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Usage of I++ Simulator to Program Coordinate Measuring Machines when Common Programming Methods are difficult to apply

机译:当难以应用常见的编程方法时,使用I ++模拟器对坐标测量机进行编程

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Nowadays, simulators facilitate tasks performed daily by the engineers of different branches, including coordinate metrologists. Sometimes it is difficult or almost impossible to program a Coordinate Measuring Machine (CMM) using standard methods. This happens, for example, during measurements of nano elements or in cases when measurements are performed on high-precision (accurate) measuring machines which work in strictly air-conditioned spaces and the presence of the operator in such room during the programming of CMM could cause an increase in temperature, which in turn could make it necessary to wait some time until conditions stabilize. This article describes functioning of a simulator and its usage during Coordinate Measuring Machine programming in the latter situation. Article also describes a general process of programming CMMs which ensures the correct machine performance after starting the program on a real machine. As an example proving the presented considerations, measurement of exemplary workpiece, which was performed on the machine working in the strictly air-conditioned room, was described.
机译:如今,模拟器简化了由不同部门的工程师(包括协调计量师)每天执行的任务。有时很难或几乎不可能使用标准方法对坐标测量机(CMM)进行编程。例如,在纳米元素的测量过程中,或者在高精度(准确)的测量机上进行测量的情况下,这种情况会发生在严格的空调空间中,并且在进行CMM编程时,操作员会出现在这种房间中,这会发生导致温度升高,这又可能需要等待一段时间,直到条件稳定下来。本文介绍了在后者情况下坐标测量机编程期间模拟器的功能及其用法。本文还介绍了对CMM进行编程的一般过程,该过程可确保在实际计算机上启动程序后确保正确的计算机性能。作为证明所提出的考虑的示例,描述了在严格空调房间内工作的机器上执行的示例性工件的测量。

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