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Development of metal particle (MP) technology for flexible recording media

机译:用于柔性录音介质的金属粒子(MP)技术的研制

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We report on magnetisation reversal processes in metal particle (MP) pigments and tapes which are the standard for all advanced data storage formats on flexible substrates. In addition to describing the basis of the technology and the principles of the preparation process, we describe the origin of the magnetic properties and how these are controlled to meet the specifications for advanced storage formats. Critical to the application of any material as a data storage medium is the switching field distribution (SFD) which is controlled by the particle size distribution (PSD), the magnetic anisotropy (K), the magnetisation reversal mechanism of the particles and particularly the alignment of the particle easy axes on the tape. We describe how each of these parameters in turn is measured and how control of the parameters is achieved. In particular, we find that close control of the PSD and particularly the particle orientation controls the effective SFD. In the most advanced systems the SFD is dominated by the alignment of the particles, which means that control of the particle morphology is required to obtain a high degree of easy axis alignment. In this regard we also describe new developments in MP technology and look to prospects for further advances.
机译:我们在金属粒子(MP)颜料和胶带中的磁化反转过程报告是柔性基板上所有高级数据存储格式的标准。除了描述技术的基础和准备过程的原理外,我们还描述了磁性特性的起源以及如何控制这些来满足高级存储格式的规范。对任何材料应用于数据存储介质的关键是由粒度分布(PSD),磁各向异性(k),颗粒的磁导向机构,颗粒的磁化反转机制,特别是对准的开关场分布(SFD)胶带上的粒子容易轴。我们描述了如何测量这些参数的每个参数以及如何实现参数的控制。特别是,我们发现对PSD的紧密控制,特别是粒子取向控制有效的SFD。在最先进的系统中,SFD由粒子的对准主导,这意味着需要控制粒子形态的控制以获得高度容易的轴对准。在这方面,我们还描述了MP技术的新发展,并寻求进一步进步的前景。

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