of ammonium carbonate, sodium bicarbonate, sodium borate, and ammonia. 4. A composition for sealing punctures in pneumatic tyres, said composition containing:(a) one or more of the group consisting of propylene glycol, comprising from 10 to 90 percent by weight of the composition, propylene-ethylene glycol blend, comprising from 10 to 90 percent by weight of the composition, and water, comprising from 10 to 90 percent by weight of the composition;(b) one or more viscosity and suspending agents selected from the group consisting of from 0.05 to 1.5 percent by weight of Xanthan gum, from 0.01 to CA 02701477 2015-11-06 1.5 percent by weight of methylhydroxyethylcellulose, from 0.01 to 1.5 percent by weight of carboxymethylcellulose, from 0.05 to 3.0 percent by weight of fumed silica, and from 0,01 to 1.5 percent by weight of psyllium husk powder;(c) one or more fillers and scaling particulates selected from the group consisting of from 0.01 to 1.5 percent by weight of fine ground rubber crumb sieved to <60 microns, from 0.01 to 2.5 percent by weight of ground plastics from the group composed of polyamide, polypropylene, polystyrene, fine ground low density polyethylene sieved to <150 microns and polyethyltetrahydrophtalate, from 0.5 to 5.0 percent by weight of diatomite of <60 microns diameter, from 0.01 to 1.5 percent by weight of bentonite, from 0.01 to 1.5 percent by weight of gum resin of <60 microns diameter, from 0.05 to 1.5 percent by weight of dissolved resin, from 0.1 to 2.0 percent by weight of sodium silicate;(d) one or more corrosion inhibitors selected from Hie group consisting of from 0.5 to 1.5 percent by weight of ammonium bicarbonate, from 0.05 to 1,5 percent by weight of sodium bicarbonate, and from 0,1 to 2.5 percent by weight of sodium borate;(e) one or more polyaerylales, in an amount of from 0.05 to 2,0 percent by weight;and (f) a preservative making up the remainder of the composition. 5. A composition for use in the sealing of a damaged inflatable article, said composition including: a liquid carrier, made up of one or more of water, propylene glycol, ethylene glycol and propyléne-ethylene glycol blend, in an amount of up to 90 percent by weight;one or more viscosity and suspension agents selected from the group comprising Xanthan gum, methylhydroxyethylcellulose, carboxymethylcellulose, fumed silica and psyllium husk powder;one or more fillers and sealing particulates selected from the group comprising ground rubber crumb, polyethylene, bark powder, peanut shells or other fibrous material, ground plastics, diatomite, bentonite, gum resin and sodium silicate;one or more polyacrylates;and one or more corrosion inhibitors selected from the group comprising ammonium bicarbonate, sodium bicarbonate and sodium borate. CA 02701477 2015-11-06 6. Λ composition for use in the sealing of a damaged inflatable article, said Composition including water, from 20 to 80 percent by weight;propylene glycol, from 20 to 80 percent by weight;a polysaccharide gum, from 0.1 to ().3 percent by weight;a cellulose polymer from 0.01 to 0.3 percent by weight;filmed colloidal silica, from 0.1 to 0.5 percent by weight;ammonium bicarbonate, from 0,1 to 1 percent by weight;borax, from 0.1 to 2 percent by weight;Diatomite (less than 30 micron), from 1.0 to 5.0 percent by weight;high density polyethylene/low density polyethylene powder (less than 100 micron) from 0.01 to 0.5 percent by weight;Bentonite (less than 40 micron) from 0.1 to 1.0 percent by weight;gum resin (less than 30 micron) from 0.05 to 0.5 percent by weight;one or more polyacrylates, in an amount of from 0.05 to 1.0 percent;and a preservative from 0.1 to 0.5 percent by weight. 