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Keyword [superalloys]
Result: 81 - 100 | Page: 5 of 10
81. Effect Of Co?Cr?Mo?Ru Additions On TCP Phase Evolution And Creep Behavior At 950? In 4thGeneration Ni-base Single Crystal Superalloys
82. Construction And Application Of Multi-element EAM Potential In Ni-based Single Crystal Model Superalloys
83. The Interactions Of Phosphorus And Matrix Elements On Microstructure And Mechanical Properties In Superalloys
84. Laser Prototyping Technology Of Nickel-base Single Crystal Superalloys And Simulation
85. Microscopy And Simulation Calculations Of TCP Phases And Dislocations In Nickel-base Single Crystal Superalloys
86. Creep Behaviors And Effecting Factors Of Re/Ru Containing Nickel- Based Single Crystal Superalloys
87. The Research On Picosecond Laser Machining Of Holes In Ni-base Single Crystal Superalloys DD6
88. Effect Of Ru On Microstructure And Creep Properties Of Ni Based Single Crystal Superalloy Containing 4.5%Re
89. Preparation Of A Low Density Ni-based Single Crystal Superalloy And Microstructure/Property Analyses
90. Study On Heat Treatment Process Of The Ni-based Single Crystal Superalloys With Carbon Containing
91. Studies On The Healing Mechanism And Model Of Creep Cavities In K465alloy
92. The Effect Of Transient Liquid Phase Bonding On Microstructure And Mechanical Properties Of Mar-M247 Nickel-based Superalloys Joints
93. Study On Interfacial Reaction Between Nickel Based Single Crystal Superalloys Containing Rare Earth And Calcium And Its Mold And Evaluation Of Oxidation Behavior
94. Theoretical Studies On Stabilities And High-temperature Elastic Properties Of Carbides In Ni-based Superalloys
95. Preparation And Properties Of Nickel-based Superalloys
96. Study On Fabrication And Properties Of Ceramic Cutting Tools For High Speed Machining Nickel-based Superalloys
97. Elements Segregation And Its Effect On Mechanical Properties Of Ni-Cr-W Based Superalloys
98. Study On The Thermodynamics Of The Ni-Co-Al-Mo-W System And The Diffusion Kinetics Of Its Fcc Phase
99. Synergistic Effect Of Elements And Optimization Of Composition For Ni-based Superalloys
100. First-principles Study Of Effects Of The Transition Metal Elements On The Mechanical Properties In Ni-based Superalloys
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