Patents Assigned to Global Technologies LLC
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Patent number: 9328677Abstract: A method for an engine, comprising: responsive to a pressure in a fuel tank being below a pressure threshold, injecting only a liquid fuel into an engine cylinder, the fuel tank storing the liquid fuel and a pressurized gaseous fuel partially dissolved in the liquid fuel. In this way, the pressurized gaseous fuel may be conserved, thus maintaining a pressure gradient within the fuel system and allowing for judicious use of the pressurized gaseous fuel, for example during cold start conditions.Type: GrantFiled: October 10, 2013Date of Patent: May 3, 2016Assignee: Ford Global Technologies, LLCInventors: Thomas G. Leone, Mark Allen Dearth, Joseph Norman Ulrey, David Karl Bidner, Gopichandra Surnilla
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Patent number: 9327730Abstract: A method of signaling an operator of a motor vehicle to optimize stopping distance including determining a vehicle speed, and determining a preferred time to stop based, at least in part, on the vehicle speed. A maximum acceptable time to stop is determined based, at least in part, on the vehicle speed. A coast rate for the vehicle is determined, and an optimal distance to begin coasting is also determined. The method further includes providing a signal to an operator of the vehicle to begin coasting when the vehicle is at the optimal distance.Type: GrantFiled: February 17, 2014Date of Patent: May 3, 2016Assignee: Ford Global Technologies, LLCInventors: Kenneth James Miller, Douglas Raymond Martin
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Patent number: 9327732Abstract: An exemplary method includes adjusting a proportion of engine braking used to achieve a target deceleration of a vehicle to change an amount of thermal energy generated from engine braking. An exemplary assembly includes a friction brake to selectively provide friction braking to a vehicle, an engine brake to selectively provide engine braking to the vehicle, and a controller configured to adjust a proportion of the engine braking used to achieve a target deceleration of the vehicle to change an amount of thermal energy generated from engine braking.Type: GrantFiled: June 15, 2015Date of Patent: May 3, 2016Assignee: Ford Global Technologies, LLCInventors: Kenneth James Miller, Douglas Raymond Martin, William Paul Perkins, Daniel Mark Schaffer
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Patent number: 9330810Abstract: A dielectric fluid composition for electrical apparatus comprises a functionalized methyl-12-carboxy methyl stearate having desirable properties including a pour point less than ?30° C. and a fire point greater than 250° C. It may be prepared by a process wherein methyl-12-hydroxy methyl stearate is transesterified by reaction with a C3-C20 alcohol to form the hydroxy methyl ester, followed by reaction with a linear or branched C4-C20 carboxylic acid selected from free acid chlorides, fatty acids, carboxylic acid anhydrides, and combinations thereof. The second step serves to end-cap the hydroxyl groups, thereby producing the functionalized methyl-12-carboxy methyl stearate compound that exhibits improved thermoxidative stability and low temperature flowability, as well as increased fire point.Type: GrantFiled: September 26, 2012Date of Patent: May 3, 2016Assignee: Dow Global Technologies LLCInventors: Suh Joon Han, Dirk B. Zinkweg, Zenon Lysenko
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Patent number: 9326517Abstract: A synergistic antimicrobial composition containing chlorotoluron and 3-Iodo-2-propynyl butylcarbamate is provided. Also provided is a method of inhibiting the growth of or controlling the growth of microorganisms in a building material by adding such a synergistic antimicrobial composition. Also provided is a coating composition containing such a synergistic antimicrobial composition, and a dry film made from such a coating composition.Type: GrantFiled: March 28, 2014Date of Patent: May 3, 2016Assignees: Rohm and Haas Company, Dow Global Technologies LLCInventors: Kenneth M. Donnelly, Pierre Marie Lenoir, Lukas Thomas Johannes Villiger
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Patent number: 9328705Abstract: Fuel gelling determination methods and systems are provided for identifying and displaying to a vehicle operator a message conveying that the conditions are suitable for the formation of a fuel gel. In one particular example, at a fuel refill event the average ambient air temperature is calculated over the last fifty miles and used to characterize the grade of fuel as a summer or winter grade of fuel. Then, when the ambient temperature next drops near the cloud point of a summer fuel grade while driving, a message is displayed to a vehicle operator indicating that the conditions are suitable for fuel gelling to occur.Type: GrantFiled: July 28, 2014Date of Patent: May 3, 2016Assignee: Ford Global Technologies, LLCInventors: Ace Koua Kue, John Paul Bogema, Lohpartap Ahluwalia, Dennis Blanchard, William P. Boone
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Patent number: 9328657Abstract: Various systems and method for heating an engine in a vehicle are described. In one example, intake air flowing in a first direction may be heated via a gas-to-gas heat exchange with exhaust gases. The heated intake air may then be used in a subsequent gas-to-liquid heat exchange to heat a fluid circulating through the engine. In another example, intake air flowing in a second direction may be heated via a heat exchange with exhaust gases in order to cool an exhaust catalyst.Type: GrantFiled: November 18, 2013Date of Patent: May 3, 2016Assignee: Ford Global Technologies, LLCInventors: Joseph Norman Ulrey, Ross Dykstra Pursifull, Thomas G. Leone
