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Featured researches published by Yasuo Namaizawa.


Journal of Engineering for Gas Turbines and Power-transactions of The Asme | 2012

Quick Response Fuel Injector for Direct-Injection Gasoline Engines

Motoyuki Abe; Noriyuki Maekawa; Yoshihito Yasukawa; Tohru Ishikawa; Yasuo Namaizawa; Hideharu Ehara

We developed a new injector for direct injection gasoline engines that reduce the exhaust emissions and help to reduce fuel consumption. The newly developed actuator in this injector has two features. One is a bounce-less valve closing mechanism, and the second is quick-response moving parts. The first feature, the bounce-less valve closing mechanism, can prevent ejecting a coarse droplet, which causes unburned gas emission. The new actuation mechanism realizes the bounce-less valve closing. We analyzed the valve motion and injection behavior. The second feature, the quick response actuator, achieves a smaller minimum injection quantity. This feature assists in reducing the fuel consumption under low load engine conditions. The closing delay time of the needle valve is the dominant factor of the minimum injection quantity because the injection quantity is controlled by the duration time of the valve opening. The new actuator movements can be operated with a shorter closing delay time. The closing delay time is caused by a magnetic delay and kinematic delay. A compact magnetic circuit of the actuator reduces the closing delay time by 26%. In addition, the kinematic delay was improved when the hydraulic resistance was reduced by 9%. As a result, the new injector realizes reduction of the minimum injection quantity by 25% compared to a conventional injector.Copyright


Archive | 1999

Electromagnetic fuel injector and control method thereof

Makoto Yamakado; Yoshio Okamoto; Nobukatsu Arai; Yuzo Kadomukai; Yoshiyuki Tanabe; Yasunaga Hamada; Yasuo Namaizawa; Hiromasa Kubo; Kenji Tabuchi


Archive | 2000

Electromagnetic type fuel injection valve

Yasunaga Hamada; Yasuo Namaizawa


Archive | 2008

Fuel injection nozzle and method of holding the same

Motoyuki Abe; Masahiko Hayatani; Tohru Ishikawa; Takehiko Kowatari; Noriyuki Maekawa; Yasuo Namaizawa; Yusuke Irino


Archive | 2007

Electro-magnetic fuel injector

Motoyuki Abe; Masahiko Hayatani; Yasuo Namaizawa; Tohru Ishikawa; Noriyuki Maekawa


Archive | 2007

Electro-magneto fuel injector

Motoyuki Abe; Masahiko Hayatani; Atsushi Sekine; Yasuo Namaizawa; Tohru Ishikawa; Noriyuki Maekawa


Archive | 2001

Manufacturing method of a fuel injection valve; and a fuel injection valve and an internal combustion engine equipped therewith

Motoyuki Abe; Yoshio Okamoto; Yuzo Kadomukai; Makoto Yamakado; Ayumu Miyajima; Hiromasa Kubo; Toru Ishikawa; Yasuo Namaizawa


Archive | 2012

Design method for a multihole injector

Yusuke Irino; Tohru Ishikawa; Yasuo Namaizawa; Motoyuki c Abe; o Hitachi; Atsushi c Sekine


Archive | 2004

Fuel injection valve with restriction wall, and internal combustion engine equipped therewith

Motoyuki Abe; Yoshio Okamoto; Yuzo Kadomukai; Makoto Yamakado; Ayumu Miyajima; Hiromasa Kubo; Toru Ishikawa; Yasuo Namaizawa


Archive | 2012

Electromagnetic Fuel Injection Valve and Internal Combustion Engine Control Device Using the Same

Motoyuki Abe; Yasuo Namaizawa

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