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    • 1. 发明申请
    • POWER GENERATING DEVICE USING ELECTRIC FURNACE
    • 使用电炉的发电装置
    • US20150204206A1
    • 2015-07-23
    • US14421054
    • 2013-05-24
    • Young Ho SEO
    • Young Ho Seo
    • F01D15/10H02K7/18
    • F01D15/10F01K3/186F05D2220/72H02K7/1823H02K53/00Y10S74/09
    • The present invention relates to a power generating device using an electric furnace, and more particularly, to a power generating device using an electric furnace in which the electric furnace boils water using electricity to produce steam and a turbine is operated using the steam to produce electricity. The power generating device using an electric furnace according to the present invention includes an electric furnace, a steam pipe, a turbine, a power generator, a condenser, and a super-heater. The electric furnace heats water to produce steam. The steam pipe guides the steam ejected from the electric furnace. The turbine is disposed at an inlet of the steam pipe, and is operated with the steam. The power generator is operated by the turbine, and generates electricity. The condenser condenses the steam discharged after the turbine is operated. The super-heater superheats a condensate condensed in the condenser, and supplies the superheated condensate to the electric furnace. According to the present invention, it is possible to generate electricity by boiling water in an electric furnace to produce steam using midnight electric power. Accordingly, it is possible to generate electricity without causing problems such as pollution and environment destruction occurring in thermal power generation or nuclear power generation.
    • 本发明涉及一种使用电炉的发电装置,更具体地说,涉及一种使用电炉的电炉的发电装置,其中电炉利用电力使水沸腾以产生蒸汽,并且使用蒸汽来运行涡轮以产生电力 。 根据本发明的使用电炉的发电装置包括电炉,蒸汽管,涡轮机,发电机,冷凝器和超级加热器。 电炉加热水以产生蒸汽。 蒸汽管引导从电炉喷出的蒸汽。 涡轮机设置在蒸汽管的入口处,并与蒸汽一起操作。 发电机由涡轮机运行,并发电。 冷凝器冷凝涡轮机运行后排出的蒸汽。 超级加热器过滤冷凝器中冷凝的冷凝水,并将过热冷凝水供应给电炉。 根据本发明,可以通过在电炉中开水来产生电,以使用午夜电力产生蒸汽。 因此,可以发电而不会在火力发电或核能发电中发生污染和环境破坏等问题。
    • 2. 发明申请
    • APPARATUS AND METHOD FOR ROTATING IMAGE WITHOUT USING MEMORY
    • 没有使用存储器旋转图像的装置和方法
    • US20100322528A1
    • 2010-12-23
    • US12817574
    • 2010-06-17
    • Young-Ho SEOJong-Phil KIMJae-Oh SHIM
    • Young-Ho SEOJong-Phil KIMJae-Oh SHIM
    • G06K9/36
    • G06T3/60
    • An image rotation method without using a memory includes the steps of: reading, by a JPEG encoder, an input image having m×n macroblocks (wherein “m” and “n” are natural numbers); rotating image data of the respective macroblocks by a predetermined angle in a predetermined direction when encoding in the JPEG encoder; assigning and inputting a sequence of each rotated image data when encoding in the JPEG encoder; instructing the macroblocks to be output in a sequence changed from an initial input sequence of the macroblocks through use of a program when decoding in a JPEG decoder; and outputting an image rotated by the predetermined angle in the predetermined direction.
