Wang Zirong1, Pan Yingjun1, Tang Wangsheng2, et al. TiN Films Deposited by Ion Plating on the Surface of ZL109 Aluminum Alloy and Its Wear-resistance. [J]. Special Casting & Nonferrous Alloys 30(2):180-182(2010)
Wang Zirong1, Pan Yingjun1, Tang Wangsheng2, et al. TiN Films Deposited by Ion Plating on the Surface of ZL109 Aluminum Alloy and Its Wear-resistance. [J]. Special Casting & Nonferrous Alloys 30(2):180-182(2010)DOI:
TiN Films Deposited by Ion Plating on the Surface of ZL109 Aluminum Alloy and Its Wear-resistance
摘要
采用多弧等离子体辅助物理气相沉积法
在ZL109铝合金表面沉积了TiN薄膜并对其形貌结构及耐磨性进行了研究。结果表明
在温度较低时TiN薄膜在ZL109铝合金表面生长方式为平面生长模式
随着沉积温度的升高及时间的延长
生长方式向岛状生长模式转化;在沉积温度为280℃
时间为1h时
得到的TiN薄膜厚度在2μm以上;ZL109铝合金表面沉积TiN薄膜后耐磨性提高约4倍。
Abstract
The microstructure and wear-resistant properties of TiN films which were deposited by multi-arc ion plating system on the surface of ZL109 aluminum alloy were investigated. The results reveal that the growth pattern of TiN films deposited on the ZL109 aluminum alloy exhibit planar growth mode at low temperature
which is converted into island mode with increasing in deposition temperature and in time. TiN films with 2 μm in thickness can be observed with deposited at 280 ℃ for 1 hours. After the TiN films deposited on the surface of ZL109 aluminum alloy
the wear-resistant properties are increased about four times
compared with those of the samples with deposited-free.
关键词
多弧离子镀TiN薄膜生长方式耐磨性
Keywords
Multi-arc Ion PlatingTiN FilmsGrowth PatternWear Resistance
Key Laboratory of Light Metal Materials and Engineering at Universities of Liaoning Province, Shenyang University of Technology
Materials Science and Engineering, Shenyang University of Technology
State Key Laboratory of Advanced Processing and Recycling of Non-ferrous Metals, Lanzhou University of Technology
School of Materials Science and Engineering,Kunming University of Science and Technology
National and Local Joint Engineering Laboratory for Advanced Metal Solidification and Equipment Technology,Kunming University of Science and Technology