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首页> 外文期刊>IEEE Transactions on Magnetics >Finite Element Analysis of Alternating Write-Current-Induced Pole Tip Protrusion in Magnetic Recording Heads
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Finite Element Analysis of Alternating Write-Current-Induced Pole Tip Protrusion in Magnetic Recording Heads

机译:磁记录头中交替写入电流引起的磁极尖端突出的有限元分析

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摘要

This paper presents a finite element analysis of alternating write-current-induced pole tip protrusion (WPTP) generated in longitudinal magnetic recording (LMR) heads. An integrated magneto-thermal-mechanical model is developed for the simulations of the electromagnetic Joule heating generated in the LMR writer, the slider temperature distribution, and the slider deformation during writing. The computed results are compared with the experimental measurements in terms of writer resistance and inductance, the WPTP, and temperature rise at reader location. It is found that eddy currents are strongly induced near the surfaces of write poles, while the eddy currents induced in write coils are negligibly weak. The results show that the eddy current loss in the write poles dominates over the Joule heat generated in the write coils. It is also found that the maximum protrusion appears near the write pole in the overcoat and the protrusion profile is sharper than that induced by equivalent direct write current and coil resistance
机译:本文提出了在纵向磁记录(LMR)磁头中产生的交替写入电流感应的磁极尖端突起(WPTP)的有限元分析。开发了一个集成的磁热机械模型,用于模拟LMR写入器中产生的电磁焦耳加热,滑块温度分布以及写入过程中滑块变形。计算结果与写入电阻和电感,WPTP以及读取器位置的温度升高方面的实验测量结果进行了比较。已经发现,在写极表面附近强烈地感应出涡流,而在写线圈中感应出的涡流微不足道。结果表明,写极中的涡流损耗在写线圈中产生的焦耳热上占主导地位。还发现最大的凸起出现在外涂层中的写极附近,并且该凸起的轮廓比等效的直接写电流和线圈电阻所引起的轮廓更清晰。

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