Vegetable Shell, Hull, Or Cob Ingredient, E.g., Nut Shells, Pits, Etc. Patents (Class 524/15)
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Patent number: 11965079Abstract: The present invention relates to lignin compositions and methods for producing lignin composite materials. Composites of this invention substantially reduce or eliminate odor emanating from lignin that would otherwise be present.Type: GrantFiled: March 30, 2017Date of Patent: April 23, 2024Inventors: Edwin Peace, Rod Albers
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Patent number: 11634563Abstract: The present disclosure provides an epoxidized natural rubber composite and a preparation process thereof, and relates to the technical field of rubber materials. The epoxidized natural rubber composite provided by the present disclosure comprises the following preparation raw materials in parts by weight: 100 parts of epoxidized natural rubber, 1˜30 parts of peanut meal, 0.05˜0.8 parts of surfactants, 0.1˜4 parts of coagulant and 0.2˜12 parts of vulcanization processing aids. The present disclosure utilizes essential amino acids and non-essential amino acids contained in peanut meal to improve the aging resistance of the epoxidized natural rubber. After hot air aging, ozone aging and ultraviolet aging treatments, both the tensile strength retention rate and the elongation at break retention rate of the epoxidized natural rubber composites of the present disclosure can be kept above 83%.Type: GrantFiled: January 5, 2021Date of Patent: April 25, 2023Assignee: Hainan UniversityInventors: Shuangquan Liao, Changjin Yang, Zheng Peng, Yanchan Wei, Lusheng Liao
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Patent number: 11028298Abstract: The invention provides protein adhesives containing certain additives and methods of making and using such adhesives. The protein adhesives contain ground plant meal or an isolated polypeptide composition obtained from plant biomass in combination with certain additives, such as an exfoliated clay or partially exfoliated clay.Type: GrantFiled: September 12, 2018Date of Patent: June 8, 2021Assignee: EvertreeInventors: Anthony A. Parker, Joseph J. Marcinko
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Patent number: 10913880Abstract: The invention provides protein adhesives and methods of making and using such adhesives. The protein adhesives contain ground plant meal or an isolated polypeptide composition obtained from plant biomass.Type: GrantFiled: September 17, 2019Date of Patent: February 9, 2021Assignee: EvertreeInventors: Anthony A. Parker, Joseph J. Marcinko
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Patent number: 10422132Abstract: Provided are a structure and a method of forming a structure that includes a core made, at least in part, of a rice hull composition. The rice hull composition including a combination of separate, unground rice hulls; ground rice hulls; and a rice hull powder, that each have a different particle size. A polymeric binder, such as a recycled plastic polymeric binder binds the separated unground rice hulls, the ground rice hulls and the rice hull powder together.Type: GrantFiled: April 9, 2018Date of Patent: September 24, 2019Inventors: Gerald Joseph Sosnowski, Gregory Arthur LeBlanc
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Patent number: 10208414Abstract: Soy protein and carbohydrate containing binder compositions are described. The binder compositions may include a carbohydrate, a nitrogen-containing compound, and a soy protein. The binder compositions may also optionally include thickening agents such as modified celluloses and polysaccharides.Type: GrantFiled: November 13, 2012Date of Patent: February 19, 2019Assignee: Johns ManvilleInventors: Uranchimeg Lester, Kiarash Alavi Shooshtari, Jawed Asrar, Zhihua Guo, Mingfu Zhang
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Patent number: 9902842Abstract: Polymer composites are provided, and more particularly, polymer composites of ground date pits disposed in a polymer matrix. The composites can be formed by a process of preparing reinforced polymer composites having a fibril melt fracture surface, including blending a mixture of date pit particulate with a thermoplastic polymer; melting the mixture; and forcing the melt through a die to produce the polymer composite having a fibril containing surface.Type: GrantFiled: October 18, 2011Date of Patent: February 27, 2018Assignee: KING ABDULAZIZ CITY FOR SCIENCE AND TECHNOLOGYInventors: Fares D. Alsewailem, Yazeed A. Binkheder
