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Design Optimization of a Compact Double-Ended-Tuning-Fork-Based Resonant Accelerometer for Smart Spindle Applications

机译:用于智能主轴应用的紧凑型基于双音叉的谐振加速度计的设计优化

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摘要

With the rapid developments of the Industrial Era 4.0, numerous sensors have been employed to facilitate and monitor the quality of machining processes. Among them, accelerometers play an important role in chatter detection and suppression for reducing the tool down-time and increasing manufacturing efficiency. To date, most commonly seen accelerometers have relatively large sizes such that they can be installed only on the housing of spindles or the surfaces of workpieces that may not be able to directly capture actual vibration signals or obstruct the cutting process. To address this challenge, this research proposed a compact, wide-bandwidth resonant accelerometer that could be embedded inside high-speed spindles for real-time chatter monitoring and prediction. Composed of a double-ended tuning fork (DETF), a proof mass, and a support beam, the resonant accelerometer utilizes the resonance frequency shift of the DETF due to the bending motions of the structure during out-of-plane accelerations as the sensing mechanism. The entire structure based on commercially available quartz tuning forks (QTFs) with electrodes for symmetric-mode excitations. The advantages of this structure include low noise and wide operation bandwidth thanks to the frequency modulation scheme. A theoretical model and finite element analysis were conducted for designs and optimizations. Simulated results demonstrated that the proposed accelerometer has a size of 9.76 mm × 4.8 mm × 5.5 mm, a simulated sensitivity of 0.94 Hz/g, and a simulated working bandwidth of 3.5 kHz. The research results are expected to be beneficial for chatter detection and intelligent manufacturing.
机译:随着工业时代4.0的快速发展,已经采用了许多传感器来促进和监控加工过程的质量。其中,加速度计在颤振检测和抑制中起着重要作用,以减少工具的停机时间并提高制造效率。迄今为止,最常见的加速度计具有相对较大的尺寸,因此它们只能安装在可能无法直接捕获实际振动信号或阻碍切削过程的主轴外壳或工件表面上。为了应对这一挑战,本研究提出了一种紧凑的宽带谐振加速度计,该加速度计可以嵌入高速主轴中,以进行实时颤振监测和预测。共振加速度计由双端音叉(DETF),检测质量和支撑梁组成,利用平面外加速度期间结构弯曲运动引起的DETF共振频率偏移作为传感机制。整个结构基于市售的石英音叉(QTF),带有用于对称模式激励的电极。由于采用了频率调制方案,这种结构的优点包括低噪声和宽工作带宽。为设计和优化进行了理论模型和有限元分析。仿真结果表明,该加速度计的尺寸为9.76 mm×4.8 mm×5.5 mm,模拟灵敏度为0.94 Hz / g,模拟工作带宽为3.5 kHz。研究结果有望对颤振检测和智能制造有所帮助。

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