Patents by Inventor Takeshi OSAJIMA

Takeshi OSAJIMA 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: 10376928
    Abstract: Disclosed is a cleaning blade, having an elastic body formed of a rubber base material molded product, and a surface treatment layer on at least an area of the elastic body to be brought into contact with a cleaning object. The surface treatment layer is formed by impregnating a surface portion of the elastic body with a surface treatment liquid containing an isocyanate compound and an organic solvent, and hardening the liquid. The surface treatment layer has an indentation elastic modulus of 21 MPa to 56 MPa. The elastic body has an indentation elastic modulus greater than 20 MPa and 35 MPa or less. The difference in indentation elastic modulus between the surface treatment layer and the elastic body is 1 MPa to 21 MPa.
    Type: Grant
    Filed: June 21, 2016
    Date of Patent: August 13, 2019
    Assignee: SYNZTEC CO., LTD.
    Inventors: Takeshi Osajima, Shuang Wang, Shuji Abe, Hiroyuki Sato
  • Patent number: 10343190
    Abstract: The invention provides a cleaning blade 1, having an elastic body 11 formed of a rubber base material molded product, and a surface treatment layer 12 on at least an area of the elastic body 11 to be brought into contact with a cleaning object. The surface treatment layer 12 is formed by impregnating a surface portion of the elastic body 11 with a surface treatment liquid containing an isocyanate compound and an organic solvent, and hardening the liquid. The surface treatment layer 12 has an indentation elastic modulus of 21 MPa to 56 MPa. The elastic body 11 has an indentation elastic modulus greater than 20 MPa and 35 MPa or less. The difference in indentation elastic modulus between the surface treatment layer 12 and the elastic body 11 is 1 MPa to 21 MPa.
    Type: Grant
    Filed: June 21, 2016
    Date of Patent: July 9, 2019
    Assignee: SYNZTEC CO., LTD.
    Inventors: Takeshi Osajima, Shuji Abe, Hiroyuki Sato
  • Publication number: 20180043398
    Abstract: The invention provides a cleaning blade 1, having an elastic body 11 formed of a rubber base material molded product, and a surface treatment layer 12 on at least an area of the elastic body 11 to be brought into contact with a cleaning object. The surface treatment layer 12 is formed by impregnating a surface portion of the elastic body 11 with a surface treatment liquid containing an isocyanate compound and an organic solvent, and hardening the liquid. The surface treatment layer 12 has an indentation elastic modulus of 21 MPa to 56 MPa. The elastic body 11 has an indentation elastic modulus greater than 20 MPa and 35 MPa or less. The difference in indentation elastic modulus between the surface treatment layer 12 and the elastic body 11 is 1 MPa to 21 MPa.
    Type: Application
    Filed: June 21, 2016
    Publication date: February 15, 2018
    Inventors: Takeshi OSAJIMA, Shuji ABE, Hiroyuki SATO
  • Publication number: 20180043399
    Abstract: Disclosed is a cleaning blade 1, having an elastic body 11 formed of a rubber base material molded product, and a surface treatment layer 12 on at least an area of the elastic body 11 to be brought into contact with a cleaning object. The surface treatment layer 12 is formed by impregnating a surface portion of the elastic body 11 with a surface treatment liquid containing an isocyanate compound and an organic solvent, and hardening the liquid. The surface treatment layer 12 has an indentation elastic modulus of 21 MPa to 56 MPa. The elastic body 11 has an indentation elastic modulus greater than 20 MPa and 35 MPa or less. The difference in indentation elastic modulus between the surface treatment layer 12 and the elastic body 11 is 1 MPa to 21 MPa.
    Type: Application
    Filed: June 21, 2016
    Publication date: February 15, 2018
    Inventors: Takeshi OSAJIMA, Shuang WANG, Shuji ABE, Hiroyuki SATO