Thesis: Solid Mechanics

6 months ago


Gothenburg, Sweden Semcon Full time
Göteborg Ansök senast: 30 november

Do you want to have fun at work?

With us, we have fun and develop all the time. We continuously run larger and smaller customer projects and assignments at our office in Lindholmen, where we jointly help our customers take their product to the next level. Two examples of our projects:

FSI analyses of air intake

Semcon contributed with expertise in simulation to ensure function and that requirements were met for a new type of large-scale industrial air intake. Several analyses were carried out, both FEA, CFD and coupled Fluid Structure (FSI) analyses.

Development of electrolyser

Development of new technology for electrolysers to be use in green hydrogen production. The project is conducted as a research and development project where Semcon contributes with a multi-disciplinary development team. The Simulation team support the project with structure and flow simulations to fulfil requirements for function, safety and efficiency of the hydrolyser.

About us

To be able to carry out these projects we need skilled simulation (CAE) engineers in both the structure and flow simulation (FEM/CFD) area.

At Semcon's Simulation department, our teams help our customers take their products to the next level. We are a mix of experienced and young hungry consultants where we learn from each other to jointly deliver the best solutions for our customers but also to develop as individuals. We are allowed to have different views and perspectives on things, but we value the same things; balance in life, having fun together and getting things done.

Master thesis Solid Mechanics (FEM)

Right now, we are looking for Master of Science students who wants to perform their Master thesis with us. Within the solid mechanics area, we have the following Master thesis suggestions.

Master thesis 1:

Title:

Anchoring to concrete – Development of effective analysis- and evaluation process

Description:
Anchoring to concrete is present in many different applications and industries. With a variety of anchor types, anchor plate geometries, spacing between anchors, failure modes, loads and load combinations it is a tedious task to evaluate numerous anchor plates manually.

This thesis aims to develop an effective analysis- and evaluation process for determining realistic responses in the anchors, steel structure and concrete and furthermore evaluate the design with respect to standard criteria. The tools use in the thesis are FE-based and python will be used for setting up the process from input to final failure mode utilizations.

Master thesis 2:

Title:
Durability Evaluation of Electric Scooters: From laser scanning to Finite Element Analysis

Description:
The future of sustainable transportation demands mobility solutions that perform well beyond imposed legal requirements and attract end-users that fully trust the product. Electric Scooters, often found in large rental fleets, are subject to a variety of mechanical loading and their structure must be optimized to perform at high levels in terms of design life, safety, cost of repair, up-time and sustainability. This could be done using virtual evaluation methods such as Finite Element Analysis.

This master’s thesis proposal suggests a complete verification loop to deliver life expectancy predictions for structural components of an Electric Scooter. The work includes laser scanning of an existing Scooter and generating a FEA model, determining representative load cases and performing durability simulations.

Please note in your application which theses you are interested in.

If you have any questions regarding the master theses, please contact:

Albin Lindmark:

Andreas Sernhage:

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