7. A composition for use in sealing a punctured vehicle tyre, said composition containing the following constituents (with all amounts in percentage by weight): a hot.melt pre-mix consisting making up 10.5 percent of the final composition, and consisting of the following constituents (with all amounts in percentage by weight of tire pre-mix) a hydrophobic tackifying resin 12.5 rice bran 4.0 magnesium carbonate 2.0 ethyleneglycol 81.5;a gum resin pre-mix, making up 12,5 percent of the final composition, and consisting of the following components (with all amounts and percentage by weight of the pre-mix) gum resin 12,5 rice bran 4.0 magnesium carbonate 2.0 ethyleneglycol 81.5;CA 02701477 2015-11-06 a casein pre-mix, making up 4.25 percent of the final composition and consisting of the following components (with all amounts in percentage by weight of the pre-mix): casein 15.0 rice bran 1.0 magnesium carbonate 0.5 ethylene glycol 83.5 glycerine 3.0 skim milk powder 0.75;a resin soluble solution pre-mix, making up 9 percent of the final composition, and consisting of the following components (with all amounts in percentage by weight of the pre-mix) ethylene glycol 18.0 1 propylene glycol 50,0 water 15.8 ammonia (20 percent) 3.5 ethylalcohol 3.5 formalin 0.2 guin resin 9.0 magnesium carbonate 0.5;a dilution solution pre-mix, making up 57.25 percent of the final composition, and consisting of the following components (with all amounts in percentage by weight of the pre-mix) propylene glycol 2.1 glycerine 1.0 ethylene glycol 36.0 water 60.0 ammonia 0.3 formalin 0.3 opacifier (PVA) 0.15 fluorescein 0,02 glycerine 3.0 skim milk powder 0.75 magnesium carbonate .05 CA 02701477 2015-11-06 water 2,5, and one or more polyacrylates, in an amount of from 0.05 to 2.0 percent. 8. A method for the preparation of a composition as claimed in Claim 7, wherein the hot melt resin pre-mix, gum resin pre-mix and casein pre-mix as defined in Claim 7 are separately blended and reduced in temperature to -20C and separately milled to approximately 150 -- 200 micron particle size;a resin soluble solution pre-mix as defined in Claim 7 is prepared by adding gum resin to half of the propylene glycol and heated to 80°C until fully melted, the remainder of the propylene glycol being mixed with the remaining ingredients of the pre-mix, followed by the slow addition of the hot phase of the resin glycol mixture with stirring;all components of the final composition are then added together, cooled to -30°C and passed through a colloid mill to form a colloidal suspension with particle size not exceeding 130 micron. 9, A. composition for use in scaling a punctured vehicle tyre, said composition containing the following constituents (with all amounts in percentage by weight): a dilution solution pre-mix consisting of the following components (with all amounts in percentage by weight of the pre-mix) Propylene Glycol 2.1 Glycerine 1.0 Ethylene Glycol 36.0 Water 60.0 Ammonia .3 Formalin .3 Opacifier (P V A) . 15 Fluorescein .02 to which has been added a polyacrylate at an amount of between 0.05 percent and 2.0 percent by weight of the pre-mix, followed by high shear mixing to mill the polyacrylate particles down to less than 150 microns. 10. A sealant composition, prepared in two parts, hereinafter referred to as a pre-mix gum rosin solution (A) and particulate solution (B) respectively, wherein said pre-mix gum rosin solution (A) includes the following (with the amounts being given in percentages by weight): CA 02701477 2015-11-06 (l) ethylene glycol 18;
  2. 2
    (2) propylene glycol 24;
  3. 3
    (3) water 15.8
  4. 4
    (4) ammonia 20% 4.0 (5) alcohol ' 4.0 (6) formalin 0.2 (7) propylene glycol 24.0 and (3) gum rosin 10.0 and wherein the particulate solution (B) includes:(9) sodium polyacrylate 0.75 (10) water 41.0 (11) propylene glycol 5.9 (12) ethylene glycol 42.0 (13) ammonia (20%) 0.2 (H) formalin 0,15 with the balance, of the order of 10% by weight, being made up of pre-mix gum rosin solution (A). 11. A method for the production of the composition as claimed in claim 10, wherein ingredients (1) to (6) of said pre-mix gum rosin solution (A) are first combined, in descending order, with stirring, wherein said gum rosin (8) is added into the remaining propylene glycol (7) and that mix is heated to around 80üC, until the gum rosin is fully melted, and wherein the hot mix of gum rosin and propylene glycol is then added to the mixture of ingredients (I) to (6), with stirring, and wherein said premix gum rosin solution (A) is then added to ingredients (9) to (14) of said particulate solution (B). 