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    • 41. 发明申请
    • METHOD OF MACHINING DISSIMILAR MATERIALS
    • 加工异形材料的方法
    • US20160243623A1
    • 2016-08-25
    • US14707300
    • 2015-05-08
    • FORD MOTOR COMPANY
    • Patrick Russell BLOSSBrian Scott PHILLIPS
    • B23B5/16
    • B23B1/00B23B2220/04B23B2222/84B23B2228/24B23B2240/16B23B2260/07
    • Methods of machining a component including multiple dissimilar materials are disclosed. One method may include making a first cut in the component to remove at least a portion of a hardest material in the component and making a second cut in the component along a second cutting-path that does not include the hardest material. The first cut may expose a cut surface in the component and the second cut may extend through the cut surface. The cuts may be made using a turning operation and different cutting tools may be used for the first and second cuts. The hardest material may have a hardness of at least 50 HRC and the remaining materials may have a hardness of at most 45 HRC. The disclosed methods may be used to form a thrust face surface in a shell and sun gear assembly to extend tool life and reduce scrap.
    • 公开了包括多个不同材料的部件的加工方法。 一种方法可以包括在部件中进行第一次切割以去除部件中最硬的材料的至少一部分,并且沿着不包括最硬材料的第二切割路径对部件进行第二次切割。 第一切割可以暴露部件中的切割表面,并且第二切口可以延伸穿过切割表面。 可以使用车削操作来制造切口,并且可以使用不同的切削工具用于第一和第二切口。 最硬的材料可具有至少50HRC的硬度,其余的材料可具有至多45HRC的硬度。 所公开的方法可用于在外壳和太阳齿轮组件中形成推力面表面,以延长刀具寿命并减少废料。
    • 45. 发明授权
    • Core cutter
    • 芯刀
    • US08794880B2
    • 2014-08-05
    • US12664643
    • 2007-06-15
    • Masaaki Miyanaga
    • Masaaki Miyanaga
    • B23B51/04
    • B23B51/04B23B51/0433B23B2226/27B23B2240/08B23B2240/16B23B2270/30B28D1/041Y10T408/895Y10T408/8957
    • A core cutter includes a tubular body portion and a plurality of cutting blades arranged at a tip end of the body portion at predetermined intervals in a circumferential direction. At least one cutting blade serves as an inner cutting blade, and the remaining cutting blades serve as outer cutting blades. Through grooves penetrate a tip end of the body portion to open toward a tip end side of the core cutter. Each of the cutting blades having the same circumferential-direction size as the through groove. Gullets are configured to discharge the chips, each of the gullets formed by an outer peripheral surface. The cutting blades are welded to through grooves such that a radially inner end of an axial-direction tip end portion of each of the cutting blades coincides with or substantially coincides with a peripheral surface of an axial-direction tip end portion of the gullet.
    • 芯切割器包括管状体部分和沿圆周方向以预定间隔布置在主体部分的尖端处的多个切割刀片。 至少一个切割刀片用作内切割刀片,其余的切割刀片用作外切割刀片。 贯通槽穿透主体部分的前端朝向芯刀的前端侧开口。 每个切割刀片具有与通孔相同的圆周方向尺寸。 齿槽构造成排出芯片,每个齿槽由外周表面形成。 切割刀片通过槽焊接,使得每个切割刀片的轴向前端部的径向内端与齿槽的轴向前端部的周面重合或大致重合。
    • 46. 发明申请
    • Core Cutter
    • 核心切割机
    • US20100226728A1
    • 2010-09-09
    • US12664643
    • 2007-06-15
    • Masaaki Miyanaga
    • Masaaki Miyanaga
    • B23B51/04
    • B23B51/04B23B51/0433B23B2226/27B23B2240/08B23B2240/16B23B2270/30B28D1/041Y10T408/895Y10T408/8957
    • A core cutter includes a body portion 1 and a plurality of cutting blades 2 arranged at intervals in a circumferential direction. At least one of the cutting blades serves as an inner cutting blade, and the remaining cutting blades 2 serve as outer cutting blades. The thickness of the body portion maintains distortion resistance of the body portion. Through grooves penetrating a tip end of the body portion are formed toward a tip end side. The cutting blades are attached to the through grooves 3, and have the same size as the through groove 3. Gallets discharge the chips, with each of the gallets formed by an outer peripheral surface. The cutting blades are welded to the grooves such that a tip end portion coincides with a peripheral surface of an axial-direction tip end of the gallet.
    • 芯切割器包括主体部分1和沿圆周方向间隔设置的多个切割刀片2。 至少一个切割刀片用作内切割刀片,其余的切割刀片2用作外切割刀片。 主体部分的厚度保持主体部分的抗扭曲性。 贯穿主体部的前端的贯通槽朝向前端侧形成。 切割刀片附接到通孔3,并且具有与通孔3相同的尺寸。由于每个托盘由外周面形成,所以将切屑排出。 切割刀片焊接到凹槽,使得尖端部分与银针的轴向尖端的外周表面重合。