Found 9 relevant results in 2.47s where lecturer="Falk Wittel"
AI and ML are increasingly transforming materials mechanics by enabling accelerated material design, property prediction, constitutive modelling, and insight into complex material behaviors. We combine theoretical foundations with extensive practical exercises, focusing on civil engineering materials (e.g., concrete, alloys, composites, wood) and the modeling of their mechanical behavior.
Introduction to computational sciences with focus on numerical modeling of the mechanics of materials. Simulation of material damage, fracture and failure with various material models.
In this hands-on computer course, based on Python Jupyter notebooks, you will be introduced and explore combined learning of programming and task-solving of civil-engineering relevant problems. By addressing topics where engineers rely on computers and numerics, you will learn about solution strategies and how to put them into practice by setting up solution “pipelines”.
Introduction to Materials
Werkstoffe
In this introductory lecture, students gain basic knowledge on building materials like cement, concrete, metals, glass, wood, polymers, and bitumen, their manufacturing and processing, important properties and their application. Fundamental mechanical, thermal and optical properties are discussed and experimental ways for measuring, as well as numerical methods for predicting them, are depicted.
Materials III
Werkstoffe III
Introduction into the basic and practical knowledge of important building materials and testing methods.
Materials Lab Exercises
Werkstoffe Laborpraktikum
Introduction into the basic and practical knowledge of important building materials and testing methods.
Materials in Civil Engineering I
Werkstoffe im Bauwesen I
Vermittlung von grundlegenden theoretischen und praktischen Kenntnissen über klassische Baustoffe (Zement, Beton, Metalle, Glas, Holz, Kunststoffe und Bitumen) und ihre Eigenschaften und werkstoffgerechten Einsatz. Werkstoffübergreifende Betrachtungen von Materialverhalten, -auswahl und Optimierung im Entwurfsprozess (inkl. Nachhaltigkeit und Eignung für digitale Fabrikationsprozesse).
Materials in Civil Engineering II
Werkstoffe im Bauwesen II
Vermittlung von grundlegenden theoretischen und praktischen Kenntnissen über klassische Baustoffe (Zement, Beton, Metalle, Glas, Holz, Kunststoffe und Bitumen) und ihre Eigenschaften und werkstoffgerechten Einsatz. Werkstoffübergreifende Betrachtungen von Materialverhalten, -auswahl und Optimierung im Entwurfsprozess (inkl. Nachhaltigkeit und Eignung für digitale Fabrikationsprozesse).
The course offers an overview of relevant practical issues and present technological challenges for glass and natural stones in constructions. Students gain a good knowledge of the basics of glasses and natural stones, their potential as engineering materials and learn to apply them in the design of civil engineering constructions and to evaluate concepts.