Návrh uchycení termokamery pro termoelastická měření

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Vysoká škola báňská - Technická univerzita Ostrava

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The bachelor thesis is concerned with the design and the strength calculation of an assembly of the thermocamera gripping made by 3D print technology situated on a pillar of a biaxial pulsator. The theoretical part consists of the description of several electromagnetics laws, which are connected with the principle of thermal imaging, and explanations of function of the most used infrared sensors. The practical part contains a description of a designed gripping assembly, which is put in the strength calculation by the finite element method. The assembly meeting the strength requirements is converted into 3D print format and an analysis of infills used during the process of printing is made by the finite element method due to the best mechanical properties of every single part. In conclusion the verification of the assembly is realized including some recommendations.

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principle of thermal imaging, thermocamera gripping, FEM simulation, 3D print, nonlinear task, stiffness of infill

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