Abstract:
An optical fixing apparatus includes a transport unit that transports a recording medium in a first direction in a first fixing process and a second fixing process subsequent thereto and transports the recording medium in a second direction after the first fixing process and before the second fixing process; a light irradiating unit that irradiates the recording medium with light having a predetermined intensity while the recording medium is transported in the first and second fixing processes; a controller that performs a control so that the intensity of the light is lower than the predetermined intensity in a first period before the end of the first fixing process and a second period after the start of the second fixing process, and so that an area of the recording medium irradiated in the first period and an area of the recording medium irradiated in the second period overlap.
Abstract:
According to an aspect of the invention, a fixing device includes a first laser unit and a second laser unit. The first laser unit outputs a first laser beam to irradiate a visible image formed of image forming material on a recording medium with the first laser beam. The second laser unit outputs a second laser beam to irradiate the visible image with the second laser beam after being irradiated with the first laser beam. The first laser beam and the second laser beam is configured to satisfy relations: W1 t2, W1 is an optical output per unit area of the first laser beam, W2 is an optical output per unit area of the second laser beam, t1 is an irradiation time per unit area of the first laser beam, and t2 is an irradiation time per unit area of the second laser beam.
Abstract:
A laser fixing apparatus includes: a laser light generator that generates laser light to be projected onto a recording medium. A first condenser reflects and condenses the light generated by reflection of the laser light at an irradiation position of the recording medium, such that the reflected and condensed light is re-projected at the irradiation position and/or near the irradiation position.
Abstract:
A fixing device includes a first irradiation unit that irradiates a laser beam in a first irradiation region toward a recording medium in which unfixed image is formed; a second irradiation unit that irradiates a laser beam toward a second irradiation region; an image information acquiring unit that acquires image information of the first irradiation region; a coating information acquiring unit that divides the first irradiation region into one or a plurality of divided regions, and that acquires coating information that relates to the coating level on the basis of the image information; a transmission information acquiring unit that acquires transmission information that relates to the laser beam which is irradiated to the first irradiation region and passes through the recording material on the basis of the coating information; an irradiation control unit that controls the irradiation energy of the second irradiation unit based on the transmission information.
Abstract:
A fixing device includes a laser source that irradiates an image with laser light, the image being formed on a moving recording material with a thermoplastic image-forming material; and a support member arranged to face the laser source and having a curved portion, the curved portion being curved to extend in a recording-material moving direction and to protrude toward the laser source, the curved portion having a supporting portion of the recording material corresponding to at least an irradiation area of the laser light in a curved manner.
Abstract:
A transfer member of an image forming material for electrophotography, the transfer member including a substrate and an image receiving layer disposed on at least one surface of the substrate. The image receiving layer includes at least a releasing material and has a surface resistivity of 1.0×108 to 3.2×1013Ω/□ at 23° C. and 55% RH.
Abstract:
A sheet for forming process including a base material and at least one functional layer provided on a surface of the base material, wherein the functional layer has, at the outermost surface thereof, a surface resistivity of 1.0×108 to 1.0×1013 Ω/□, and a surface of the base material, on which surface the functional layer is provided, contains at least one selected from polycarbonate resins and polyarylate resins; a method for manufacturing the sheet for forming process, an image forming method, a method for manufacturing a forming processed product using the sheet for forming process, and the forming processed product.
Abstract:
An image transfer sheet for electrophotography comprising a substrate and at least one layer including an image receiving layer on one side surface of the substrate, wherein at least one layer of the layers is a curable resin-containing layer which is a layer separable from the substrate or a layer disposed between the curable resin-containing layer and the substrate on the one side surface. Also provided are a method for manufactruing the image recorded medium which use the image transfer sheet for electrophotography and an image recorded medium.
Abstract:
A transfer member of an image forming material for electrophotography, the transfer member including a substrate and an image receiving layer disposed on at least one surface of the substrate. The image receiving layer includes at least a releasing material and has a surface resistivity of 1.0×108 to 3.2×1013 Ω/□ at 23° C. and 55% RH.
Abstract:
An image-forming material removing apparatus capable of continuously peeling image-forming material such as toner from the recording medium while, with simple structure, maintaining high quality will be provided. The image-forming material removing apparatus for removing the image-forming material from a recording medium on which the image-forming material containing hot-melt resin has melted and adhered, comprising: an image peeling member provided with an image peeling layer containing hot-melt resin on the surface of a heat-resisting base material; a first heating member for heating the image peeling layer into a softened or molten state; a contacting unit that causes the image peeling layer which has been heated by the first heating member and brought into a softened or molten state to come into contact with a recording medium onto whose surface the image-forming material has adhered; a separating unit that separates the recording medium from the image peeling layer in a state in which the image-forming material adhered to the image peeling layer has been moved onto the surface thereof; and a second heating member for heating the image peeling layer separated from the recording medium into a molten state.