Patents Examined by Michael T Piery
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Patent number: 8017060Abstract: The invention describes a process for the preparation of a granular delivery system particularly useful for the controlled release of flavoring or perfuming ingredients. The process includes the steps of forming a concentrated, highly viscous emulsion of the active compound to be encapsulated, blending the latter with a hydrophilic polymer in an extruder and shaping it into a granular free flowing solid at usual storage temperatures. The process of the invention is particularly appropriate for the encapsulation of volatile molecules as it avoids any dehydration step before or after extrusion.Type: GrantFiled: June 8, 2004Date of Patent: September 13, 2011Assignee: Firmenich SAInventors: Daniel Benczedi, Pierre-Etienne Bouquerand, Ernst Steinboeck
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Patent number: 7981339Abstract: A method and apparatus are provided for continuously producing a polymer pellet efficiently in which, in storing, transporting or feeding to a processing apparatus, the obtained pellets containing the adhesive polymer do not easily mutually adhere, and handling thereof is excellent. The method comprises a step of deforming at temperatures of about 30 to 150° C. under pressure an adhesive polymer coated with a thermoplastic polymer, and a step of cutting the deformed portion of the coated polymer.Type: GrantFiled: December 15, 2004Date of Patent: July 19, 2011Assignee: Sumitomo Chemical Company, LimitedInventors: Takayuki Yamaguchi, Hiroyuki Tanimura, Takuro Nasu
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Patent number: 7959851Abstract: Strips containers are formed using two continuous webs in thermoformable and heat-sealable material facing each other. The webs are indexed along a feed line through different operating stations that transform the webs into a continuous strip of containers, each one of which is provided with a mouth. The containers are arranged according to two parallel rows that are opposed to a longitudinal median zone. The mouths of the containers of the upper row are arranged on the upper longitudinal edge of the strip and face upwards, whilst the mouths of the containers of the lower row are arranged on the lower longitudinal edge and face downwards. The method enables productivity to be increased and waste to be reduced.Type: GrantFiled: January 20, 2003Date of Patent: June 14, 2011Assignee: Sarong Societa' per ZioniInventors: Primo Finetti, Andrea Bartoli
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Patent number: 7955544Abstract: Apparatus and methods for cutting compressible cellular polymers such as polyurethane foam, are characterized by a first die roller and a pressure roller, wherein both rollers define raised portions separated by recesses or depressions, and the raised portions on the first die roller register with the recesses of the pressure roller at a nip formed between the rollers. Portions of the polymer material extruded into the spaces between the raised portions of the first die roller are cut away, such that the cut product conforms substantially to the surface geometry of the first die roller, and the depth of cut is greater than with prior rotary cutting methods.Type: GrantFiled: November 23, 2004Date of Patent: June 7, 2011Assignee: Foamex Innovations Operating CompanyInventor: Jose D. Contreras
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Patent number: 7955539Abstract: A reversible, heat-set covered fiber is described, the covered fiber comprising: A. A core comprising an elastic fiber comprising a substantially crosslinked, temperature-stable, olefin polymer, and B. A cover comprising an inelastic fiber. The fiber is heat-set by a method comprising: (a) Stretching the covered fiber by applying a stretching force to the covered fiber; (b) Heating the stretched covered fiber of (a) to a temperature in excess of the crystalline melting point of the olefin polymer for a period of time sufficient to at least partially melt the olefin polymer; (c) Cooling the stretched and heated covered fiber of (b) to a temperature below the crystalline melting point of the olefin polymer for a period of time sufficient to solidify the polymer; and (d) Removing the stretching force from the covered fiber.Type: GrantFiled: March 11, 2003Date of Patent: June 7, 2011Assignee: Dow Global Technologies LLCInventors: Rajen M. Patel, Rona L Reid, Antonio Batistini, Selim Bensason, Thoi H. Ho