12. A process for preparing a composition for sealing punctures in pneumatic tyres, said process including the steps of A. forming a hot phase premix by adding rosin (comprising between 0.5 and 5.0% by weight of the final composition) and propylene glycol (comprising between 0.5 and 5.0% by weight of the final composition) to a steam jacketed vessel and heating to a temperature of about 100°C until the rosin is fully CA 02701477 2015-11-06 melted in the propylene glycol, followed by cooling with stirring until a temperature of about 50°C is reached, then adding ethyl alcohol (comprising between 0.3 and 5.0% by weight of the final composition), 20% ammonia (comprising between 0.15 and 1 -5% by weight of the final composition), water (comprising between 0.0 and 5.0% by weight of the final composition), polyethylene powder (from ΙΟμηι to 180μιη in size) (comprising between 0.15 and 5.0% by weight of the final composition), diatomite (comprising between Û.15 and 3.0% by weight of the final composition) while continuing stirring;B, forming a gel phase premix in a separate vessel by adding, with stirring, sodium polyacrylate (comprising between 0.1 and 1.5% by weight of the final composition) to water (comprising between 10 and 20% by weight of the final composition) at a temperature of about 25°C, continuing stirring for up to 6 hours, then adding with stirring propylene glycol (comprising between 0.0 and 10% by weight of the final composition), 20% ammonia (comprising between (0,01 and 0.3% by weight of the final composition) and a portion of hot phase premix formed by step A (comprising between 0.2 and 5.0% by weight of the final composition);C. in another separate vessel adding, and mixing with stirring, water (comprising between 20 and 80% by weight of the final composition), propylene glycol (comprising between 10 and 50% by weight of the final composition), ethylene glycol (comprising between 0 and 50% by weight of the final composition, 20% ammonia (comprising between 0,2 and 1.0% by weight of the final composition), the remainder of the hot phase premix (the total hot phase premix ultimately comprising between 3.0 and 20.0% by weight of the final composition), the gel phase premix (after passing through a grinder to reduce the particle size to between 30μιη atid 250μηι) (comprising between 5.0 and 20% by weight of the final composition);then continually stirring the resultant composition for up to 24 hours with ambient temperature being reached. 13. The process as claimed in claim 12 wherein zinc stearate (comprising between 0.05 and 1.0% by weight of tlie final composition) is included in the hot phase premix. CA 02701477 2015-11-06 14. The process as claimed in any one of claims 12 and 13 wherein an opacifier and/or PVA/MA (comprising between 0.1 and 10.0% by weight of the final composition) is added during step C. 15. A process for preparing a composition tor sealing punctures in pneumatic tyres, said process including the steps of A. forming a hot phase premix by adding rosin (comprising 1.5% by weight of the final composition) and propylene glycol (comprising 1.5% by weight of the final composition) to a steam jacketed vessel and heating to a temperature of about 100°C until the rosin is fully melted in the propylene glycol, followed by cooling with stirring until a temperature of about 50C is reached, then adding ethyl alcohol (comprising J.,0% by weight of the final composition), 20% ammonia (comprisihg 0.4% by weight of the final composition), water (comprising 0.7% by weight of the final composition), polyethylene powder (from ΙΟμιη to 180μιη in size) (comprising 1.0% by weight of the final composition), diatomite (comprising 0.8% by weight of the final composition), and zinc stearate (comprising 0.2% by weight of the final composition) while continuing stirring;fi, forming a gel phase premix in a separate vessel by adding, with stirring, sodium polyacrylate (comprising 0.2% by weight of the final composition) to water (comprising 11.43% by weight of the final composition) at a temperature of about 25°C, continuing stirring, then adding with stirring propylene glycol (comprising 3.5% by weight of the final composition), 20% ammonia (comprising 0.07% by weight of the final composition) and a portion of hot phase premix formed by step A (comprising 0.8% by weight of the final composition);C. in another separate vessel adding, and mixing with stirring, water (comprising 33.2% by weight of the final composition), propylene glycol (comprising 33% by weight of the final composition), ethylene glycol (comprising 10% by weight of the final composition), 20% ammonia (comprising 0.35% by weight of the final