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Due to this approach more detailed information about the microscopic origin of stress formation and coating morphology is obtained.
Numerical finite element analysis (FEA) provides the facility to examine stress formation in real-time depending on temporary heat distribution in the component during the manufacturing process.
A simple model of stress formation in c-BN films reveals that high ion energies and low Ar/N2 ratios should be used for stress reduction.
In order to solve this problem, a detailed understanding of the origins of stress formation in c-BN films is required.
This article explains the mechanisms of residual stress formation, residual stress effects on fatigue crack growth, and methods to evaluate and control residual stresses.
Combined, this yields a deeper understanding of residual stress formation and a tool for an effective optimization of thermal spray processes.
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This work studies the calculation of zero-stress formation energies of kink-pair configurations for BCC crystals.
Through triaxial synchronized mechanical and acoustic testing experiments, high-stress formation environments were simulated and the mechanical parameters of gypsum rocks were obtained.
But very few works have dealt with the study of residual stresses formation during the casting process.
Stress fiber formation and focal adhesion formation were almost completely absent in C8161.9 cells compared to M14 cells.
Although 0.01 µM simvastatin did not affect stress fiber formation, 10 µM simvastatin significantly reduced stress fiber formation (Figure 9A).
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