EP0631982A2

Silica based aggregates, elastomers reinforced therewith and tire with tread thereof.

Abstract

The invention relates to aggregates comprised of particles which contain silicon dioxide and to elastomers reinforced therewith. The invention also relates to tires having treads composed of such reinforced elastomers.

Term

Term ended

Projected expiry passed 20 June 2014, 12.3 years ago.

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23 claims: 1 independent, 22 dependent

  1. 1
    A process of producing an aggregate of particles which is characterized by comprising the steps of:(A) reacting at least two inorganic materials with a strong base and forming a water solution of a product thereof, wherein said inorganic materials are comprised of, based on 100 parts by weight thereof, about 0.1 to about 99.9 parts silicon dioxide and, correspondingly, about 99.9 to about 0.1 parts of at least one additional inorganic material selected from an oxide and/or salt and/or element of at least one of aluminum, iron, magnesium, boron, phosphorus, titanium, zirconium, vanadium and niobium, with a restriction that said additional inorganic material is reactive with a strong base to form a water soluble product thereof;(B) treating said water solution by the addition of at least one mineral acid thereto to react with said product to form a reaction product thereof and to reduce the pH of the solution and thereby produce precipitated particles of the reaction product as a precipitate;(C) optionally interrupting the said acid addition of step (B) to the said water solution to allow the said precipitate to age for a period of time before resuming the addition of acid, followed by adding additional acid until a desired pH is reached to complete the said reaction and precipitation of the reaction product;(D) optionally, after said acid addition of step (B), and/or step (C) if used, is completed, allowing the precipitate to age for a period of time;(E) filtering and washing the precipitate with water and drying the precipitate to recover the primary particles in the form of an aggregate thereof and having a water of adsorption on the surface of the particles of the aggregate;(F) optionally modifying step B and/or step C by treating the said precipitate by the addition to said precipitate of at least one electrolyte having an anion selected from at least one of carbonate, silicate, aluminate, borate, alumo-silicate, phosphate, sulfate, halogenide, titanate and zirconate and cation selected from at least one of lithium, sodium, potassium, magnesium and/or calcium. (G) optionally an additional step, during and/or following step (E) comprised of grafting onto said reaction product and/or precipitate at least one functional group and/or polymer, by a process of a reaction between the silanol groups, Si-O-Si groups and/or any other active sites on the surface thereof wherein said functional group is provided by reaction therewith at least one of (i) material of the type X and/or X-R, (ii) material of the type X-R-Y and (iii) a material of the type X-R-Z and/or (X-R-Z)₂ wherein where R is an aliphatic hydrocarbon radical having from 2 to 30 carbon atoms or an aromatic or hydrocarbon substituted aromatic radical having from 6 to 30 carbon atoms, X and Y are the same of different radicals selected from at least one of hydroxy, amino, alcoholate, cyanide, thiocyanide, halogen, sulfonic acid, sulfonic acid ester, thiol, benzoic acid, benzoic acid esters, carboxylic acid, carboxylic acid ester and organo silane radicals and Z is a radical selected from S n and Se n , where n is an integer of from 2 to 6, or an unsaturated radical selected from allyl, vinyl, acryl and aryl radicals;and where said polymer is selected from at least one of synthetic cis 1,4-polyisoprene natural and/or natural rubber, cis 1,4-polybutadiene, polystyrene, polychloroprene, polyacrylonitrile, styrene-butadiene-copolymer rubber, butadiene-isobutylene-copolymer, EPDM, styrene-isoprene-butadiene terpolymer rubber and isoprene-butadiene copolymer rubber;(H) optionally an additional step, following step (E), comprised of treating said dried precipitate with at least one non-ionic and/or non-ionic surfactant;provided, however, that the said process shall include at least one of said steps (F), (G) and (H).