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    • 1. 发明申请
    • COATED CUTTING TOOL AND METHOD FOR PRODUCING THE SAME
    • 涂层切割工具及其制造方法
    • WO1994028191A1
    • 1994-12-08
    • PCT/JP1994000882
    • 1994-05-31
    • SUMITOMO ELECTRIC INDUSTRIES, LTD.UCHINO, KatsuyaNOMURA, ToshioOHARA, HisanoriCHUDO, MasuoKOBAYASHI, Mitsunori
    • SUMITOMO ELECTRIC INDUSTRIES, LTD.
    • C23C16/30
    • C23C16/34C23C16/32C23C16/36C23C30/005Y10T428/12049Y10T428/12576
    • A coated cutting tool suitable for high speed cutting process and a method for producing the same, the tool comprising a base material formed of tungsten-carbide-based cemented carbide and a coating layer on the base material comprising in turn an internal layer and an external layer, wherein the internal layer consists of a single layer of titanium carbonitride in contact with the base material, a double layer consisting of a 0.1 to 2 mu m thick titanium nitride layer in contact with the base material and a titanium carbonitride layer directly thereon, and a multi-layer prepared by applying another coating of titanium carbide to the titanium carbonitride layer, the tool being characterized in that the chlorine content of the internal layer is 0.05 atomic % or less on average, the peak strength ratio of a specific plane falls within a specific range when the titanium carbonitride is X-ray diffracted, or the internal layer constituting the coating layer consists of a first layer of titanium nitride that contacts the base material and a second layer, placed on the first one, has a hardness ranging from 1600 to 2400 kg/mm . The realized coating has high wear-resistance, and the coating film and the base material are strongly bonded to each other, thereby providing superior peeling resistance during cutting.
    • 一种适用于高速切削加工的涂层切削工具及其制造方法,该工具包括由碳化钨基硬质合金形成的基体材料和基材上的涂层,该涂层依次包括内层和外层 层,其中所述内层由与所述基材接触的单层碳氮化钛组成,由与所述基材接触的0.1至2μm厚的氮化钛层和直接在其上的碳氮化钛层组成的双层, 以及通过将另一碳化钛涂层应用于碳氮化钛层而制备的多层,其特征在于,内层的氯含量平均为0.05原子%以下,特定面的峰值强度比下降 在碳氮化钛为X射线衍射的特定范围内,或构成被覆层的内层由第一层钛 与基材接触的氮化铟和置于第一层上的第二层具有1600至2400kg / mm 2的硬度。 实现的涂层具有高耐磨性,并且涂膜和基材彼此牢固地结合,从而在切割期间提供优异的抗剥离性。
    • 6. 发明申请
    • OBJECT EXTRACTION APPARATUS
    • 对象提取装置
    • WO03063083B1
    • 2004-05-13
    • PCT/JP0300629
    • 2003-01-24
    • SHARP KKNOMURA TOSHIOIKAI TOMOHIRO
    • NOMURA TOSHIOIKAI TOMOHIRO
    • G06T1/00G06F3/033G06F3/048G06T5/00G06T7/60H04N1/387G06T7/20
    • G06F3/04845G06T7/12G06T7/149
    • An image input from an image input unit (1) is displayed on a display unit (4) and transmitted to an object extraction unit (2). An initial contour setting unit (5) sets a graphic of a predetermined size at a predetermined position on the screen and the display unit (4) superimposes the graphic on the input image to be displayed. The initial contour can be moved vertically and horizontally by a moving unit (6) and can be magnified/demagnified by a magnification/demagnification unit (7). When the initial contour is moved to a desired position and has a desired size, the contour is confirmed as the initial contour to be used for an object extraction by a decision unit (8). In the object extraction unit (2), an object is extracted by using the input image and the initial contour. The object extracted is recorded onto a recording medium by recording/reproducing unit (3). When this is reproduced, it is displayed on the display unit (4). Thus, it is possible to rapidly set an initial contour by a simple operation without providing a particular input device.
    • 从图像输入单元(1)输入的图像被显示在显示单元(4)上并被发送到对象提取单元(2)。 初始轮廓设置单元(5)在屏幕上的预定位置设置预定尺寸的图形,并且显示单元(4)将图形叠加在要显示的输入图像上。 初始轮廓可通过移动单元(6)垂直和水平移动,并可通过放大/缩小单元(7)进行放大/缩小。 当初始轮廓移动到期望位置并具有期望的尺寸时,轮廓被确认为用于由判定​​单元(8)提取物体的初始轮廓。 在对象提取单元(2)中,通过使用输入图像和初始轮廓来提取对象。 所提取的对象由记录/再现单元(3)记录在记录介质上。 当再现时,显示在显示单元(4)上。 因此,可以通过简单的操作快速地设置初始轮廓,而不需要提供特定的输入装置。