INCIMAT carried out an advanced thermal analysis of an inspection device designed to operate in high-temperature industrial environments, evaluating its ability to protect internal electronic systems during inspection activities performed under extreme thermal conditions.
The scope of work included the three-dimensional modeling of the inspection device, considering the complete geometry of the system, insulation materials, internal compartments, inspection lenses, and the electronic components housed within the enclosure.
Using transient thermal simulations, the temperature evolution of the assembly was analyzed in detail, evaluating heat transfer mechanisms including conduction, convection, and radiation under different thermal exposure scenarios.
The results enabled the identification of the most critical areas of the geometry, the assessment of the effectiveness of the insulation systems, and the verification that internal components remained within acceptable temperature limits throughout the intended operating period.
The study provided valuable optimization criteria for the device design, allowing improvements in thermal resistance and ensuring safe and reliable operation in industrial applications exposed to elevated temperatures.