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Patent number: 9816205Abstract: A method to manufacture composite fibers of rice husk and charcoal includes the following steps. Heat and grind the rice husk and the charcoal and blend with PET to form first granules and second granules respectively wherein mass fractions of rice husk and charcoal are 15-20 wt %. The mass fraction of rice husk in the first granules and that of the charcoal in the second granules are equal. Blend the first granules and the second granules to form mixed granules. Blend and melt the mixed granules and PET to form a mixture wherein the summation of the mass fractions of rice husk and charcoal in the mixture is 0.2-2 wt %. Form composite fibers from the melted mixture by a procedure of filament making.Type: GrantFiled: May 5, 2016Date of Patent: November 14, 2017Inventors: Han-Che Ke, Yu-Cheng Ke
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Patent number: 9816019Abstract: The invention provides protein adhesives and methods of making and using such adhesives. The protein adhesives contain ground plant meal or an isolated polypeptide composition obtained from plant biomass.Type: GrantFiled: July 8, 2016Date of Patent: November 14, 2017Assignee: EVERTREEInventors: Anthony A. Parker, Joseph J. Marcinko
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Patent number: 9416303Abstract: The invention provides protein adhesives and methods of making and using such adhesives. The protein adhesives contain ground plant meal or an isolated polypeptide composition obtained from plant biomass.Type: GrantFiled: November 25, 2014Date of Patent: August 16, 2016Assignee: Biopolymer Technologies, Ltd.Inventors: Anthony A. Parker, Joseph J. Marcinko
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Patent number: 9404012Abstract: The present invention provides flexible binder compositions comprising one or more polycarboxy emulsion copolymer has a measured Tg of 40° C. or less, such as from ?45° C. to 25° C., and a polyol crosslinker. In one embodiment, the binder compositions comprising the polycarboxy emulsion copolymer can be used in making pultruded composites, such as sheets, for example, flexible gypsum board facing sheets, and flexible non-woven articles such as, for example, carpet backing.Type: GrantFiled: May 17, 2013Date of Patent: August 2, 2016Assignee: Rohm and Haas CompanyInventors: James T. Connaughton, I, William C. Finch, Michael D. Kelly, Hal C. Morris, Xun Tang
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Patent number: 9347216Abstract: The present invention relates to a thermal insulation material comprising date pits and polyester resin.Type: GrantFiled: November 21, 2013Date of Patent: May 24, 2016Assignee: United Arab Emirates UniversityInventors: Basim Abu-Jdayil, Abdel Hamid I. Mourad
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Patent number: 9120913Abstract: An elastic composite material containing a base polymer of a simple substance or a mixture of rubber or thermoplastic elastomer as a base material, and a hard porous carbon material containing carbide of defatted bran and carbide of phenolic resin. The hard porous carbon material is added in a ratio of 200 parts or more by weight relative to 100 parts by weight of the base polymer.Type: GrantFiled: September 30, 2013Date of Patent: September 1, 2015Assignee: Hitachi Metals, Ltd.Inventors: Kei Takahashi, Osamu Murakami, Mika Hayashi, Kazuo Hokkirigawa, Takeshi Yamaguchi, Kei Shibata
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Publication number: 20150141555Abstract: A thermoplastic starch composition acquired from compounding a mixture comprises starch-containing agricultural waste in 45 to 70% by weight of total composition that the agricultural waste contains starch content less than 50% in dry weight; thermoplastic synthetic polymer in 25 to 50% by weight of total composition; plasticizer in 0.01 to 10% by weight of total composition; and coupling agent in 1 to 5% by weight of total composition; wherein the compounding is performed at a first temperature which is higher than room temperature.Type: ApplicationFiled: November 21, 2012Publication date: May 21, 2015Applicant: Texchem Polymers SDN BHDInventor: Meng Yan Pun
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Patent number: 9034951Abstract: An imitation wood composition or a composition for making imitation wood, comprising a mixture of 30-40 wt % PVC resin and 30-40 wt % rice-husk and/or peanut-shell powder having a particle size of 0.42-0.25 mm (40-60 mesh). Further disclosed is an imitation wood produced by extruding the imitation wood composition or the composition for making imitation wood. The imitation wood exhibits an appearance and feel very similar to natural wood and can be processed using conventional wood tools. The imitation wood can be painted and adhesively bonded without problems and is suitable for outdoor applications, in particular in humid or wet environments, because of the very high weathering resistance thereof.Type: GrantFiled: February 19, 2010Date of Patent: May 19, 2015Assignee: PATENTA ASIA LTDInventors: Bernhard Duna, Antonio Siu Pak Tak
