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Vibration response due to lateral tape motion and impulse force in a linear tape drive

机译:磁带的横向运动和脉冲力引起的振动响应

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摘要

Next-generation, high track-density linear tape drives will require improved tape guiding and dimensional stability in order to achieve better performance and higher storage capacities. Drive vibrations, tape degradation, debris formation, and tape guiding all contribute to unwanted lateral tape motion, which can lead to write errors on the tape. Collisions between the guide and tape edge can be simulated as single-impact events by dropping a mass onto a lever situated below the bottom tape edge. The objective of this study is to evaluate the frequency content of measured lateral tape motion under various operating conditions. The effect of impact location and impulse energy is investigated in a static test where the tape drive is not in operation (tape is stationary). Next, a dynamic test is performed to study the effects of tape speed, tape tension, impact energy, and tape thickness. Finally a durability wear test is conducted to determine the effects of cycling up to 5000 cycles. Lateral tape motion is recorded and the power spectrum density of the signal is determined for each test. Additionally, optical microscopy is employed to quantify the quality of the tape edge after wear testing to investigate any correlation between tape wear and frequency analysis.
机译:下一代高磁道密度线性磁带驱动器将需要改进的磁带导引和尺寸稳定性,以实现更好的性能和更高的存储容量。驱动器振动,磁带退化,碎屑形成和磁带引导都会导致不必要的横向磁带运动,从而可能导致磁带上的写入错误。通过将质量块放到位于底部磁带边缘下方的杠杆上,可以将导板和磁带边缘之间的碰撞模拟为单次撞击事件。这项研究的目的是评估在各种操作条件下测得的横向磁带运动的频率含量。在磁带机未运行(磁带固定)的静态测试中研究了冲击位置和脉冲能量的影响。接下来,进行动态测试以研究胶带速度,胶带张力,冲击能量和胶带厚度的影响。最后,进行耐久性磨损测试,以确定最多循环5000次的影响。记录横向磁带运动,并为每个测试确定信号的功率谱密度。另外,在磨损测试之后,采用光学显微镜来量化胶带边缘的质量,以研究胶带磨损与频率分析之间的任何相关性。

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