Abstract:
Provided is a method for producing a conductive fiber including a synthetic fiber and a conductive film that is formed on a surface of the synthetic fiber and includes single-wall carbon nanotubes, the method including: a conductive ink immersion step of immersing the synthetic fiber in a conductive ink having the single-wall carbon nanotubes dispersed in an aprotic solvent and causing the conductive ink to adhere to the synthetic fiber; and a solvent removal step that is performed after the conductive ink immersion step for drying the synthetic fiber to which the conductive ink adheres and removing the aprotic solvent.
Abstract:
Provided is a method of manufacturing an electrically conductive film laminate 1 including a substrate to be laminated 10, an adhesive layer 20 formed on a surface of the substrate to be laminated 10, and an electrically conductive carbon film 30 formed on a surface of the adhesive layer 20, the method including: a first laminate manufacturing step for manufacturing a first laminate 110 including a forming substrate 40 for forming the electrically conductive carbon film 30 on a surface thereof, the electrically conductive carbon film 30 formed on a surface of the forming substrate 40, and the adhesive layer 20 formed on a surface of the electrically conductive carbon film 30; a thermocompression bonding step for manufacturing a second laminate 120 by bringing the adhesive layer 20 of the first laminate 110 into contact with the substrate to be laminated 10, and then performing heating and pressure bonding; and an etching step for manufacturing the electrically conductive film laminate 1 by etching the forming substrate 40 of the second laminate 120.
Abstract:
An image capturing apparatus includes a plurality of imaging devices each of which including an optical system and an image sensor; and a processor. The processor is configured to control the plurality of imaging devices to capture images at a different timing; and combine the images captured by the plurality of imaging devices to generate a combined image. The images to be combined are images captured by the plurality of imaging devices at different timings.
Abstract:
A recording-material cooling device includes a first cooling member, a second cooling member, an approach-and-separation member, and a positioning member. The first cooling member is disposed at a first face side of a recording material to absorb heat of the recording material. The second cooling member is disposed at a second face side of the recording material to absorb heat of the recording material. The approach-and-separation member brings the first cooling member and the second cooling member close to and away from each other. The positioning member positions the first cooling member and the second cooling member relatively brought close to each other by the approach-and-separation member.
Abstract:
A recording-material cooling device includes a first cooling member, a second cooling member, an approach-and-separation member, and a positioning member. The first cooling member is disposed at a first face side of a recording material to absorb heat of the recording material. The second cooling member is disposed at a second face side of the recording material to absorb heat of the recording material. The approach-and-separation member brings the first cooling member and the second cooling member close to and away from each other. The positioning member positions the first cooling member and the second cooling member relatively brought close to each other by the approach-and-separation member.
Abstract:
A recording-material cooling device is disposed downstream from a fixing device in a transport direction of a recording material. The fixing device includes a fixing member and a pressing member to fix an unfixed toner image on the recording material. The recording-material cooling device includes a first cooling unit disposed at a same side as the pressing member relative to the recording material, a second cooling unit disposed at a same side as the fixing member relative to the recording material, and a third cooling unit disposed at the same side as the pressing member relative to the recording material. The first cooling unit, the second cooling unit, and the third cooling unit are arranged in an order of the first cooling unit, the second cooling unit, and the third cooling unit from upstream to downstream in the transport direction of the recording material.
Abstract:
In a forming apparatus, inner frames are arranged in a forming roll stand so as to move up and down. Mechanical structures of convexo-concave engagement are provided on opposed faces between respective roll chocks and yokes and the inner frames. After connection with a pressing device is released, the roll chocks and yokes are guided utilizing the moving-downward motion of the inner frames, and a stack body is formed in series so as to be withdrawn from the roll stand. The stack body is disassembled utilizing the moving-upward motion of the inner frames, and the roll chocks and yokes can be guided to the desired positions inside the stand and locked.
Abstract:
A storage system including first storage devices constituting a first logical storage area, second storage devices constituting a second logical storage area; and a storage control apparatus. The storage control apparatus manages the first and second logical storage areas so that the data stored in the first and second logical storage areas have redundancy, and parity data for the data stored in the second logical storage area are stored in parity storage areas arranged in part of the second storage devices. When part of the first storage devices constituting part of the first logical storage area fail, the storage control apparatus generates part of the data stored, before the failure, in the part of the first storage devices, and stores the generated part of the data in at least part of the second parity storage areas in the second logical storage area.
Abstract:
An apparatus using a battery includes a receiving unit, a determination unit and a calculation unit. The receiving unit receives a dischargeable capacity, a first voltage and a second voltage from the battery. The first voltage is used to display the end of an available time and the second voltage is used to carry out a low power operation. The determination unit determines whether the first voltage is less than the second voltage. The calculation unit corrects the dischargeable capacity and calculates the available time based on the corrected dischargeable capacity, if the determination unit determines that the first voltage is less than the second voltage.
Abstract:
An image forming apparatus includes: a first image forming unit configured to form an image with erasable first ink; a second image forming unit configured to share a conveying path with the first image forming unit and form an image with not erasable second ink; a recording unit configured to record a level of use of a recording medium on the recording medium; a detecting unit configured to detect the level of use; and a control unit configured to control the first image forming unit or the second image forming unit according to a detection result of the detecting unit.