Patents by Inventor Daigo Takemura

Daigo Takemura 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: 20020048704
    Abstract: An adhesive for batteries a solution of which has improved wetting properties, which affords improved adhesive strength and prevents deterioration of battery performance, and which can provide secondary batteries having an arbitrary shape, such as a thin shape, with high reliability and high charge and discharge efficiency, and a battery using the same are disclosed. An adhesive comprising a thermoplastic resin, a solvent capable of dissolving the thermoplastic resin, and a neutral and aprotic surface active agent is used as an adhesive for batteries for adhering an active material layer joined to a current collector to a separator, whereby a secondary battery which can take an arbitrary shape, such as a thin shape, with high reliability and high charge and discharge efficiency can be obtained.
    Type: Application
    Filed: July 19, 1999
    Publication date: April 25, 2002
    Inventors: MICHIO MURAI, TAKAYUKI INUZUKA, YASUHIRO YOSHIDA, SHIGERU AIHARA, DAIGO TAKEMURA, HISASHI SHIOTA, JUN ARAGANE, HIROAKI URUSHIBATA, KOUJI HAMANO
  • Patent number: 6376125
    Abstract: An object is to provide with good productivity a practical lithium ion secondary battery which secures lightness in weight and safety without using a firm battery case and has reduced internal resistivity. The lithium ion secondary battery comprises a tabular roll type laminated electrode body in which a band-formed positive electrode (3) comprising a positive electrode active material layer (7) and a positive electrode current collector (6) alternates with a band-formed negative electrode (5) comprising a negative electrode active material layer (9) and a negative electrode current collector (10), having therebetween a band-formed rolled separator (4) which holds a lithium ion-containing electrolytic solution, the positive electrode (3) or the negative electrode (5) being adhered with two separators (4) by an adhesive layer (11).
    Type: Grant
    Filed: March 16, 2001
    Date of Patent: April 23, 2002
    Assignee: Mitsubishi Denki Kabushiki Kaisha
    Inventors: Hisashi Shiota, Shigeru Aihara, Daigo Takemura, Jun Aragane, Hiroaki Urushibata, Kouji Hamano, Yasuhiro Yoshida, Takayuki Inuzuka, Michio Murai
  • Patent number: 6352797
    Abstract: The invention is a high-performance lithium ion secondary battery which needs no firm case so that it is possible to reduce the size and weight and to design the shape freely and yet which secures high structural strength and safety. The method of the invention for forming a lithium ion battery comprises the step of joining a positive electrode (3) having a positive electrode active material layer (32) joined to a positive electrode current collector (31) and a negative electrode (5) having a negative electrode active material layer (52) joined to a negative electrode current collector (51) with an adhesive resin (6) comprising at least partially a plastic resin being present in parts therebetween and the step of deforming the adhesive resin (6). The method achieves simplification and improvement of productivity in forming a lithium ion battery.
    Type: Grant
    Filed: November 16, 1999
    Date of Patent: March 5, 2002
    Assignee: Mitsubishi Denki Kabushiki Kaisha
    Inventors: Yasuhiro Yoshida, Michio Murai, Takayuki Inuzuka, Kouji Hamano, Hisashi Shiota, Shigeru Aihara, Daigo Takemura, Jun Aragane, Hiroaki Urushibata
  • Publication number: 20010049050
    Abstract: A conventional battery has a problem that when a temperature of the battery reaches at least 100° C. due to internal short-circuit or the like, large short-circuit current is generated, and therefore, a temperature of the battery further increases due to exothermic reaction to increase the short-circuit current. Also, if an aluminum laminated pack and the like are used as a casing material for the purpose of lightweight and improved energy density of the battery, and if an adhesive agent is used to joint an electrode with a separator to maintain the contact thereof, there is a problem that the adhesive agent intrudes into the opening part of the separator and the opening part area and the hole diameter decrease to bring about unfavorable results for discharge load characteristics of the battery.
    Type: Application
    Filed: December 22, 2000
    Publication date: December 6, 2001
    Applicant: MITSUBISHI DENKI KABUSHIKI KAISHA
    Inventors: Jun Aragane, Makiko Kise, Syoji Yoshioka, Shigeru Aihara, Daigo Takemura, Hisashi Shiota, Takashi Nishimura, Hiroaki Urushibata
  • Publication number: 20010037557
    Abstract: It is an object of the invention to provide a process for producing a lithium ion battery comprising adhering a positive and a negative electrode to an ion conducting layer (separator) with an adhesive resin thereby to obtain sufficient joint strength between the electrodes and the separator while securing ion conductivity among the positive and negative electrodes and the separator. The steps of heating an adhesive liquid (4) which is a mixture of a solvent and a resin and in which the resin is not completely dissolved at or below room temperature and applying the heated adhesive liquid to the adhesive surface of the separator (3) or of the electrode (1 or 2), superposing the separator and the electrodes with their adhesive surfaces facing each other, and drying the applied adhesive liquid are carried out in order. The solubility of the resin is increased when the adhesive liquid is to be applied to make uniform application feasible.
