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    • 2. 发明授权
    • Solid end mill for finishing the face or side of hard work
    • 固体立铣刀用于完成工作的面部或侧面
    • US5190420A
    • 1993-03-02
    • US830505
    • 1992-01-31
    • Kiyoshi KishimotoShigeyasu Yodoshi
    • Kiyoshi KishimotoShigeyasu Yodoshi
    • B23C5/10
    • B23C5/10Y10T407/1948Y10T407/1966
    • An end mill for finishing the face or side of hard work comprising a shank, a plurality of helix cutting edges on the periphery of the end mill, and a cutting edge section perpendicular to the axis of the end mill having a polygonal shape with three or more angles, the cutting edge being the edge formed at each vertex of the polygonal shape along the axis of the end mill and being circumscribed by an imaginary cylinder, and the end mill being characterized in that the helix direction of the cutting edge is identical to the rotational direction of the end mill. The end mill of the present invention is able to cut the face or side of the hard work at a feed rate several times higher than that of conventional end mills. Moreover, the end mill of the present invention assures superior surface roughness of finished work.
    • 用于完成硬质工作面或侧面的端铣刀,其包括柄,端铣刀的周边上的多个螺旋切削刃以及垂直于端铣刀的轴线的切削刃部分,该切削刃部分具有多边形形状,具有三个或 更多的角度,切割边缘是沿着端铣刀的轴线形成在多边形形状的每个顶点处并被假想圆筒包围的边缘,并且端铣刀的特征在于,切削刃的螺旋方向与 端铣刀的旋转方向。 本发明的端铣刀能够以比传统的立铣刀高出几倍的进给速率切割加工件的表面或侧面。 此外,本发明的立铣刀确保了成品加工的优异的表面粗糙度。
    • 3. 发明授权
    • End mill
    • 立铣刀
    • US4497600A
    • 1985-02-05
    • US482973
    • 1983-04-07
    • Kiyoshi Kishimoto
    • Kiyoshi Kishimoto
    • B23C5/10B26D1/12
    • B23C5/10B23C2210/088Y10T407/1946Y10T407/1958Y10T407/1962Y10T407/1966
    • An end mill has a plural number of helical blades formed on the main body of a machine tool. Each of the blades is provided with a plural number of notches spaced along its length and shifted relative to the corresponding notches in the preceding blade. When the notch is shifted to the tool end of the tool, the notch is inclined toward the shank end. On the other hand, when the notches are shifted toward the shank end of the tool, the notches are inclined in the opposite direction, i.e. toward the tool end. Therefore, the wear by rubbing on the side of the blade is diminished, the cutting resistance is decreased and the cutting performance is increased.
    • 端铣刀具有形成在机床主体上的多个螺旋叶片。 每个叶片具有沿其长度间隔开的多个凹口,并相对于前一个叶片中的相应凹口移动。 当切口移动到工具的工具端时,凹口朝向柄端部倾斜。 另一方面,当切口朝向工具的柄端移动时,凹口在相反方向上倾斜,即朝向工具端。 因此,通过在叶片侧摩擦的磨损减小,切削阻力降低,切削性能提高。
    • 4. 发明授权
    • Engine spark plug grounding structure, grounding wiring apparatus, and grounding wiring method
    • 发动机火花塞接地结构,接地线路设备和接地线路方式
    • US07124725B2
    • 2006-10-24
    • US10504335
    • 2002-12-24
    • Kiyoshi KishimotoHiroshi Yamashita
    • Kiyoshi KishimotoHiroshi Yamashita
    • H01T13/04
    • F02P13/00H01T13/08H01T13/32
    • A grounding member made of a spring steel includes a hexagonal top with a through hole, contact pieces extending from straight sides of the hexagonal top, and a grounding strip brazed to one of the contact pieces. The grounding member attaches to a spark plug with a spark plug insulator passing through the through-hole. The contact pieces pressure contact a peripheral surface of a hexagonal nut of the spark plug. A grounding wire is connected to a negative electrode of a battery. Electric charges generated in a spark gap are returned to the battery negative electrode from an external electrode of the spark plug via a spark plug housing, the grounding member, and the grounding wire. If the spark plug is loosely fitted in an engine cylinder head, or even if some engine body components are aged, electric charges flow without problems, preventing reduction of discharging performance.
    • 由弹簧钢制成的接地构件包括具有通孔的六边形顶部,从六边形顶部的直边延伸的接触片和钎焊到接触片之一的接地片。 接地件附着在火花塞上,火花塞绝缘体穿过通孔。 接触件压力接触火花塞的六角形螺母的外周表面。 接地线连接到电池的负极。 在火花隙中产生的电荷经由火花塞壳体,接地部件和接地线从火花塞的外部电极返回到电池负极。 如果火花塞松动地安装在发动机气缸盖中,或者即使一些发动机主体部件老化,则电荷流动没有问题,防止排放性能的降低。
    • 5. 发明申请
    • Engine spark plug grounding structure, grounding wiring apparatus, and grounding wiring method
    • 发动机火花塞接地结构,接地线路设备和接地线路方式
    • US20050206288A1
    • 2005-09-22
    • US10504335
    • 2002-12-24
    • Kiyoshi KishimotoHiroshi Yamashita
    • Kiyoshi KishimotoHiroshi Yamashita
    • F02P13/00H01T13/08H01T13/32H01T13/20
    • F02P13/00H01T13/08H01T13/32
    • A grounding member made of a spring steel includes a hexagonal top with a through hole, contact pieces extending from straight sides of the hexagonal top, and a grounding strip brazed to one of the contact pieces. The grounding member attaches to a spark plug with a spark plug insulator passing through the through-hole. The contact pieces pressure contact a peripheral surface of a hexagonal nut of the spark plug. A grounding wire is connected to a negative electrode of a battery. Electric charges generated in a spark gap are returned to the battery negative electrode from an external electrode of the spark plug via a spark plug housing, the grounding member, and the grounding wire. If the spark plug is loosely fitted in an engine cylinder head, or even if some engine body components are aged, electric charges flow without problems, preventing reduction of discharging performance.
    • 由弹簧钢构成的接地构件包括具有通孔的六边形顶部,从六边形顶部的直边延伸的接触片和钎焊到接触片之一的接地片。 接地件附着在火花塞上,火花塞绝缘体穿过通孔。 接触件压力接触火花塞的六角形螺母的外周表面。 接地线连接到电池的负极。 在火花隙中产生的电荷经由火花塞壳体,接地部件和接地线从火花塞的外部电极返回到电池负极。 如果火花塞松动地安装在发动机气缸盖中,或者即使一些发动机主体部件老化,则电荷流动没有问题,防止排放性能的降低。