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    • 4. 发明授权
    • Method for manufacturing a three-dimensional model by variable deposition and apparatus used therein
    • 通过可变沉积制造三维模型的方法及其中使用的装置
    • US06505089B1
    • 2003-01-07
    • US09524153
    • 2000-03-14
    • Dong Yol YangBo Sung ShinJun Ho Jeong
    • Dong Yol YangBo Sung ShinJun Ho Jeong
    • G06F1900
    • G05B19/4099B29C64/106B29C64/40B33Y10/00B33Y30/00B33Y40/00B33Y50/00B33Y50/02G05B2219/49013G05B2219/49015
    • To enhance accuracy of the size and the shape of manufactures, and to shorten the time of operation, there is provided a method for manufacturing a 3D model comprising steps of designing the 3D model and collecting shape data of the 3D model slicing the 3D model into several layers in height, dividing each of the layers into several sublayers so that a sublayer is formed by depositing a material at once, depositing a material in accordance with shape data in relation to a sublayer divided from one layer of the 3D model, and deciding whether the one layer of the 3D model has been completed. The method is conducted using computer-aided design and computer aided manufacturing system including a variable deposition manufacturing apparatus. The apparatus comprises a material feeder 11, an electrical melting device 13 connected to the material feeder 11 through a conduit 12, a variable nozzle 15 connected to the variable nozzle 15 through a flow controller 14, a three-dimensional moving mechanism for moving the variable nozzle is in relation to the 3D model and a turntable adapted for rotating the 3D model.
    • 为了提高制造商的尺寸和形状的精度,并缩短操作时间,提供了一种用于制造3D模型的方法,包括以下步骤:设计3D模型并收集3D模型的形状数据,将3D模型分割成 将各层分成几层,将各层划分成若干子层,以便通过一次沉积材料形成子层,根据与3D模型的一层划分的子层相对应的形状数据沉积材料,并决定 3D模型的一层是否已经完成。 该方法使用包括可变沉积制造装置的计算机辅助设计和计算机辅助制造系统进行。 该装置包括供料器11,通过管道12连接到供料器11的电熔装置13,通过流量控制器14连接到可变喷嘴15的可变喷嘴15,用于移动变量的三维移动机构 喷嘴相对于3D模型和适于旋转3D模型的转盘。
    • 5. 发明授权
    • Patterning method of metal oxide thin film using nanoimprinting, and manufacturing method of light emitting diode
    • 使用纳米压印的金属氧化物薄膜的图案化方法和发光二极管的制造方法
    • US08486753B2
    • 2013-07-16
    • US12698194
    • 2010-02-02
    • Hyeong Ho ParkJun Ho JeongKi Don KimDae Geun ChoiJun Hyuk ChoiJi Hye LeeSoon Won Lee
    • Hyeong Ho ParkJun Ho JeongKi Don KimDae Geun ChoiJun Hyuk ChoiJi Hye LeeSoon Won Lee
    • H01L21/00
    • H01L33/42H01L2924/0002H01L2933/0016Y10T428/24802H01L2924/00
    • Disclosed are a patterning method of a metal oxide thin film using nanoimprinting, and a manufacturing method of a light emitting diode (LED). The method for forming a metal oxide thin film pattern using nanoimprinting includes: coating a photosensitive metal-organic material precursor solution on a substrate; preparing a mold patterned to have a protrusion and depression structure; pressurizing the photosensitive metal-organic material precursor coating layer with the patterned mold; forming a cured metal oxide thin film pattern by heating the pressurized photosensitive metal-organic material precursor coating layer or by irradiating ultraviolet rays to the pressurized photosensitive metal-organic material precursor coating layer while being heated; and removing the patterned mold from the metal oxide thin film pattern, and selectively further includes annealing the metal oxide thin film pattern. Within this, there is provided a method for forming a metal dioxe thin film pattern using nano imprinting, which makes it possible to simplify the process for forming the pattern since the process of separately applying the ultraviolet resin to be used as the resist can be omitted, and forms a micro/nano composite pattern through a single imprint process.
    • 公开了使用纳米压印的金属氧化物薄膜的图案化方法和发光二极管(LED)的制造方法。 使用纳米压印形成金属氧化物薄膜图案的方法包括:将光敏金属 - 有机材料前体溶液涂覆在基底上; 制备图案化的具有突起和凹陷结构的模具; 用图案化的模具对感光金属 - 有机材料前体涂层进行加压; 通过加热加压的感光金属 - 有机材料前体涂层或通过在被加热时向加压的感光金属 - 有机材料前体涂层照射紫外线来形成固化的金属氧化物薄膜图案; 并且从金属氧化物薄膜图案移除图案化的模具,并且还包括退火金属氧化物薄膜图案。 其中,提供了使用纳米压印形成金属二氧化物薄膜图案的方法,由于可以省略分离施加用作抗蚀剂的紫外线树脂的工艺,所以可以简化形成图案的工艺 ,并通过单个压印工艺形成微/纳复合图案。