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    • 7. 发明申请
    • METHOD TO PRODUCE A RADIAL RUN-OUT TOOL AS WELL AS A RADIAL RUN-OUT TOOL
    • 生产径向跑步工具的方法,作为径向跑步工具
    • US20150071718A1
    • 2015-03-12
    • US14479831
    • 2014-09-08
    • Kennametal Inc.
    • Herbert Rudolf KAUPER
    • B24B3/24B23C5/10B24B3/06B23B51/02
    • B24B3/242B23B51/02B23B2251/245B23B2251/248B23B2251/406B23B2251/44B23C5/10B23C2210/241B23C2210/40B23C2210/44B24B3/06B24B3/24B24B19/04Y10T407/1948Y10T408/9046
    • The radial run-out tool (2), particularly a drill or a cutter, has a basic body (12) extending in an axial direction (4) and comprises at least two chip grooves (14), to which a guide chamfer (22) is connected in the rotational direction (24), with a ridge (15) being formed between them. A radial clearance is connected to the guide chamfer (22). In order to enable simple and economical production of such type of radial run-out tool (2), an unprocessed rod (30) is ground non-concentrically, in a first process step, such that a radius (R) of the unprocessed rod (30) varies, depending on the angle, between a maximum radius (R2) and a minimum radius (R1). In a second process step, the chip grooves (14) are grounded down such that the guide chamfers (22) are formed at the positions with the maximum radius (R2) and the radius (R) is subsequently reduced downstream of the respective guide chamfer (22) in order to form the radial clearance (28).
    • 径向移出工具(2),特别是钻头或切割器具有沿轴向方向(4)延伸并包括至少两个切屑槽(14)的基体(12),引导倒角(22) )沿旋转方向(24)连接,其间形成脊(15)。 径向间隙连接到引导倒角(22)。 为了能够简单和经济地生产这种类型的径向跳动工具(2),未加工的杆(30)在第一工艺步骤中非同心地研磨,使得未加工杆的半径(R) (30)根据角度在最大半径(R2)和最小半径(R1)之间变化。 在第二工艺步骤中,芯片槽(14)接地,使得导向倒角(22)形成在最大半径(R2)的位置处,并且半径(R)随后在相应导向倒角的下游减小 (22)以形成径向间隙(28)。
    • 8. 发明授权
    • Drill and method of cutting workpiece using the same
    • 使用其切削工件的钻孔和方法
    • US08882411B2
    • 2014-11-11
    • US13260895
    • 2010-03-26
    • Yoshifumi KoikeHiroshi Ogawa
    • Yoshifumi KoikeHiroshi Ogawa
    • B23B51/02H05K3/00
    • B23B51/02B23B2251/043B23B2251/046B23B2251/245H05K3/0047Y10T408/03Y10T408/909Y10T408/9097
    • A drill of the present invention includes a first cutting edge and a second cutting edge each located at a front end of a cylindrical cutting part; a first flute and a second flute connected to the first cutting edge and the second cutting edge, respectively, in which the first and second flutes are positioned helically from a front end to a rear end on a peripheral section of the cutting part; and a first land and a second land each extended from the front end to the rear end on the peripheral section of the cutting part, in which the first and second lands are being located portions between the first flute and the second flute, respectively. The first flute and the second flute are separately extended from the front end to the rear end. The cutting part includes a first region in which a diameter of an inscribed circle in a cross section perpendicular to a rotation axis of the cutting part increases in a direction away from the front end and toward the rear end. A method of cutting a workpiece using the drill is also provided.
    • 本发明的钻头包括:第一切削刃和第二切削刃,每个切削刃位于圆柱形切削件的前端; 分别连接到第一切削刃和第二切削刃的第一凹槽和第二凹槽,其中第一和第二凹槽从切割部分的周边部分上的前端到后端螺旋地定位; 以及分别从切割部分的周边部分的前端延伸到后端的第一平台和第二平台,其中第一和第二平台分别位于第一凹槽和第二凹槽之间。 第一槽和第二槽分别从前端延伸到后端。 切割部分包括第一区域,其中垂直于切割部分的旋转轴线的横截面中的内切圆的直径沿远离前端并朝向后端的方向增加。 还提供了使用钻头切割工件的方法。
    • 10. 发明申请
    • DRILL STRUCTURE
    • 钻井结构
    • US20170066063A1
    • 2017-03-09
    • US14990424
    • 2016-01-07
    • TCT GLOBAL LIMITED
    • Nick Sung-Hao CHIENLi-Yi CHAOFeng-Yu LINMing-Yuan ZHAOChun-Yu CHEN
    • B23B51/02H05K3/00
    • B23B51/02B23B2222/80B23B2240/16B23B2240/21B23B2251/14B23B2251/18B23B2251/245B23B2251/406B23B2251/426H05K3/0047
    • A drill structure includes a shank part and a flute part. A chisel edge is formed on the front end of the flute part and two primary relief faces with tile directions toward the shank part are symmetrically formed on the two sides of the chisel edge. Each primary relief face has a cutting edge, a knife-back edge, and an outer edge. The outer edges are respectively helically extended around the periphery of the flute part to form two helical cutting edges and two helical grooves. Two assist relief faces are respectively formed on the inner walls of the two helical grooves, and every assist relief face is connected with the cutting edge of one primary relief face and portion of the knife-back edge of another primary relief face. The drill structure can decrease the thickness of the chisel edge, reduces the resistance during drilling, and increases the life.
    • 钻头结构包括柄部分和凹槽部分。 在笛部的前端形成有凿边,并且在凿边的两侧对称地形成有朝向柄部的瓦片方向的两个主浮雕面。 每个主浮雕面具有切割边缘,刀刃边缘和外边缘。 外边缘分别围绕凹槽部分的周边螺旋延伸以形成两个螺旋切割边缘和两个螺旋槽。 在两个螺旋槽的内壁上分别形成有两个辅助浮雕面,每个辅助浮雕面与一个主浮雕面的切割刃和另一个主浮雕面的刀背边缘的一部分连接。 钻头结构可以减小凿边的厚度,减少钻孔时的阻力,并延长寿命。