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    • 6. 发明授权
    • Three-dimensional molding apparatus and three-dimensional molding method
    • 三维成型设备和三维成型方法
    • US06896839B2
    • 2005-05-24
    • US10062542
    • 2002-02-05
    • Naoki KuboToshio NoritaMakoto MiyazakiAkira Wada
    • Naoki KuboToshio NoritaMakoto MiyazakiAkira Wada
    • B29C35/08B29C67/00B29C31/04
    • B29C64/165B29C35/0805B29C64/153B29C2035/0827B29K2995/0021H04N1/52
    • To provide a three-dimensional molding technique capable of generating a three-dimensional molded article in short time.In a three-dimensional molding apparatus, a powder material is allowed to drop via an opening while moving a thin layer formation section in the +X direction, thereby forming a powder layer on a molding stage. With respect to a selected region in the powder layer, a binder of ultraviolet-ray hardening resin is discharged from a head section. Then, the powder layer is irradiated with ultraviolet rays from an ultraviolet irradiation section, making the ultraviolet-ray hardening resin applied on the powder layer harden to thereby bind the powder material. By repeating this operation with respect to the powder layer which is sequentially formed, a three-dimensional molded article is formed. In this way, since an ultraviolet-ray hardening resin is used as a binder and a powder material can be bound rapidly by ultraviolet irradiation, it is possible to generate a three-dimensional molded article in short time.
    • 提供能够在短时间内产生三维模制品的三维成型技术。 在三维模制装置中,在+ X方向移动薄层形成部分时,通过开口使粉末材料下降,从而在成型台上形成粉末层。 对于粉末层中的选定区域,紫外线硬化树脂的粘合剂从头部排出。 然后,用紫外线照射部分的紫外线照射粉末层,使施加在粉末层上的紫外线硬化树脂硬化,从而结合粉末材料。 通过对依次形成的粉末层重复该操作,形成三维模制品。 以这种方式,由于使用紫外线硬化树脂作为粘合剂,并且可以通过紫外线照射快速地结合粉末材料,所以可以在短时间内产生三维模制品。
    • 7. 发明授权
    • Measuring system with improved method of reading image data of an object
    • 测量系统,改进了读取物体图像数据的方法
    • US06674534B2
    • 2004-01-06
    • US10330111
    • 2002-12-30
    • Toshio NoritaMakoto Miyazaki
    • Toshio NoritaMakoto Miyazaki
    • G01B1104
    • G01B11/2518G06T7/521
    • When a scanning start position set signal is input in an area image sensor, the content is transferred to a vertical scanning circuit, and the scan start position is set. Image of a desired row is read by horizontal scanning. Then, one shift signal for vertical scanning is input, the position of scanning is shifted by one row, and horizontal scanning is performed. Thus image of the next row is read. By repeating this operation, a desired strip-shaped image is read. The shape of the object is determined and when a portion is determined to have complicated shape, the image data is input by means of a lens having long focal length, and image data of other portions are input by means of a lens having short focal length. By putting together a plurality of input image data, image data as a whole is generated.
    • 当在区域图像传感器中输入扫描开始位置设置信号时,将内容传送到垂直扫描电路,并设置扫描开始位置。 通过水平扫描读取所需行的图像。 然后,输入用于垂直扫描的一个移位信号,扫描的位置移位一行,并进行水平扫描。 因此,读取下一行的图像。 通过重复该操作,读取期望的条形图像。 确定物体的形状,并且当确定部分具有复杂形状时,通过具有长焦距的透镜输入图像数据,并且借助于具有短焦距的透镜输入其他部分的图像数据 。 通过合成多个输入图像数据,生成整体的图像数据。
    • 10. 发明授权
    • Three-dimensional input device
    • 三维输入设备
    • US06268918B1
    • 2001-07-31
    • US09332969
    • 1999-06-15
    • Hideki TanabeEiichi IdeHiroshi UchinoMakoto MiyazakiKoichi KamonToshio Norita
    • Hideki TanabeEiichi IdeHiroshi UchinoMakoto MiyazakiKoichi KamonToshio Norita
    • G01B1124
    • H04N5/238G01B11/25G06T7/521H04N5/2256H04N5/235
    • An apparatus and method for detecting a three-dimensional image. The apparatus includes a projector which projects a reference light on an object; an image sensor which senses an image of the object; and a controller for controlling the projector and the image sensor, wherein the image sensor includes an aperture that restricts the passage of entering light; and an aperture controller for setting an aperture value for the aperture when receiving a two-dimensional image input, and setting an aperture value for the aperture when receiving a three-dimensional image input. The aperture value is set based on the intensity of received reference light. A processing unit determines the position of the object based on a relationship between an illumination direction of the reference light at the determined time center Npeak and an entrance direction of the reference light relative to the target pixel. A flicker detector detects a change frequency in light received by the image sensor, and the controller controls the image sensor to sense frames of an image at a frequency which is a multiple of the detected change frequency.
    • 一种用于检测三维图像的装置和方法。 该装置包括将参考光投射在物体上的投影仪; 感测对象的图像的图像传感器; 以及用于控制投影仪和图像传感器的控制器,其中图像传感器包括限制进入光的通过的孔; 以及光圈控制器,用于在接收二维图像输入时设置孔径的孔径值,并且在接收三维图像输入时设置孔径的孔径值。 光圈值是根据接收的参考光的强度设定的。 处理单元基于所确定的时间中心Npeak处的参考光的照明方向与参考光的相对于目标像素的入射方向之间的关系来确定对象的位置。 闪烁检测器检测由图像传感器接收的光的变化频率,并且控制器控制图像传感器以以所检测的变化频率的倍数的频率感测图像的帧。