    Type: Application
    Filed: October 5, 1999
    Publication date: November 8, 2001
    Inventors: YASUHIRO YOSHIDA, MICHIO MURAI, TAKAYUKI INUZUKA, SHIGERU AIHARA, DAIGO TAKEMURA, HISASHI SHIOTA, JUN ARAGANE, HIROAKI URUSHIBATA, KOUJI HAMANO
  • Publication number: 20010036575
    Abstract: The battery of the present invention comprises the electrode which contains the pre-determined amount of electronically conductive material at which resistance increases in accordance with temperature rise and conductive agent; the electrode wherein the ratio of the total amount of the electronically conductive material and the conductive agent to the active material is set to a pre-determined value; and the electrode wherein the average particle size of the conductive agent based on the average particle size of the electronically conductive material is in a pre-determined range.
    Type: Application
    Filed: February 9, 2001
    Publication date: November 1, 2001
    Applicant: MITSUBISHI DENKI KABUSHIKI KAISHA
    Inventors: Makiko Kise, Syoji Yoshioka, Hironori Kuriki, Hiroaki Urushibata, Hisashi Shiota, Jun Aragane, Takashi Nishimura, Shigeru Aihara, Daigo Takemura
  • Patent number: 6306540
    Abstract: The present invention relates to an electrolytic solution excellent in stability, and also relates to a battery excellent in battery performance and having an outer structure having light weight. The electrolytic solution contains a supporting electrolyte and a gas formation inhibitor in the solvent. The gas formation inhibitor contains a decomposition product of the supporting electrolyte with formation of a gas in the solvent. It functions as controlling to solution equilibrium in the electrolytic solution participating in decomposition reaction of the supporting electrolyte. A battery is obtained by filling the electrolytic solution between a positive electrode and a negative electrode.
    Type: Grant
    Filed: August 22, 2000
    Date of Patent: October 23, 2001
    Assignee: Mitsubishi Denki Kabushiki Kaisha
    Inventors: Osamu Hiroi, Kouji Hamano, Yasuhiro Yoshida, Shoji Yoshioka, Hisashi Shiota, Jun Aragane, Shigeru Aihara, Daigo Takemura, Takashi Nishimura, Makiko Kise, Hiroaki Urushibata, Hiroshi Adachi
  • Publication number: 20010009736
    Abstract: An object is to provide with good productivity a practical lithium ion secondary battery which secures lightness in weight and safety without using a firm battery case and has reduced internal resistivity. The lithium ion secondary battery comprises a tabular roll type laminated electrode body in which a band-formed positive electrode (3) comprising a positive electrode active material layer (7) and a positive electrode current collector (6) alternates with a band-formed negative electrode (5) comprising a negative electrode active material layer (9) and a negative electrode current collector (10), having therebetween a band-formed rolled separator (4) which holds a lithium ion-containing electrolytic solution, the positive electrode (3) or the negative electrode (5) being adhered with two separators (4) by an adhesive layer (11).
    Type: Application
    Filed: March 16, 2001
    Publication date: July 26, 2001
    Applicant: MITSUBISHI DENKI KABUSHIKI KAISHA
    Inventors: Hisashi Shiota, Shigeru Aihara, Daigo Takemura, Jun Aragane, Hiroaki Urushibata, Kouji Hamano, Yasuhiro Yoshida, Takayuki Inuzuka, Michio Murai
  • Publication number: 20010007726
    Abstract: In a conventional battery containing metal lithium in the negative electrode, there is a problem that large short-circuit current was generated with temperature rise due to internal short-circuit or the like, and therefore, the temperature of the battery further increases due to exothermic reaction to increase the short-circuit current.
    Type: Application
    Filed: December 22, 2000
    Publication date: July 12, 2001
    Applicant: MITSUBISHI DENKI KABUSHIKI KAISHA
    Inventors: Shoji Yoshioka, Makiko Kise, Hiroaki Urushibata, Hisashi Shiota, Jun Aragane, Shigeru Aihara, Daigo Takemura, Takashi Nishimura
  • Publication number: 20010006750
    Abstract: As to the batteries containing an organic low molecular compound in the space between the positive and negative electrodes, there has been a risk of unusual conditions such as ignition because the organic low molecular compound in liquid was released from the above space to the outside, when there was heating of the battery and the like.