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Patent number: 9034954Abstract: Biocomposite compositions and compositions, which include dried distillers solubles, and which can be used in making biocomposite compositions are described. Methods for preparing the compositions are also described.Type: GrantFiled: August 14, 2014Date of Patent: May 19, 2015Assignee: GS CLEANTECH CORPORATIONInventors: Michael J. Riebel, Jeffrey L. Tate
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Publication number: 20150119503Abstract: The present disclosure relates to a plastic article for automotive interior parts using a biomass pellet and to a method for manufacturing the plastic article, which is characterized by injection molding a pellet containing paper powder and plastic resin. The present disclosure provides a plastic article for automotive interior parts using a biomass pellet, which meets the physical property requirements for automotive interior parts.Type: ApplicationFiled: March 18, 2013Publication date: April 30, 2015Inventors: Seung Hoon Ryu, Jun Hong Park, Seung Yeon Ryu
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Patent number: 8951634Abstract: The present invention relates to a filler material for a floor, comprising a natural base material and a mixture containing loess and a resin in powder or pellet form, as well as to a method for producing the filler material. The filler material of the present invention uses the natural base material and is thus environmentally-friendly and not harmful to the human body. Further, in the event rice husks are used as the natural base material, a person slipping on the floor is protected from burning caused by friction as the rice husks have a high moisture content. In addition, the loess contained in the filler material keeps the floor from becoming moldy and emits far infrared radiation, and therefore is beneficial to the human body. The resin emulsion of the filler material prevents the natural base material from generating dust, thus preventing dust from entering the human body via the respiratory organs of the human body.Type: GrantFiled: February 3, 2010Date of Patent: February 10, 2015Inventors: Mi-Suk Jung, Bo Jung Park
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Patent number: 8927622Abstract: The present application is generally directed to novel compositions and methods used to produce a biodegradable, starch-based, water-resistant article of manufacture. The teachings include a composition comprising a biodegradable fiber component in an amount ranging from about 5% to about 40% on a dry weight basis, starch component in an amount ranging from about 40% to about 94.5% on a dry weight basis, and an additive component in an amount ranging from more than 0% to about 15% on a dry weight basis. The additive component can comprise an epoxidized vegetable oil, a hydrogenated triglyceride, poly(vinyl acetate), poly(vinyl acetate-ethylene) copolymer, poly(ethylene-vinyl acetate) copolymer, or a combination thereof.Type: GrantFiled: July 3, 2008Date of Patent: January 6, 2015Assignee: Chamness Biodegradables, LLCInventors: Drew V. Speer, Ronald L. Cotterman, Dwight W. Schwark, David A. Dellinger
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Publication number: 20140325715Abstract: The invention relates to a biomaterial and/or a biocomposite based on sunflower seed shells/husks. According to the invention, it is proposed that sunflower seed shells/husks are used instead of wood, bamboo or other wood-like fibre products as the original material for the biocomposite products and are used for the production of such products in order to improve the previous biomaterials, and in particular also to design said materials for improved cost efficiency and to improve their material properties.Type: ApplicationFiled: October 12, 2012Publication date: October 30, 2014Inventors: Ulrich Wendeln, Ulrich Meyer
