Patents by Inventor Naoki Osada
Naoki Osada has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
-
Publication number: 20170194648Abstract: A particle having a core of elemental chalcogen elements, such as sulfur, selenium and tellurium, and a coating of at least one polymeric layer on the core. A functionalized conductive carbon material is dispersed in the core. A cathode containing the particles and a battery constructed with the cathode are also provided.Type: ApplicationFiled: December 30, 2015Publication date: July 6, 2017Applicant: Toyota Motor Engineering & Manufacturing North America, Inc.Inventors: Claudiu B. BUCUR, Naoki OSADA, John MULDOON, Mike JONES
-
Publication number: 20170040636Abstract: A main object of the present invention is to provide a solid electrolyte material with high Li ion conductivity and heat stability. To achieve the above object, the present invention provides a solid electrolyte material comprising a composition of Li3PS4-xOx (1?x?3), a crystal phase A having a peak at a position of 2?=17.80°±0.50°, 25.80°±0.50° in X-ray diffraction measurement using a CuK? ray, and a crystal phase B having a peak at a position of 2?=22.30°±0.50°, 23.14°±0.50°, 24.80°±0.50°, 33.88°±0.50°, 36.48°±0.50° in X-ray diffraction measurement using a CuK? ray.Type: ApplicationFiled: July 6, 2016Publication date: February 9, 2017Applicant: TOYOTA JIDOSHA KABUSHIKI KAISHAInventors: Erika OKI, Naoki OSADA
-
Publication number: 20160149259Abstract: A sulfide solid electrolyte material having a high Li ion conductivity is provided. A sulfide solid electrolyte material includes Li, P, I and S, having peaks at 2?=20.2° and 23.6°, not having peaks at 2?=21.0° and 28.0° in an X-ray diffraction measurement using a CuK? ray, and having a half width of the peak at 2?=20.2° of 0.51° or less.Type: ApplicationFiled: May 26, 2014Publication date: May 26, 2016Applicant: TOYOTA JIDOSHA KABUSHIKI KAISHAInventors: Naoki OSADA, Shigenori HAMA, Tomoya SUZUKI
-
Publication number: 20160133989Abstract: A sulfide solid electrolyte material having high Li ion conductivity can be obtained by providing a method for producing a sulfide solid electrolyte material that has peaks at 2?=20.2° and 2?=23.6° in an X ray diffraction measurement using a CuK? ray, the method including steps of: an amorphizing step of obtaining sulfide glass by amorphization of a raw material composition that contains at least Li2S, P2S5, LiI and LiBr and a heat treatment step of heating the sulfide glass at a temperature of 195° C. or higher.Type: ApplicationFiled: April 14, 2014Publication date: May 12, 2016Applicant: TOYOTA JIDOSHA KABUSHIKI KAISHAInventors: Tomoya SUZUKI, Shigenori HAMA, Naoki OSADA
-
Patent number: 9051855Abstract: To achieve an intermediate lock state in a short period when an engine is stopped and improve the accuracy of confirmation of the intermediate lock state, an engine valve timing control apparatus includes a variable valve timing mechanism configured to vary engine valve timing, and an intermediate lock mechanism configured to restrict relative rotation positions of a first and a second rotor of the valve timing mechanism at an intermediate lock position for starting the engine. Upon detection of an engine stop request, the valve timing mechanism and the intermediate lock mechanism are driven and controlled for establishing an intermediate lock state. When a predetermined period from detection of the engine stop request has expired without detecting the intermediate lock state within the predetermined period, an engine stopping process is executed. Even after the engine stopping process has been executed, monitoring of the intermediate lock state is continued.Type: GrantFiled: July 2, 2012Date of Patent: June 9, 2015Assignee: NISSAN MOTOR CO., LTD.Inventors: Hironori Ito, Kenji Ariga, Ken Shiozawa, Takahiro Miura, Motomu Kitamura, Naoki Osada, Masahiro Iriyama, Masahiro Arai, Hiroyuki Itoyama, Hiroshi Abe
-
Patent number: 8840006Abstract: Disclosed is a friction-stir joining method for joining a first member, having a base metal covered with a substance different from the base metal, with a second member with the second member placed on the first member by moving a joining tool along a joining line having thereon a joining start point and a joining finish point. The method includes steps of: inserting the joining tool into the second member at the joining start point; moving the joining tool a predetermined distance along the joining line in a direction opposite the joining finish point; causing the joining tool to turn back at a turning-back point spaced the predetermined distance from the joining start point; moving the joining tool along the joining line to the joining finish point past the joining start point; and pulling the joining tool out from the second member at the joining finish point.Type: GrantFiled: September 18, 2013Date of Patent: September 23, 2014Assignees: Honda Motor Co., Ltd., F-Tech Inc.Inventors: Mitsuru Sayama, Keisuke Tsuta, Tsutomu Kobayashi, Shosuke Ohhama, Tetsuya Miyahara, Katsumi Komori, Kazuhiro Sekine, Naoki Osada
