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Corrosion is one of the most destructive processes in materials induced by environment.
Mechanical wear normally corresponds to fracture, plastic deformation, and viscous flow of materials induced by mechanical impress or/and shear stress [2 4].
In this work, we have proposed a concept for the generation of three-dimensional (3D) nanostructured metal alloys of immiscible materials induced by megahertz-frequency ultrafast laser pulses.
We study dynamic fracture in construction materials induced by electric discharge impulses (EDI) that evaporate self-reactive liquid and produce high pressures in blast holes.
In addition, ZnO was able to effectively relieve the agglomeration of the Si-Sb alloy particles, preventing the loss of electric contact between the current collector and electrode materials induced by volume expansion.
In addition, ZnO was able to effectively relieve the agglomeration of the Si-Sb alloy particles, preventing the loss of electric contact between the current collector and electrode materials induced by the volume expansion.
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The effect has been attributed to the reduction of the defectivity of the material induced by annealing.
The effect has been attributed to the reduction of the defectivity of the material induced by the annealing.
Metal-sulfides electrode materials usually suffer from poor cyclability and low rate capability in rechargeable batteries as a result of the pulverization of active materials and the loss of sulfur material induced by polysulfide dissolution.
The nonlinear ultrasonic signals, like second harmonic generation (SHG) signals, could reflect the nonlinearity of material induced by fatigue damage in nonlinear ultrasonic technique which are weak nonlinear signals and usually submerged by strong background noise.
Bending or extrusion deformation of EPWM material induced by external excitations will lead to contact friction across interface between the adjacent crisscross wires, and the vibration energy is dissipated by friction damping.
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