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Patent number: 8871836Abstract: Provided are: a polycarbonate-based resin composition, including: (A) 100 parts by mass of a resin mixture formed of: 30 to 100 mass % of a PC-POS copolymer (A-1) which has constituent units represented by a general formula (I) and a general formula (II), and in which an average repetition number n of organosiloxane constituent units in the general formula (II) is 70 to 500; and 70 to 0 mass % of an aromatic polycarbonate resin (A-2) except the PC-POS copolymer (A-1); (B) 0.01 to 0.15 part by mass of an alkaline (earth) metal salt of an organic sulfonic acid; (C) 0.1 to 1 part by mass of a polytetrafluoroethylene having a fibril-forming ability; and (D) 2 to 15 parts by mass of titanium dioxide particles each having, on an outermost surface thereof, a coating layer formed of a polyol free of a nitrogen atom; a molded article obtained by molding the resin composition; and a structure member for solar photovoltaic power generation formed of the molded article.Type: GrantFiled: October 27, 2011Date of Patent: October 28, 2014Assignee: Idemitsu Kosan Co., Ltd.Inventor: Yusuke Aoki
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Publication number: 20140235761Abstract: A composition for a biomass film using a food byproduct including wheat bran or soybean hull and to a biomass film using the same and, more particularly, to a biomass film which is improved in processability, has high water resistance, oil resistance and pinhole resistance so as to be adapted for shopping bags, exhibits carbon reduction properties by use of a carbon neutral type plant food byproduct, and is increased in terms of degradability upon natural reclamation. The composition includes 100 parts by weight of a polyolefin-based resin, 50˜150 parts by weight of a powdery porous grassy biomass comprising one or more selected from the group consisting of wheat bran and soybean hull, 5˜20 parts by weight of an inorganic filler, 0.5˜3 parts by weight of a surface coating agent, and 1˜10 parts by weight of a liquid low-molecular-weight compound.Type: ApplicationFiled: April 19, 2013Publication date: August 21, 2014Applicants: AU CO., LTD., CJ CHEILJEDANG CORPORATIONInventors: Chan Suk YOON, Jung Gu HAN, Young Sun YOU
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Patent number: 8802763Abstract: A curable organopolysiloxane composition in grease or paste form, which including: (A) an organopolysiloxane having at least two alkenyl groups bonded to silicon atom in one molecule; (B) an organohydrogenpolysiloxane having at least two hydrogen atoms bonded to silicone atom in the molecule; (C) gallium and/or a gallium alloy having a melting point of 0 to 70° C.; (D) a thermally conductive filler having an average particle size of 0.1 to 100 ?m; (E) a platinum-based catalyst; and (F) a polysiloxane of the following general formula (1): wherein R1 may be the same or different and represents a monovalent hydrocarbon group, R2 represents an alkyl group, an alkoxyl group, an alkenyl group or an acyl group, a is an integer of 5 to 100, and b is an integer of 1 to 3.Type: GrantFiled: October 3, 2012Date of Patent: August 12, 2014Assignee: Shin-Etsu Chemical Co., Ltd.Inventors: Kunihiro Yamada, Nobuaki Matsumoto, Kenichi Tsuji
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Publication number: 20140209841Abstract: A biodegradable bio-plastic material composition comprising of synthetic materials and biological/natural/second natural reusable material is described. The use of natural material that is easily degradable in landfill makes it easy to dispose the article and reduce green gas emission in the environment. Biological reusable materials may be one of polylactic acid based plastic, walnut, almond, coconut and other hard shells, hard skins from rice, wheat, flax, and other seeds, corn husks, and other organic biodegradable matter and synthetic materials may be polypropylene and/or polyethylene.Type: ApplicationFiled: January 2, 2014Publication date: July 31, 2014Applicant: ALPHAGEM BIO INC.Inventor: DALE SINGH TAUNK
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Publication number: 20140213675Abstract: A method for producing a biopolymeric material includes milling a non-edible vegetable fiber into a fiber grain; mixing the fiber grain with a solvent to form a slurry; purifying the fiber grain of the slurry to form a purified fiber; esterifying the purified fiber to form an esterified fiber; drying the esterified fiber to form a modified fiber; and mixing the modified fiber with a plastic material to form the biopolymeric material.Type: ApplicationFiled: April 16, 2013Publication date: July 31, 2014Applicants: Feng Chia University, POU CHEN CORPORATIONInventors: Shu-Yii Wu, Shih-Chien Chu, Ming-Lei Wang, Chih-Hung Ma, Ying-Ming Lu, Kuo-Ming Lai, Tsung-Hsun Ho
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Patent number: 8765870Abstract: A diluent for a fluorine-containing silicone coating agent, said diluent comprising (A) at least one selected from diisopropyl ether and hexane, and (B) a fluorinated solvent having a boiling point, at atmospheric pressure, which is higher than that of the component (A) by at least 30° C. and is 180° C. or lower, with a weight ratio of the component (A) to the component (B) ranging from 95/5 to 50/50.Type: GrantFiled: December 20, 2007Date of Patent: July 1, 2014Assignee: Shin-Etsu Chemical Co., Ltd.Inventors: Koichi Yamaguchi, Hirofumi Kishita
