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Experimental and numerical investigation of effect of stick-slip friction transition on lateral vibration of magnetic tapes.

机译:粘滑摩擦过渡对磁带横向振动影响的实验和数值研究。

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摘要

Magnetic tape storage which is primarily used for long-term archival and backup of digital data, has historically been the most efficient, high-capacity and least expensive storage technology for huge quantities of data. Tape storage applications are in diverse fields such as corporate and government financial records, satellite imagery, credit card databases and patient medical records. Recently, the Linear Tape-Open (LTO) Ultrium format has emerged as the most dominant tape technology option in the mid-range tape drive market, with the LTO generation 5 (LTO-5) being capable of holding as much as 1.5 TB of uncompressed data on a single cartridge. Tape storage however has been traditionally challenged by competing technologies like hard disk drives (HDD), consumer optical storage devices which include CDs, DVDs and Blu-ray disk technologies, optical library systems and holographic storage systems. Thus, one of main goals of the tape industry is to design and manufacture advanced tape storage technologies that aim at reducing the price per unit data storage (;In commercial tape drives, a flexible magnetic tape is transported between the supply and take-up packs at a fixed axial tension and transport speed and over edge and surface guides and read/write heads. The tape decks must assure accurate guiding and transport of the tape while it accelerates and decelerates by holding the axial tension constant. During transport, lateral in-plane vibration of tape's narrow edge causes misalignment between data tracks on the tape and position of read/write head and leads to reduced storage capacity. Lateral vibration (low and high frequency) is caused by excitation sources viz. pack run-out, flange impacts, pack tilts and tape edge weave. High frequency lateral vibration is more detrimental as it is difficult to move the read/write head to follow the tape's high frequency motion. To attenuate this vibration, surface guides (rollers or stationary guides) which control the lateral displacement of tape by applying friction on its wider surface, are used. Choice of an appropriate surface guide (or roller) is possible with an understanding of the physics involved in the surface friction between magnetic tape's wide surface and the roller.;This thesis is motivated by the need to conduct a detailed investigation into the frictional interaction between roller surface and magnetic tape and contribute towards the advancement of tape technology to meet the growing market needs. A parametric study is carried out with respect to the tape's axial tension and axial velocity in the following two aspects: (1) An experimental setup is used to control these tape parameters and obtain lateral vibration measurements at two points equidistant from the tape-roller interface to understand the effect of stick-slip friction at the interface on tape's lateral vibration. (2) A numerical model is developed to study stick-slip friction between the roller surface and the tape that travels over it. The tape is modeled as an axially moving, tensioned, viscoelastic Euler-Bernoulli beam subjected to boundary disturbances arising from supply and take-up pack run-out and stick-slip friction between tape and roller surface.;These analyses are used to predict the possibility of sticking or slipping between the surfaces in contact, as a function of parameters viz. axial tension, axial velocity, surface roughness of roller and span length. A 'dynamic phase diagram' is constructed to determine the regions in the stiffness-velocity phase-space where steady stick-slip motion occurs and its effects on lateral vibration of the magnetic tape.
机译:磁带存储主要用于数字数据的长期归档和备份,从历史上看,它一直是用于处理大量数据的最高效,大容量和最便宜的存储技术。磁带存储应用程序涉及多个领域,例如公司和政府的财务记录,卫星图像,信用卡数据库和患者病历。最近,线性磁带开放(LTO)Ultrium格式已成为中型磁带驱动器市场上最主要的磁带技术选择,第五代LTO(LTO-5)能够容纳多达1.5 TB的磁带。单个盒带上的未压缩数据。但是,磁带存储传统上一直受到诸如硬盘驱动器(HDD),包括CD,DVD和Blu-ray磁盘技术的消费类光学存储设备,光学图书馆系统和全息存储系统等竞争技术的挑战。因此,磁带行业的主要目标之一是设计和制造先进的磁带存储技术,旨在降低单位数据存储的价格(在商用磁带驱动器中,柔性磁带在供带和收带之间传输。在固定的轴向张力和运输速度下,以及在边缘和表面导轨以及读/写头上进行操作时,磁带甲板必须确保准确地引导和运输磁带,同时通过保持轴向张力恒定来加速和减速。磁带窄边的平面振动会导致磁带上的数据磁道与读/写头的位置之间未对准,并导致存储容量降低;横向振动(低频和高频)是由激励源引起的,即振颤,法兰撞击,包装倾斜和磁带边缘编织,因为难以移动读/写头来跟随磁带的高频运动,所以高频横向振动更加有害。为了避免这种振动,使用了表面导向器(滚子或固定式导向器),该导向器通过在宽带上施加摩擦力来控制磁带的横向位移。在了解磁带宽面与滚子之间的表面摩擦所涉及的物理原理后,可以选择合适的表面导向器(或滚子)。本论文的动机是需要对磁带之间的摩擦相互作用进行详细研究辊表面和磁带,并有助于磁带技术的发展,以满足不断增长的市场需求。在以下两个方面针对磁带的轴向张力和轴向速度进行了参数研究:(1)使用实验装置来控制这些磁带参数,并获得与磁带辊子界面等距的两个点的横向振动测量值了解界面上的粘滑摩擦对磁带横向振动的影响。 (2)开发了一个数值模型来研究辊子表面和在其上移动的胶带之间的粘滑摩擦。胶带建模为轴向移动,张紧,粘弹性的Euler-Bernoulli梁,受到供应和收紧卷装跳动以及胶带与辊子表面之间的粘滑摩擦产生的边界干扰;这些分析用于预测根据参数viz的函数,接触的表面之间可能发生粘连或打滑。轴向张力,轴向速度,滚子的表面粗糙度和跨度。构建“动态相位图”以确定在刚度-速度相空间中发生稳定的粘滑运动及其对磁带横向振动的影响的区域。

著录项

  • 作者

    Jape, Sameer Sanjay.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Engineering Mechanical.
  • 学位 M.S.
  • 年度 2011
  • 页码 122 p.
  • 总页数 122
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:45:31

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