-
Publication number: 20140165939Abstract: To achieve an intermediate lock state in a short period when an engine is stopped and improve the accuracy of confirmation of the intermediate lock state, an engine valve timing control apparatus includes a variable valve timing mechanism configured to vary engine valve timing, and an intermediate lock mechanism configured to restrict relative rotation positions of a first and a second rotor of the valve timing mechanism at an intermediate lock position for starting the engine. Upon detection of an engine stop request, the valve timing mechanism and the intermediate lock mechanism are driven and controlled for establishing an intermediate lock state. When a predetermined period from detection of the engine stop request has expired without detecting the intermediate lock state within the predetermined period, an engine stopping process is executed. Even after the engine stopping process has been executed, monitoring of the intermediate lock state is continued.Type: ApplicationFiled: July 2, 2012Publication date: June 19, 2014Applicant: NISSAN MOTOR CO., LTD.Inventors: Hironori Ito, Kenji Ariga, Ken Shiozawa, Takahiro Miura, Motomu Kitamura, Naoki Osada, Masahiro Iriyama, Masahiro Arai, Hiroyuki Itoyama, Hiroshi Abe
-
Publication number: 20140076957Abstract: Disclosed is a friction-stir joining method for joining a first member, having a base metal covered with a substance different from the base metal, with a second member with the second member placed on the first member by moving a joining tool along a joining line having thereon a joining start point and a joining finish point. The method includes steps of inserting the joining tool into the second member at the joining start point; moving the joining tool a predetermined distance along the joining line in a direction opposite the joining finish point; causing the joining tool to turn back at a turning-back point spaced the predetermined distance from the joining start point; moving the joining tool along the joining line to the joining finish point past the joining start point; and pulling the joining tool out from the second member at the joining finish point.Type: ApplicationFiled: September 18, 2013Publication date: March 20, 2014Applicants: F-TECH INC., HONDA MOTOR CO., LTD.Inventors: Mitsuru SAYAMA, Keisuke TSUTA, Tsutomu KOBAYASHI, Shosuke OHHAMA, Tetsuya MIYAHARA, Katsumi KOMORI, Kazuhiro SEKINE, Naoki OSADA
-
Patent number: 8402935Abstract: An engine starting control apparatus is basically provided with a motor control section, a valve timing control section and a start control section. The motor control section is configured to operate an electric motor to crank an engine with an output of the electric motor being adjustable. The valve timing control section is configured to operate a variable valve operating mechanism when the engine is started to change at least a close timing of an intake valve of the engine from an initial timing to a start timing such that the start timing is set closer to an intake bottom dead center during a single engine start as compared to the initial timing. The start control section is configured to adjust the output of the electric motor as the close timing of the intake valve changes from the initial timing to the start timing during the single engine start.Type: GrantFiled: March 9, 2012Date of Patent: March 26, 2013Assignee: Nissan Motor Co., Ltd.Inventors: Takatsugu Katayama, Masahiko Yuya, Naoki Osada, Atsushi Mitsuhori, Hatsuki Morinaga, Makoto Shoji
-
Publication number: 20120160201Abstract: An engine starting control apparatus is basically provided with a motor control section, a valve timing control section and a start control section. The motor control section is configured to operate an electric motor to crank an engine with an output of the electric motor being adjustable. The valve timing control section is configured to operate a variable valve operating mechanism when the engine is started to change at least a close timing of an intake valve of the engine from an initial timing to a start timing such that the start timing is set closer to an intake bottom dead center during a single engine start as compared to the initial timing. The start control section is configured to adjust the output of the electric motor as the close timing of the intake valve changes from the initial timing to the start timing during the single engine start.Type: ApplicationFiled: March 9, 2012Publication date: June 28, 2012Applicant: NISSAN MOTOR CO., LTD.Inventors: Takatsugu KATAYAMA, Masahiko YUYA, Naoki OSADA, Atsushi MITSUHORI, Hatsuki MORINAGA, Makoto SHOJI
-