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Patent number: 7919027Abstract: A method and device for manufacturing of electrical components on a continuous web or discrete sheets of dielectric material are disclosed. The method includes feeding, from a supply roll of a laminated web or a supply of sheets including at least one unbroken layer of conducting material laminated on a flexible backing layer of dielectrical material, the laminated web or discrete sheets to a nip between a patterned cylinder and a cooperating cylinder, to shape the conducting layer into a repeated pattern of conducting material having ridges and valleys. The method further includes removing, by mechanical machining, conducting material from the thus shaped conducting layer. The removing is performed simultaneously with the step to shape the conducting layer, and by way of the cooperating cylinder, designed as a milling cutter cylinder.Type: GrantFiled: September 16, 2004Date of Patent: April 5, 2011Assignee: Webshape ABInventors: Staffan Nordlinder, Fredrik Andersson
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Patent number: 7906055Abstract: An article (10) such as a grid fin that controls the direction of flight of a vehicle, has precisely formed passages (14) with porous locating walls (52A, 52B) and a layer of fibrous material (86) such as graphite cloth lying against one or both opposite sides of the locating wall, and with the locating wall and fibrous material impregnated with resin (84). Locating blocks (30) of foam are molded and the fibrous material (42) is wrapped around each block. The wrapped blocks (44) are each inserted into a passage (54) of a locating grid (50), so the fibrous material is compressed. The locating grid lies in a grid-holding mold (60). With the fiber-wrapped blocks inserted, the grid-holding mold is closed and resin is injected into the mold and allowed to harden. The foam blocks are removed by eroding them, as by sand blasting them, to leave a final article.Type: GrantFiled: November 13, 2009Date of Patent: March 15, 2011Assignee: Foam Matrix, Inc.Inventors: Michael Kramer, Kent Sherwood
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Patent number: 7906057Abstract: A method of making nanostructured polymeric film includes: providing a tool having a porous anodized aluminum surface or a metallic replica thereof, wherein the average depth of the pores and the average pore width fall with specified ranges; forming a continuous layer of thermoplastic polymer selected from cellulose esters, poly alpha-olefins, and combinations thereof on at least a portion of the surface of the tool such that the continuous layer extends into the pores of the surface; separating the continuous layer from the tool as a film having nanofibrils formed on a major surface of the tool, the surface of the tool having a fluorocarbon release agent thereon, or the continuous layer comprising a fluorocarbon melt additive, or both. Nanostructured films are also disclosed.Type: GrantFiled: July 14, 2005Date of Patent: March 15, 2011Assignee: 3M Innovative Properties CompanyInventors: Haiyan Zhang, Evariste F. Osten, Gary A. Korba, George G. I. Moore
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Patent number: 7867425Abstract: A plastic closure includes a shell having a base wall with a skirt for securement to a container finish and a lip that extends radially inwardly from the skirt at a position adjacent to and spaced from the base wall. A liner is compression molded in situ against the base wall, and between the base wall and the lip. The lip has a plurality of circumferentially spaced passages that extend through the lip for venting air during compression molding of the liner.Type: GrantFiled: August 11, 2004Date of Patent: January 11, 2011Assignee: Rexam Closure Systems Inc.Inventor: Joseph M. Major
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Patent number: 7861345Abstract: The present invention is directed to apparatus and a method for reshaping a footwear shell, the apparatus includes a support structure, a drive mechanism and external mold arrangement that drives the external mold toward or away from the shell being reshaped; and an internal mold assembly that includes an angled support arm having a first leg adapted to couple to one of a selection of couplings provided in the support structure and a second leg offset from the first leg at an angle ?. The internal mold assembly also includes an adapter that is rotatably fixed to the second leg of the angled support arm, and a static mold removably fixed to the adapter and coaxially aligned with a common axis extending through the external mold and static mold, the support arm angle ? provides an improved support shape that improves placement of the static mold within the footwear shell during reshaping.Type: GrantFiled: February 24, 2007Date of Patent: January 4, 2011Assignee: Outside The Box Designs, LtdInventors: Paul J. Prutzman, Cullen L. Speakman
