Patents Assigned to Performance IT
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Patent number: 11147701Abstract: Various implementations include a wearable foot garment that includes a forefoot portion, a midfoot portion, and an ankle portion. The midfoot portion includes two high compression zones and a reduced compression zone between the high compression zones. The first high compression zone is configured for providing compression in a radially inward direction toward the wearer's foot adjacent a proximal end of the wearer's plantar aponeurosis. The second high compression zone is configured for providing compression in a radially inward direction toward the wearer's foot adjacent distal ends of metatarsals of the wearer. The compressive strength in the high compression zones is greater than the compressive strength in the reduced compression zone. In some implementations, the ankle portion and midfoot portion define a heel opening, and the forefoot portion includes a plantar surface area on which an adhesive film is disposed for increasing the friction contact of the forefoot portion.Type: GrantFiled: September 17, 2018Date of Patent: October 19, 2021Assignee: APOLLA PERFORMANCE WEAR LLCInventors: Kaycee Jones, Aiesha Ashby
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Publication number: 20210317313Abstract: A thermally conductive polysiloxane composition comprising: (A) a thermally conductive filler; (B) a polyorganosiloxane resin having a curable functional group in the polysiloxane molecule, the polyorganosiloxane resin comprising at least one polysiloxane (b1) having one curable functional group in the molecule thereof; (C) a siloxane compound having an alkoxysilyl group and a linear siloxane structure; (D) a hydrogenpolyorganosiloxane; and (E) a platinum catalyst, wherein the content of the polysiloxane (b1) having one curable functional group in the molecule thereof in the polyorganosiloxane resin (B) is more than 80% by mass.Type: ApplicationFiled: June 24, 2021Publication date: October 14, 2021Applicant: MOMENTIVE PERFORMANCE MATERIALS JAPAN LLCInventors: Atsushi SAKAMOTO, Isao IIDA
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Publication number: 20210317291Abstract: Disclosed herein is a foamable composition comprising an olefin copolymer that comprises ethylene and an ?-olefin; an unneutralized carboxylated olefin copolymer; a crosslinking agent; a blowing agent; and an activator; where a weight ratio of the activator to the unneutralized carboxylated olefin copolymer is greater than 0.3. Disclosed herein too is a method of manufacturing a foamable composition comprising blending together an olefin copolymer that comprises ethylene and an ?-olefin; an unneutralized carboxylated olefin copolymer; a crosslinking agent; a blowing agent; and an activator to form the foamable composition; where a weight ratio of the activator to the unneutralized carboxylated olefin copolymer is greater than 0.3; heating the foamable composition to activate the blowing agent to form a foam; and crosslinking the foam.Type: ApplicationFiled: August 31, 2018Publication date: October 14, 2021Applicants: Dow Global Technologies LLC, Performance Materials NA, Inc.Inventors: Haiyang Yu, Jinliang Yan, Shanshan Feng, Richard Tien-Hua Chou
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Patent number: 11142736Abstract: The invention describes a gas permeable fluoropolymer and silicone material used in the construction of cell culture bags.Type: GrantFiled: July 14, 2020Date of Patent: October 12, 2021Assignee: Saint-Gobain Performance Plastics CorporationInventors: Sarah Louise Clark, Natasha Anna Lundgren, Michael John Tzivanis, Aijun Zhu
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Patent number: 11142644Abstract: The present invention relates to a thermally conductive polysiloxane composition that provides a cured product having excellent tackiness and flexibility in which the composition contains (A) a thermally conductive filler, (B) a siloxane compound having an alkoxysilyl group and a linear siloxane structure, (C) a polyorganosiloxane having at least two alkenyl groups bonded to silicon atoms per molecule, (D1) a linear polyorganohydrogensiloxane represented by the general formula (4), (D2) a polyorganohydrogensiloxane having per molecule at least three units represented by the general formula (5), and (E) a platinum catalyst.Type: GrantFiled: January 25, 2018Date of Patent: October 12, 2021Assignee: MOMENTIVE PERFORMANCE MATERIALS JAPAN LLCInventors: Daigo Hirakawa, Masanori Takanashi, Atsushi Sakamoto
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Patent number: 11140901Abstract: A synergistic aqueous wood preservative composition comprising a copper compound and penflufen. The copper compounds of the compositions of the invention may be soluble, partially solubilized or micronized particles. The penflufen of the compositions of the invention may be solubilized, emulsified or particulate. The wood preservative compositions of the present invention are surprisingly provided as stable dispersions and confer surprising and unexpected resistance to treated wood and wood products.Type: GrantFiled: December 11, 2018Date of Patent: October 12, 2021Assignee: KOPPERS PERFORMANCE CHEMICALS INC.Inventors: Jun Zhang, Peter Tham, John Horton
