Patents by Inventor Kazuhiro Kitayama
Kazuhiro Kitayama 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).
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Publication number: 20210253913Abstract: The present disclosure provides a gel gasket comprised, in part, of a pressure sensitive adhesive. The gel gasket is flame retardant and has anti-corrosive properties. In at least one embodiment, the gel gasket has a storage modulus of about 1,000 to about 25,000 Pa and the storage modulus is maintained after storage at 66° C./80% RH for at least 2 weeks.Type: ApplicationFiled: April 26, 2019Publication date: August 19, 2021Applicants: NITTO, INC., NITTO DENKO CORPORATIONInventor: Kazuhiro KITAYAMA
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Patent number: 10898988Abstract: Provided is a masking tape for a shot peening process, including: a substrate having a first surface and a second surface; and a pressure-sensitive adhesive layer disposed on the first surface of the substrate. The masking tape has a breaking strength of 55 N/15 mm or more and exhibits an impact absorption rate of 20% or more in a falling ball impact test. Further, the masking tape has a displacement distance of 2 mm or less after 1 h from an initial position in a holding power test at 40° C. which is performed by applying a load of 500 g.Type: GrantFiled: January 10, 2017Date of Patent: January 26, 2021Assignee: NITTO DENKO CORPORATIONInventors: Takafumi Hida, Kazuhiro Kitayama, Shu Sasaki
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Publication number: 20200291184Abstract: Provided is a sealant sheet formed as a sheet. The sealant sheet comprises an epoxy group-containing polysulfide. The epoxy group-containing polysulfide has a disulfide structure and an epoxy group in its molecule.Type: ApplicationFiled: November 29, 2018Publication date: September 17, 2020Applicant: NITTO DENKO CORPORATIONInventors: Kosuke MORITA, Kazuhiro KITAYAMA
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Publication number: 20190039208Abstract: Provided is a masking tape for a shot peening process, including: a substrate having a first surface and a second surface; and a pressure-sensitive adhesive layer disposed on the first surface of the substrate. The masking tape has a breaking strength of 55 N/15 mm or more and exhibits an impact absorption rate of 20% or more in a falling ball impact test. Further, the masking tape has a displacement distance of 2 mm or less after 1 h from an initial position in a holding power test at 40° C. which is performed by applying a load of 500 g.Type: ApplicationFiled: January 10, 2017Publication date: February 7, 2019Applicant: NITTO DENKO CORPORATIONInventors: Takafumi HIDA, Kazuhiro KITAYAMA, Shu SASAKI
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Publication number: 20190031931Abstract: Provided is a polysulfide-based pressure-sensitive adhesive tape that is excellent in oil resistance and the like, and sufficiently has a pressure-sensitive adhesive strength. The polysulfide-based pressure-sensitive adhesive tape of the present invention includes a pressure-sensitive adhesive layer formed from a polysulfide-based pressure-sensitive adhesive composition containing a sulfur-containing polymer, wherein the sulfur-containing polymer has a disulfide structure represented by —S—S— in a main chain thereof, and wherein a ball number for tack of the pressure-sensitive adhesive layer measured by an inclined ball tack test method (inclination angle: 30°) specified in JIS Z 0237 at a temperature of 23° C. and a humidity of 65% is 2 or more.Type: ApplicationFiled: January 30, 2017Publication date: January 31, 2019Applicant: NITTO DENKO CORPORATIONInventors: Kazuhiro KITAYAMA, Shigeki MUTA