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Patent number: 9328675Abstract: A method for reducing the thermal load of an internal combustion engine without substantially reducing its power output is described. The method includes adjusting an engine air-fuel ratio responsive to one or more of a charge air over-temperature, a coolant over-temperature and an engine efficiency parameter.Type: GrantFiled: January 30, 2013Date of Patent: May 3, 2016Assignee: Ford Global Technologies, LLCInventors: Bernd Brinkmann, Ben Thomas, Michael Rowland, Gareth Price
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Patent number: 9328648Abstract: An exhaust assembly is provided that includes an exhaust pipe extending rearward from a vehicle into an exhaust passage, and a fascia coupled to the vehicle defining the exhaust passage. The exhaust assembly further includes a bezel defining an exhaust opening substantially aligned with the pipe, and a sleeve configured within the exhaust opening. The sleeve extends rearward to at least the rearmost portion of the exhaust opening and substantially parallel to an exit portion of the pipe. The exhaust opening may further define an exhaust plane tangent to rearmost portion of the bezel, and the sleeve may extend at least to this plane. An upper sleeve may also be configured to extend at least to a line tangent to the rearmost surfaces of an upper bezel and perpendicular to the upper sleeve.Type: GrantFiled: April 18, 2013Date of Patent: May 3, 2016Assignee: Ford Global Technologies, LLCInventors: Erich James Nowka, Yahong Zhang
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Patent number: 9327665Abstract: A collision energy absorption apparatus and a vehicle front end structure including the apparatus. The apparatus is welded to a bumper beam and is laterally adjacent a longitudinally extending member disposed behind the bumper beam. The apparatus has a central body having a front edge attached to the bumper beam and a rear edge that is spaced from the bumper beam and the longitudinally extending member. Upper and lower triangular walls extend between the central body and the longitudinally extending member. A rib extends laterally outwardly from the central body.Type: GrantFiled: December 30, 2014Date of Patent: May 3, 2016Assignee: Ford Global Technologies, LLCInventors: Saeed David Barbat, Mohamed Ridha Baccouche, Rahul Arora, Saied Nusier
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Patent number: 9327672Abstract: An active bolster for an automotive vehicle includes a plastic-molded trim wall that deploys outwardly during a crash. A plastic-molded reaction plate is mounted as a deployment base. A plastic-molded bladder member is joined around a substantially sealed perimeter with the trim wall to form an inflatable bladder. The bladder member includes at least one substantially circumferential pleated baffle around a central attachment region. The central attachment region includes an attachment boss projecting toward an attachment pad on the reaction plate to form a hot weld. The attachment boss has an arched cross section defining a weld surface with an apex. The weld surface is hot welded to the attachment pad such that the apex makes first contact with the attachment pad, wherein compression of the bladder member with the reaction plate creates a contact edge moving radially outward from the apex to expel gas from the hot weld.Type: GrantFiled: March 12, 2015Date of Patent: May 3, 2016Assignee: FORD GLOBAL TECHNOLOGIES, LLCInventors: Kaitlin M. Cischke, Stacey H. Raines, Nicholas A. Mazzocchi
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Publication number: 20160114047Abstract: A composition designed for application to a mucosa comprises a tonicity-adjusting agent, a methylcellulose, and a liquid diluent, wherein the methylcellulose has anhydroglucose units joined by 1-4 linkages wherein hydroxy groups of anhydroglucose units are substituted with methyl groups such that s23/s26 is 0.36 or less, wherein s23 is the molar fraction of anhydroglucose units wherein only the two hydroxy groups in the 2- and 3-positions of the anhydroglucose unit are substituted with methyl groups and wherein s26 is the molar fraction of anhydroglucose units wherein only the two hydroxy groups in the 2- and 6-positions of the anhydroglucose unit are substituted with methyl groups.Type: ApplicationFiled: July 16, 2014Publication date: April 28, 2016Applicants: Dow Global Technologies LLC, Dow Wolff Cellulosics GmbH & Co. OHG, The Dow Chemical Company, Union Carbide Chemicals & Plastics Technology LLCInventors: Jaime Curtis-Fisk, Susan L. Jordan, True L. Rogers, Matthias Knarr, Meinolf Brackhagen, Roland Adden
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Publication number: 20160115140Abstract: A continuous process for the preparation of propylene oxide, comprising (a) reacting propene, optionally admixed with propane, with hydrogen peroxide in a reaction apparatus in the presence of acetonitrile as solvent, obtaining a stream S0 containing propylene oxide, acetonitrile, water, at least one further component B, optionally propene and optionally propane, wherein the normal boiling point of the at least one component B is higher than the normal boiling point of acetonitrile and wherein the decadic logarithm of the octanol-water partition coefficient (log Kow) of the at least one component B is greater than zero; (b) separating propylene oxide from S0, obtaining a stream S1 containing acetonitrile, water and the at least one further component B; (c) dividing S1 into two streams S2 and S3; (d) subjecting S3 to a vapor-liquid fractionation in a fractionation unit, obtaining a vapor fraction stream S4 being depleted of the at least one component B; (e) recycling at least a portion of S4, optionally afterType: ApplicationFiled: April 28, 2014Publication date: April 28, 2016Applicants: BASF SE, DOW GLOBAL TECHNOLOGIES LLCInventors: Joaquim H. TELES, Dominic RIEDEL, Bianca SEELIG, Philip KAMPE, Daniel URBANCZYK, Markus WEBER, Alexander SCHROEDER, Andrei-Nicolae PARVULESCU, Ulrich MUELLER, Meinolf WEIDENBACH, Werner WITZL, Holger BAER