    Type: Application
    Filed: February 22, 2001
    Publication date: July 5, 2001
    Inventors: Yasuhiro Yoshida, Osamu Hiroi, Kouji Hamano, Daigo Takemura, Sigeru Aihara, Hisashi Shiota, Jun Aragane, Hiroaki Urushibata, Michio Murai, Takayuki Inuzuka
  • Publication number: 20010005558
    Abstract: A conventional battery has a problem that a large short-circuit current was generated with temperature rise due to internal short-circuit or the like, and therefore, the temperature of the battery further increases due to exothermic reaction to increase the short-circuit current. The present invention has been carried out in order to solve the above problems. The battery of the present invention is a battery wherein at least one of a positive electrode 1 and a negative electrode 2 comprises an active material layer 6 containing an active material 8 and an electronically conductive material 9 contacted to the active material 8, wherein a solid electrolytic layer 3 is interposed between the above positive electrode 1 and the negative electrode 2, and wherein the above electronically conductive material 9 comprises an electrically conductive filler and a resin so that resistance increases with temperature rise.
    Type: Application
    Filed: December 22, 2000
    Publication date: June 28, 2001
    Applicant: MITSUBISHI DENKI KABUSHIKI KAISHA
    Inventors: Shoji Yoshioka, Makiko Kise, Hiroaki Urushibata, Hisashi Shiota, Jun Aragane, Shigeru Aihara, Daigo Takemura, Takashi Nishimura
  • Publication number: 20010005560
    Abstract: Conventional separators had a function that their melting made minute holes inside the separator smaller, leading to cut off of ion conductivity in temperature increase due to unusual conditions such as short circuit. However, there was a problem that, at a temperature higher than a certain degree, not only the minute holes were closed but also the separator itself was melted to cause deformation of the separator such as shrink and generation of holes due to melting and insulation was broken.
    Type: Application
    Filed: February 22, 2001
    Publication date: June 28, 2001
    Applicant: MITSUBISHI DENKI KABUSHIKI KAISHA
    Inventors: Yasuhiro Yoshida, Osamu Hiroi, Kouji Hamano, Daigo Takemura, Sigeru Aihara, Hisashi Shiota, Jun Aragane, Hiroaki Urushibata, Michio Murai, Takayuki Inuzuka
  • Publication number: 20010005562
    Abstract: A conventional battery has a problem that a large short-circuit current is generated with temperature rise due to internal short-circuit, and therefore, the temperature of the battery further increases due to heat and the short-circuit current is increased. Also, there is a problem in safety that the sealed part can be easily opened with temperature rise in case of using the aluminum laminated bag as the outer body for sealing the battery body.
    Type: Application
    Filed: December 22, 2000
    Publication date: June 28, 2001
    Applicant: MITSUBISHI DENKI KABUSHIKI KAISHA
    Inventors: Shoji Yoshioka, Makiko Kise, Hiroaki Urushibata, Hisashi Shiota, Jun Aragane, Shigeru Aihara, Daigo Takemura, Takashi Nishimura
  • Publication number: 20010005559
    Abstract: A conventional battery has a problem that since a device having PTC function was placed outside the battery or outside the electrode of the battery as a safety device in case of temperature rise due to short-circuit current generated by external short-circuit or the like, a large short-circuit current was generated with temperature rise due to internal short-circuit. And therefore, a temperature of the battery further increases due to exothermic reaction to increase the short-circuit current. Also, there is a problem that structure of the battery become complicated and volume energy density is lowered.
    Type: Application
    Filed: December 22, 2000
    Publication date: June 28, 2001
    Applicant: MITSUBISHI DENKI KABUSHIKI KAISHA
    Inventors: Daigo Takemura, Hiroaki Urushibata, Makiko Kise, Shigeru Aihara, Hisashi Shiota, Jun Aragane, Shoji Yoshioka, Takashi Nishimura
  • Patent number: 6232014
    Abstract: A practical lithium ion secondary battery. The battery is light in weight and is safe without using a firm battery case. It also has reduced internal resistivity. The battery includes a tabular roll-type laminated electrode body in which a band-formed positive electrode alternates with a band-formed negative electrode, with a band-formed rolled separator being placed therebetween. The positive electrode includes a positive electrode active material layer and a positive electrode current collector. The negative electrode includes a negative electrode active material layer and a negative electrode current collector. The separator holds a lithium ion-containing electrolytic solution. The positive electrode or the negative electrode is adhered with two separators by an adhesive layer.
    Type: Grant
    Filed: July 19, 1999
    Date of Patent: May 15, 2001
    Assignee: Mitsubishi Denki Kabushiki Kaisha
    Inventors: Hisashi Shiota, Shigeru Aihara, Daigo Takemura, Jun Aragane, Hiroaki Urushibata, Kouji Hamano, Yasuhiro Yoshida, Takayuki Inuzuka, Michio Murai