首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Durability and failure mechanisms of digital tapes in a rotary tape drive
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Durability and failure mechanisms of digital tapes in a rotary tape drive

机译:旋转磁带机中数字磁带的耐用性和故障机制

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摘要

The durability and failure mechanism of digital metal-evaporated (ME) and digital metal particulate (MP) tapes were investigated. Shuttle and pause mode tests were performed at ambient and different environmental conditions using a modified digital camcorder as a wear tester. Physical and chemical analyses of worn surfaces were conducted to study failure mechanisms. Digital ME tape exhibited higher overall durability than digital MP tape and Hi-8 ME tape without a diamond-like carbon (DLC) overcoat in the study. The performance of digital ME tape was sensitive to temperature and relative humidity. In the pause test, digital ME tape demonstrated highest durability under hot and moderate humidity conditions and lowest durability under cold and dry conditions. The reasons for high durability for digital ME tape compared with digital MP tape and Hi-8 ME tape without a DLC overcoat lie in lubricant selection, controlled surface topography and DLC coating. With the correct combinations of these three parameters, the durability of ME tape is vastly improved.
机译:研究了数字金属蒸发(ME)和数字金属微粒(MP)磁带的耐久性和破坏机理。使用改良的便携式数码摄像机作为磨损测试仪,在环境和不同环境条件下进行了班车和暂停模式测试。进行磨损表面的物理和化学分析以研究破坏机理。在研究中,数字ME胶带的总耐用性高于数字MP胶带和没有菱形碳(DLC)涂层的Hi-8 ME胶带。数字ME磁带的性能对温度和相对湿度敏感。在暂停测试中,数字ME磁带在高温和中等湿度条件下表现出最高的耐久性,而在寒冷和干燥条件下表现出最低的耐久性。与不带DLC保护层的数字MP磁带和Hi-8 ME磁带相比,数字ME磁带具有高耐久性的原因在于润滑剂的选择,受控的表面形貌和DLC涂层。通过正确组合这三个参数,可以极大地提高ME胶带的耐用性。

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