Patents by Inventor Masayuki Takeuchi

Masayuki Takeuchi 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).

  • Patent number: 10400662
    Abstract: A vehicular heat management device includes a first heat source, a second heat source, a first heat generator, a second heat generator, a heat generator pathway, a first heat source pathway, a second heat source pathway, and a switching portion. The first heat source and the second heat source heat a heat medium. The first heat generator generates heat according to operation. The second heat generator generates heat according to operation. The first heat generator and the second heat generator are provided in the heat generator pathway. The first heat generator is provided in the first heat generator pathway. The second heat generator is provided in the second heat generator pathway. The switching portion switches between a condition where the heat generator pathway is in flowing communication with the first heat generator pathway and a condition where the heat generator pathway is in flowing communication with the second heat generator pathway.
    Type: Grant
    Filed: September 6, 2016
    Date of Patent: September 3, 2019
    Assignees: DENSO CORPORATION, TOYOTA JIDOSHA KABUSHIKI KAISHA
    Inventors: Norihiko Enomoto, Yoshiki Kato, Masayuki Takeuchi, Koji Miura, Keigo Sato, Kengo Sugimura, Nobuharu Kakehashi, Ikuo Ozawa, Ariel Marasigan, Yoshikazu Shinpo, Yoichi Onishi, Toshio Murata
  • Publication number: 20190226767
    Abstract: A first thermosiphon circuit includes a first evaporator configured to cool a first target device by a latent heat of evaporation of a working fluid that absorbs a heat from the first target device, and a first passage communicating with the first evaporator. A second thermosiphon circuit includes a second evaporator configured to cool a second target device by a latent heat of evaporation of a working fluid that absorbs a heat from the second target device, and a second passage communicating with the second evaporator. A main condenser includes a first heat exchanger provided in the first passage and a second heat exchanger provided in the second passage, and is configured to allow the working fluid flowing through the first heat exchanger, the working fluid flowing through the second heat exchanger, and a predetermined cold energy supply medium to exchange heat with each other.
    Type: Application
    Filed: April 3, 2019
    Publication date: July 25, 2019
    Inventors: Yasumitsu OMI, Takeshi YOSHINORI, Masayuki TAKEUCHI, Koji MIURA
  • Publication number: 20190214695
    Abstract: A device temperature controller includes a heat absorber that absorbs heat from a temperature control target device to evaporate working fluid in liquid phase, and a condenser disposed above the heat absorber to condense the working fluid which has been evaporated into gas phase at the heat absorber. The device temperature controller includes a gas passage portion that guides the working fluid which has been evaporated into gas phase at the heat absorber to the condenser, and a liquid passage portion that guides the working fluid which has been condensed into liquid phase at the condenser to the heat absorber. At least a part of the gas passage portion and at least a part of the liquid passage portion are in contact with each other.
    Type: Application
    Filed: March 13, 2019
    Publication date: July 11, 2019
    Inventors: Koji MIURA, Yasumitsu OMI, Takeshi YOSHINORI, Masayuki TAKEUCHI, Takashi YAMANAKA, Yoshiki KATO
  • Publication number: 20190204014
    Abstract: An evaporator includes a fluid chamber in which a working fluid flows. A condenser includes a gas-phase portion in which the working fluid evaporated in the evaporator flows and a liquid-phase portion in which the working fluid from the gas-phase portion, condensed by heat exchange with an external medium, flows. A gas-phase passage causes the working fluid evaporated in the evaporator to flow to the condenser. A liquid-phase passage causes the working fluid condensed in the condenser to flow to the evaporator. A bypass passage has one end connected to the liquid-phase portion of the condenser or the liquid-phase passage and another end connected to the gas-phase portion of the condenser or the gas-phase passage. A flow rate of a liquid-phase working fluid per unit volume in the bypass passage is smaller than a flow rate of a liquid-phase working fluid per unit volume in the liquid-phase portion of the condenser or the liquid-phase passage.
    Type: Application
    Filed: August 2, 2017
    Publication date: July 4, 2019
    Inventors: Takeshi YOSHINORI, Takashi YAMANAKA, Yoshiki KATO, Masayuki TAKEUCHI, Koji MIURA, Yasumitsu OMI
  • Publication number: 20190198954
    Abstract: A device temperature regulator is provided with a device heat exchanger that functions as an evaporator at the time of cooling a temperature regulation target device and that functions as a heat radiator at the time of warming up the temperature regulation target device, and a condenser that condenses a gaseous working fluid. The device temperature regulator is provided with a heater that heats the working fluid collecting in a device fluid circuit, and a liquid amount regulator that regulates a liquid amount of the working fluid collecting in the device heat exchanger. The device heat exchanger includes a heat exchange portion that exchanges heat with the temperature regulation target device. The liquid amount regulator regulates the liquid amount of the liquid working fluid collecting in the device heat exchanger.
