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    • 3. 发明申请
    • Coupling Mechanism For Connecting A Toolholder Assembly And A Machine Tool
    • 用于连接刀架组件和机床的联接机构
    • US20110085871A1
    • 2011-04-14
    • US12577830
    • 2009-10-13
    • Curtis Peter Rellick
    • Curtis Peter Rellick
    • B23C5/26
    • B23B31/006B23B2231/026B23B2231/0284B23B2231/10B23B2250/04Y10T409/30952
    • A coupling mechanism for connecting a toolholder assembly and a machine tool. The coupling mechanism includes a first component configured for removably securing the toolholder assembly to the machine tool, wherein the first component includes an axial forward end defining a bore that extends axially to an axial rearward end of the first component to form an inner surface of the first component, the first component having a plurality of apertures disposed circumferentially thereabout that extend from an outer surface of the first component to the inner surface of the first component. The coupling mechanism further includes a second component integrally formed with the first component and configured for interacting with the machine tool to position the toolholder assembly relative to the machine tool, wherein the second component defines a positioning groove on an outer surface thereof.
    • 用于连接刀架组件和机床的联接机构。 联接机构包括构造成将刀架组件可移除地固定到机床的第一部件,其中第一部件包括轴向前端,该轴向前端限定了轴向延伸到第一部件的轴向后端,以形成第二部件的内表面 所述第一部件具有从所述第一部件的外表面延伸到所述第一部件的内表面的周向设置的多个孔。 联接机构还包括与第一部件一体地形成的第二部件,并被配置为与机床相互作用以相对于机床定位刀架组件,其中第二部件在其外表面上限定定位槽。
    • 8. 发明申请
    • Smart Machining System and Smart Tool Holder Therefor
    • 智能加工系统和智能工具架
    • US20090234490A1
    • 2009-09-17
    • US12405513
    • 2009-03-17
    • Christopher A. SuprockJeff NicholsRobert JerardBarry Fussell
    • Christopher A. SuprockJeff NicholsRobert JerardBarry Fussell
    • G06F19/00B23B31/00
    • B23B31/02B23B2231/10B23C5/109B23C2260/76G05B2219/49305Y10T408/21Y10T408/57Y10T408/94
    • A smart tool holder is for use with a machine tool platform. The smart tool holder includes a body having a first end and an opposite second end, a processor disposed with the body, and a transceiver disposed with the body and in communication with the processor. The transceiver is structured to communicate with an external receiving device. The first end of the body is structured to be coupled to the machine tool platform and the opposite second end is structured to be selectively coupled to a cutting assembly having a number of sensors. The processor is structured to communicate with the number of sensors when the cutting assembly is coupled to the body. The processor may perform data analysis tasks using model based data analysis, digital filtering, and other techniques. The smart tool holder may suggest changes to the machining process based on two-way communication with a machine tool controller through a receiver or interface device.
    • 智能刀架可用于机床平台。 智能工具架包括具有第一端和相对的第二端的主体,与主体一起设置的处理器,以及与主体配置并与处理器通信的收发器。 收发器被构造成与外部接收装置进行通信。 本体的第一端被构造成联接到机床平台,并且相对的第二端被构造成选择性地联接到具有多个传感器的切割组件。 处理器构造成当切割组件联接到身体时与传感器的数量通信。 处理器可以使用基于模型的数据分析,数字滤波和其他技术来执行数据分析任务。 智能工具架可以基于通过接收器或接口装置与机床控制器的双向通信来建议对加工过程的改变。