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Publication number: 20140096872Abstract: In a brazing repair material 3 which is charged into a repairing portion of base material 1 in which a failure such as a crack 2 and corrosion is generated, diffusion heat treatment is carried out, the brazing repair material 3 is integrally bonded to the repairing portion to repair the repairing portion, the brazing repair material 3 comprises a mixture of non-molten alloy powder having a composition similar to that of the base material 1 and molten alloy powder which is melted at a temperature of the diffusion heat treatment, and the molten alloy powder is brazing repairing alloy consisting of 0.001 to 0.05 mass % of C, 2 to 5 mass % of Si, 10 to 25 mass % of Cr, 15 to 25 mass % of Co, 1 to 5 mass % of B, and balance of Ni, and excluding Al. With this configuration, a part having a failure such as a crack can restore original characteristics like the inherent base material.Type: ApplicationFiled: December 11, 2013Publication date: April 10, 2014Applicant: KABUSHIKI KAISHA TOSHIBAInventors: Yomei YOSHIOKA, Toshiaki FUSE, Daizo SAITO, Reki TAKAKU, Kazuhiro KITAYAMA, Kazutoshi ISHIBASHI
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Publication number: 20110088260Abstract: In a brazing repair material 3 which is charged into a repairing portion of base material 1 in which a failure such as a crack 2 and corrosion is generated, diffusion heat treatment is carried out, the brazing repair material 3 is integrally bonded to the repairing portion to repair the repairing portion, the brazing repair material 3 comprises a mixture of non-molten alloy powder having a composition similar to that of the base material 1 and molten alloy powder which is melted at a temperature of the diffusion heat treatment, and the molten alloy powder is brazing repairing alloy consisting of 0.001 to 0.05 mass % of C, 2 to 5 mass % of Si, 10 to 25 mass % of Cr, 15 to 25 mass % of Co, 1 to 5 mass % of B, and balance of Ni, and excluding Al. With this configuration, a part having a failure such as a crack can restore original characteristics like the inherent base material.Type: ApplicationFiled: February 17, 2009Publication date: April 21, 2011Applicant: KABUSHIKI KAISHA TOSHIBAInventors: Yomei Yoshioka, Toshiaki Fuse, Daizo Saito, Reki Takaku, Kazuhiro Kitayama, Kazutoshi Ishibashi
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Publication number: 20090242418Abstract: The present invention provides a coating method, in which a composite coating layer is formed on a surface of an alloy base member by utilizing a rotary electrode device. The coating method includes the steps of: preparing an electrolytic solution containing A ion wherein A is Co or Ni; preparing a MCrAlY powder wherein M denotes at least one element selected from the group consisting of Ni and Co, and the MCrAlY powder contains at least Ni when A is Co or the MCrAlY powder contains at least Co when A is Ni; preparing a dispersion liquid by dispersing the MCrAlY powder into the electrolytic solution; immerging the cylindrical rotary electrode and the alloy base member into the dispersion liquid; and electrolyzing the surface of the alloy base member while the cylindrical rotary electrode covered with the nonwoven fabric layer is rolled on the on the surface of the alloy base member thereby to form the composite coating layer onto the surface of the alloy base member.Type: ApplicationFiled: March 24, 2009Publication date: October 1, 2009Applicant: KABUSHIKI KAISHA TOSHIBAInventors: Masahiro Saito, Yomei Yoshioka, Kazuhiro Kitayama, Hiroaki Okamoto, Yoshiaki Sakai
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Patent number: 6351937Abstract: A gas turbine plant comprises an air compressor, a gas turbine combustor and a gas turbine, which are operatively connected in series. In the gas turbine plant, an air compressor shaft is accommodated in the air compressor and composed of discs piled up along an axial direction of the air compressor shaft, a gas turbine shaft is accommodated in the gas turbine and composed of discs piled up along an axial direction of the gas turbine shaft, and an intermediate shaft is interposed between the air compressor shaft and the gas turbine shaft. At least one of the discs of the air compressor shaft and the discs of the gas turbine shaft are provided with bulged portions each having approximately a hanging bell shape or trapezoidal shape.Type: GrantFiled: December 1, 1999Date of Patent: March 5, 2002Assignee: Kabushiki Kaisha ToshibaInventors: Hisashi Matsuda, Kazuhiro Kitayama, Fumio Otomo, Yoshitaka Fukuyama