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Keyword [metal matrix]
Result: 181 - 200 | Page: 10 of 10
181. Research On The Preparation And Properties Of Al2O3-TiC/Fe Metal Ceramic Composite
182. Study On In-situ Particle Reinforced Metal Matrix Composite Prepared By Laser Direct Deposition
183. Research On Strength Analysis Method Of Metal Matrix Composites
184. Study On The Interface Reaction And Wettability Of C_f/Al-Si Composites
185. Synthesis And Mechanical Properties Of In-situ CNTs Reinforced Al-Cu Alloy Matrix Composites
186. Research On Preparation And Application Of Mo/Pt/Ag Laminar Metal Matrix Composites
187. Micromechanical Model Of (thermo-) Elasto-plastic Behavior For Metal Matrix Composites By Variational Asymptotic Homogenization Method
188. Study On Tribological Behavior Of Nickle Based High Temperature Self-Lubricating Composites
189. Study On Performance Of Doping Cr2O3/NiO/MnO2High Emissivity Metal-matrix Ceramic Coatings
190. Research On Preparation And Microstructure Of ZTA Ceramic/High Chromium Cast Iron Matrix Composites
191. Preparation Of AZ91/Al2O3 Lamellar Composites By Freeze Casting And Reactive Infiltration
192. Strength,Toughness And Fracture Behavior Of Al/TiC Laminated Composites
193. Research On High Wear-Resistance Performance And Wear Mechanisms For Hardfacing Coatings Of WC Reinforced Cu-Ni-Mn Metal Matrix
194. Preparation And Characterization Of Laminated Al/Al2O3 Composites With Nacreinspired Hierarchical Complexity
195. Preparation And Properties Of WC_p/Al Composite Material
196. Research On Preparation Process And Properties Of Graphene Reinforced Iron Matrix Powder Metallurgy Materials
197. Design And Fabrication Of Wear Resistant Metal Matrix Composites Mounted With Ceramic By Cast
198. Computational Micromechanical Analysis On The Mechanical Properties Of SiC/Al Composites
199. Fabrication Of Graphene/Cu Composites With In-situ Grown Graphene From Solid Carbon Source And The Investigation Of Its Mechanical Properties
200. Study On The Interface Bonding Strength And Damping Capacity Of NiTi/Al Multilayer Composites By Ultrasonic Additive Manufacturing Method
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