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Patent number: 8691892Abstract: This invention provides a chaff molding which is excellent in a compressive strength. Said chaff molding comprises a chaff and a polyvinyl alcohol-based resin having a 1,2-diol structure as a side chain.Type: GrantFiled: April 25, 2008Date of Patent: April 8, 2014Assignee: The Nippon Synthetic Chemical Industry Co., Ltd.Inventors: Kenji Kikuchi, Mitsuo Shibutani, Shusaku Mandai
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Publication number: 20140094543Abstract: Process for manufacturing a composite material comprising fibres and at least one vinyl chloride polymer comprising the immersion of the fibres in a hydrosol of said polymer in order to obtain fibres coated with said hydrosol followed by the drying and gelling of said hydrosol coated on the fibres. Composite material and use thereof for forming articles or for manufacturing reinforcing objects. Profiles reinforced by this composite material.Type: ApplicationFiled: April 5, 2012Publication date: April 3, 2014Applicant: SOLVAY SAInventors: Claudine Bloyaert, Francois Van Loock, Daniel Martinz
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Patent number: 8664300Abstract: Polymer composites are provided, and more particularly, polymer composites of ground date pits disposed in a polymer matrix. The composites can be formed by a process of preparing reinforced polymer composites having a fibril melt fracture surface, including blending a mixture of date pit particulate with a thermoplastic polymer; melting the mixture; and forcing the melt through a die to produce the polymer composite having a fibril containing surface.Type: GrantFiled: March 4, 2013Date of Patent: March 4, 2014Assignee: King Abdulaziz City for Science and TechnologyInventors: Fares D. Alsewailem, Yazeed A. Binkheder
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Patent number: 8642683Abstract: A polypropylene composition for injection molded parts. The composition includes bio-based fillers (such as coconut shell powder), synthetic fillers and mineral fillers (such as talc powder and Wollastonite). The polypropylene polymer may be virgin polypropylene, recycled polypropylene or a combination of virgin and recycled polypropylene. A polyolefin elastomer such as an ethylene-octene copolymer is included to improve impact resistance. A reinforcing agent, nucleator and melt flow enhancer may also be included in the composition to improve product performance and processing.Type: GrantFiled: April 23, 2013Date of Patent: February 4, 2014Assignee: Ford Flobal Technologies, LLCInventors: Paul Kenneth Dellock, Joel Thomas Pierce, Talat Karmo
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Publication number: 20140023811Abstract: The present invention discloses a plate building material, which comprises a plurality of strip fiber units, a filler and a coupling agent. The plurality of strip fiber units includes a plurality of crude chaffs. The fiber axes of the chaffs are randomly oriented. A plurality of gaps exists among the chaffs. The filler fills the gaps dispersed among the chaffs and bonds the strip fiber units to form a plate structure. The coupling agent is distributed on the interfaces between the strip fiber units and the filler to enhance the bonding between the strip fiber units and the filler. The plate building material of the present invention has the advantages: preserving chaff fiber to enhance strength; easiness to acquire chaffs; reducing consumption of wood and plastic; being environment-friendly, durable and economic.Type: ApplicationFiled: July 5, 2013Publication date: January 23, 2014Inventor: Ching-Sung KUO
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Patent number: 8586655Abstract: A composite board is manufactured from hydrophobic coconut coir fibers which have been treated to remove at least a portion of coconut pith therefrom; and a hydrophobic vinyl polymer, such as a polyolefin. The composite board is manufactured without any step of chemically modifying coconut coir fibers. The composite board is manufactured by removing at least a portion of coconut pith from coconut coir fibers using a cyclonic separator; combining coconut coir fibers with a hydrophobic polymer to form a mixture; and extruding the mixture to form a composite board.Type: GrantFiled: January 8, 2013Date of Patent: November 19, 2013Inventor: Vincent Carrubba
