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    • 3. 发明申请
    • FLUID EJECTING APPARATUS AND IMAGE FORMATION METHOD
    • 流体喷射装置和图像形成方法
    • US20090322804A1
    • 2009-12-31
    • US12490521
    • 2009-06-24
    • Hidenori USUDAToshio KUMAGAIKazutoshi FUJISAWA
    • Hidenori USUDAToshio KUMAGAIKazutoshi FUJISAWA
    • B41J29/38
    • B41J2/01B41J2/2114B41J11/0015B41J11/002
    • A fluid ejecting apparatus includes: a fluid ejecting unit that ejects a colored fluid and a colorless fluid toward a fluid ejection target medium; an irradiating unit that irradiates ultraviolet rays onto a fluid that lies on or over the fluid ejection target medium so as to cure the fluid; and a controlling unit that controls the fluid ejecting operation of the fluid ejecting unit and the ultraviolet ray irradiating operation of the irradiating unit. The controlling unit performs control so that the colorless fluid is ejected on an image that is made of the colored fluid that landed on the fluid ejection target medium. After the start of the agglomeration of the colorless fluid that landed on the image, the controlling unit performs control so that ultraviolet rays are irradiated onto the colorless fluid.
    • 流体喷射装置包括:流体喷射单元,其朝向流体喷射目标介质喷射有色流体和无色流体; 照射单元,其将紫外线照射到位于所述流体喷射目标介质上或上方的流体,以固化所述流体; 以及控制单元,其控制流体喷射单元的流体喷射操作和照射单元的紫外线照射操作。 控制单元执行控制,使得无色流体喷射在由着色在流体喷射目标介质上的着色流体制成的图像上。 在图像上着色的无色液体的聚集开始之后,控制单元进行控制,使得紫外线照射到无色流体上。
    • 4. 发明申请
    • THREE-DIMENSIONAL OBJECT FORMING APPARATUS AND METHOD FOR FORMING THREE DIMENSIONAL OBJECT
    • 三维对象形成装置和形成三维对象的方法
    • US20090020920A1
    • 2009-01-22
    • US12174416
    • 2008-07-16
    • Toshio KUMAGAIKazutoshi FUJISAWAAkio ITO
    • Toshio KUMAGAIKazutoshi FUJISAWAAkio ITO
    • B29C35/08
    • B29C64/165
    • A three-dimensional object forming apparatus forms a three-dimensional object by binding powder particles with a curable liquid. The apparatus includes a powder layer forming unit that spreads a powder to a uniform thickness to form a powder layer. A curable liquid ejection head ejects the curable liquid to the powder layer through an ejection nozzle. A sectional data producing device produces sectional data at each of a plurality of cross sections of a desired three-dimensional object according to shape data of the desired three-dimensional object. A cross-sectional member forming section is also included by which cross-sectional members are formed by ejecting the curable liquid to the powder layer from the curable liquid ejection head according to the sectional data and thus binding the powder layer. The cross-sectional member forming section includes a permeation rate controller controlling the permeation rate of the curable liquid to the powder layer.
    • 三维物体形成装置通过将粉末颗粒与可固化液体结合而形成三维物体。 该装置包括粉末层形成单元,其将粉末铺展成均匀的厚度以形成粉末层。 可固化液体喷射头通过喷嘴将可固化液体喷射到粉末层。 截面数据产生装置根据期望的三维物体的形状数据在期望的三维物体的多个横截面的每一个截面上产生截面数据。 还包括横截面构件形成部分,通过根据截面数据将可固化液体从可固化液体喷射头喷射到粉末层,从而结合粉末层,形成横截面构件。 横截面构件形成部分包括控制可固化液体对粉末层的渗透速率的渗透速率控制器。
    • 5. 发明申请
    • THREE-DIMENSIONAL MOLDING APPARATUS AND THREE-DIMENSIONAL MOLDING METHOD
    • 三维模具和三维模具方法
    • US20090004381A1
    • 2009-01-01
    • US12147321
    • 2008-06-26
    • Kazutoshi FUJISAWAToshio KUMAGAI
    • Kazutoshi FUJISAWAToshio KUMAGAI
    • B05D1/38
    • B29C64/165
    • A three-dimensional molding apparatus for binding powder with a binding liquid to mold a three-dimensional object. When the three-dimensional object is cut into cross-sectional layers, a cross-section data generating unit generates cross-section data for each of the layers. A cross-sectional member forming unit spreads the powder so as to have a substantially uniform thickness to form a powder layer and supplies the binding liquid to the powder layer on the basis of the cross-section data to form a cross-sectional member corresponding to one layer of the three-dimensional object. A three-dimensional object molding unit forms a new powder layer on the powder layer in which the cross-sectional member is formed, supplies the binding liquid to the new powder layer on the basis of the cross-section data to form a new cross-sectional member, and laminates the new cross-sectional member on the previous cross-sectional member, thereby forming the three-dimensional object.
