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    • 3. 发明申请
    • ULTRAVIOLET IRRADIATION UNIT
    • 超紫外线辐射单元
    • US20120001991A1
    • 2012-01-05
    • US13256934
    • 2009-03-18
    • Yoshiki OnozawaAkifumi SekiNobuyuki Ono
    • Yoshiki OnozawaAkifumi SekiNobuyuki Ono
    • B41J2/01
    • B41J2/1714B41J11/002
    • An ultraviolet irradiation unit (100) is provided with an ultraviolet irradiation device (50) and an ink mist sucking and removing device (60). The ink mist sucking and removing device (60) includes a blower fan (62), an air filter (63) and a device cover (61) for forming an air flow passage whose one end is provided with a suction port (64) located in an upper vicinity of a printing object (80) and whose another end is provided with a ventilation port (58a) facing an LED drive circuit board (55). Air in the upper vicinity of a printing object (80) is sucked through the suction port (64) by the blower fan (62), ink mist included in the air is removed by the air filter (63), and cleaned air discharged through the ventilation port (58a) is blown to an LED circuit board (51), an LED drive circuit board (55).
    • 紫外线照射单元(100)具有紫外线照射装置(50)和墨雾吸引除去装置(60)。 墨雾吸取装置(60)具有鼓风机(62),空气过滤器(63)和装置盖(61),用于形成空气流路,其一端设有吸入口(64) 在打印对象(80)的上部附近,并且其另一端设置有面向LED驱动电路板(55)的通气口(58a)。 在打印对象(80)的上方附近的空气通过吸引口(64)被鼓风机(62)吸入,包含在空气中的墨雾被空气过滤器(63)除去,净化后的空气通过 通风口(58a)吹送到LED电路板(51),LED驱动电路板(55)。
    • 4. 发明授权
    • Device for continuously measuring the skin local sweating rate
    • 用于连续测量皮肤局部施放率的装置
    • US5131390A
    • 1992-07-21
    • US580564
    • 1990-09-11
    • Masao SakaguchiNobuyuki OnoToshio OhhashiTomoya Kamei
    • Masao SakaguchiNobuyuki OnoToshio OhhashiTomoya Kamei
    • A61B5/00
    • A61B5/4261A61B5/4266
    • A device for continuously measuring the skin local sweating rate includes a capsule used for applying on a human skin at a measuring point and an air supply element for supplying dehumidified air to the capsule. A first chamber is formed between the capsule and the skin for receiving water vapor perspired from the skin and the dehumidified air supplied from the air supply element to produce the mixture of perspiration oriented water vapor through the skin and the dehumidified air. A second chamber is also formed within the capsule and connected with the first chamber through a communicating hole. The device further includes a humidity detecting element disposed in the second chamber. The humidity detecting element varies its electrical circuit constant according to the relative humidity of the mixture. A temperature detecting element is disposed in the second chamber for detecting the temperature in the second chamber and for outputting signals corresponding to the temperature. A humidity detecting signal output element is mounted on the capsule and is electrically connected with the humidity detecting element for outputting a humidity detecting signal corresponding to the circuit constant of the humidity detecting element. A calculation circuit calculates the sweating rate which is independent of the temperature of the mixture, based on the signals from the humidity detecting signal output element and the temperature detecting element. An element is provided for continuously recording the data of the sweating rate obtained by the calculation circuit.
    • 5. 发明申请
    • PRODUCTION METHOD OF WATER GLASS
    • 水玻璃的生产方法
    • US20110038777A1
    • 2011-02-17
    • US12736324
    • 2009-04-03
    • Jiro KondoNobuyuki OnoHiroshi OnoderaTsutomu Saito
    • Jiro KondoNobuyuki OnoHiroshi OnoderaTsutomu Saito
    • C01B33/32
    • C01B3/06C01B33/32Y02E60/36
    • The present invention relates to a production method, of water glass, comprising dissolving a sodium-based byproduct which is by-produced in the process of enhancing the purity of silicone and not only contains silicon but also contains sodium silicate as a main component, in water to produce crude water glass, at the same time, dissolving the silicon to generate a hydrogen gas, and then filtering the crude water glass to produce water glass.An object of the present invention is to provide a production method of water glass, ensuring that in utilizing, as water glass, a sodium-based byproduct which is by-produced in the process of enhancing the purity of silicon and not only contains silicon but also contains sodium silicate as a main component, the problem of hydrogen gas generation attributable to silicon contained in the byproduct can be solved, a safe and stable operation is possible, and effective utilization as transparent water glass can be achieved.