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Patent number: 7850880Abstract: An arrangement is made such that the magnitude of cure shrinkage obtained by multiplying the thickness of a resin layer 2 between a master mold 1 and a negative mold substrate 3 by the cure shrinkage ratio of the resin and the magnitude of cure shrinkage obtained by multiplying the thickness of a resin layer 4 between the negative mold 23 and the surface of the spherical or flat substrate 5 by the cure shrinkage ratio of the resin can be compensated for by each other. In accordance with this method, an aspherical optical element having a higher precision than ever can be formed at reduced cost by a replica method involving the addition of a resin layer to the surface of a spherical or flat substrate.Type: GrantFiled: March 18, 2005Date of Patent: December 14, 2010Assignee: Shimadzu CorporationInventor: Hiroyuki Sasai
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Patent number: 7850889Abstract: A metal mold is prepared, which has a gate, a cavity in which a virtual curve is formed, which forms at least a welding target part of a laser beam transmitting member along the virtual curve, and in which a filling terminal wall is formed along a curve parallel to the virtual curve, and a throttle part for reducing the flow of a resin flowing from the gate toward the cavity, which is connected to the cavity, and whose connection boundary is formed along a curve parallel to the virtual curve. Then, a resin is injected into the gate and a crystalline laser beam transmitting member is molded out of the injected resin using the metal mold.Type: GrantFiled: June 14, 2004Date of Patent: December 14, 2010Assignee: Denso CorporationInventors: Tsuyoshi Arai, Yasunori Kawamoto, Hideki Okuda
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Patent number: 7807080Abstract: Thermoplastic parts are made of predominantly single unit thickness but with marginal areas of increased thickness by molding two parts in a common mold having overlapping mold portions. Two thicknesses of thermoplastic material are molded together in the areas of increased thickness at opposite ends of the common mold and the parts are separated from one another by trimming such that each part has an area of increased solid wall thickness and an area of reduced thickness.Type: GrantFiled: November 1, 2006Date of Patent: October 5, 2010Inventor: Lance T. Hampel
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Patent number: 7794645Abstract: The present invention relates to a method for preparing a biodegradable piece for medical use including the steps of: a) preparing a mixture including glycerol and sebacic acid, b) pouring said mixture into a one-piece mould made of elastic material, c) placing the mould containing said mixture on a support, d) placing the support into a chamber with controlled temperature and vacuum level until a polymer having the desired consistency is obtained, e) removing the support from the chamber and allowing it to cool down to room temperature, and f) removing the piece thus obtained from the mould.Type: GrantFiled: July 2, 2007Date of Patent: September 14, 2010Assignee: Teknimed S.A.Inventors: Alain Leonard, Cyril Sender
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Patent number: 7749420Abstract: A method and an apparatus facilitate the processing of a core structure for a composite sandwich structure. The core has an open three-dimensional structure and is not self-supporting due to an insufficient strength or stiffness. The method involves temporarily providing a support arrangement on the core structure to mechanically support and stabilize it, then subjecting the supported core structure to the desired processing, and then separating and removing the core structure and the support arrangement from one another. The processing can involve immersion into a processing liquid such as a curable resin, or mechanical machining operations. The support arrangement preferably includes a core impression that is surfacially form-fitting on a structured surface of the core structure. The apparatus includes a support arrangement including a core impression to be disposed on a surface of the core structure. The core impression may be formed of a polymer, a metal, or a casting material.Type: GrantFiled: March 17, 2005Date of Patent: July 6, 2010Assignee: Airbus Deutschland GmbHInventors: Gregor Christian Endres, Hans-Juergen Weber
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Patent number: 7704432Abstract: An imprint lithographic method for making a polymeric structure comprising the steps of: (a) providing a mold having a shape forming a mold pattern; (b) providing a substrate having a higher surface energy relative to said mold; (c) providing a polymer film on said mold, said polymer film having a selected thickness, wherein the selected thickness of the polymer film on the mold pattern is capable of forming at least one frangible region in the polymer film having a thickness that is less than the remainder of the polymer film; (d) pressing the mold and the substrate relatively toward each other to form said frangible region; and (e) releasing at least one of said mold and said substrate from the other, wherein after said releasing, said frangible region remains substantially attached to said mold while the remainder of said polymer film forms the polymeric structure attached to said substrate.Type: GrantFiled: May 18, 2006Date of Patent: April 27, 2010Assignee: Agency for Science, Technology and ResearchInventors: Jarrett Dumond, Hong Yee Low