    • 一种用于将粉末与粘合液结合以成型三维物体的三维成型装置。 当三维物体被切割成横截面层时,横截面数据生成单元产生每个层的横截面数据。 横截面构件形成单元将粉末扩散以具有基本均匀的厚度以形成粉末层,并且基于横截面数据将粘合液供应到粉末层,以形成对应于 一层三维物体。 三维物体成型单元在形成有截面构件的粉末层上形成新的粉末层,根据截面数据将结合液供给到新的粉末层,形成新的交叉部分, 在前一横截面构件上层叠新的横截面构件,从而形成三维物体。
    • 6. 发明申请
    • LIQUID EJECTING APPARATUS
    • 液体喷射装置
    • US20110001783A1
    • 2011-01-06
    • US12828829
    • 2010-07-01
    • Kazutoshi FUJISAWA
    • Kazutoshi FUJISAWA
    • B41J2/01
    • B41J11/002B41J2/2114
    • A liquid ejecting apparatus includes: a head that ejects liquid to be cured by receiving irradiation of an electromagnetic wave onto a medium; a provisional-curing irradiation section that emits a first electromagnetic wave to a dot formed on the medium by the liquid; and a main-curing irradiation section that emits a second electromagnetic wave, which has irradiation intensity higher than that of the first electromagnetic wave, to the dot to which the first electromagnetic wave is emitted. When the main-curing irradiation section emits the second electromagnetic wave, a dot forming surface of the medium faces the lower side in the direction of gravity.
    • 一种液体喷射装置,包括:通过接收电磁波照射到介质上而喷射要固化的液体的头部; 临时固化照射部,其通过所述液体向形成在所述介质上的点发射第一电磁波; 以及将具有比第一电磁波的照射强度高的第二电磁波发射到发射第一电磁波的点的主固化照射部。 当主固化照射部分发射第二电磁波时,介质的点形成表面在重力方向上面向下侧。
    • 8. 发明申请
    • FLUID EJECTING APPARATUS AND IMAGE FORMATION METHOD
    • 流体喷射装置和图像形成方法
    • US20120069073A1
    • 2012-03-22
    • US13307880
    • 2011-11-30
    • Hidenori USUDAToshio KUMAGAIKazutoshi FUJISAWA
    • Hidenori USUDAToshio KUMAGAIKazutoshi FUJISAWA
    • B41J29/38
    • B41J2/01B41J2/2114B41J11/0015B41J11/002
    • A fluid ejecting apparatus includes: a fluid ejecting unit that ejects a colored fluid and a colorless fluid toward a fluid ejection target medium; an irradiating unit that irradiates ultraviolet rays onto a fluid that lies on or over the fluid ejection target medium so as to cure the fluid; and a controlling unit that controls the fluid ejecting operation of the fluid ejecting unit and the ultraviolet ray irradiating operation of the irradiating unit. The controlling unit performs control so that the colorless fluid is ejected on an image that is made of the colored fluid that landed on the fluid ejection target medium. After the start of the agglomeration of the colorless fluid that landed on the image, the controlling unit performs control so that ultraviolet rays are irradiated onto the colorless fluid.
    • 流体喷射装置包括:流体喷射单元,其朝向流体喷射目标介质喷射有色流体和无色流体; 照射单元,其将紫外线照射到位于所述流体喷射目标介质上或上方的流体,以固化所述流体; 以及控制单元,其控制流体喷射单元的流体喷射操作和照射单元的紫外线照射操作。 控制单元执行控制,使得无色流体喷射在由着色在流体喷射目标介质上的着色流体制成的图像上。 在图像上着色的无色液体的聚集开始之后,控制单元进行控制,使得紫外线照射到无色流体上。
    • 9. 发明申请
    • LIQUID EJECTION DEVICE
    • 液体喷射装置
    • US20110187784A1
    • 2011-08-04
    • US13011133
    • 2011-01-21
    • Kazutoshi FUJISAWA
    • Kazutoshi FUJISAWA
    • B41J29/393
    • B41J29/393B41J2/2146B41J11/002
    • A liquid ejection device includes: a recording head for ejecting an ultraviolet curable ink onto continuous paper so that an image corresponding to liquid ejection data is formed on the continuous paper; an ultraviolet radiation device in which a plurality of ultraviolet LEDs for radiating ultraviolet rays onto the ink deposited on the continuous paper by ejection from the recording head are aligned along a direction that intersects the relative movement direction of the continuous paper; a camera for acquiring the image formed on the continuous paper as image data along the alignment direction of the ultraviolet LEDs, based on the ultraviolet radiation from the ultraviolet radiation device; and a control device for comparing the image data acquired by the camera with the liquid ejection data and distinguishing the quality of the ultraviolet LEDs based on the comparison results.
    • 液体喷射装置包括:用于将紫外线固化油墨喷射到连续纸上的记录头,使得在连续纸上形成对应于液体喷射数据的图像; 一种紫外线辐射装置,其中通过从记录头喷射而将沉积在连续纸上的墨水上的紫外线辐射的多个紫外线LED沿与连续纸的相对移动方向相交的方向排列; 基于来自紫外线照射装置的紫外线照射来获取形成在连续纸上的图像作为沿着紫外线LED的排列方向的图像数据的照相机; 以及控制装置,用于将由照相机获取的图像数据与液体喷射数据进行比较,并且基于比较结果来区分紫外LED的质量。