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Aryl group

Subclass of:

524 - Synthetic resins or natural rubbers -- part of the class 520 series

524000000 - SYNTHETIC RESINS (CLASS 520, SUBCLASS 1)

524000000 - PROCESSES OF PREPARING A DESIRED OR INTENTIONAL COMPOSITION OF AT LEAST ONE NONREACTANT MATERIAL AND AT LEAST ONE SOLID POLYMER OR SPECIFIED INTERMEDIATE CONDENSATION PRODUCT, OR PRODUCT THEREOF (Class 523, subclass 1)

524001000 - Adding a NRM to a preformed solid polymer or preformed specified intermediate condensation product, composition thereof; or process of treating or composition thereof

524080000 - DNRM which is other than silicon dioxide, glass, titanium dioxide, water, halohydrocarbon, hydrocarbon, or elemental carbon

524081000 - Organic DNRM

524115000 - Phosphorus organic compound DNRM

524136000 - Pentavalent phosphorus atom directly bonded to at least one oxygen atom

524140000 - P directly bonded to oxygen only

Patent class list (only not empty are listed)

Deeper subclasses:

Class / Patent application numberDescriptionNumber of patent applications / Date published
524141000 Aryl group 39
20090093574Polyester Compositions Containing Cyclobutanediol Having High Glass Transition Temperature and Articles Made Therefrom - Described are polyester compositions comprising at least one polyester which comprises terephthalic acid residues, 2,2,4,4-tetramethyl-1,3-cyclobutanediol, and cyclohexanedimethanol, wherein the inherent viscosity and the Tg of the polyester provides for certain polyester properties. The polyesters may be manufactured into articles such as fibers, films, bottles or sheets.04-09-2009
20090105383Styrenated phenol ethoxylates in emulsion polymerization - The present invention relates to the use of Styrenated Phenol Ethoxylates as surfactants in emulsion polymerization. The present invention further relates to the use of both anionic and nonionic Styrenated Phenol Ethoxylates in emulsion polymerization. Latexes with small average particle and narrow particle size distributions are obtained. Prepared latexes also have low coagulum levels and exhibit excellent mechanical and chemical stability.04-23-2009
20090203819Flameproof Thermoplastic Resin Composition - Disclosed herein is a flameproof thermoplastic resin composition comprising (A) about 5 to about 40 parts by weight of a rubber modified aromatic vinyl copolymer resin; (B) about 30 to about 90 parts by weight of a polycarbonate resin; (C) about 30 to about 90 parts by weight of a polyester resin comprising (c1) about 0.01 to about 99% by weight of a semi-crystalline polyester resin and (c2) about 1 to about 99.99% by weight of a noncrystalline polyester resin; and (D) about 5 to about 30 parts by weight of an aromatic phosphate ester compound, per 100 parts by weight of a base resin comprising (A), (B) and (C).08-13-2009
20090275684HIGH CTI POLY(ARYLENE ETHER) COMPOSITION - Disclosed herein is a thermoplastic composition comprising: a poly(arylene ether); a poly(alkenyl aromatic) resin, an organophosphate ester flame retardant, and tricalcium phosphate. The composition may further comprise a reinforcing filler, black pigment, or combination thereof.11-05-2009
20100087574Polyester compositions containing cyclobutanediol having a certain combination of inherent viscosity and moderate glass transition temperature and articles made therefrom - Described are polyesters comprising (a) a dicarboxylic acid component comprising terephthalic acid residues; optionally, aromatic dicarboxylic acid residues or aliphatic dicarboxylic acid residues; 2,2,4,4-tetramethy-1,3-cyclobutanediol residues; and cyclohexanedimethanol residues. The polyesters may be manufactured into articles such as fibers, films, bottles or sheets.04-08-2010
20100130654USE OF LOW TRIPHENYLPHOSPHATE, HIGH PHOSPHOROUS CONTENT ISOPROPYL PHENYL PHOSPHATES AS FLAME RETARDANTS IN RESINS - The present invention relates to the use of low triphenyl phosphate, high phosphorous content aryl phosphates with high ortho alkylation as flame retardant compositions.05-27-2010
20100152344FLAME RETARDANT THERMOPLASTIC POLYCARBONATE COMPOSITIONS - Polycarbonate compositions are disclosed. The compositions comprise an optional polycarbonate polymer (A); a polycarbonate-polysiloxane copolymer (B); a phosphorous-containing flame retardant (C); and a reinforcing agent (D). The resulting compositions have an improved combination of properties, particularly Vicat softening temperature and high flame retardance in thin walls.06-17-2010
