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Dive into the research topics where Masaru Nakakita is active.

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Featured researches published by Masaru Nakakita.


Journal of Fluids Engineering-transactions of The Asme | 2007

Experimental Study on Flow-Induced Disk Flutter Dynamics by Measuring the Pressure Between Disks

Shigenori Takada; Norio Tagawa; Atsunobu Mori; Yoshiaki Mizoh; Masaru Nakakita

It is important to clarify the characteristics of flow-induced vibrations in hard disk drives in order to achieve an ultrahigh magnetic recording density. In particular, it is necessary to reduce the flow-induced disk vibrations referred to as disk flutter. This paper describes the correlation between the disk vibration amplitude and the pressure fluctuation between a pair of high-speed corotating disks. It also reveals the effects of the arm thickness and arm shape on the disk vibrations and the static pressure between the disks. The disk vibrations were measured using a laser Doppler vibrometer (LDV). The static pressure downstream of the arm between a pair of narrow disks was measured by a method in which a side-hole needle was used as a measurement probe. In addition, the direction of air flow along the trailing edge of the arm was measured using a hot-wire anemometer. The experimental results revealed that the arm inserted between the disks suppresses the disk vibrations. However, the shape and thickness of the arm did not quantitatively affect the disk vibrations. The root-mean-square (RMS) static pressure fluctuation downstream of the arm decreased remarkably, whereas the mean static pressure increased when the arm was inserted between the disks. Furthermore, the circumferential variations in both the RMS and mean static pressures reduced when the arm was inserted. Therefore, it is suggested that the disk vibrations are excited by an increase in the static pressure fluctuation, mean dynamic pressure, and circumferential variation in the static pressure between the disks. Consequently, the disk vibrations can be suppressed by inserting the arm or a spoiler.


Archive | 2004

Slider and magnetic disk device using the slider

Masaru Nakakita; Susumu Takagi


Microsystem Technologies-micro-and Nanosystems-information Storage and Processing Systems | 2007

Study on flow-induced vibration of head–disk assembly mechanisms in actual hard disk drive

Shigenori Takada; Takashi Kusukawa; Norio Tagawa; Atsunobu Mori; Yoshiaki Mizoh; Masaru Nakakita


Archive | 2001

Slider having a stable flying posture and disk device including the slider

Masaru Nakakita; Yoshihiro Ueno


Transactions of the Japan Society of Mechanical Engineers. C | 2006

Study on Flow Induced Vibration of Head Disk Assembly Mechanisms with High Speed Rotating Disks (1st Report, Experimental Analysis by Measuring the Air Flow Velocity in the Head Disk Assembly Mechanisms)

Shigenori Takada; Norio Tagawa; Atsunobu Mori; Yoshiaki Mizoh; Masaru Nakakita


Archive | 1998

Contact inspecting device

Kaoru Matsuoka; Masaru Nakakita; Koji Taniguchi; Yoshihiro Ueno; 善弘 上野; 勝 中北; 薫 松岡; 康二 谷口


Transactions of the Japan Society of Mechanical Engineers. C | 2006

Study on Flow Induced Vibration of Head Disk Assembly Mechanisms in Actual Hard Disk Drives

Shigenori Takada; Takashi Kusukawa; Norio Tagawa; Atsunobu Mori; Yoshiaki Mizoh; Masaru Nakakita


The Proceedings of Conference of Kansai Branch | 2006

1505 Study on flow-induced arm off-track vibration of head disk assembly mechanisms in HDD

Takayuki Iwase; Shigenori Takada; Norio Tagawa; Atsunobu Mori; Yoshiaki Mizo; Masaru Nakakita


The proceedings of the JSME annual meeting | 2005

2527 Study on flow induced vibration of head disk assembly mechanisms in actual hard disk drives

Shigenori Takada; Takashi Kusukawa; Norio Tagawa; Atsunobu Mori; Yoshiaki Mizoh; Masaru Nakakita


The Proceedings of the Conference on Information, Intelligence and Precision Equipment : IIP | 2005

2108 Study on flow induced vibration of head disk assembly mechanisms in hard disk drives

Takashi Kusukawa; Shigenori Takada; Norio Tagawa; Atsunobu Mori; Yoshiaki Mizoh; Masaru Nakakita

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Norio Tagawa

United States Army Human Resources Command

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