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Patent number: 8541487Abstract: A solid composite material is suitable for construction and industrial uses. The solid composite material consists of at least an effective amount of assorted agricultural remnants with additives of calcium carbonate and antimony trioxide bound in an effective volume of cured resin. The cured material tolerates wet environments, is fire resistant, resistant to caustic substances and can be finished to provide a product having a desired appearance.Type: GrantFiled: September 19, 2011Date of Patent: September 24, 2013Inventor: Ranee Spradlin
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Publication number: 20130225730Abstract: Disclosed herein is a new use for water-stable, oil-modified, nonreactive alkyd resins. It has now been found that such resins can be used as the predominant component of a construction adhesive employed in the manufacture of disposable absorbent articles, for example. As such, the construction adhesive need not employ plasticizers, tackifiers, and conventional polymers required by hot-melt adhesives typically used as construction adhesives. Furthermore, in the manufacture of disposable absorbent articles, the construction adhesive containing a water-stable, oil-modified, nonreactive, alkyd resin does not need to be processed or applied at the high temperatures required of construction adhesives containing reactive alkyds.Type: ApplicationFiled: April 11, 2013Publication date: August 29, 2013Applicant: The Procter & Gamble CompanyInventor: The Procter & Gamble Company
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Publication number: 20130225731Abstract: A degradable plastic and a manufacturing method thereof are provided. The degradable plastic is made by mixing plastic, dry crop straw scraps and additives and extruding the mixture into granules with a double-screw extruder. The weight fraction of the plastic, crop straw scraps and additives is 63-73 wt %, 23-33 wt % and 4-6 wt % based on the total weight of raw material. The obtained granules are even, stable and can be used to manufacture daily necessities such as dishware, containers, stationery and bags having smooth surface, high strength, excellent toughness and comfortable hand feeling.Type: ApplicationFiled: April 22, 2011Publication date: August 29, 2013Applicant: JIANGSU JINHE HI-TECH CO., LTDInventor: Zhengfu Yin
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Publication number: 20130190427Abstract: Polymer composites are provided, and more particularly, polymer composites of ground date pits disposed in a polymer matrix. The composites can be formed by a process of preparing reinforced polymer composites having a fibril melt fracture surface, including blending a mixture of date pit particulate with a thermoplastic polymer; melting the mixture; and forcing the melt through a die to produce the polymer composite having a fibril containing surface.Type: ApplicationFiled: March 4, 2013Publication date: July 25, 2013Applicant: KING ABDULAZIZ CITY FOR SCIENCE AND TECHNOLOGYInventor: KING ABDULAZIZ CITY FOR SCIENCE AND TECHNOLOGY
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Publication number: 20130178562Abstract: Polymer composites are provided, and more particularly, polymer composites of ground date pits disposed in a polymer matrix. The composites can be formed by a process of preparing reinforced polymer composites having a fibril melt fracture surface, including blending a mixture of date pit particulate with a thermoplastic polymer; melting the mixture; and forcing the melt through a die to produce the polymer composite having a fibril containing surface.Type: ApplicationFiled: March 4, 2013Publication date: July 11, 2013Applicant: King Abdulaziz City for Science and TechnologyInventor: King Abdulaziz City for Science and Technology
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Publication number: 20130178561Abstract: A composite board is manufactured from hydrophobic coconut coir fibers which have been treated to remove at least a portion of coconut pith therefrom; and a hydrophobic vinyl polymer, such as a polyolefin. The composite board is manufactured without any step of chemically modifying coconut coir fibers. The composite board is manufactured by removing at least a portion of coconut pith from coconut coir fibers using a cyclonic separator; combining coconut coir fibers with a hydrophobic polymer to form a mixture; and extruding the mixture to form a composite board.Type: ApplicationFiled: January 8, 2013Publication date: July 11, 2013Inventor: Vincent CARRUBBA