composition), the remainder of the hot phase premix (the total hot phase premix ultimately comprising 7.1% by weight of the final composition), the gel phase premix (after passing through a grinder to reduce the particle CA 02701477 2015-11-06 size to between 50μιη and 2000 μιπ) (comprising 16% by weight of the final composition);then continually stirring the resultant composition for up to 24 hours with ambient temperature being reached, 16. The process as claimed in claim 15 wherein formalin (comprising 0.15% by weight of the final composition) is added during step C. 17. The process as claimed in any one of claims 15 and 16 wherein PVA opacifier and/or PVA/MA is added during step C. t 18. Λ composition for sealing punctures in pneumatic tyres prepared by the process as claimed in claim 8. 19. A process for preparing a composition for scaling punctures in pneumatic lyres, said process including the steps of: (1) Forming a TPS-premix by dispersing tapioca starch (comprising 0.16% by weight of the final composition), in propylene glycol (comprising 1.29% by weight of the final composition), and water (comprising 1,13% by weight of the final composition), while stirring and heating to 80°C until a solution becomes clear;(2) Forming an SPA-premix by adding sodium polyacrylate (comprising 0.19% by weigh of the final composition) to water (comprising 10.34% by weight of the final composition) in a vessel at 25°C and stirring for six hours, thereafter adding propylene glycol (comprising 2.52% by weight of the final composition), 20% ammonia (comprising 0,06% by weight of the final composition), and rosin solution (comprising 0.76% by weight of the final composition) and circulating for 24 hours through a high shear pump to reduce the sodium polyacrylate particle size down to between 25 micrometers and 250 micrometers. (3) Forming a CSN-premix by adding casine (comprising 0,27% by weight of the final composition) in a separate vessel to alcohol (comprising 0.22% by weight of the final composition), propylene glycol (comprising 0.22% by weight of the final composition), 20% ammonia (comprising 0.03% by weight CA 02701477 2015-11-06 20. 21, of the final composition), and water (comprising 0.04% by weight of the final composition), and circulating the resulting mixture through a high shear pump until the pnemix/solution becomes smooth and viscous, (4) Forming an RSN-premix by adding, to a steam jacketed vessel, rosin (comprising 1.09% by weight of the final composition), and propylene glycol (comprising 1.09% by weight of the final composition), and heating the mixture to 100°C, and after the rosin is fully melted, stirring the mixture until cooled to 55°C, and then adding alcohol (0.12% by weight of the final composition), 20% ammonia (0.25% by weight of the final composition), CSN-premix (comprising 0.26% by weight of the final composition), and water (comprising 0.10% by weight of the final composition).
  5. 5
    (5) Combining the TPS-premix, CPA-premix and RSN-premix with sodium silicate (comprising 0.17% by weight of the final composition), further 20% ammonia (comprising 0.05% by weight of the final composition), ethylene glycol (comprising 7.82% by weight of the final composition), additional propylene glycol (comprising 38.71 % by weight of the final composition), formalin (comprising 0.13% by weight of the final composition), PVÀ opacifier (comprising 0.16% by weight of the final composition), magnesium carbonate (comprising 0.05¾ by weight of the final composition), diatomite (comprising 1.6% by weight of the final composition), polyethylene powder180 VN (comprising 1.29% by weight of the final composition), Xanthan gum (comprising 0.002% by weight of the final composition), and fumed silica (comprising 0.001% by weight of the final composition), and mixing until a desired consistency is achieved. A composition for sealing punctures in pneumatic tyres prepared by the process as claimed in claim 19. A composition for scaling punctures in pneumatic tyres prepared by the method as claimed in claim 11. Λ composition for scaling punctures in pneumatic tyres prepared by the process as claimed in any one of claims 12 to 14, 22. CA 02701477 2015-11-06 23. A composition for sealing punctures in pneumatic tyres prepared by the process as. claimed in any one of claims 15 to 17.