    Type: Application
    Filed: March 6, 2019
    Publication date: June 27, 2019
    Inventors: Koji MIURA, Yasumitsu OMI, Masayuki TAKEUCHI, Takeshi YOSHINORI, Takashi YAMANAKA, Yoshiki KATO
  • Publication number: 20190193213
    Abstract: A method for manufacturing a device temperature controller includes filling an inside of a circuit with working fluid by connecting a filling port of the circuit to a container that stores gas phase working fluid. The circuit constitutes a thermosiphon heat pipe and allows the working fluid to circulate in the circuit. In the filling, the working fluid inside the circuit is cooled by a cooling source. An inside temperature of the circuit is decreased to be lower than an inside temperature of the container, and thereby an inside pressure of the circuit is decreased to be lower than an inside pressure of the container.
    Type: Application
    Filed: March 6, 2019
    Publication date: June 27, 2019
    Inventors: Yasumitsu OMI, Takashi YAMANAKA, Yoshiki KATO, Takeshi YOSHINORI, Masayuki TAKEUCHI, Koji MIURA
  • Publication number: 20190184790
    Abstract: A refrigeration cycle device has a compressor, a radiator, a decompressor, an evaporator, a heat medium cooling evaporator, a cooling target device, a detector, and a controller. The heat medium cooling evaporator cools a cooling heat medium by performing a heat exchange between the refrigerant decompressed in the decompressor and the cooling heat medium. The cooling heat medium cools the cooling target device. The detector detects a subcooling state of the cooling target device having a temperature lower than or equal to a reference temperature. Upon the detection of the subcooling state in the cooling target device by the detector, the controller increases the degree of superheat of the refrigerant flowing out of the heat medium cooling heat exchanger as compared to the degree of superheat of the refrigerant flowing out of the heat medium cooling heat exchanger when the detector does not detect the subcooling state.
    Type: Application
    Filed: February 26, 2019
    Publication date: June 20, 2019
    Inventors: Koji MIURA, Yoshiki KATO, Masayuki TAKEUCHI, Nobuyuki HASHIMURA, Keigo SATO, Norihiko ENOMOTO, Kengo SUGIMURA, Ariel MARASIGAN
  • Publication number: 20190184852
    Abstract: A device temperature adjusting apparatus in which working fluid circulates is mounted on a vehicle and controls a temperature of a target device. The device temperature adjusting apparatus includes a heat absorbing portion that evaporates the working fluid by causing the working fluid to absorb heat from the target device, and a heat releasing portion condenses the working fluid by causing heat release from the working fluid. The device temperature adjusting apparatus includes a forward path portion that defines a forward flow passage and a return path portion. The heat releasing portion is disposed in an inside air circulation path through which inside air circulates while vehicle interior air conditioning is performed by an air conditioning unit that blows out temperature-controlled air to an interior of the vehicle.
    Type: Application
    Filed: February 26, 2019
    Publication date: June 20, 2019
    Inventors: Masayuki TAKEUCHI, Yasumitsu OMI, Takashi YAMANAKA, Yoshiki KATO, Takeshi YOSHINORI, Koji MIURA
  • Publication number: 20190186843
    Abstract: A device temperature regulator includes a forward passage in which a forward flow passage is formed to cause a working fluid to flow to a heat absorber from a heat radiator, and a backward passage in which a backward flow passage is formed to cause the working fluid to flow to the heat radiator from the heat absorber. In addition, the device temperature regulator includes a bubble generator, which generates a bubble in the working fluid collecting in the heat absorber and having a liquid phase, and a controller that causes the bubble generator to generate the bubble in a precondition is satisfied.
    Type: Application
    Filed: February 22, 2019
    Publication date: June 20, 2019
    Inventors: Masayuki TAKEUCHI, Yasumitsu OMI, Takashi YAMANAKA, Yoshiki KATO, Takeshi YOSHINORI, Koji MIURA
  • Publication number: 20190190102
    Abstract: A device temperature regulator is provided with a gas passage part that guides a gaseous working fluid evaporated in a device heat exchanger to a condenser, and a liquid passage part that guides a liquid working fluid condensed in the condenser to the device heat exchanger. The device temperature regulator is provided with a supply amount regulator that increases or decreases a supply amount of the liquid working fluid supplied to the device heat exchanger. The supply amount regulator decreases the supply amount of the liquid working fluid to the device heat exchanger such that a liquid surface is formed in a state where the gaseous working fluid is positioned at a lower side lower than a heat exchanging portion exchanging heat with a temperature regulation target device in the device heat exchanger, when a condition for keeping the temperature regulation target device at a temperature is satisfied.
