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Turbine blade testing technique uses mechanical vibration and detection of frequency response to determine characteristics of each blade

机译:涡轮叶片测试技术利用机械振动和频率响应检测来确定每个叶片的特性

摘要

These objects are achieved by a method of acoustically inspecting a one-piece bladed wheel in which the wheel is driven in rotation; each blade of the wheel is subjected to mechanical excitation; its acoustic response is picked up and a corresponding electrical signal is generated; its frequency response is determined by computing a FFT; the electrical signal and the associated frequency response are stored; the characteristic frequencies of each blade of the wheel are identified; and a wheel is rejected or accepted depending on whether or not the frequency distribution obtained in this way matches a predetermined set of forbidden frequency distributions. Advantageously, an additional step is provided in which the defects of a blade are determined by comparing its frequency response with predetermined frequency responses that are characteristic of various types of defect.
机译:这些目的是通过声学检查一体式有叶轮的方法来实现的,在该方法中,该叶轮被驱动旋转。车轮的每个叶片都受到机械激励;拾取其声学响应并生成相应的电信号;通过计算FFT确定其频率响应;电信号和相关的频率响应被存储;确定车轮每个叶片的特征频率;根据这种方式获得的频率分布是否与预定的一组禁止频率分布相匹配,拒绝或接受车轮。有利地,提供了附加步骤,其中,通过将叶片的频率响应与表征各种缺陷的特征的预定频率响应进行比较来确定叶片的缺陷。

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