20100152345Non-Halogen Flameproof Polycarbonate Resin Composition - A non-halogen flameproof polycarbonate resin composition of the present invention comprises about 100 parts by weight of a polycarbonate resin; and about 0.5 to about 10 parts by weight a phosphorus compound represented by the following Chemical Formula (1) or a combination thereof. The present invention can provide an environmentally friendly polycarbonate resin composition which can have excellent retardancy without releasing hydrogen halide gases during preparation or combustion.06-17-2010
20100210766FLAME RETARDANT THERMOPLASTIC MOLDING COMPOSITIONS - A flame retardant thermoplastic molding composition containing a thermoplastic copolymer A, a graft copolymer B, and a flame retardant component C, wherein the molding composition contains: 08-19-2010
20100317779SCRATCH RESISTANT POLYPROPYLENE - Disclosed are scratch resistant polypropylene molded parts comprising a) a polypropylene substrate and incorporated therein a combination of b) an alpha, beta-unsaturated carboxylic reagent functionalized olefin polymer or copolymer, c) a primary or secondary fatty acid amide and d) a nucleating agent selected from the group consisting of sodium benzoate, 2,2′-methylene-bis(4,6-di-tert-butylphenyl)phosphate, zinc glycerolate, calcium salt of 1,2-dicarboxylic acid cyclohexane and sodium salt of 1,2-dicarboxylic acid norbornane. Also disclosed is a method for providing scratch resistance to a polypropylene molded part by incorporating said additives. The polypropylene substrate is for instance polypropylene homopolymer or thermoplastic polyolefin (TPO). Component b) is for instance maleated polypropylene or the reaction product of an alpha-olefin and maleic anhydride. The fatty acid amide is for instance stearyl erucamide or oleyl palmitamide. The molded parts are suitable for automotive parts. The molded parts also advantageously contain a filler, for example talc.12-16-2010
20110218279POLYOLEFIN RESIN COMPOSITION - The present invention provides a polyolefin-based resin composition containing a crystal nucleating agent having a specific structure, which polyolefin-based resin composition has a superior transparency and whose crystallization is facilitated.09-08-2011
20110237723CURABLE COMPOSITION AND CURED PRODUCT THEREOF - The present invention aims to provide a curable composition without adverse effects on the environment, which exhibits excellent curability without containing a toxic organotin curing catalyst, and gives a cured product that does not have discoloration and cracks on the surface thereof even after being exposed to the atmosphere and ultraviolet light for a long time. The present invention also aims to provide the cured product. The curable composition comprises: (A) an organic polymer having a reactive silyl group; (B) a guanidine compound having a specific structure; and (C) a phosphorus compound that has an aryl group, has a phosphorus atom with an oxidation number of +5, and has a melting point of 23° C. or higher.09-29-2011
20110275745MODIFIED MAGNESIUM OXYSULFATE FIBROUS PARTICLES AND POLYOLEFIN COMPOSITION CONTAINING THE SAME - A modified magnesium oxysulfate fibrous particles in which the magnesium oxysulfate fibrous particles are treated on their surfaces with a nucleating agent such as a phosphoric acid compound, an organic acid compound or a sorbitol compound can be favorably employed as fillers for polyolefin composition.11-10-2011
20120016063HYDROSILYLATION CURED ORGANOSILOXANES HAVING DILUENT THEREIN - A method of preparing a diluted chain extended organopolysiloxane containing polymer comprising the steps of reacting a pre-formed polymer with a suitable chain extender reactable with terminal groups of the polymer in the presence of a diluent material, a suitable catalyst and optionally an end-blocking agent; and Where required quenching the polymerisation process wherein the diluent material is substantially retained within the resulting diluted organopolysiloxane containing polymer. The case additionally relates to products of the process and subsequent applications for the polymer such as for example sealants and rubbers.01-19-2012
20120108715POLYESTER COMPOSITIONS CONTAINING CYCLOBUTANEDIOL HAVING A CERTAIN COMBINATION OF INHERENT VISCOSITY AND HIGH GLASS TRANSITION TEMPERATURE AND ARTICLES MADE THEREFROM - Described are polyester compositions comprising at least one polyester which comprises terephthalic acid residues, 2,2,4,4-tetramethyl-1,3-cyclobutanediol, and 1,4-cyclohexanedimethanol, wherein the inherent viscosity and the Tg of the polyester provides for certain polyester properties. The polyesters may be manufactured into articles such as fibers, films, bottles or sheets.05-03-2012
