The possibility of micro/nano machining through electro-chemical process is discussed in this research.<br/> Electro-chemical dissolution region is localized within 1 μm by applying ultra short pulses with tens of<br/> nanosecond duration...
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https://www.riss.kr/link?id=A75897008
2003
Korean
550
학술저널
1052-1058(7쪽)
0
상세조회0
다운로드다국어 초록 (Multilingual Abstract)
The possibility of micro/nano machining through electro-chemical process is discussed in this research.<br/> Electro-chemical dissolution region is localized within 1 μm by applying ultra short pulses with tens of<br/> nanosecond duration...
The possibility of micro/nano machining through electro-chemical process is discussed in this research.<br/>
Electro-chemical dissolution region is localized within 1 μm by applying ultra short pulses with tens of<br/>
nanosecond duration. The effects of voltage, pulse duration, and pulse frequency on the localization distance<br/>
are investigated. Localization distance can be manipulated by controlling the voltage and pulse duration, and<br/>
various hole shapes are produced including stepped holes and taper free hole. High quality micro-hole with 8<br/>
μm diameter with 20 μm depth and micro-groove with 9 μm width with 10 μm depth are machined on 304<br/>
stainless steel.
목차 (Table of Contents)
적층 방법에 따른 복합재의 저온 영역 하에서 정적 강도 변화
핵융합로용 저방사화 철강재료(JLF-1)의 강도와 파괴인성
다공성 알루미늄 합금이 충진된 스테인레스 강 원통 Shell의 제조 및 굽힘거동