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Publication number: 20130096238Abstract: Polymer composites are provided, and more particularly, polymer composites of ground date pits disposed in a polymer matrix. The composites can be formed by a process of preparing reinforced polymer composites having a fibril melt fracture surface, including blending a mixture of date pit particulate with a thermoplastic polymer; melting the mixture; and forcing the melt through a die to produce the polymer composite having a fibril containing surface.Type: ApplicationFiled: October 18, 2011Publication date: April 18, 2013Applicant: KING ABDULAZIZ CITY FOR SCIENCE AND TECHNOLOGYInventors: Fares D. ALSEWAILEM, Yazeed A. BINKHEDER
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Publication number: 20130085211Abstract: Particulate binder compositions and methods for making and using same are provided. The binder composition for producing composite lignocellulose products can include an aldehyde based resin and a filler, an extender, or a combination thereof. The binder composition can be in the form of particulates. The particulates can each comprises the filler, the extender, or the combination thereof and the aldehyde based resin.Type: ApplicationFiled: September 26, 2012Publication date: April 4, 2013Applicant: GEORGIA-PACIFIC CHEMICALS LLCInventor: Georgia-Pacific Chemicals LLC
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Publication number: 20130072601Abstract: A sealant composition for the sealing of a punctured tyre including a liquid carrier, one or more viscosity and suspending agents, one or more fillers and sealants, and one or more polyacrylates.Type: ApplicationFiled: November 12, 2012Publication date: March 21, 2013Inventor: Terence Dowel
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Patent number: 8367767Abstract: A friction lining for a wet clutch, in particular for a converter lockup, the clutch containing the ingredients—cellulose fibers, aramid fibers, fillers and a bonding agent. To provide a cost-effective friction lining suitable for the application under the conditions of a converter lockup clutch, it is proposed to admix powdered nutshell of percentage weight between 1% and 40%.Type: GrantFiled: March 1, 2010Date of Patent: February 5, 2013Assignee: Schaeffler Technologies AG & Co., KGInventors: Firoz Jafri, Martin Fuss, Michael Wilfong
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Publication number: 20130005868Abstract: An imitation wood composition or a composition for making imitation wood, comprising a mixture of 30-40 wt % PVC resin and 30-40 wt % rice-husk and/or peanut-shell powder having a particle size of 0.42-0.25 mm (40-60 mesh). Further disclosed is an imitation wood produced by extruding the imitation wood composition or the composition for making imitation wood. The imitation wood exhibits an appearance and feel very similar to natural wood and can be processed using conventional wood tools. The imitation wood can be painted and adhesively bonded without problems and is suitable for outdoor applications, in particular in humid or wet environments, because of the very high weathering resistance thereof.Type: ApplicationFiled: February 19, 2010Publication date: January 3, 2013Inventors: Bernhard Duna, Antonio Siu Pak Tak
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Publication number: 20120318158Abstract: Embodiments of the present invention provide a composition useful as an additive to a printing ink. In one embodiment a composition is used that includes a biologically derived base material formed from one or more saturated or unsaturated straight or branched chain triglycerides or combinations thereof, wherein the triglycerides are partially to fully hydrogenated and have a viscosity between about 50 and about 200,000 centipoise at temperatures about 72 degrees Fahrenheit. In another embodiment, the composition further includes a finely divided additive selected from the group consisting of polytetrafluoroethylene or hydrogenated triglycerides in an intimate admixture with the base material. Other aspects relate to a method of making an ink additive and method for printing paper stock by letter press or lithography.Type: ApplicationFiled: August 26, 2012Publication date: December 20, 2012Applicant: Ethox Chemicals, LLCInventors: Calvin M. Wicker, JR., Bharat Desai, Paul Sullivan
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Publication number: 20120318176Abstract: A cacao husk can be effectively used. A member comprises a burned material of cacao husk and a base material, and is sieved so that the median diameter of the burned material of cacao husk becomes approx. 85 ?m or below. The member functions as a heat conducting material, an electromagnetic shielding member, etc. The content ratio of burned material of cacao husk against the base material can be determined according to the frequency band of the electromagnetic waves to be shielded. In addition, the base material can be one of rubber, paint and cement.Type: ApplicationFiled: March 24, 2011Publication date: December 20, 2012Applicant: THE NISSHIN OILLIO GROUP, LTD.Inventors: Hiroyuki Gotou, Go Shinohara, Noriyasu Kuno
