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    • 3. 发明申请
    • PERSONALIZED INTERFACE FOR TORCH SYSTEM AND METHOD
    • 用于转向系统和方法的个性化接口
    • WO2009079105A1
    • 2009-06-25
    • PCT/US2008/082318
    • 2008-11-04
    • ILLINOIS TOOL WORKS INC.DANTINNE, MarkusBEISTLE, Edward
    • DANTINNE, MarkusBEISTLE, Edward
    • B23K9/095B23K9/10
    • B23K9/0953B23K9/1062
    • There is provided a system and method for quick identification and selection of torch processes based on a profile scheme. In an illustrated embodiment, a profile selectable via a one-click process may define operational parameters for one or more torch processes. Multiple profiles (114) may be identified by corresponding labels (38) that are visible on the face of the system. Furthermore, in an illustrated embodiment, the profiles and associated torch processes may be automatically stored in the system upon user configuration of the operational parameters. For example, in one embodiment, the user may select a profile and configure a welding process. Upon changing an operational parameter, it may be automatically saved to the selected profile and process. Reselection of that profile may recall the last used process and its associated parameters. The operational parameters of other configured processes may then be retrieved by selecting the desired process within the selected profile.
    • 提供了一种基于简档方案快速识别和选择火炬进程的系统和方法。 在所示实施例中,通过一键式过程可选择的轮廓可以定义一个或多个割炬过程的操作参数。 多个轮廓(114)可以由在系统的表面上可见的相应标签(38)来识别。 此外,在所示实施例中,在用户配置操作参数时,轮廓和相关联的手电筒处理可以被自动地存储在系统中。 例如,在一个实施例中,用户可以选择轮廓并配置焊接过程。 更改操作参数后,可以将其自动保存到所选配置文件和进程。 重新选择该配置文件可能会调用最后使用的过程及其相关参数。 然后可以通过选择所选择的简档中的期望的进程来检索其他配置的进程的操作参数。
    • 6. 发明申请
    • PLASMA CUTTER HAVING THERMAL MODEL FOR COMPONENT PROTECTION
    • 具有组件保护的热模型的等离子切割机
    • WO2009085373A1
    • 2009-07-09
    • PCT/US2008/080585
    • 2008-10-21
    • ILLINOIS TOOL WORKS INC.SALSICH, Anthony Van BergenBEISTLE, Edward Gerard
    • SALSICH, Anthony Van BergenBEISTLE, Edward Gerard
    • B23K9/10B23K10/00
    • B23K10/00B23K9/1006
    • A system is provided that includes a torch power unit. The torch power unit includes a monitor and/or control configured to determine a temperature of a component of the torch power unit based on the one or more inputs without a direct temperature measurement of the component. A method of operation is provided that includes receiving one or more inputs associated with a device, and estimating a temperature of the device based on the one or inputs without directly measuring temperature of the device. A tangible machine-readable medium is provided that includes code for determining a thermal capacity of the device, code for determining a thermal resistance of the device, and code for determining a temperature of the device based on thermal capacity and the thermal resistance method.
    • 提供一种包括割炬功率单元的系统。 所述割炬功率单元包括配置成基于所述一个或多个输入来确定所述割炬功率单元的部件的温度而不对所述部件进行直接温度测量的监视器和/或控制。 提供了一种操作方法,其包括接收与设备相关联的一个或多个输入,以及基于所述一个或多个输入来估计设备的温度而不直接测量设备的温度。 提供了一种有形的机器可读介质,其包括用于确定装置的热容量的代码,用于确定装置的热阻的代码以及用于基于热容量和热阻方法确定装置的温度的代码。