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Tailoring wear and tribo-induced interaction of YSZ coating sliding against Si3N4 and Al2O3 counterparts 期刊论文
Wear, 2023, 卷号: 518-519, 期号: 2023, 页码: 204628
Authors:  Liuyang Bai;  Haibo Zhang;  Shanhong Wan;  Gewen Yi;  Huwei Sun
Adobe PDF(27325Kb)  |  Favorite  |  View/Download:22/0  |  Submit date:2023/10/31
Tribological properties of Ni3Al-Ni3Nb-Ag self-lubricating alloys at a wide temperature range 期刊论文
Wear, 2021, 期号: 480-481, 页码: 203933
Authors:  Dan Wang;  Hui Tan;  Wenyuan Chen;  Shengyu Zhu;  Jun Cheng;  Jun Yang
Adobe PDF(34036Kb)  |  Favorite  |  View/Download:68/0  |  Submit date:2021/11/29
The role of surface topography in the evolving microstructure and functionality of tribofilms of an epoxy-based nanocomposite 期刊论文
Wear, 2016, 卷号: 364, 页码: 48-56
Authors:  Zhang G(张嘎);  Österle Werner;  Jim Baicheng;  Häusler Ines;  Hesse Rene;  Wetzel Bernd;  Zhang G(张嘎)
Adobe PDF(2417Kb)  |  Favorite  |  View/Download:114/3  |  Submit date:2016/10/21
Hybrid Nancomposite  Tribological Performance  Topographic Effect  Tribofilm  Nanostructure  
Formulated self-lubricating carbon coatings on carbide ceramics 期刊论文
Wear, 2011, 卷号: 271, 页码: 1974-1979
Authors:  Sui J(眭剑);  Lv JJ(吕晋军)
Adobe PDF(1378Kb)  |  Favorite  |  View/Download:359/11  |  Submit date:2012/09/24
Chlorination  Carbide-derived Carbon  Self-lubricating  Microstructure  
Effect of carbon fibers surface treatment on tribological performance of polyurethane (PU) composite coating 期刊论文
Wear, 2008, 卷号: 264, 页码: 599-605
Authors:  Zhang ZZ(张招柱);  Song HJ(宋浩杰);  Men XH(门学虎);  Luo ZZ(罗莊竹)
Adobe PDF(1003Kb)  |  Favorite  |  View/Download:314/3  |  Submit date:2013/03/28
Polyurethane Coating  Carbon FIbers  Tdi  Tribological Performance  
Microstructure and wear behaviour of Ni-based surface coating on copper substrate 期刊论文
Wear, 2007, 卷号: 262, 页码: 868-875
Authors:  Song WM(宋文明);  Yang GR(杨贵荣);  Lv JJ(吕晋军);  Hao Y(郝远);  Ma Y(马颖)
Adobe PDF(2174Kb)  |  Favorite  |  View/Download:230/1  |  Submit date:2013/11/01
Copper Alloy  Ni-based Powder  Vacuum Infiltration Casting Technique  Dry Sliding Wear  Wear Rate