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Molecular Dynamics Simulation of the Evolution of Interfacial Dislocation Network and Stress Distribution of a Ni-Based Single- Crystal Superalloy
by
Yun-Li Li Wen-Ping Wu Zhi-Gang Ruan
in
Characterization and Evaluation of Materials
/ Chemistry and Materials Science
/ Corrosion and Coatings
/ Crack propagation
/ Crystal dislocations
/ Evolution
/ Failure analysis
/ Gamma phase
/ Gamma-prime phase (crystals)
/ Interfaces
/ Interfacial dislocations
/ Materials Science
/ Mechanical properties
/ Metallic Materials
/ Misfit dislocations
/ Molecular dynamics
/ Morphology
/ Nanotechnology
/ Nickel base alloys
/ Organometallic Chemistry
/ Simulation
/ Single crystals
/ Spectroscopy/Spectrometry
/ Stress concentration
/ Stress distribution
/ Superalloys
/ Temperature
/ Temperature dependence
/ Tribology
/ Yield stress
/ 位错网络
/ 分子动力学模拟
/ 应力分布
/ 晶格失配
/ 温度依赖
/ 界面位错
/ 网络演化
/ 镍基单晶高温合金
2016
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Molecular Dynamics Simulation of the Evolution of Interfacial Dislocation Network and Stress Distribution of a Ni-Based Single- Crystal Superalloy
by
Yun-Li Li Wen-Ping Wu Zhi-Gang Ruan
in
Characterization and Evaluation of Materials
/ Chemistry and Materials Science
/ Corrosion and Coatings
/ Crack propagation
/ Crystal dislocations
/ Evolution
/ Failure analysis
/ Gamma phase
/ Gamma-prime phase (crystals)
/ Interfaces
/ Interfacial dislocations
/ Materials Science
/ Mechanical properties
/ Metallic Materials
/ Misfit dislocations
/ Molecular dynamics
/ Morphology
/ Nanotechnology
/ Nickel base alloys
/ Organometallic Chemistry
/ Simulation
/ Single crystals
/ Spectroscopy/Spectrometry
/ Stress concentration
/ Stress distribution
/ Superalloys
/ Temperature
/ Temperature dependence
/ Tribology
/ Yield stress
/ 位错网络
/ 分子动力学模拟
/ 应力分布
/ 晶格失配
/ 温度依赖
/ 界面位错
/ 网络演化
/ 镍基单晶高温合金
2016
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Do you wish to request the book?
Molecular Dynamics Simulation of the Evolution of Interfacial Dislocation Network and Stress Distribution of a Ni-Based Single- Crystal Superalloy
by
Yun-Li Li Wen-Ping Wu Zhi-Gang Ruan
in
Characterization and Evaluation of Materials
/ Chemistry and Materials Science
/ Corrosion and Coatings
/ Crack propagation
/ Crystal dislocations
/ Evolution
/ Failure analysis
/ Gamma phase
/ Gamma-prime phase (crystals)
/ Interfaces
/ Interfacial dislocations
/ Materials Science
/ Mechanical properties
/ Metallic Materials
/ Misfit dislocations
/ Molecular dynamics
/ Morphology
/ Nanotechnology
/ Nickel base alloys
/ Organometallic Chemistry
/ Simulation
/ Single crystals
/ Spectroscopy/Spectrometry
/ Stress concentration
/ Stress distribution
/ Superalloys
/ Temperature
/ Temperature dependence
/ Tribology
/ Yield stress
/ 位错网络
/ 分子动力学模拟
/ 应力分布
/ 晶格失配
/ 温度依赖
/ 界面位错
/ 网络演化
/ 镍基单晶高温合金
2016
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Molecular Dynamics Simulation of the Evolution of Interfacial Dislocation Network and Stress Distribution of a Ni-Based Single- Crystal Superalloy
Journal Article
Molecular Dynamics Simulation of the Evolution of Interfacial Dislocation Network and Stress Distribution of a Ni-Based Single- Crystal Superalloy
2016
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Overview
The evolution of misfit dislocation network at γ/γ' phase interfaces and the stress distribution characteristics of Ni-based single-crystal superalloys under different temperatures of 0, 100 and 300 K are studied by molecular dynamics (MD) simulation. It was found that a closed three-dimensional misfit dislocation network appears on the γ/γ' phase interfaces, and the shape of the dislocation network is independent of the lattice mismatch. Under the influence of the temperature, the dislocation network gradually becomes irregular, a/2 [110] dislocations in the γ matrix phase emit and partly cut into the γ' phase with the increase in temperature. The dislocation evolution is related to the local stress field, a peak stress occurs at γ/γ' phase interface, and with the increase in temperature and relaxation times, the stress in the γ phase gradually increases, the number of dislocations in the γ phase increases and cuts into γ' phase from the interfaces where dislocation network is damaged. The results provide important information for understanding the temperature dependence of the dislocation evolution and mechanical properties of Ni-based single-crystal superalloys.
Publisher
The Chinese Society for Metals,Springer Nature B.V
Subject
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