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    • 6. 发明授权
    • Coated carbide tap
    • 涂层碳化物龙头
    • US07147939B2
    • 2006-12-12
    • US10375299
    • 2003-02-27
    • Willard E. HendererAnakkavur T. SanthanamSadayuki Akaki
    • Willard E. HendererAnakkavur T. SanthanamSadayuki Akaki
    • B23G1/00
    • C23C30/005B23G5/06B23G2200/26B23G2225/36B23G2225/48B23G2225/56B23G2225/60B23P15/52Y10T428/30
    • A coated carbide tap comprises a substrate consisting of tungsten carbide cemented with 12 to 16% by weight cobalt with additions of small amounts of transition metal carbides added to restrain grain growth, and may also contain low levels of impurities that might be picked up during processing. The substrate is coated with a layer of metal nitrides, carbides, carbonitrides, borides and/or oxides, the metal being chosen from one or more of the following: aluminum, silicon and the transition metals from Groups IVa, Va, and VIa of the Periodic Chart. The coating may comprise a monolayer and/or alternating layers optionally with varying chemical composition. To reduce friction, a top outer layer comprised of molybdenum disulphide; molybdenum disulphide and transition metals, or any combination thereof; carbon; carbon and transition metal carbides, or any combination thereof; carbon and a transition metal, or any combination thereof; and/or carbon nitride may be either co-deposited as a single layer or deposited in multiple or alternating layers to the coating. The coated carbide tap of the invention can be used at cutting speeds at least three times faster than conventional taps without chipping or breaking the tap.
    • 涂覆的硬质合金龙头包括由碳化钨组成的基材,该碳化钨与12至16重量%的钴结合,加入少量的过渡金属碳化物以抑制晶粒生长,并且还可含有在加工过程中可能被拾取的低水平杂质 。 该衬底涂覆有一层金属氮化物,碳化物,碳氮化物,硼化物和/或氧化物,金属选自以下的一种或多种:铝,硅和来自第Ⅳa,Ⅴa和Ⅵa族的过渡金属 定期图。 涂层可以包括任选具有不同化学组成的单层和/或交替层。 为了减少摩擦,由二硫化钼组成的顶部外层; 二硫化钼和过渡金属,或其任何组合; 碳; 碳和过渡金属碳化物,或其任何组合; 碳和过渡金属,或其任何组合; 和/或碳氮化物可以共沉积为单层或以多层或交替层沉积到涂层。 本发明的涂覆硬质合金丝锥的切割速度可以比传统的丝锥快至少三倍,而不会破裂或破碎龙头。
    • 8. 发明授权
    • High-speed forming tap
    • 高速成型龙头
    • US07468001B2
    • 2008-12-23
    • US10549452
    • 2004-03-02
    • Sadayuki AkakiMasao MitsuiWillard E. Henderer
    • Sadayuki AkakiMasao MitsuiWillard E. Henderer
    • B21H3/02
    • B23G5/06Y10T408/90467Y10T408/906
    • A high-speed forming tap (1) for cutting and forming a female screw by cutting edges (E) of a screw portion (2) fed in synchronous with the rotation of a machine tool. The high-speed forming tap is characterized in that chamfers (CF) are provided at a bevel lead (2a) of the screw part (2). The chamfers (CF) start from the cutting edge (E) and are provided along ridgelines (R) between a crest face (2e) and flanks, or a following flank (2c) and a leading flank (2d). This structure enables the shape of the edges of the tap leading portion to be stably maintained and high-speed, smooth female screw cutting with high accuracy, and provides a tap with long life.
    • 一种用于通过与机床的旋转同步进给的螺杆部分(2)的切削刃(E)切割和形成内螺纹的高速成形龙头(1)。 高速成形龙头的特征在于,在螺钉部分(2)的斜面引线(2a)处设置倒角(CF)。 倒角(CF)从切削刃(E)开始,并且沿着顶面(2e)和侧面之间的棱线(R)或后刀面(2c)和前翼(2d)设置。 这种结构使得龙头引导部分的边缘的形状能够稳定地保持,并且高精度地进行高速,平滑的内螺纹切割,并提供长寿命的丝锥。
    • 10. 发明申请
    • High-speed forming tap
    • 高速成型龙头
    • US20060127193A1
    • 2006-06-15
    • US10549452
    • 2004-03-02
    • Sadayuki AkakiMasao MitsuiWillard Henderer
    • Sadayuki AkakiMasao MitsuiWillard Henderer
    • B23B51/00
    • B23G5/06Y10T408/90467Y10T408/906
    • A high-speed forming tap (1) for cutting and forming a female screw by cutting edges (E) of a screw portion (2) fed in synchronous with the rotation of a machine tool. The high-speed forming tap is characterized in that chamfers (CF) are provided at a bevel lead (2a) of the screw part (2). The chamfers (CF) start from the cutting edge (E) and are provided along ridgelines (R) between a crest face (2e) and flanks, or a following flank (2c) and a leading flank (2d). This structure enables the shape of the edges of the tap leading portion to be stably maintained and high-speed, smooth female screw cutting with high accuracy, and provides a tap with long life.
    • 一种用于通过与机床的旋转同步进给的螺杆部分(2)的切削刃(E)切割和形成内螺纹的高速成形龙头(1)。 高速成形龙头的特征在于,在螺钉部分(2)的斜面引线(2a)上设置倒角(CF)。 倒角(CF)从切削刃(E)开始,并且沿着顶面(2e)和侧面之间的棱线(R),或后边缘(2c)和前侧面(2d)设置。 这种结构使得龙头引导部分的边缘的形状能够稳定地保持,并且高精度地进行高速,平滑的内螺纹切割,并提供长寿命的丝锥。