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Publication number: 20210300862Abstract: The present disclosure relates to fluid bed processes that utilize silica particles as a fluidization aid. The process comprises reacting one or more reactants in a reactor comprising a fluid bed to form a product. The fluid bed comprises a catalyst composition comprising a catalyst and an inert additive composition comprising silica particles from 0.5 wt % to 30 wt %, based on the total weight of the catalyst composition. The silica particles are discrete, inert particles that are mixed with the catalyst in the fluid bed.Type: ApplicationFiled: June 9, 2021Publication date: September 30, 2021Applicant: Ascend Performance Materials Operations LLCInventors: Yawu T. CHI, James Sutton, Ali Akhavan, Celia L. Kniepmann, Matthew D. Cox, Valerie S. Monical
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Patent number: 11130958Abstract: The invention relates to methods of producing a desired phenotype in a plant by manipulation of gene expression within the plant. The method relates to means which increase the level of expression of a MYB-subgroup14 polynucleotide or a MYB68 polypeptide. The method also relates to expression of a nucleic acid sequence encoding a MYB-subgroup14 or a MYB68 transcriptional factor. The methods are directed to elevating the levels of a MYB-subgroup14 or a MYB68 expression, wherein a desired phenotype such as reduced flower abortion and increased yield during heat stress is observed. The invention also relates to nucleic acid sequences useful in such methods.Type: GrantFiled: January 27, 2017Date of Patent: September 28, 2021Assignee: Performance Plants, Inc.Inventors: Jiangxin Wan, Yafan Huang, Monika M. Kuzma
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Publication number: 20210291242Abstract: Methods, systems, and apparatus are described which can safely reduce a laboratory fume hood's minimum airflow and energy consumption when it is determined that the fume hood is not in active use, based on a condition monitoring approach. The condition monitoring approach may incorporate a combination of setback criteria to reliably determine if the fume hood is or is not in use. When a determination has been made that a fume hood is not in use, energy reduction is achieved via automatic methods of hood minimum airflow setback. Fume hood minimum flow reductions are automatically disabled when it is determined that the hood is in active use.Type: ApplicationFiled: March 4, 2021Publication date: September 23, 2021Applicant: Measured Air Performance, LLCInventor: Eric Desrochers
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Publication number: 20210293331Abstract: A system and method are presented that measure the temperature of a component in a continuously variable transmission (CVT) system. An infrared temperature sensor is mounted in a thermally insulating sensor housing such that the sensor is located within the interior of a CVT housing and aimed at the component. The component can be a belt in the CVT system or a stationary sheave in one of the two clutches of the CVT system. The sensor housing can have a cup and a stem with the sensor being positioned within that portion of the sensor housing positioned within the interior of the CVT housing. When the stem is in the interior of the CVT housing, a nut can be used to secure the sensor housing to the CVT housing while protecting the infrared sensor from damage. An air temperature sensor in the exhaust port can provide supplemental temperature readings.Type: ApplicationFiled: March 22, 2021Publication date: September 23, 2021Applicant: High Performance Harry's Inc.Inventor: Harold Desautel
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Patent number: 11125374Abstract: A gas charged cartridge for use with a cylinder to form a pulsation control dampener is provided. The cylinder receives a fluid for the pulsation control dampener. The gas charged cylinder can include a head, a plug, an elastomer composite, and a perforated retaining sleeve. The head is located on a first end of the gas charged cartridge. The plug is located on a second end of the gas charged cartridge. The elastomer composite connects the head to the plug. The perforated retaining sleeve is affixed to the plug surrounding the elastomer composite.Type: GrantFiled: June 21, 2019Date of Patent: September 21, 2021Assignee: Performance Pulsation Control, Inc.Inventor: John Thomas Rogers
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Patent number: 11124627Abstract: The invention relates to a plasticizing composition comprising a vinyl chloride resin and a plasticizing agent which comprises at least one diester having the general formula (I), derived from a diacid selected from succinic acid, glutaric acid, adipic acid, ethylsuccinic acid, methylglutaric acid and mixtures thereof wherein: A is a C4 to C6 linear or branched aliphatic chain, and R is an alkyl, a cycloalkyl or an aryl. The plasticizing agent according to the present invention has a good performance for different types of formulations (foam, film and paste). Said plasticizer gels rapidly, has a very low viscosity, and ages very well. Efficient debubblizing is one of the key properties thereof. The foams prepared with said plasticizer have very low densities, a high expansion rate, and excellent qualities.Type: GrantFiled: July 23, 2018Date of Patent: September 21, 2021Assignee: Performance Polyamides, SASInventors: Bouchra Rhers, Daniel Martinz