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Publication number: 20160114374Abstract: A system for assembling vehicle components includes a die assembly securing first and second vehicle components having first and second apertures, respectively. The die assembly positions the first and second vehicle components with the first and second apertures overlapping, and at least one of the first and second vehicle components including a polymeric material. The system further includes a joining component extending through the first and second apertures. The die assembly supports the joining component, and the joining component including a support shank and a moldable body at least partially encasing the support shank. The system also includes a punch member selectively engaging and deforming the moldable body of the joining component. The die assembly guides the moldable body into engagement with the first and second vehicle components, and the die assembly locates the support shank within at least one of the first and second apertures.Type: ApplicationFiled: October 22, 2014Publication date: April 28, 2016Applicant: Ford Global Technologies, LLCInventor: Garret Sankey Huff
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Publication number: 20160114836Abstract: An assembly of vehicle components includes first and second components abutting each other. At least one of the first and second components includes a non-metallic material. The first and second components respectively include overlapping first and second apertures. The assembly further includes a joining component extending through the first and second apertures. The joining component has a support body and an outer body at least partially encasing the support body. The outer body includes a polymeric material. The joining component clamps the first and second components between first and second flanges of the outer body, and the support body extends into at least one of the first and second apertures.Type: ApplicationFiled: October 22, 2014Publication date: April 28, 2016Applicant: FORD GLOBAL TECHNOLOGIES, LLCInventor: Garret Sankey Huff
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Publication number: 20160114805Abstract: A vehicle system includes a remote device having a processor programmed to receive driver data in real-time during operation of a first vehicle. The processor processes the driver data to determine a driver behavior. A command signal is generated to command a second vehicle to update at least one parameter in accordance with the driver behavior.Type: ApplicationFiled: October 28, 2014Publication date: April 28, 2016Applicant: Ford Global Technologies, LLCInventors: Hsin-hsiang Yang, Kwaku O. Prakah-Asante
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Patent number: 9322400Abstract: A jet pump that supplies fluid to a transmission pump includes a pump inlet, a sump, a fluid source, and a nozzle including an axial passage for carrying fluid from the sump toward the inlet, and a second passage having an arcuate periphery and including an entrance facing a lateral side of the nozzle and connected to the fluid source and an exit communicating with the pump inlet.Type: GrantFiled: October 2, 2012Date of Patent: April 26, 2016Assignee: FORD GLOBAL TECHNOLOGIES, LLCInventors: Lee J. Becker, Charles M. Robeck, Mark R. Dobson, Li Liu, Jason R. Ludwig
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Patent number: 9325181Abstract: An exemplary battery charge monitoring method includes, among other things, calculating expected charge data for a battery using at least a capacity of the battery and a charge rate, and comparing actual charge data to the expected charge data to identify differences between the actual charge data and the expected charge data.Type: GrantFiled: July 18, 2013Date of Patent: April 26, 2016Assignee: Ford Global Technologies, LLCInventors: Paul Theodore Momcilovich, Allan Roy Gale, Bruce Carvell Blakemore, Michael W. Degner
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Patent number: 9321140Abstract: A machine grinding system is provided for machine grinding the main bearing journals, pin bearing journals, the post surface, gear-fit wall surface, and the flywheel flange surfaces of a four cylinder crankshaft. The system includes three operating stations, each operating station only requiring one machine to maintain the desired production rate. The first operating station machine grinds the main bearing journals, post surface, and gear-fit wall surface; the second operating station machine grinds the pin journals; and the third operating station machine grinds the thrust bearing surfaces and the flywheel flange surfaces.Type: GrantFiled: August 1, 2013Date of Patent: April 26, 2016Assignee: Ford Global Technologies, LLCInventor: Michael A Kopmanis
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Patent number: 9322345Abstract: Various methods for estimating electric actuator temperature during certain operational windows are provided. In one example, a method comprises adjusting an electric motor to position a wastegate at a desired wastegate position, while during selected conditions, deviating from the desired position by at least one full half-turn of the motor and indicating motor temperature based on winding resistance averaged over the full half-turn.Type: GrantFiled: April 10, 2014Date of Patent: April 26, 2016Assignee: Ford Global Technologies, LLCInventors: Yan Wang, Baitao Xiao