Experimental and Numerical Methods for the Stability Study of the Patterned Magnetic Recording Materials 磁记录硬盘介质稳定性研究的实验和数值方法
The micro-tribology in magnetic recording system and micro-machinery as well as nanometer materials tribology; 磁记录和微型机械的微观摩擦学及纳米级材料摩擦学;
Recent Progress of Particulate Magnetic Recording Materials 国外颗粒磁记录介质最新发展状况
Coercive Force and Effective Activation Volume in Rare Earth Permanent Magnets and Magnetic Recording Materials 稀土永磁及磁记录材料的矫顽力与有效激活体积
Progress of Magnetic Recording Materials and Applications in 1999~ 2000 Years 1999~2000年磁记录材料及应用的进展
Technology and Its Application of Read-Write Magnetic Information in APS Film ── Technical Achievements of Information Recording Materials in Imaging Fields ( 2) 磁信息读写技术在APS胶卷中的应用&信息记录材料在成像领域的技术进展(二)
Magnetic recording materials have been widely applied in computer and electron devices. 磁记录材料广泛用于计算机和电子设备中。
This annual review has been present since 1999.In this year it consists of ( 1) magnetic recording head materials; 本综述论文开始写于1999年,其后每年撰写。本年的综述内容包含:(1)磁记录头材料;
The development and applications of particulate magnetic recording materials, such as iron oxide, chromium dioxide, cobalt modified iron oxide, metallic magnetic powder and barium-iron-oxygen particles are reviewed. 论述了颗粒磁记录材料氧化铁、二氧化铬、钴改性的氧化铁、金属磁粉和钡铁氧体颗粒的发展和应用。
Perpendicular magnetic recording materials; 垂直磁记录材料;
Scientists have been devoting to enhance the density of magnetic recording media for years. Magnetic materials are expected to be with high coercivity and high saturation magnetization. 提高磁记录介质的密度是人们多年所追求的目标,这要求磁性材料具有高矫顽力和相应的高饱和磁化强度。
Magnetic recording materials industry in China 中国磁记录材料工业
New Progress of Magnetic Recording Materials in 2002~ 2003 2002~2003年磁记录材料新进展
Nano-ferric oxide is a kind of important nonmetal inorganic material, which can be employed in the realms of pigments, catalysts, ceramics, magnetic recording materials, etc. 纳米氧化铁是一种重要无机非金属材料,能广泛的应用于催化剂、颜料、陶瓷材料和磁记录材料等领域。
The areal density of hard disk drive using traditional CoCr-based thin films media can not be elevated further because of the super-paramagnetism effect. In order to increase the areal density in magnetic recording system, the studies of new magnetic recording media materials are necessary. 由于超顺磁效应的限制,使用传统的CoCr基薄膜介质的硬磁盘系统记录潜力已经发挥到了极点,要想继续提高磁记录系统的记录面密度,必须探寻新的材料。
Magnetic and Photomagnetic Recording Materials and Their Development 磁记录和磁光记录材料及其发展
For the study of magnetic materials, magnetization, Curie temperature, and magnetic anisotropy are basic parameters, in which magnetic anisotropy is especially important for the magnetic recording materials. 在磁性材料研究中,其磁化强度、居里温度以及磁各向异性是最基本的研究对象。其中对于磁记录设备中的磁性材料,磁各向异性这一参量则显得尤为重要。
Spinel ferrites are important kind magnetic materials, used as magnetic recording materials, microwave absorbers and other functional materials in practical applications, and they have well future in catalysis, biology and other fields. 尖晶石型铁氧体是一类重要的磁性材料,在实际应用中可作为磁记录材料、微波吸收剂等功能材料,同时在催化、生物等领域具有良好应用前景。