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1.
Study on HVAF WC Coating Sprayed at Aluminum Substrate;
铝基高速火焰喷涂WC涂层性能的研究
2.
Preparation and Characteristics of Biocoatings on Ti6Al4V by High Velocity Flame Spraying;
Ti6Al4V高速火焰喷涂仿生生物涂层制备及特性
3.
Residual stress analysis on the Ti-bioglass coatings produced by high velocity flame spraying
高速火焰喷涂钛-生物玻璃涂层残余应力分析
4.
Study on Microstructure of WC/Ni-based Alloy Coatings and Interfaces Produced by High Velocity Oxy-fuel Flame Spraying on Copper Surface;
紫铜表面高速火焰喷涂WC/镍基合金涂层及界面的显微组织研究
5.
Study of Microstructure and Properties of HVOF-CoNiCrWC Coatings by Laser Solidification
激光熔凝高速火焰喷涂CoNiCrWC涂层组织与性能的研究
6.
The Influence of Al_2O_3 on the Thermal Fatigue Resistance of Ni-Based Coating Prepared by High Velocity Air Fuel Spraying
Al_2O_3对高速火焰喷涂镍基涂层抗热疲劳性能的影响
7.
oxygen-acetylene flame spraying coating
氧-乙炔火焰喷涂涂层
8.
Properties and Application of WC Coating Prepared by High Velocity Air Fuel
空气助燃超音速火焰喷涂WC涂层的性能及应用
9.
WC-10%Co4%Cr Coatings Prepared by Different Feedstocks
不同粉末超音速火焰喷涂WC-10%Co4%Cr涂层的性能
10.
Application of HVOF Ceramics-anticorrosive-layer in the Protection to the Economizer in Electric Power Plant
超音速火焰喷涂陶瓷涂层在省煤器防护中应用
11.
Hardness and resistance to cavitation erosion of Fe-Cr-based HVOF-sprayed coating
超音速火焰喷涂Fe-Cr基涂层的硬度与汽蚀性
12.
Microstructure and property of reactive high velocity oxygen fuel spraying TiC-TiB_2-Ni coatings
反应超音速火焰喷涂TiC-TiB_2-Ni涂层的组织性能
13.
Forming and Fracture Mechanisms Analysis of Ni/MoS_2 Coatings by HVOF
超音速火焰喷涂Ni/MoS_2涂层形成及拉伸破坏机理
14.
Microstructure and Resistance to Corrosion by Hydrochloric Add of Carbide Coatings Prepared by High Velocity Oxy-Fuel Spraying
超音速火焰喷涂微米碳化物涂层的组织与性能
15.
Laser Heat Treatment of HVOF WC-Cr_3C_2-Ni Coating
WC-Cr_3C_2-Ni超音速火焰喷涂层的激光热处理
16.
Study on the Microstructure and Capability of the HVOF Spraying and Designing of the Laval Nozzle;
超音速火焰喷涂陶瓷涂层的组织与性能研究及拉伐尔管的设计
17.
Study on Subsonic Thermal Spraying (HA-BG)/(Ti-G) Compound Biocoatings Characteristics;
亚音速火焰喷涂(HA-BG)/(Ti-G)生物复合涂层的特性研究
18.
Study of the Microstructure and Properties of HVOF Spraying Fe-Based Coating Based on Orthogonal Test;
基于正交实验的超音速火焰喷涂Fe基涂层组织性能的研究