Patent number: 8205589Abstract: An engine starting control apparatus is basically provided with a motor control section, a valve timing control section and a start control section. The motor control section is configured to operate an electric motor to crank an engine with an output of the electric motor being adjustable. The valve timing control section is configured to operate a variable valve operating mechanism when the engine is started to change at least a close timing of an intake valve of the engine from an initial timing corresponding to a state in which the engine is stopped to a start timing for starting the engine. The start control section is configured to adjust the output of the electric motor as the close timing of the intake valve changes from the initial timing to the start timing.Type: GrantFiled: January 7, 2008Date of Patent: June 26, 2012Assignee: Nissan Motor Co., Ltd.Inventors: Takatsugu Katayama, Masahiko Yuya, Naoki Osada, Atsushi Mitsuhori, Hatsuki Morinaga, Makoto Shoji
-
Publication number: 20110061628Abstract: An internal combustion engine is ignition-combustion started with or without cranking by controlling the ignition-combustion based on combustion chamber pressure, or engine temperature, or piston position, or the time elapsed since the engine was stopped, or a combination of these considerations.Type: ApplicationFiled: December 28, 2005Publication date: March 17, 2011Applicant: NISSAN MOTOR CO., LTD.Inventors: Hidehiro Fujita, Naoki Osada, Yoshitaka Matsuki, Masahiko Yuya, Atsushi Mitsuhori, Tadanori Yanai, Takatsugu Katayama, Shouta Hamane
-
Patent number: 7415955Abstract: In one aspect, an internal combustion engine includes a fuel injector for injecting fuel into a combustion chamber to produce an air-fuel mixture in the combustion chamber, a spark plug for igniting the air-fuel mixture to cause combustion in the combustion chamber and a controller controls the spark plug to cause combustion in the combustion chamber to apply a torque to start the engine from a stopped condition. The controller determines whether the operation of the engine will be stopped, and adjusts an operating condition of the engine if the controller determines the engine operation will be stopped.Type: GrantFiled: January 17, 2006Date of Patent: August 26, 2008Assignee: Nissan Motor Co., Ltd.Inventors: Yoshitaka Matsuki, Naoki Osada, Hidehiro Fujita, Masahiko Yuuya, Atsushi Mitsuhori, Tadanori Yanai, Takatsugu Katayama, Shouta Hamane
-
Publication number: 20080168959Abstract: An engine starting control apparatus is basically provided with a motor control section, a valve timing control section and a start control section. The motor control section is configured to operate an electric motor to crank an engine with an output of the electric motor being adjustable. The valve timing control section is configured to operate a variable valve operating mechanism when the engine is started to change at least a close timing of an intake valve of the engine from an initial timing corresponding to a state in which the engine is stopped to a start timing for starting the engine. The start control section is configured to adjust the output of the electric motor as the close timing of the intake valve changes from the initial timing to the start timing.Type: ApplicationFiled: January 7, 2008Publication date: July 17, 2008Applicant: NISSAN MOTOR CO., LTD.Inventors: Takatsugu KATAYAMA, Masahiko YUYA, Naoki OSADA, Atsushi MITSUHORI, Hatsuki MORINAGA, Makoto SHOJI
-
Patent number: 7357109Abstract: Embodiments are disclosed to reliably carry out engine starting without cranking. Using an internal combustion engine 1, when an idle stop condition is established, a third path switching valve 28 that is provided at the connection of the compressed air supply path 25 and a first blow-by path 21, and a blow-by control valve 24 are “closed”. The connection of the crankcase to the inlet path 14 is blocked, idling for a designated time is carried out, and finally the engine is stopped. On the other hand, when the idle stop release condition is established, an inlet valve 8 is “opened”, and the first to third path switching valves 26 to 28 are “closed”, thereby operating a compressor 17 for a designated period of time. Compressed air is thereby supplied to the combustion chamber 2 and the crankcase via the compressed air supply path 25, allowing an increase in the internal cylinder pressure. Finally, the engine is started.Type: GrantFiled: December 27, 2005Date of Patent: April 15, 2008Assignee: Nissan Motor Co., Ltd.Inventors: Atsushi Mitsuhori, Naoki Osada, Hidehiro Fujita, Yoshitaka Matsuki, Masahiko Yuuya, Tadanori Yanai, Takatsugu Katayama, Shouta Hamane
-
