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Study on the mechanical analysis and the testing technology of the optical fiber cables released from the bobbin

机译:绕线架释放出的光缆的力学分析和测试技术研究

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Accurate measurements of forces applied to the optical cable reels with high spinning speeds, will render information on the breakdown of optical fibers, and thus improve the odds of success and un-winding efficiency. In this paper we analyze and deduce the cable wire stress at high pay-off speeds. A high-sensitive opti-mechanical testing sensory device is designed to measure both the axial tension of the cables and the radial pressure of the cable reels at varying stress points simultaneously. The time resolution of this new device is less than 0.015ms, the response time is up to 15 μs, and its sensitivity is about 500pc/N, which satisfies the mechanical testing requirements at high spinning speeds. In addition, the spinning speed of 260m/s led to the break-down of the optical fibers, and the spinning speed of 250m/s tested finally led to a deceleration near the end of the broken fibers. It is obvious that this kit can meet the requirement to obtain the periodic signals of the varying forces for each layer and each turn of optical fiber cables. Moreover, we found that the pay-off fiber cable is safe with the unwinding speed of 250m/s and the break-down of optical cables happens during the deceleration process. However, it is under the unwinding speed of 260m/s that pay-off fiber cables broke during the experiment. The abnormal breakdown signals are captured at these unwinding speeds, respectively.
机译:精确测量以高自旋速度施加到光缆卷轴上的力,将提供有关光纤故障的信息,从而提高成功几率和放卷效率。在本文中,我们分析并推论了在高放线速度下的电缆线应力。设计了一种高灵敏度的光学机械测试传感设备,可以同时测量在不同应力点处电缆的轴向张力和电缆卷轴的径向压力。这种新设备的时间分辨率小于0.015ms,响应时间高达15μs,其灵敏度约为500pc / N,可以满足高旋转速度下的机械测试要求。此外,260m / s的纺丝速度导致光纤断裂,而测试的250m / s的纺丝速度最终导致断裂纤维末端附近的减速。显然,该套件可以满足获取每一层和每一匝光缆变化力的周期性信号的要求。此外,我们发现放线速度为250m / s时放线光纤是安全的,并且在减速过程中会发生光缆的断裂。但是,在放线速度为260m / s的情况下,放线光缆在实验过程中断裂。异常击穿信号分别以这些退绕速度被捕获。

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