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Patent number: 11118152Abstract: A bio-reactive container and filter assembly to improve flow rates and mass transfer without increased pressure. An inlet filter membrane secured to the container defines a container chamber in combination with the container. An inlet filter membrane element may also be secured to the container to provide structural support to the membrane. An outlet membrane secured to the container defines a container chamber in combination with the container. An outlet filter membrane element may also be secured to the container to provide structural support to the outlet membrane. Inlet and/or outlet filters and/or filter elements are constructed to significantly increase surface area available for fluid and/or gas ingress and/or egress. Single and double layer membranes with mixtures of hydrophobic and hydrophilic characteristics are used to maximize perfusion and gasification/degasification of bio-reactive containers.Type: GrantFiled: September 20, 2019Date of Patent: September 14, 2021Assignee: SAINT_GOBAIN PERFORMANCE PLASTICS CORPORATIONInventors: ZhenWu Lin, Kenneth James Renfrew, Jacob Andrews
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Patent number: 11118056Abstract: A thermally conductive polysiloxane composition includes (A) a thermally conductive filler, and (B) at least one member selected from the group consisting of an alkoxysilyl group-containing compound and a dimethylpolysiloxane. The component (A) includes at least two thermally conductive fillers having different average particle diameters, and (A-1) indefinite-shaped aluminum nitride particles having an average particle diameter of 30 ?m to 150 ?m in an amount of at least 20% by mass, based on the mass of a total of the component (A).Type: GrantFiled: July 20, 2017Date of Patent: September 14, 2021Assignee: MOMENTIVE PERFORMANCE MATERIALS JAPAN LLCInventors: Daigo Hirakawa, Masanori Takanashi, Isao Iida, Kenji Takenaka, Eiji Tanigawa
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Patent number: 11118030Abstract: Flame retardant thermoplastic polyamide compositions are described that provide a superior combination of glow wire ignition and elongation/toughness properties, comprising a polyamide resin; a bromine-containing flame retardant; a hindered phenolic heat stabilizer; and optionally at least one of a flame retardant synergist, a plasticizer, a lubricant, a mold release agent, an acid scavenger and a colorant.Type: GrantFiled: October 16, 2018Date of Patent: September 14, 2021Assignee: Ascend Performance Materials Operations LLCInventor: Shawn J. Osborn
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Patent number: 11118515Abstract: Present embodiments provide a throttle body which may be used with a variety of engines of different manufacturers. The throttle body may be used to replace mechanical or hydraulically controlled carburetors with electronic fuel injection. The throttle body may provide improved fuel pathways and fuel injector placement.Type: GrantFiled: December 3, 2018Date of Patent: September 14, 2021Assignee: Holley Performance Products, Inc.Inventors: Laura Shehan, Amy Gieske, Jonathan Sams, Adam Layman
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Publication number: 20210277215Abstract: Described in embodiments herein are ionomers comprising a neutralized blend of an ethylene acid copolymer, an aliphatic and a mono-functional organic acid. The blend includes from 40 wt % to 95 wt % of the ethylene acid copolymer, from 5 to 50 wt % of the aliphatic, mono-functional organic acid, based on the total weight of the blend. The ethylene acid copolymer is the polymerized reaction product of ethylene, from 1 to 25 wt % of monocarboxylic acid and from 1 to 40 wt % of alkyl acrylate, based on the total weight of the monomers present in the ethylene acid copolymer. The aliphatic, mono-functional organic acid has fewer than 36 carbon atoms. In various embodiments, at least 70 mole % of total acid units are neutralized with both a trivalent cation and either a mono- or di-valent cation.Type: ApplicationFiled: July 15, 2019Publication date: September 9, 2021Applicant: Performance Materials NA, Inc.Inventor: Xian Jiang
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Patent number: D931144Type: GrantFiled: May 2, 2019Date of Patent: September 21, 2021Assignee: POLESTAR PERFORMANCE ABInventor: Örjan Sterner
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Patent number: D931818Type: GrantFiled: February 26, 2020Date of Patent: September 28, 2021Assignee: Polestar Performance ABInventor: Anders Höckenström
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Patent number: D932675Type: GrantFiled: March 21, 2019Date of Patent: October 5, 2021Assignee: JST Performance, LLCInventors: Pete D. Sibitzky, Steven S. Maxey