Patent number: 7308880Abstract: A starting system rotates and starts an internal combustion engine by injecting fuel into a predetermined cylinder using an injector and igniting the fuel using an ignition plug, and upon starting the engine, the fuel pressure supplied to the injector is detected, and the engine is started by combustion in the predetermined cylinder only when the detected pressure is at or greater than the predetermined pressure, thereby guaranteeing the fuel pressure when combustion starting is employed, and consequently the engine can be securely started.Type: GrantFiled: February 3, 2006Date of Patent: December 18, 2007Assignee: Nissan Motor Co., Ltd.Inventors: Takatsugu Katayama, Naoki Osada, Yoshitaka Matsuki, Hidehiro Fujita, Masahiko Yuuya, Atsushi Mitsuhori, Tadanori Yanai, Shouta Hamane
-
Patent number: 7233856Abstract: An internal combustion engine and control method therefor in which the engine is selectively started by combustion without cranking. The temperature in the combustion chamber of an engine cylinder is stabilized upon starting of the engine, thereby allowing secured staring without cranking. When predetermined idling stop conditions (or engine stop conditions) are established, the temperature in the combustion chamber is estimated based on engine operating conditions read before such establishment, and the period of maintaining a engine rotational speed in a predetermined low range before stopping the engine is calculated or estimated based on the estimated temperature in the combustion chamber. The engine is then stopped after the calculated or estimated period of maintaining the engine rotational speed in the predetermined low range.Type: GrantFiled: December 27, 2005Date of Patent: June 19, 2007Assignee: Nissaan Motor Co., Ltd.Inventors: Masahiko Yuya, Naoki Osada, Yoshitaka Matsuki, Hidehiro Fujita, Atsushi Mitsuhori, Tadanori Yanai, Takatsugu Katayama, Shouta Hamane
-
Publication number: 20060196460Abstract: A method and system for starting an internal combustion engine by utilizing combustion energy produced by injecting and igniting fuel in an engine cylinder under the expansion stroke, which can eliminate the necessity of precisely computing the combustion energy, can minimize an amount of energy, other than the combustion energy, supplied from a second energy supply unit, and can realize stable engine startup without causing a startup failure due to a combustion failure. At startup of the engine, energy is supplied to the engine from both a first energy supply unit performing direct injection and ignition of fuel, etc. and a second energy supply unit employing, e.g., a starter motor, thereby starting the engine. After the engine has started motion, the motion status of the engine is determined based on, e.g., the engine revolution speed, and the energy supply to the engine from the second energy supply unit is stopped based on a determination result.Type: ApplicationFiled: March 1, 2006Publication date: September 7, 2006Applicants: HITACHI, LTD., NISSAN MOTOR CO., LTD.Inventors: Eiichi Ohtsu, Takashi Okada, Tadatsugu Udono, Minoru Ohsuga, Naoki Osada, Masahiko Yuuya, Atsushi Mitsuhori, Hidehiro Fujita
-
Publication number: 20060185637Abstract: Embodiments are disclosed to reliably carry out engine starting without cranking. Using an internal combustion engine 1, when an idle stop condition is established, a third path switching valve 28 that is provided at the connection of the compressed air supply path 25 and a first blow-by path 21, and a blow-by control valve 24 are “closed”. The connection of the crankcase to the inlet path 14 is blocked, idling for a designated time is carried out, and finally the engine is stopped. On the other hand, when the idle stop release condition is established, an inlet valve 8 is “opened”, and the first to third path switching valves 26 to 28 are “closed”, thereby operating a compressor 17 for a designated period of time. Compressed air is thereby supplied to the combustion chamber 2 and the crankcase via the compressed air supply path 25, allowing an increase in the internal cylinder pressure. Finally, the engine is started.Type: ApplicationFiled: December 27, 2005Publication date: August 24, 2006Inventors: Atsushi Mitsuhori, Naoki Osada, Hidehiro Fujita, Yoshitaka Matsuki, Masahiko Yuuya, Tadanori Yanai, Takatsugu Katayama, Shouta Hamane
-
Publication number: 20060180112Abstract: A starting system rotates and starts an internal combustion engine by injecting fuel into a predetermined cylinder using an injector and igniting the fuel using an ignition plug, and upon starting the engine, the fuel pressure supplied to the injector is detected, and the engine is started by combustion in the predetermined cylinder only when the detected pressure is at or greater than the predetermined pressure, thereby guaranteeing the fuel pressure when combustion starting is employed, and consequently the engine can be securely started.Type: ApplicationFiled: February 3, 2006Publication date: August 17, 2006Inventors: Takatsugu Katayama, Naoki Osada, Yoshitaka Matsuki, Hidehiro Fujita, Masahiko Yuuya, Atsushi Mitsuhori, Tadanori Yanai, Shouta Hamane