    Type: Application
    Filed: February 26, 2019
    Publication date: June 20, 2019
    Inventors: Koji MIURA, Takashi YAMANAKA, Yasumitsu OMI, Yoshiki KATO, Masayuki TAKEUCHI, Takeshi YOSHINORI
  • Publication number: 20190154311
    Abstract: A refrigeration cycle device includes a compressor, a condenser, a first decompressor, an outside heat exchanger, and an evaporator. A predetermined part of a refrigerant passage from the condenser to the first decompressor through which the refrigerant flows is a condenser outlet portion. A predetermined part of a refrigerant passage from the first decompressor to the outside heat exchanger through which the refrigerant flows is an outside heat exchanger inlet portion. A predetermined part of a refrigerant passage from the outside heat exchanger to the second decompressor through which the refrigerant flows is an outside heat exchanger outlet portion. A volume capacity of the condenser outlet portion is larger than a volume capacity of the outside heat exchanger inlet portion. According to the refrigeration cycle device, preferable coefficient of performance of cycle can be achieved in different operation modes.
    Type: Application
    Filed: January 24, 2019
    Publication date: May 23, 2019
    Inventors: Koji MIURA, Yoshiki KATO, Masayuki TAKEUCHI, Nobuyuki HASHIMURA, Keigo SATO, Norihiko ENOMOTO, Kengo SUGIMURA, Ariel MARASIGAN
  • Publication number: 20190084375
    Abstract: An air conditioner is provided with: a refrigeration cycle including a subcooling heat exchanger that subcools a refrigerant having heat-dissipated in a high-pressure side heat exchanger by exchanging heat with a heat medium; a blower that blows the air to an air passage in an air-conditioning casing; an air cooler disposed in the air passage to cool the air; a heater core disposed on an air flow downstream side of the air cooler in the air passage to heat the air cooled by the air cooler; an auxiliary air heater disposed on the air flow downstream side of the air cooler and on an air flow upstream side of the air heater in the air passage, to heat the air cooled by the air cooler by exchanging heat with the heat medium; and a flow-rate adjustment portion configured to adjust a flow rate of the heat medium circulating between the subcooling heat exchanger and the auxiliary air heater.
    Type: Application
    Filed: February 13, 2017
    Publication date: March 21, 2019
    Inventors: Keigo SATO, Yoshiki KATO, Masayuki TAKEUCHI
  • Patent number: 10168079
    Abstract: When a refrigerant flow-path switch performs switching to a first refrigerant flow path, an interior condenser heating air blown into an interior as a first temperature-adjustment subject and an auxiliary heat exchanger are connected in parallel, and the auxiliary heat exchanger heats air blown to a battery as a second temperature-adjustment subject. In contrast, when the refrigerant flow-path switch performs switching to a second refrigerant flow path, an interior evaporator cooling air blown into the interior and the auxiliary heat exchanger are connected in parallel, and the auxiliary heat exchanger cools the air blown to the battery. With this arrangement, one common auxiliary heat exchanger can cool or heat the air for the battery, thereby leading to reduction in size of an entire refrigeration cycle device.
    Type: Grant
    Filed: February 27, 2013
    Date of Patent: January 1, 2019
    Assignee: DENSO CORPORATION
    Inventors: Masayuki Takeuchi, Seiji Inoue, Takashi Yamanaka
  • Publication number: 20180361828
    Abstract: A refrigeration cycle device includes: a first expansion valve that decompresses a refrigerant flowing out of a high-pressure side heat exchanger; an exterior heat exchanger that exchanges heat between the refrigerant flowing out of the first expansion valve and outside air; a second expansion valve that decompresses the refrigerant flowing out of the exterior heat exchanger; a low-pressure side heat exchanger arranged in series with the exterior heat exchanger; a cooler core that exchanges heat between the heat medium cooled by the low-pressure side heat exchanger and air to be blown into a vehicle interior to cool the air; and a controller configured to switch between a heat absorption mode and a heat dissipation mode by adjusting an amount of decompression in each of the first expansion valve and the second expansion valve.
    Type: Application
    Filed: October 6, 2016
    Publication date: December 20, 2018
    Inventors: Yoshiki KATO, Nobuyuki HASHIMURA, Koji MIURA, Norihiko ENOMOTO, Kengo SUGIMURA, Keigo SATO, Masayuki TAKEUCHI, Ariel MARASIGAN
  • Patent number: 10144297
    Abstract: Charging of an electrical storage device is completed by operation-starting time while increasing a percentage of a charging time of the electrical storage device in a first time period as compared to a percentage of the charging time in a second time period when the first time period and the second time period are included within a period from when a user sets the operation-starting time to the operation-starting time. A temperature adjustment device is operated such that a temperature of the electrical storage device at the operation-starting time falls within a target temperature range while increasing a percentage of an operating time of the temperature adjustment device in the first time period as compared to a percentage of the operating time in the second time period when the first time period and the second time period are included within the period from when the user sets the operation-starting time to the operation-starting time.
