广东工业大学学报
廣東工業大學學報
엄동공업대학학보
JOURNAL OF GUANGDONG UNIVERSITY OF TECHNOLOGY
2013年
4期
1-13
,共13页
王启民%张小波%张世宏%王成勇%伍尚华
王啟民%張小波%張世宏%王成勇%伍尚華
왕계민%장소파%장세굉%왕성용%오상화
高功率脉冲磁控溅射技术%离化率%硬质涂层%反应溅射
高功率脈遲磁控濺射技術%離化率%硬質塗層%反應濺射
고공솔맥충자공천사기술%리화솔%경질도층%반응천사
high power impulse magnetron sputtering%ionization ratio%hard coating%reactive sputtering
高功率脉冲磁控溅射技术是最新发展起来并受到广泛关注的一种高离化率物理气相沉积技术,它利用较高的脉冲峰值功率(超出传统磁控溅射2~3个数量级)和较低的脉冲占空比(0.5%~10%)来实现高金属离化率(>50%),在获得优异的膜基结合力、控制涂层微结构、降低涂层内应力、控制涂层相结构等方面都具有显著的技术优势.本文从高功率脉冲磁控溅射技术的原理出发,探讨了高功率脉冲溅射技术沉积涂层的特性和技术优势,介绍了10多年来高功率脉冲磁控溅射技术在刀具涂层界面优化、高性能硬质涂层沉积、复合高功率脉冲磁控溅射技术制备纳米多层/复合硬质涂层和氧化物涂层沉积、低温沉积等方面的研究进展.
高功率脈遲磁控濺射技術是最新髮展起來併受到廣汎關註的一種高離化率物理氣相沉積技術,它利用較高的脈遲峰值功率(超齣傳統磁控濺射2~3箇數量級)和較低的脈遲佔空比(0.5%~10%)來實現高金屬離化率(>50%),在穫得優異的膜基結閤力、控製塗層微結構、降低塗層內應力、控製塗層相結構等方麵都具有顯著的技術優勢.本文從高功率脈遲磁控濺射技術的原理齣髮,探討瞭高功率脈遲濺射技術沉積塗層的特性和技術優勢,介紹瞭10多年來高功率脈遲磁控濺射技術在刀具塗層界麵優化、高性能硬質塗層沉積、複閤高功率脈遲磁控濺射技術製備納米多層/複閤硬質塗層和氧化物塗層沉積、低溫沉積等方麵的研究進展.
고공솔맥충자공천사기술시최신발전기래병수도엄범관주적일충고리화솔물리기상침적기술,타이용교고적맥충봉치공솔(초출전통자공천사2~3개수량급)화교저적맥충점공비(0.5%~10%)래실현고금속리화솔(>50%),재획득우이적막기결합력、공제도층미결구、강저도층내응력、공제도층상결구등방면도구유현저적기술우세.본문종고공솔맥충자공천사기술적원리출발,탐토료고공솔맥충천사기술침적도층적특성화기술우세,개소료10다년래고공솔맥충자공천사기술재도구도층계면우화、고성능경질도층침적、복합고공솔맥충자공천사기술제비납미다층/복합경질도층화양화물도층침적、저온침적등방면적연구진전.
High power impulse magnetron sputtering ( HIPIMS) is an emerging high-ionization physical vapor deposition technology which was has gained substantial interests .It utilizes pulses of high peak power density ( 2 -3 orders higher than the conventional magnetron sputtering ) and low duty cycle (0.5%-10%) leading to high ionization of metal atoms .This mode has distinguished advantages during deposition:high adhesive strength , controllable microstructure and phase structure , and decreased resid-ual stress, etc.This review covers the basic principle of HIPIMS , the characteristic of films & coatings deposited by HIPIMS , and the developments of HIPIMS technologies in the recent 10 years:optimization of coating-substrate interface in the coated cutting tools , deposition of high-performance hard coatings , nano-layered/nanocomposite coatings by hybrid HIPIMS , oxide coatings, low-temperature coatings, etc.