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Patent number: 7615179Abstract: The present invention is directed to micro- and nano-scale imprinting methods and the use of such methods to fabricate supported and/or free-standing 3-D micro- and/or nano-structures of polymeric, ceramic, and/or metallic materials, particularly for pixel segregation in OLED-based displays. In some embodiments, a duo-mold approach is employed in the fabrication of these structures. In such methods, surface treatments are employed to impart differential surface energies to different molds and/or different parts of the mold(s). Such surface treatments permit the formation of three-dimensional (3-D) structures through imprinting and the transfer of such structures to a substrate. In some or other embodiments, such surface treatments and variation in glass transition temperature of the polymers used can facilitate separation of the 3-D structures from the molds to form free-standing micro- and/or nano-structures individually and/or in a film.Type: GrantFiled: March 24, 2005Date of Patent: November 10, 2009Assignee: Agency For Science, Technology and ResearchInventors: Jarrett Dumond, Hong Yee Low
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Patent number: 7604758Abstract: A process for producing a polymer optical waveguide including: 1) preparing a rubber mold having a composite layer structure in which a rubber layer which has a concave portion corresponding to an optical waveguide core and contains a rubber mold-forming curable resin is buried in a rubber layer-forming concave portion of a rigid substrate having the rubber layer-forming concave portion; 2) bringing a cladding substrate into close contact with the rubber mold; 3) filling the concave portion of the rubber mold, with which the cladding substrate has been brought into close contact, with a core-forming curable resin; 4) curing the filled core-forming curable resin; 5) removing the rubber mold from the cladding substrate; and 6) forming a cladding layer on the cladding substrate on which the core has been formed.Type: GrantFiled: June 17, 2004Date of Patent: October 20, 2009Assignee: Fuji Xerox Co., Ltd.Inventors: Eiichi Akutsu, Shigemi Ohtsu, Keishi Shimizu, Kazutoshi Yatsuda
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Patent number: 7601284Abstract: A method for forming a fastener product includes folding a sheet material about a longitudinal fold line to form a longitudinal edge portion overlapping only an adjacent portion of the sheet material, leaving another portion of the sheet material exposed as a remainder portion. The folded sheet material is continuously introduced to a gap adjacent to a surface of a rotating mold roll. Moldable resin is introduced between the sheet material and the mold roll to fill fixed cavities in the rotating mold roll to form portions of the fastener elements as stems bonded to one of the overlapping edge portion and the remainder portion. Additional material is bonded to the other of the overlapping edge portion and the remainder portion with the bonding occurring in the gap. The resin is solidified, then, stripped from the surface of the mold roll by pulling the stems from their respective cavities.Type: GrantFiled: April 6, 2005Date of Patent: October 13, 2009Assignee: Velcro Industries B.V.Inventor: William P. Clune
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Patent number: 7582245Abstract: A method of manufacturing an insect coil includes the steps of feeding a sheet of dough material which includes an active insect control ingredient dispersed therein in a first direction, cutting the sheet of dough material with a die to form an insect coil, ejecting the insect coil from the die, and applying an extra dose of active to a specific location on the coil while the coil is being ejected from the die. Preferably, the extra dose of active is applied as a droplet using capillary forces that develop between the upper surface of the insect coil and the droplet itself and is forced through a tube located above the desired location. The insect coil may be tip treated only or may be zone treated at a plurality of spaced locations.Type: GrantFiled: June 29, 2004Date of Patent: September 1, 2009Assignee: S.C. Johnson & Son, Inc.Inventor: Kenneth J. Welch