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ÌâÄ¿£ºSubstrate Effect on Microstructure and Performance of LTHVOF Sprayed Copper Coatings
ÆÚ¿¯£ºRare Metal Materials and Engineering,. 2012,41 S(1), 380-383.

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FN Thomson Reuters Web of Knowledge
VR 1.0
PT  J
AU  Zha, BL
Yuan, XJ
Zhan, J
Jiang, P
AF  Zha Bailin
Yuan Xiaojing
Zhan Jun
Jiang Peng
TI  Substrate Effect on Microstructure and Performance of LTHVOF Sprayed Copper Coatings
SO  RARE METAL MATERIALS AND ENGINEERING
LA  English
DT  Article
DE  bonding strength; coating; microstructure
AB  The performance of copper coatings fabricated on three substrates by LTHVOF spraying process was researched. XRD shows that substrate material has little effect on phase composition of coatings, and there is no oxide in the three coatings almost. These coatings are dense, and demonstrate little difference on the microstructure of the inner part of the coatings. However, microstructure of bonding area between coating and substrate shows big difference, copper coatings bonds compacter on soft substrate aluminum than hard substrate steel. Bonding strength of coatings sprayed on the soft substrate is higher than that on the hard substrate. Microstructure analysis of fracture surface shows that strong mechanical alloying phenomena when copper particles deposited on aluminum substrate. The average bonding strength of copper coatings on 1Cr18Ni9Ti, 45# steel and LY12 is relatively 18.83, 17.49 and 32.14 MPa. Substrates have strong effect on microstructure and bonding strength, but little on phase composition.
C1  [Zha Bailin; Yuan Xiaojing; Zhan Jun; Jiang Peng] Xian Res Inst Hitech, Xian 710025, Peoples R China.
RP  Zha, BL (reprint author), Xian Res Inst Hitech, Xian 710025, Peoples R China.
EM  zhabailin@163.com
NR  7
TC  0
Z9  0
PU  NORTHWEST INST NONFERROUS METAL RESEARCH
PI  SHAANXI
PA  C/O RARE METAL MATERIAL ENGINEERING PRESS, PO BOX 51, XIAN, SHAANXI 710016, PEOPLES R CHINA
SN  1002-185X
J9  RARE METAL MAT ENG
JI  Rare Metal Mat. Eng.
PD  FEB
PY  2012
VL  41
SU  1
BP  380
EP  383
PG  4
WC  Materials Science, Multidisciplinary; Metallurgy & Metallurgical Engineering
SC  Materials Science; Metallurgy & Metallurgical Engineering
GA  937CF
UT  WOS:000303635900092
ER  

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