20120142831HIGH-GLOSS POLYURETHANE COATINGS PREPARED FROM ALLOPHANATE/POLYISOCYANATE HARDENER COMPOSITIONS - Hydrophilic hardener compositions include at least one hydrophobic polyisocyanate, the hydrophobic polyisocyanate containing one or more allophanate functional groups, and the allophanate functional groups being present in the hardener compositions in an amount at least equal to 6 mol % relative to the total number of moles of isocyanate monomers converted in the preparation of the hardener composition, and are useful for the preparation in aqueous phase of high-gloss polyurethane coating formulations.06-07-2012
20120214915Ultra-low petroleum plastics - Plastic-like compositions having ultra-low contents of petroleum derived materials are provided. The materials comprise up to about 80% by weight of an inorganic salt having an average particle size between about 0.001 and about 300 μm and a plastic binder. The compositions have a low propensity to ignite or smoke in the presence of heat or flame.08-23-2012
20120252945REINFORCED FLAME RETARDANT RESIN COMPOSITION AND MOLDED ARTICLE - A reinforced flame retardant resin composition including 20 to 87% by mass of an (A) thermoplastic resin, 3 to 20% by mass of a (B) aromatic phosphoric acid ester-based flame retardant agent, 5 to 40% by mass of (C) mica powder, and 0.5 to 30% by mass of (D) hydrous mineral powder having a dehydration starting temperature for crystallization water in a range of 400 to 600° C.10-04-2012
20120259046Scratch Resistant Polypropylene - Disclosed are scratch resistant polypropylene molded parts comprising a) a polypropylene substrate and incorporated therein a combination of b) an alpha, beta-unsaturated carboxylic reagent functionalized olefin polymer or copolymer, c) a primary or secondary fatty acid amide and d) a nucleating agent selected from the group consisting of sodium benzoate, 2,2′-methylene-bis(4,6-di-tert-butylphenyl)phosphate, zinc glycerolate, calcium salt of 1,2-dicarboxylic acid cyclohexane and sodium salt of 1,2-dicarboxylic acid norbornane. Also disclosed is a method for providing scratch resistance to a polypropylene molded part by incorporating said additives. The polypropylene substrate is for instance polypropylene homopolymer or thermoplastic polyolefin (TPO). Component b) is for instance maleated polypropylene or the reaction product of an alpha-olefin and maleic anhydride. The fatty acid amide is for instance stearyl erucamide or oleyl palmitamide. The molded parts are suitable for automotive parts. The molded parts also advantageously contain a filler, for example talc.10-11-2012
20120277358STENT WITH NUCLEATING AGENT - The use of nucleating agents to manufacture polymeric stents is disclosed. The resulting stents may have increased crystallinity, decreased crystal size, increased mechanical properties, and faster degradation times.11-01-2012
20130059957POLYESTER COMPOSITIONS WHICH COMPRISE CYCLOBUTANEDIOL AND CERTAIN THERMAL STABILIZERS, AND/OR REACTION PRODUCTS THEREOF - One aspect of the invention is polyester compositions containing: 03-07-2013
20130165565RESIN COMPOUND, RESIN COMPOSITION, AND RESIN-MOLDED ARTICLE - A resin compound includes a reaction product of (A) polymer which is at least selected from aliphatic polyester and aliphatic polyamide and (B) an aromatic compound with a compositional ratio from 0.1 to 10 parts by weight with respect to 100 parts by weight of (A) and represented by the following Formula (1):06-27-2013
20130245171CROSSLINKED POLYMER COMPOUND, RESIN COMPOUND AND RESIN MOLDED PRODUCT - There is provided a crosslinked polymer compound, including: a crosslinked structure formed by reaction of a carboxyl group of polylactic acid having at least a carboxyl group at an end of a polymer chain of the polylactic acid with a hydroxyl group of a lignophenol derivative having at least a hydroxyl group in a molecular structure of the lignophenol derivative, wherein the compound comprises a high-molecular weight component insoluble in hexafluoroisopropanol and a low-molecular weight component soluble in hexafluoroisopropanol, a content ratio of the high-molecular weight component is from 2% by mass to 75% by mass based on the total amount of the high-molecular weight component and the low-molecular weight component, and the low-molecular weight component has a weight average molecular weight of 100,000 or more.09-19-2013
