Within this thesis, a mathematical framework for uniform calculation, analysis and optimization of geometry and meshing behavior of arbitrary tooth shapes is presented. A particular focus is being placed on computation of so far little researched non-standard gearings with regard to practical manufacture. The potential of analytical formulae for a closed-loop gear design process is demonstrated by the means of specific applications. Comparative calculations with exemplary gear calculation software verify the results.
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Within this thesis, a mathematical framework for uniform calculation, analysis and optimization of geometry and meshing behavior of arbitrary tooth shapes is presented. A particular focus is being placed on computation of so far little researched non-standard gearings with regard to practical manufacture. The potential of analytical formulae for a closed-loop gear design process is demonstrated by the means of specific applications. Comparative calculations with exemplary gear calculation softwa...
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