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    • 1. 发明授权
    • Inkjet printer with in-flight droplet drying system
    • 具有飞行液滴干燥系统的喷墨打印机
    • US08876245B2
    • 2014-11-04
    • US13461832
    • 2012-05-02
    • David F. TunmoreW. Charles Kasiske, Jr.Robert James SimonTimothy John Young
    • David F. TunmoreW. Charles Kasiske, Jr.Robert James SimonTimothy John Young
    • B41J29/38
    • B41J2/14B41J2002/14443
    • Inkjet droplets having a vaporizable carrier fluid are jetted from a printhead according to image data. A heated condensation shield between the printhead and a target area at which the printhead directs drops protects against condensation of vaporized carrier fluid and creates heat. A heat shield between the printhead and a support structure for the printhead protects the printhead and support structure from heat and condensation. A heated zone exists between the heat shield and the condensation shield. The condensation shield is heated to a temperature above a condensation temperature of vaporized carrier fluid in the second region so that ink droplets that pass through the heated zone are heated in a manner that causes ink droplets having a first concentration to spread when printed onto a paper in the target area as if the ink droplets had a higher concentration of at least one percent.
    • 根据图像数据,从打印头喷射具有可汽化载体流体的喷墨液滴。 打印头和打印头指向的目标区域之间的加热冷凝屏蔽防止蒸发的载体流体冷凝并产生热量。 打印头和用于打印头的支撑结构之间的隔热罩保护打印头和支撑结构免受热和冷凝。 隔热层与冷凝罩之间存在加热区。 将冷凝屏蔽物加热到高于第二区域中蒸发的载体流体的冷凝温度的温度,使得通过加热区域的墨滴以使得当印刷到纸上时具有第一浓度的墨滴扩散的方式被加热 在目标区域,好像墨滴具有至少百分之一的较高浓度。
    • 2. 发明申请
    • IN-FLIGHT INK DROPLET DRYING METHOD
    • IN-FLIGHT INK DROPLET干燥方法
    • US20130293619A1
    • 2013-11-07
    • US13461834
    • 2012-05-02
    • David F. TunmoreW. Charles Kasiske, JR.Robert James SimonTimothy John Young
    • David F. TunmoreW. Charles Kasiske, JR.Robert James SimonTimothy John Young
    • B41J29/38
    • B41J2/04563B41J2/04528B41J2/14B41J29/393B41J2002/14443B41J2202/08
    • Inkjet droplets having a vaporizable carrier fluid are jetted from a printhead according to image data. A heated condensation shield is used between a printhead and a target area at which the printhead directs drops protects against condensation of vaporized carrier fluid and creates heat. A heat shield is used between the printhead and a support structure for the printhead protects the printhead and support structure from heat and condensation. A heated zone exists between the heat shield and the condensation shield. The condensation shield is heated to a temperature above a condensation temperature of vaporized carrier fluid in the second region so that ink droplets that pass through the heated zone are heated in a manner that causes ink droplets having a first concentration to spread when printed onto a paper in the target area as if the ink droplets had a higher concentration of at least one percent.
    • 根据图像数据,从打印头喷射具有可汽化载体流体的喷墨液滴。 打印头和打印头指向的目标区域之间使用加热冷凝屏蔽,防止蒸发的载体流体冷凝并产生热量。 在打印头和用于打印头的支撑结构之间使用隔热罩来保护打印头和支撑结构免受热和冷凝。 隔热层与冷凝罩之间存在加热区。 将冷凝屏蔽物加热到高于第二区域中蒸发的载体流体的冷凝温度的温度,使得通过加热区域的墨滴以使得当印刷到纸上时具有第一浓度的墨滴扩散的方式被加热 在目标区域,好像墨滴具有至少百分之一的较高浓度。
    • 3. 发明授权
    • In-flight ink droplet drying method
    • 飞行中墨滴干燥方法
    • US08833896B2
    • 2014-09-16
    • US13461834
    • 2012-05-02
    • David F. TunmoreW. Charles Kasiske, Jr.Robert James SimonTimothy John Young
    • David F. TunmoreW. Charles Kasiske, Jr.Robert James SimonTimothy John Young
    • B41J29/38B41J2/045
    • B41J2/04563B41J2/04528B41J2/14B41J29/393B41J2002/14443B41J2202/08
    • Inkjet droplets having a vaporizable carrier fluid are jetted from a printhead according to image data. A heated condensation shield is used between a printhead and a target area at which the printhead directs drops protects against condensation of vaporized carrier fluid and creates heat. A heat shield is used between the printhead and a support structure for the printhead protects the printhead and support structure from heat and condensation. A heated zone exists between the heat shield and the condensation shield. The condensation shield is heated to a temperature above a condensation temperature of vaporized carrier fluid in the second region so that ink droplets that pass through the heated zone are heated in a manner that causes ink droplets having a first concentration to spread when printed onto a paper in the target area as if the ink droplets had a higher concentration of at least one percent.
    • 根据图像数据,从打印头喷射具有可汽化载体流体的喷墨液滴。 打印头和打印头指向的目标区域之间使用加热冷凝屏蔽,防止蒸发的载体流体冷凝并产生热量。 在打印头和用于打印头的支撑结构之间使用隔热罩来保护打印头和支撑结构免受热和冷凝。 隔热层与冷凝罩之间存在加热区。 将冷凝屏蔽物加热到高于第二区域中蒸发的载体流体的冷凝温度的温度,使得通过加热区域的墨滴以使得当印刷到纸上时具有第一浓度的墨滴扩散的方式被加热 在目标区域,好像墨滴具有至少百分之一的较高浓度。
    • 4. 发明申请
    • INKJET PRINTER WITH IN-FLIGHT DROPLET DRYING SYSTEM
    • 喷墨打印机,带有飞溅式干燥系统
    • US20130293618A1
    • 2013-11-07
    • US13461832
    • 2012-05-02
    • David F. TunmoreW. Charles Kasiske, JR.Robert James SimonTimothy John Young
    • David F. TunmoreW. Charles Kasiske, JR.Robert James SimonTimothy John Young
    • B41J29/38
    • B41J2/14B41J2002/14443
    • Inkjet droplets having a vaporizable carrier fluid are jetted from a printhead according to image data. A heated condensation shield between the printhead and a target area at which the printhead directs drops protects against condensation of vaporized carrier fluid and creates heat. A heat shield between the printhead and a support structure for the printhead protects the printhead and support structure from heat and condensation. A heated zone exists between the heat shield and the condensation shield. The condensation shield is heated to a temperature above a condensation temperature of vaporized carrier fluid in the second region so that ink droplets that pass through the heated zone are heated in a manner that causes ink droplets having a first concentration to spread when printed onto a paper in the target area as if the ink droplets had a higher concentration of at least one percent.
    • 根据图像数据,从打印头喷射具有可汽化载体流体的喷墨液滴。 打印头和打印头指向的目标区域之间的加热冷凝屏蔽防止蒸发的载体流体冷凝并产生热量。 打印头和用于打印头的支撑结构之间的隔热罩保护打印头和支撑结构免受热和冷凝。 隔热层与冷凝罩之间存在加热区。 将冷凝屏蔽物加热到高于第二区域中蒸发的载体流体的冷凝温度的温度,使得通过加热区域的墨滴以使得当印刷到纸上时具有第一浓度的墨滴扩散的方式被加热 在目标区域,好像墨滴具有至少百分之一的较高浓度。