Reactive sputter deposition of polycrystalline nitride and oxide superlattice coatings

被引:95
作者
Sproul, WD
机构
[1] BIRL, Northwestern University, Evanston, IL 60201
关键词
reactive sputter deposition; polycrystalline nitride coating; oxide superlattice coating;
D O I
10.1016/S0257-8972(96)02977-5
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Polycrystalline nitride superlattice films are now being reactively sputter deposited onto polycrystalline substrate materials with the same high hardness enhancement as found for their corresponding single crystal superlattice films. TiN/NbN and TiN/VN polycrystalline superlattice films have hardnesses above 50 GPa, when the superlattice period is in the range of 4-8 nm, and this hardness enhancement depends strongly on control of the process parameters. Superlattice systems such as TiN/Cr2N show pseudomorphic growth where the fcc TiN acts as template for the normally hexagonal Cr2N and forces it into an fcc structure. The primary hardening mechanism for the nitride superlattice films, according to the model of Chu and Barnett, is restriction of dislocation motion either across an interface or within a layer, and experimental data for both the single crystal and polycrystalline nitride superlattices supports the model. Work on superlattice films is now being extended to include oxide systems with the desire to produce hard, tough oxide superlattice films for optical and high temperature applications. Oxide films can now be reactively sputter deposited easily at high rates with pulsed d.c. power and automatic feedback control of the reactive gas, and the ZrO2/Y2O3 and Al2O3/ZrO2 systems are currently being developed.
引用
收藏
页码:170 / 176
页数:7
相关论文
共 45 条
[11]  
DONAHUE LA, 1995, SURF COAT TECH, V76, P159
[12]   ASPECTS AND RESULTS OF LONG-TERM STABLE DEPOSITION OF AL2O3 WITH HIGH-RATE PULSED REACTIVE MAGNETRON SPUTTERING [J].
FRACH, P ;
HEISIG, U ;
GOTTFRIED, C ;
WALDE, H .
SURFACE & COATINGS TECHNOLOGY, 1993, 59 (1-3) :177-182
[13]   GROWTH OF SINGLE-CRYSTAL TIN VN STRAINED-LAYER SUPERLATTICES WITH EXTREMELY HIGH MECHANICAL HARDNESS [J].
HELMERSSON, U ;
TODOROVA, S ;
BARNETT, SA ;
SUNDGREN, JE ;
MARKERT, LC ;
GREENE, JE .
JOURNAL OF APPLIED PHYSICS, 1987, 62 (02) :481-484
[14]  
Holleck H, 1995, SURF COAT TECH, V76, P328, DOI 10.1016/0257-8972(95)02555-3
[15]   PREPARATION AND BEHAVIOR OF WEAR-RESISTANT TIC/TIB2, TIN/TIB2 AND TIC/TIN COATINGS WITH HIGH AMOUNTS OF PHASE BOUNDARIES [J].
HOLLECK, H ;
SCHULZ, H .
SURFACE & COATINGS TECHNOLOGY, 1988, 36 (3-4) :707-714
[16]   Multilayered titanium tungsten nitride coatings with a superlattice structure grown by unbalanced magnetron sputtering [J].
Hurkmans, T ;
Trinh, T ;
Lewis, DB ;
Brooks, JS ;
Munz, WD .
SURFACE & COATINGS TECHNOLOGY, 1995, 76 (1-3) :159-166
[17]   ATTEMPT TO DESIGN A STRONG SOLID [J].
KOEHLER, JS .
PHYSICAL REVIEW B, 1970, 2 (02) :547-&
[18]   PHYSICALLY VAPOR-DEPOSITED COATINGS ON TOOLS - PERFORMANCE AND WEAR PHENOMENA [J].
KONIG, W ;
FRITSCH, R ;
KAMMERMEIER, D .
SURFACE & COATINGS TECHNOLOGY, 1991, 49 (1-3) :316-324
[19]   THE EFFECT OF COMPOSITION PROFILE SHAPE ON THE STRENGTH OF METALLIC MULTILAYER STRUCTURES [J].
KRZANOWSKI, JE .
SCRIPTA METALLURGICA ET MATERIALIA, 1991, 25 (06) :1465-1470
[20]   STRENGTH ENHANCEMENT IN THIN-LAYERED AL-CU LAMINATES [J].
LEHOCZKY, SL .
JOURNAL OF APPLIED PHYSICS, 1978, 49 (11) :5479-5485