    Type: Grant
    Filed: August 26, 2014
    Date of Patent: December 4, 2018
    Assignee: TOYOTA JIDOSHA KABUSHIKI KAISHA
    Inventors: Takashi Murata, Yasumitsu Omi, Takashi Yamanaka, Masayuki Takeuchi
  • Publication number: 20180339574
    Abstract: A vehicular heat management system includes a heat medium circuit, a heat source portion, and a device. A heat medium cooling an engine circulates in the heat medium circuit. The heat source portion heats the heat medium. The device is configured to function and heat the heat medium when the heat medium flowing into the device is at or above a predetermined temperature. When the engine is being warmed up, heat generated by the heat source portion is supplied to the device in preference to the engine. According to this, since the heat generated by the heat source portion is supplied to the device in preference to the engine when the engine is being warmed up, the engine can be warmed up early.
    Type: Application
    Filed: August 25, 2016
    Publication date: November 29, 2018
    Inventors: Kengo SUGIMURA, Yoshiki KATO, Masayuki TAKEUCHI, Keigo SATO, Koji MIURA, Norihiko ENOMOTO, Ariel MARASIGAN, Nobuyuki HASHIMURA
  • Publication number: 20180323482
    Abstract: A battery warming-up system includes a controller that controls an air-conditioning blower and a battery blower. A battery warming-up mode is executed to control at least one of the air-conditioning blower and the battery blower such that an air-side temperature efficiency in an air-conditioning heat exchanger is higher than an air-side temperature efficiency in a battery heat exchanger.
    Type: Application
    Filed: November 7, 2016
    Publication date: November 8, 2018
    Inventors: Koji MIURA, Takashi YAMANAKA, Yoshiki KATOH, Masayuki TAKEUCHI, Norihiko ENOMOTO, Keigo SATOU, Kengo SUGIMURA, Ariel MARASIGAN
  • Publication number: 20180272839
    Abstract: A vehicular heat management device includes a first heat source, a second heat source, a heater core, a first heat medium pathway, a second heat medium pathway, a heater core pathway, a switching portion, and a control unit. The first heat source is provided in the first heat medium pathway, and the second heat source is provided in the second heat medium pathway. The heater core is provided in the heater core pathway. The switching portion switches between flowing connection and flowing disconnection. The control unit performs at least one of a switching control and a second heat source control when a temperature of the heat medium of the heater core pathway is at or above a predetermined temperature. In the switching control, the switching portion connects the second heat medium pathway to the heater core pathway. In the second heat source control, the second heat source generates heat.
    Type: Application
    Filed: September 6, 2016
    Publication date: September 27, 2018
    Inventors: Yoshiki KATO, Masayuki TAKEUCHI, Keigo SATO, Koji MIURA, Norihiko ENOMOTO, Kengo SUGIMURA, Ariel MARASIGAN, Ikuo OZAWA, Nobuharu KAKEHASHI, Yoshikazu SHINPO, Yoichi ONISHI, Toshio MURATA
  • Publication number: 20180238223
    Abstract: A vehicular heat management device includes a first heat source, a second heat source, a first heat generator, a second heat generator, a heat generator pathway, a first heat source pathway, a second heat source pathway, and a switching portion. The first heat source and the second heat source heat a heat medium. The first heat generator generates heat according to operation. The second heat generator generates heat according to operation. The first heat generator and the second heat generator are provided in the heat generator pathway. The first heat generator is provided in the first heat generator pathway. The second heat generator is provided in the second heat generator pathway. The switching portion switches between a condition where the heat generator pathway is in flowing communication with the first heat generator pathway and a condition where the heat generator pathway is in flowing communication with the second heat generator pathway.
    Type: Application
    Filed: September 6, 2016
    Publication date: August 23, 2018
    Inventors: Norihiko ENOMOTO, Yoshiki KATO, Masayuki TAKEUCHI, Koji MIURA, Keigo SATO, Kengo SUGIMURA, Nobuharu KAKEHASHI, Ikuo OZAWA, Ariel MARASIGAN, Yoshikazu SHINPO, Yoichi ONISHI, Toshio MURATA
  • Publication number: 20180208019
    Abstract: In a heat pump system, when a heat-shock determination portion determines that a difference between a coolant temperature in a coolant flow path and a coolant temperature in a heat source flow path is equal to or higher than a predetermined temperature, a flow-path switching portion mixes the respective coolants flowing through at least a bypass flow path and the heat source flow path together to flow into the coolant flow path.
    Type: Application
    Filed: October 27, 2016
    Publication date: July 26, 2018
    Applicant: DENSO CORPORATION
    Inventors: Kengo SUGIMURA, Yoshiki KATOH, Masayuki TAKEUCHI, Koji MIURA, Norihiko ENOMOTO, Keigo SATOU, Ariel MARASIGAN, Nobuyuki HASHIMURA