    • 水玻璃的制造方法技术领域本发明涉及一种水玻璃的制造方法,其特征在于,在提高硅氧烷的纯度的方法中,将含有副产物的钠系副产物溶解,不仅含有硅,而且还含有硅酸钠作为主要成分 水生产原水玻璃,同时溶解硅产生氢气,然后过滤粗水玻璃制成水玻璃。 本发明的一个目的是提供一种水玻璃的制造方法,其确保在水玻璃中使用在提高硅纯度的过程中副产生的钠基副产物,而不仅含有硅, 也含有硅酸钠作为主要成分,可以解决副产物中含有的硅的氢气产生问题,可以实现安全稳定的操作,可以实现透明水玻璃的有效利用。
    • 6. 发明授权
    • Three-dimensional printer
    • 三维打印机
    • US07819055B2
    • 2010-10-26
    • US11738803
    • 2007-04-23
    • Chikao TezukaKazutomo SekiNobuyuki Ono
    • Chikao TezukaKazutomo SekiNobuyuki Ono
    • B41F17/08
    • B41F17/08B33Y30/00B41J3/4073
    • A three-dimensional printer comprises a base 1, a first supporting member 10 supported on the base such that the first supporting member is movable in the direction of an axis X, a second supporting member 15 supported on the first supporting member such that the second supporting member is movable in the direction of an axis Z, a third supporting member 20 supported on the second supporting member such that the third supporting member is rotatable about a first rotation axis Y0 extending in the direction of an axis Y, a holding chuck 26, for holding a print substrate, supported on the third supporting member such that the holding chuck is rotatable about a second rotation axis X0, and a printer head 5 supported on the base 1 to extend above the print substrate 80 such that the printer head is movable in the direction of the axis Y. The movement and rotation of the first through third supporting members and the holding chuck are controlled by a movement controller and the movement of the printer head 5 is also controlled by the movement controller. The ejection of ink from the printer head 5 is controlled by a printing controller according to the movement and rotation control by the movement controller.
    • 三维打印机包括基座1,支撑在基座上的第一支撑构件10,使得第一支撑构件能够在轴线X的方向上移动,第二支撑构件15支撑在第一支撑构件上, 支撑构件能够沿轴线Z方向移动,第三支撑构件20支撑在第二支撑构件上,使得第三支撑构件能够围绕沿着Y轴方向延伸的第一旋转轴线Y0旋转;保持卡盘26 ,用于保持打印基板,支撑在第三支撑构件上,使得保持卡盘可绕第二旋转轴线X0旋转;以及打印头5,支撑在基座1上以在打印基板80上方延伸,使得打印头是 可沿轴线Y的方向移动。第一至第三支撑构件和保持卡盘的移动和旋转由运动控制器和t的运动 打印头5也由运动控制器控制。 根据运动控制器的移动和旋转控制,由打印机控制器从打印机头5喷射墨水。
    • 9. 发明申请
    • PRINTER AND PRINTING METHOD
    • 打印机和打印方法
    • US20090073200A1
    • 2009-03-19
    • US12043625
    • 2008-03-06
    • Chikao TEZUKAKazutomo SekiNobuyuki Ono
    • Chikao TEZUKAKazutomo SekiNobuyuki Ono
    • B41J29/38
    • B41J3/4073B33Y30/00
    • A printer includes a holding unit, a printer head, a driving unit, a movement controller and a printing controller. The holding unit is configured to hold a print substrate having a surface to be printed. The driving unit is configured to move at least one of the holding unit and the printer head. The movement controller is configured to control the driving unit to move the holding unit and the printer head relatively so that a distance between the at least one ink nozzle and the surface to be printed is kept at a predetermined distance and so that the ink ejected from the at least one ink nozzle collides with the surface substantially perpendicularly. The printing controller is configured to control ejection of the ink from the printer head according to a distance between the at least one ink nozzle and the surface to be printed.
    • 打印机包括保持单元,打印机头,驱动单元,移动控制器和打印控制器。 保持单元构造成保持具有要印刷的表面的印刷基板。 驱动单元构造成移动保持单元和打印机头中的至少一个。 移动控制器被配置为控制驱动单元相对地移动保持单元和打印头,使得至少一个墨嘴与要打印的表面之间的距离保持在预定距离,并且从墨 所述至少一个墨喷嘴基本垂直地与所述表面相撞。 打印控制器被配置为根据至少一个墨水喷嘴和待打印表面之间的距离来控制墨水从打印头喷出。