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- W2586233930 abstract "The matrix repatterning process during the cause of molecular deformation is studied. Aluminum 6063 alloy, which was melted at 650 o C and subjected to two solidification kinetics, (vibratory and static), in a steel die mould. The evaluation of molecular parameters, the velocity, pressure, and temperature of the alloy were obtained during the experimental process to assess parametric properties and influence on the molecules as deformation occurred. It was revealed that velocity of impact dominates the experimental temperatures and pressures recorded. Moreover, vibrated solidification process possessed more impact absorbing energy than static cooling process. Conclusively, the evaluations of the most probable speed show that temperature for static cooling was reached faster than that of vibrated solidifications. Thus, kinetic energy had great effect in delocalization and deformation process of molecules of the material. According to (7), who examined the effects of tensile deformation rates on tensile properties of polypropylene, affirmed that deformation parameters had great influence in the deformation of the material but in their analysis tensile rate of deformations was evaluated leaving out the internal effect of mechanism that brought about the process and ultimate tensile properties of the material. The elastomeric network deformation analysis of" @default.
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- W2586233930 date "2013-01-01" @default.
- W2586233930 modified "2023-09-27" @default.
- W2586233930 title "Analysis of Kinetic Energy Effect in Molecular Deformation of Aluminum 6063 Alloy" @default.
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