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(V014T15A055)OPERATING STRAIN MODE IDENTIFICATION USING ACCELERATION MEASUREMENTS

机译:(V014T15A055)使用加速度测量操作应变模式识别

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The identification of strain critical regions on machinery and equipment, under operating conditions, can be accomplished by knowing the operating strain modes. Operating strain modes are interpreted as a dynamic strain distribution of the structure at a specific time or frequency. Strain measurements are conventionally obtained by strain gauge techniques. However, strain measurements with conventional strain gauges are not always possible, and the gauges are not reusable and cannot be moved from point to point when they have been attached to structures. In this paper, a post-processing technique based on Operating Deflection Shapes (ODS) is evaluated with an experimental test. Operational strain modes of an aluminum plate were identified from accelerations measured using tri-axial accelerometer. The operating modes were analyzed at frequencies close to the plate's natural frequency, previously known by numerical simulation, in the frequency range 0 - 1000 Hz. The plate was excited with random white noise signal. We used the finite element method in the displacement to strain transformation. Operational modes were compared with simulated modes, which were obtained by modal superposition. The comparisons showed consistency between experimentally and numerically identified modes. Regions of greatest strain could be identified graphically in the color map regarding the minimum and maximum strain.
机译:通过了解操作应变模式,可以实现在操作条件下对机械和设备的应变关键区域的识别。操作应变模式被解释为特定时间或频率的结构的动态应变分布。常规测量通过应变仪技术来获得常规测量。然而,具有传统应变仪的应变测​​量并不总是可能的,并且仪表不可重复使用,并且当它们已经连接到结构时,不能从点到点移动。本文通过实验测试评估了基于操作偏转形状(ODS)的后处理技术。通过使用三轴加速度计测量的加速度鉴定铝板的操作应变模式。在频率范围0 - 1000Hz的频率范围内以先前已知的平板自然频率的频率分析操作模式,以前通过数值模拟。用随机白噪声信号激发板。我们利用有限元方法在置换中转换。将操作模式与模拟模式进行比较,由模态叠加获得。比较显示在实验和数值鉴定的模式之间的一致性。可以在关于最小和最大应变的颜色图中以图形方式识别最大应变的区域。

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