20130289180Thermoplastic Resin Composition and Molded Article Including Same - A thermoplastic resin composition includes (A) a rubber reinforced aromatic vinyl resin; (B) a recycled polyester resin; (C) a vinyl copolymer including an epoxy group; and (D) a phosphorus flame retardant. The thermoplastic resin composition can be flame retardant and environmentally friendly and can have improved falling ball impact strength, flowability (fluidity), chemical resistance, thermal stability and/or processability.10-31-2013
20130303671SCRATCH RESISTANT POLYPROPYLENE - Disclosed are scratch resistant polypropylene molded parts comprising a) a polypropylene substrate and incorporated therein a combination of b) an alpha, beta-unsaturated carboxylic reagent functionalized olefin polymer or copolymer, c) a primary or secondary fatty acid amide and d) a nucleating agent selected from the group consisting of sodium benzoate, 2,2′-methylene-bis(4,6-di-tert-butylphenyl)phosphate, zinc glycerolate, calcium salt of 1,2-dicarboxylic acid cyclohexane and sodium salt of 1,2-dicarboxylic acid norbornane. Also disclosed is a method for providing scratch resistance to a polypropylene molded part by incorporating said additives. The polypropylene substrate is for instance polypropylene homopolymer or thermoplastic polyolefin (TPO). Component b) is for instance maleated polypropylene or the reaction product of an alpha-olefin and maleic anhydride. The fatty acid amide is for instance stearyl erucamide or oleyl palmitamide. The molded parts are suitable for automotive parts. The molded parts also advantageously contain a filler, for example talc.11-14-2013
20140045980ADDITIVES FOR HIGH-FLOW POLYMERS - A composition containing (I) a natural or synthetic organic polymer having a melt flow index of 15 to 1000 g/10 min at 230° C. and 2.16 kg and (II) an additive mixture containing components (A1) and (A2), wherein (A1) is at least one organic cyclic phosphoric acid ester of the formula (I) (I) wherein R02-13-2014
20140128523SCRATCH RESISTANT POLYPROPYLENE - Dislcosed are scratch resistant polypropylene molded parts comprising a) a polypropylene substrate and incorporated therein a combination of b) an alpha, beta-unsaturated carboxylic reagent functionalized olefin polymer or copolymer, c) a primary or secondary fatty acid amide and d) a nucleating agent selected from the group consisting of sodium benzoate, 2,2′-methylene-bis(4,6-di-tert-butylphenyl)phosphate, zinc glycerolate, calcium salt of 1,2-dicarboxylic acid cyclohexane and sodium salt of 1,2-dicarboxylic acid norbornane. Also disclosed is a method for providing scratch resistance to a polypropylene molded part by incorporating said additives. The polypropylene substrate is for instance polypropylene homopolymer or thermoplastic polyolefin (TPO). Component b) is for instance maleated polypropylene or the reaction product of an alpha-olefin and maleic anhydride. The fatty acid amide is for instance stearyl erucamide or oleyl palmitamide. The molded parts are suitable for automotive parts. The molded parts also advantageously contain a filler, for example talc.05-08-2014
20140343202MOISTURE CURABLE ORGANOPOLYSILOXANE COMPOSITION - The present invention provides curable compositions comprising non-Sn organo-metal catalysts that accelerate the condensation curing of moisture curable silicones/non-silicones. In particular, the present invention provides Fe(III) and Bi(III) complexes that are particularly suitable as replacements for organotin for sealant and RTV formulations. The Fe(III) and Bi(III) complexes are comparable or superior to organotin such as DBTDL and exhibit certain behavior in the presence of components that allow for tuning or adjusting the cure characteristics of the present compositions and provide good adhesion and storage stability.11-20-2014
20150073073PHOSPHITE COMPOSITIONS - Solid phosphite compositions comprising tris(4-t-alkylphenyl) phosphites and selected hydroxyalkyl amines exhibit surprising performance compared with other phosphite stabilizers in the stabilization of polymers, such as polyolefins and the like, particularly in the prevention of color formation during high temperature processing or when exposed to certain gasses during storage, e.g., “gas fading”.03-12-2015
20150353732IMPACT IMPROVED FILLED POLYCARBONATE OR POLYESTER COMPOSITIONS - In various aspects, the disclosure relates to blended polymer compositions (e.g., polycarbonate, polycarbonate-polysiloxane copolymer, polyester compositions, etc.) comprising a polycarbonate component, a polyester component, or both; optional impact modifier(s); optional flame retardant; copolymer compatibilizer; and filler. The presence of the polymer compatibilizer improves the impact performance of the polymer blend.12-10-2015
