Modules

4 results

Master's Modules4

Auslegung und Bauweisen von Composite StrukturenStructureYou learn how composite structures are designed, laid out, and constructed — from classical lamination theory over failure criteria to manufacturing and repair. At the end you will develop a composite structure based on a demonstrator component, perform FE analyses and preliminary design, and evaluate manufacturing and in-service defects and plan repairs.5 ECTSruns this semesterMW1393Faser-, Matrix-, und Verbundwerkstoffe mit ihren EigenschaftenStructureYou will learn about the structure, properties and potential applications of fiber, matrix and composite materials. In the end you will be able to differentiate starting materials and their processing into components, evaluate material and manufacturing processes, and assess and design potentials and manufacturing concepts for fiber-reinforced components.5 ECTSruns this semesterMW1394Luft- und RaumfahrtstrukturenStructureIn this module you will learn the fundamentals and methods for the design and sizing of aerospace structures. You will gain insight into structural concepts, materials, load assumptions, stability and fatigue issues, as well as the application of the finite element method and basics of multidisciplinary optimization. In the end you will be able to perform preliminary design and sizing of components and carry out calculations on stability, time-to-failure and load assumptions.5 ECTSno date this semesterMW0063Numerische Methoden in der StrukturdynamikStructureYou will learn numerical methods for modeling and simulating the vibration dynamics of structures. In the end you will be able to apply discretization methods (e.g., Rayleigh-Ritz, Finite Elements) and numerical solution procedures for linear systems, eigenvalue problems and time integration, as well as employ model reduction, damping models and modal methods.5 ECTSno date this semesterED160053
1 more module matches, but it is taught in German. Show itFinite ElementeStructureDu lernst, wie Strukturen des Ingenieurwesens mit der Finite-Elemente-Methode (FEM) modelliert, diskretisiert und numerisch gelöst werden. Am Ende kannst du passende Modell- und Elementtypen auswählen, FEM-Lösungen durchführen und deren Ergebnisse kritisch einschätzen.5 ECTSno date this semesterMW0612