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Collaborative Research: SGER: Development and Tribological Evaluation of F-DLC Films for Magnetic Recording Applications

Collaborative Research: SGER: Development and Tribological Evaluation of F-DLC Films for Magnetic Recording Applications
合作研究:SGER:用于磁记录应用的 F-DLC 薄膜的开发和摩擦学评估
批准号:
0444096
负责人:
Frank Talke
金额:
$0.0万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2004
资助国家:
美国
项目状态:
已结题
起止时间:
2004-09-01 至 2005-08-31

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中文摘要
翻译
这项拟议的为期一年的探索性合作研究的主要目标是开发、表征、建模和优化氟化类金刚石涂层,以用于磁记录磁盘驱动器的防磨损涂层。西南研究院团队的主要重点将是开发一种具有“自润滑”特性的薄而无针孔的大衣。由于目前的磁盘使用全氟化碳氢化合物润滑剂来保护碳涂层的磨损,我们的方法将是开发硬涂层,本质上类似于DLC,它模拟氟化碳氢化合物润滑剂的行为,而不需要将润滑剂局部涂抹在DLC涂层上。本研究的目的是开发一种沉积工艺,从而获得极薄(~1nm)坚硬、致密且自润滑的薄膜。加州大学圣地亚哥分校的研究小组将通过启动/停止和加载/卸载测试来研究和优化上述薄膜的摩擦学性能,并优化这些薄膜的摩擦学性能。其他先进的磨损评估方法将被使用,如在超声波激励下的表面反射分析和纳米硬度测量。利用传统技术实现面密度达到1Tbpsi的磁存储技术的进步正变得越来越困难。在达到5nm的磁间距时遇到了严重的问题,这是实现1Tbpsi存储密度所必需的。一种自润滑且不需要局部应用厚度为1纳米的润滑膜的薄耐磨碳涂层对于实现5纳米的磁间距要求至关重要。如果成功,这项研究将对磁性唱片行业产生巨大的影响。
英文摘要
The main objective of the proposed one-year exploratory collaborative research is to develop, characterize, model and optimize fluorinated diamond-like carbon overcoats for application as wear-protective overcoats in magnetic recording disk drives. The main focus of the Southwest Research Institute team will be to develop a thin and pinhole-free overcoat with "self-lubricating" properties. Since present-day disks use per-fluorinated hydro-carbon lubricants for wear protection of the carbon overcoat, our approach will be to develop hard coatings, DLC-like in nature, which simulate the behavior of fluorinated hydrocarbon lubricants without the need for applying the lubricants topically on the DLC coatings. It is the intent of this research to develop a deposition process so that an extremely thin (~1nm) hard, dense and self-lubricating film can be obtained. The University of California at San Diego team will investigate and optimize the tribological properties of the above films by performing start/stop and load/unload tests and optimizing the tribological properties of these films. Other advanced methods of wear evaluation will be used such as surface reflectance analysis and nano-hardness measurements in the presence of ultra-sonic wave excitation.The advancement of magnetic storage using conventional technologies to reach areal densities of the order of 1Tbpsi is becoming increasingly more difficult. Serious problems are encountered in reaching a magnetic spacing of 5nm, which is required for achieving a storage density of 1Tbpsi. A thin wear-protective carbon overcoat that is self-lubricating and does not require a topically applied lubricant film of 1 nm in thickness is of utmost importance in achieving the magnetic spacing requirement of 5 nm. If successful, the impact of this research on the magnetic recording industry will be enormous.
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I-Corps: Intraocular Pressure Sensor
  • 批准号:
    1556342
  • 项目类别:
    Standard Grant
  • 资助金额:
    $5.0万
  • 财政年份:
    2015
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    9006637
  • 项目类别:
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    1990
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  • 批准号:
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  • 项目类别:
    Standard Grant
  • 资助金额:
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  • 财政年份:
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  • 负责人:
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  • 依托单位:
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Research on Quantum Field Theory without a Lagrangian Description
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