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Patent number: 8329810Abstract: A recycled elastomeric composition that can include a natural rubber, a synthetic elastomeric polymer, or combinations thereof is described herein. The synthetic elastomeric polymer can include butadiene and styrene. The recycled elastomeric composition can also include a compatibilized silica with a coupling agent, a crumb rubber, a carbon black, a filler, and an extender oil. Articles comprising the recycled elastomeric composition can include: floor mats, tires, belts, rollers, footwear, wire or cable jacketing, roof edging, tubulars, and marine impact bumpers.Type: GrantFiled: January 4, 2011Date of Patent: December 11, 2012Assignee: Lion Copolymer, LLCInventors: Robert Stephen Rikhoff, Lawrence Douglas Harris, Gregory Neville Nelson
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Patent number: 8329794Abstract: A polymer composition of a compatibilized silica in blends of acrylonitrile butadiene polymer and styrene butadiene polymer comprising six to ninety percent by weight of a compatibilized silica, at least one percent by weight of a coupling agent, at least one percent by weight of a styrene butadiene polymer, and at least one percent by weight of an acrylonitrile butadiene polymer is described herein. The polymer composition can have a minimum amount of at least ten percent by weight of 15:50 ratio, acrylonitrile to butadiene polymer, with the remainder being compatibilized silica.Type: GrantFiled: January 4, 2011Date of Patent: December 11, 2012Assignee: Lion Copolymer, LLCInventors: Lawrence Douglas Harris, Harold William Young, Deepak Rasiklal Parikh, Daniel Courtney Patton, Vernon Vincent Vanis
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Patent number: 8318835Abstract: The present invention refers to an adequate composite material to be prepared by an injection process and to an injection process of a composite material. In accordance with the process of the present invention, the composite material is prepared by carrying out the steps of (i) making the length of the natural fibers uniform; (ii) treating the surface of the natural fibers and of the lignocellulosic residues, if present; (iii) premixing the components of the composite; (iv) extruding and granulating the composite material; and (v) injection molding the material of the composite for the conformation of the parts.Type: GrantFiled: April 13, 2006Date of Patent: November 27, 2012Assignee: Ford Motor Company Brasil Ltda.Inventors: Jefter Fernandes, Jose Augusto Marcondes, Reynaldo Boemer, Jr., Mario Donizete, Leandro Preter
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Patent number: 8293821Abstract: An improved composite wood adhesive extender, a method of producing the extender, and an adhesive mixture including the extender are provided, wherein the extender has performance satisfactory to the manufacturing needs of composite and ply wood products, while also extending the adhesive at a reasonable cost. The adhesive mixture may comprise a primary and secondary extender. The primary extender is composed of a wood-based product. The secondary extender of the present invention is composed of an amylaceous material comprising 100% substantially uncooked flour or starch, or an amylaceous material comprising 100% substantially uncooked flour or starch blended with a high fiber by-product. Alternatively, the secondary extender is composed of pre-gelatinized flour or starch and a mixture of pre-gelatinized flour or starch with flour comprising an advantageous quantity of raw starch. The secondary extender may substitute for about 25-40% of the primary extender on about a 1:1 ratio basis.Type: GrantFiled: June 16, 2009Date of Patent: October 23, 2012Assignee: Ply-Bond Chemicals & Mill Supplies, Inc.Inventor: Donald N. Tillman
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Patent number: 8236874Abstract: A composition that employs a coupling agent with a fluoropolymer processing aid to address melt-processing issues related to the use of interfering components in melt-processable polymeric binders.Type: GrantFiled: July 21, 2008Date of Patent: August 7, 2012Assignee: 3M Innovative Properties CompanyInventors: James M. Nelson, Jeffrey J. Cernohous, Siegmund Papp, Neil R. Granlund, Ryan E. Marx, Jeffrey G. Linert