20160005505FLAME RETARDANT COMPOSITION COMPRISING A THERMOPLASTIC POLYETHERESTER ELASTOMER - A polymer composition comprising:—a thermoplastic copolyetherester elastomer comprising 40-65 wt. % of soft segments derived from poly(tetrahydrofuran)diol (pTHF), having a number average molecular weight (Mn) of between 1000 and 2500 kg/kmol.—at least 15 wt % of a metal hydrate,—at least 12.5 wt. % of an oligomeric phosphate ester.01-07-2016
20160017125POLYESTER COMPOSITIONS WHICH COMPRISE CYCLOBUTANEDIOL AND CERTAIN THERMAL STABILIZERS, AND/OR REACTION PRODUCTS THEREOF - Described as one aspect of the invention are polyester compositions containing: 01-21-2016
20160102230Polyolefin-Based Hot Melt Adhesives With Improved Processing And Bonding Performance - A hot melt adhesive made from a blend of a polypropylene-based polymer, a polyolefin elastomer, and an amorphous polyolefin. These adhesives exhibit excellent molten and pre-set flow allowing them to wet out substrates yet develop properties needed to form and maintain strong bonds making them useful for hygiene, construction, and packaging applications.04-14-2016
20160108224HEAT-RESISTANT SAN RESIN, METHOD FOR MANUFACTURING SAME, AND HEAT-RESISTANT ABS RESIN COMPOSITION COMPRISING SAME - Disclosed are a heat-resistant SAN resin, a method of preparing the same, and a heat-resistant ABS resin composition comprising the same. More particularly, a heat-resistant SAN resin comprising 60 to 75 wt % of α-methylstyrene, 25 to 35 wt % of a vinyl cyan compound, and 0 to 10 wt % of an aromatic vinyl compound (except for α-methylstyrene), the heat-resistant SAN resin having a degree of branching of 0.40 to 0.60, a molecular weight of 90,000 to 150,000 g/mol, and a glass transition temperature (Tg) of 124 to 140° C., a method of preparing the same, and a heat-resistant ABS resin composition comprising the same are disclosed.04-21-2016
20180022944USE OF PHOSPHORIC ESTERS IN AQUEOUS BASECOATS01-25-2018
524143000 Cresyl phosphate, e.g., di, etc. 4
20100113658ADHESIVE COMPOSITION AND ADHESIVE USING SAME - To provide an adhesive composition which exhibits sufficient initial strength even in a wet state right after application, and which provides a coating film having sufficient flame retardancy after it is dried, and an adhesive using it.05-06-2010
20120071598Plasticised Polyvinyl Chloride - Esters of cyclohexane polycarboxylic acids are used as plasticisers for polyvinyl chloride to enable products with comparable mechanical properties to be obtained using less polyvinyl chloride. Use of these esters also produces formulations with increased stability to ultra-violet light, improved low temperature properties, lower viscosity and improved processability as well as reduced smoke on burning. The esters of cyclohexane polycarboxylic acids may be used alone or in admixture with other plasticisers when the esters of cyclohexane polycarboxylic acids may act as viscosity depressants. Fast fusing plasticisers may also be included. The formulations are particularly useful in the production of a range of goods from semi-rigid to highly flexible materials and are particularly useful in the production of medical materials such as blood bags and tubing.03-22-2012
20120129990HIGH-THERMAL-CONDUCTIVITY POLYCARBONATE RESIN COMPOSITION AND FORMED PRODUCT - To provide a high-thermal-conductivity polycarbonate resin composition that has further improved thermal conductivity and even insulating properties and flame resistance, and a formed product thereof. A high-thermal-conductivity polycarbonate resin composition, containing: 100 parts by mass of an (A) resin component mainly composed of a polycarbonate resin; 5 parts by mass or more and 100 parts by mass or less of (B) graphitized carbon fiber having a longitudinal thermal conductivity of 100 W/m K or more and an average fiber diameter in the range of 5 to 20 μm; and 5 parts by mass or more and 200 parts by mass or less of glass beads having an average particle size in the range of 1 to 100 μm and a sphericity in the range of 1 to 2.05-24-2012
20130338280Flame Retardant Material with Orthogonally Functional Capsules - A flame retardant capsule may contain a flame retardant, a polymer shell encapsulating the flame retardant, and at least one functional group orthogonal to the surface of the polymer shell. This flame retardant capsule may be covalently bonded into a polymeric material by the orthogonal functional group. The flame retardant capsules may be formed through microencapsulation.12-19-2013
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