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    • 3. 发明授权
    • Pressure molding machine for various stepped articles
    • 压力成型机用于各种各样的文章
    • US5238375A
    • 1993-08-24
    • US832875
    • 1992-02-10
    • Keita Hirai
    • Keita Hirai
    • B22F3/02B22F3/03B22F3/035B22F5/08B22F5/10B30B11/02
    • B30B11/02
    • A pressure molding machine for molding various types of stepped articles having, a nest of ram adapters receiving thereon pressure rams and a common base support having cylindrical walls positioned coaxially. The end faces of the walls are at the same level for receiving thereon base ends of the ram adapters, and a nest of movable frames each operated by a pressure cylinder. The movable frames move along guide channels provided in the cylindrical walls of the common base support for operating the ram adapters. Total length and total weight of the machine can be minimized, a die-set is easy for manufacturing, mounting and exchanging, and costs for the equipment can also be minimized.
    • 一种用于模制各种类型的阶梯式制品的压力成型机,其具有在其上接纳压力柱塞的压头适配器的套和具有同轴定位的圆柱形壁的公共基座支撑件。 壁的端面位于相同的水平面上,用于接收压头适配器的基端,以及每个由压力缸操作的可移动框架。 可移动框架沿着设置在公共基座支撑件的圆柱形壁中的引导通道移动,用于操作压头适配器。 机器的总长度和总重量可以最小化,模具易于制造,安装和交换,并且设备的成本也可以最小化。
    • 6. 发明申请
    • Powder-sintered multi-layer tool part and manufacturing method thereof
    • 粉末烧结多层工具部件及其制造方法
    • US20050089710A1
    • 2005-04-28
    • US10739452
    • 2003-12-17
    • Keita HiraiAkira Hirai
    • Keita HiraiAkira Hirai
    • B22F7/06B32B15/01B32B15/04
    • B32B15/01B22F7/06B22F2005/001C22C29/06Y10T428/12576Y10T428/12681
    • A powder-sintered multi-layer tool part and a manufacturing method thereof adapted to manufacture a tool part in multi-layer form by integrally sintering and forming a super hardness metal layer with a soft metal layer having a high toughness via a powder-sintering method, thereby making it possible for the abrasion resistance characteristic of the super high hardness metal layer to be compatible with the mountability characteristic of the soft metal layer. The powder-sintered multi-layer tool part comprises: a first super hardness metal layer containing a vanadium carbide powder 20-90% by weight and a pure titanium powder or a titanium alloy powder 10-80% by weight, the titanium alloy powder containing a titanium component 60% by weight or more, thereby forming an aggregate mixed powder of 100% by weight and having a predetermined high hardness; and a second soft metal layer having a mounting part and containing said pure titanium powder or said titanium alloy powder 100% by weight, and wherein the metal powders of the first super hardness metal layer and the second soft metal layer are integrally pressed and sintered under a predetermined temperature.
    • 一种粉末烧结多层工具部件及其制造方法,其适用于通过粉末烧结法一体烧结并形成具有高韧性的软金属层的超硬金属层来制造多层形式的工具部件 从而使得超高硬度金属层的耐磨特性可以与软金属层的安装特性相兼容。 粉末烧结多层工具部件包括:含有20-90重量%的碳化钒粉末和纯钛粉末或10-80重量%的钛合金粉末的第一超硬金属层,含有 60重量%以上的钛成分,由此形成100重量%的骨料混合粉末并具有预定的高硬度; 以及第二软金属层,其具有安装部,并且含有所述纯钛粉末或所述钛合金粉末100重量%,并且其中所述第一超硬金属层和所述第二软金属层的金属粉末被一体地压制并烧结在 预定温度。
    • 7. 发明授权
    • Cutting tool of a titanium alloy complex
    • 钛合金复合材料切割工具
    • US5864955A
    • 1999-02-02
    • US838497
    • 1997-04-07
    • Keita Hirai
    • Keita Hirai
    • B23B27/14B22F7/06B26B9/00B26B13/00B26D1/00C22C1/04C22C14/00
    • C22C1/0458B22F7/06B26B9/00B26D1/0006B26D2001/002
    • A cutting tool consists of at least one cutting blade. The cutting blade is composed of a blade body, a shank, and a blade edge. The blade body and shank are composed of a titanium alloy having a hardness of less than 20RC. The blade edge is composed of a titanium alloy having a hardness of greater than 35RC. The blade body and blade edge are connected by an intermediate border layer, formed during molding and sintering steps in the production of the cutting blade. The blade body, shank, and blade edge are all formed as a single body. The method for forming the cutting blade comprises the steps of molding different titanium alloy powders at a pressure between 2 and 15 tons/cm.sup.2, followed by sintering at 1100.degree. C. to 1300.degree. C.
    • 切割工具由至少一个切割刀片组成。 切割刀片由刀片主体,柄部和刀刃组成。 刀体和柄部由硬度小于20RC的钛合金构成。 叶片边缘由硬度大于35RC的钛合金构成。 叶片主体和叶片边缘通过在切割刀片的生产中的模制和烧结步骤期间形成的中间边界层连接。 刀体,柄和刀刃都形成为单体。 用于形成切割刀的方法包括以2-15吨/ cm2的压力成型不同的钛合金粉末,然后在1100℃至1300℃下烧结的步骤。