    • 不使用存储器的图像旋转方法包括以下步骤:通过JPEG编码器读取具有m×n个宏块的输入图像(其中“m”和“n”是自然数); 当在JPEG编码器中进行编码时,各个宏块的旋转图像数据以预定方向在预定方向上旋转; 在JPEG编码器中编码时分配和输入每个旋转的图像数据的序列; 通过在JPEG解码器中解码时通过使用程序,以宏块的初始输入序列改变的序列来指示宏块的输出; 并输出沿预定方向旋转预定角度的图像。
    • 6. 发明申请
    • COATING LAYER FOR CUTTING TOOLS
    • 切割工具涂层
    • US20130149527A1
    • 2013-06-13
    • US13695886
    • 2011-07-08
    • Seong Woo ChoHan Sung KimDong youl LeeDae Suk HanYoung Ho SeoSeoun Young AhnDong Bok Park
    • Seong Woo ChoHan Sung KimDong youl LeeDae Suk HanYoung Ho SeoSeoun Young AhnDong Bok Park
    • B26D7/00
    • B26D7/00C23C16/34C23C16/403C23C28/042C23C28/044C23C30/005Y10T428/265
    • Provided is a coating layer for cutting tools, as a hard coating layer stacked and formed in the sequence of a TiN layer, a TiCN layer, a bonding layer, an alumina (Al2O3) layer, and a cover layer from the bottom by using a chemical vapor deposition (CVD) method on a parent material, able to improve cutting performance, because surface residual stress of the coating layer may be maintained in a compressive stress state by adjusting a composition of the cover layer without using a separate additional process, such as a blasting operation, or a mixed process of CVD and physical vapor deposition (PVD), and simultaneously the cover layer may also be used as a wear-resistant layer.The coating layer according to present invention is formed on a surface of a parent material by using a CVD method, in which the coating layer includes an alumina layer formed of an α-phase, disposed on the parent material and composed of a composite structure having a columnar crystal structure and an equiaxed crystal structure mixed therein, and a cover layer formed of AlxTiySizCrwN (herein, x+y+z+w=1, x≧0.75, y≧0.2, 0≦z≦0.06, 0≦w≦0.08) and disposed on the alumina layer.
    • 提供一种用于切削工具的涂层,作为通过使用下述方法从底部以TiN层,TiCN层,结合层,氧化铝(Al 2 O 3)层和覆盖层的顺序层叠并形成的硬涂层 化学气相沉积(CVD)方法,能够提高切割性能,因为涂层的表面残余应力可以通过调节覆盖层的组成而保持在压缩应力状态,而不使用单独的附加工艺,例如 作为喷砂操作,或CVD和物理气相沉积(PVD)的混合过程,并且同时覆盖层也可以用作耐磨层。 根据本发明的涂层通过使用CVD法形成在母体表面上,其中涂层包括由α相形成的氧化铝层,其设置在母体材料上并由具有 在其中混合的柱状晶体结构和等轴晶体结构,以及由Al x Ti y Si z Cr w N(这里,x + y + z + w =​​ 1,x> = 0.75,y> = 0.2,0 @ z @ 0.06,0 w@0.08)并设置在氧化铝层上。
    • 9. 发明授权
    • Image sensor for measuring illumination, proximity and color temperature
    • 用于测量照度,接近度和色温的图像传感器
    • US08658975B2
    • 2014-02-25
    • US12793066
    • 2010-06-03
    • Byoung-Su LeeChan-Ki KimYoung-Ho Seo
    • Byoung-Su LeeChan-Ki KimYoung-Ho Seo
    • G02F1/01H01L31/00
    • G01S17/89G01J3/02G01J3/0208G01J3/027G01J3/0278G01J3/51G01J3/513G01S7/4816G01S7/491G01S17/87H04N5/2256H04N5/33H04N5/3696
    • Disclosed is an image sensor for measuring illumination, proximity and color temperature, including: a light source unit configured to irradiate infrared with a wavelength of a specific band onto an object; a light source controller configured to control power supplied to the light source unit; an infrared transmission filter configured to allow only the infrared and visible ray with the wavelength of the specific band among light incident through a lens after being reflected by the object to selectively transmit therethrough; a first sensing unit provided with an image pixel for acquiring an image of the object introduced through the infrared transmission filter; and a second sensing unit configured to receive the infrared and the visible ray having passed through the infrared transmission filter and measure current illumination, proximity to the object and color temperature of the object.
    • 公开了一种用于测量照明,接近度和色温的图像传感器,包括:光源单元,被配置为将具有特定波段的波长的红外线照射到物体上; 光源控制器,被配置为控制提供给所述光源单元的电力; 红外线透射滤光器,其被配置为仅在被物体反射后仅允许通过透镜入射的光中的特定波段的红外线和可见光线从而选择性地透射; 第一感测单元,设置有用于获取通过红外线透射滤光器引入的物体的图像的图像像素; 以及第二感测单元,被配置为接收已经穿过红外线透射滤光器的红外线和可见光,并且测量当前照明,物体的接近度和物体的色温。