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    • 2. 发明申请
    • FLEXURE-BASED DYNAMOMETER FOR DETERMINING CUTTING FORCE
    • 用于确定切割力的基于挠性的动态测量仪
    • US20070277609A1
    • 2007-12-06
    • US11576200
    • 2005-09-29
    • Tony SchmitzGregory DuncanJohn Ziegert
    • Tony SchmitzGregory DuncanJohn Ziegert
    • G01H1/00
    • G01L1/10B23Q17/0971B23Q17/12
    • A high frequency flexure-based dynamometer (10) for measuring vibrations to use in determining cutting forces in a tool. The dynamometer device (10) may operate within a preselected high frequency range while measuring cutting forces less than about 1 N. The dynamometer (10) may include two coupled flexures that interact to produce vibration modes at the edge of a selected bandwidth of interest. These modes may produce a frequency response function within the desired frequency band that has a magnified response and is substantially constant. The dynamometer (10) may include a workpiece (38) mounted to one of the two flexures (12) and a one or more precision accelerometers (30) mounted to the first or second flexures. Finite element analysis may be used to optimize the flexure design.
    • 一种用于测量振动以用于确定工具中的切削力的高频挠曲力测力计(10)。 测力计装置(10)可以在测量小于约1N的切削力的同时在预选的高频范围内操作。测力计(10)可以包括两个耦合的弯曲件,其相互作用以在所选择的所选带宽的边缘产生振动模式。 这些模式可以在具有放大响应并且基本上恒定的期望频带内产生频率响应函数。 测力计(10)可以包括安装在两个挠曲件(12)中的一个上的工件(38)和安装到第一或第二挠曲件上的一个或多个精密加速度计(30)。 有限元分析可用于优化弯曲设计。
    • 4. 发明申请
    • SYSTEM AND METHOD FOR TOOL POINT PREDICTION USING MULTI-COMPONENT RECEPTANCE COUPLING SUBSTRUCTURE ANALYSIS
    • 使用多分量接收耦合分析方法进行工具点预测的系统和方法
    • US20070088456A1
    • 2007-04-19
    • US11537859
    • 2006-10-02
    • Tony SchmitzGregory Duncan
    • Tony SchmitzGregory Duncan
    • G06F19/00
    • G05B19/404G05B2219/37436
    • A method for predicting a tool point response of a spindle-holder-tool assembly to be used for high-speed machining applications is provided. The method includes determining direct and cross displacement-to-force receptances of a standard holder secured in the spindle based upon measurements of displacement-to-force taken at different rotating speeds of the spindle. The method also includes determining direct receptances at a free end of the standard holder based upon the determined direct and cross displacement-to-force receptances of the standard holder. Additionally, the method includes performing an inverse receptance coupling to simulate a decomposition of the standard holder into multiple subassemblies, the subassemblies including a spindle-holder base subassembly and an extended holder subassembly. The method further includes determining spindle-holder base subassembly receptances based upon the simulated decomposition of the standard holder.
    • 提供了一种用于预测用于高速加工应用的主轴保持器 - 工具组件的工具点响应的方法。 该方法包括基于在主轴的不同转速下获得的位移力的测量来确定固定在主轴中的标准支架的直接和横向位移到力接收。 该方法还包括基于确定的标准保持器的直接和交叉位移到力接收来确定标准保持器的自由端处的直接接收。 此外,该方法包括执行反向接收耦合以模拟标准支架分解成多个子组件,子组件包括主轴支架基座子组件和延伸的支架子组件。 该方法还包括基于标准支架的模拟分解来确定主轴支架基座子组件接收。