Influence of near-surface embossing on the hot crack formation during laser beam welding of metal sheets from 6000 aluminum alloys. 2025. [PUMA: myown ResidualStress Welding Embossing simulation HotCracking Aluminium]
Influence of near-surface embossing on the hot crack formation during laser beam welding of metal sheets from 6000 aluminum alloys. 2025. [PUMA: Aluminium Embossing HotCracking ResidualStress Welding myown simulation]
Influence of near-surface embossing on the hot crack formation during laser beam welding of metal sheets from 6000 aluminum alloys. Material Forming: ESAFORM 2025, (54):1221–1228, Materials Research Forum LLC, 2025. [PUMA: Aluminium Embossing HotCracking ResidualStress Welding myown simulation] URL
Influence of near-surface embossing on the hot crack formation during laser beam welding of metal sheets from 6000 aluminum alloys. Material Forming: ESAFORM 2025, (54):1221–1228, Materials Research Forum LLC, 2025. [PUMA: myown ResidualStress Welding Embossing simulation HotCracking Aluminium] URL
Transverse hot cracking in high-speed laser welding of high-strength aluminum alloys. 2025. [PUMA: Aluminium Cracking MacroMaterialProcessing Simulation Welding myown]
Transverse hot cracking in high-speed laser welding of high-strength aluminum alloys. 2025. [PUMA: myown Welding Simulation Cracking MacroMaterialProcessing Aluminium]
Regionalization of the Location-Dependent Charging Demand of Electric Passenger Cars at the Grid Square Level Using an Agent-Based Mobility Simulation. Energies, (18)15442025. [PUMA: Agent-Based Cars Charging Demand Electric Grid Level Location-Dependent Mobility Passenger Regionalization Simulation Square Using an at of the]
Vapour flow optimization by means of coherent beam combining beam shaping strategies to reduce spatter formation in laser welding. 2025. [PUMA: beam-shaping capillary coherent-beam-combining myown simulation]
Vapour flow optimization by means of coherent beam combining beam shaping strategies to reduce spatter formation in laser welding. 2025. [PUMA: myown capillary simulation beam-shaping coherent-beam-combining]
SADYCOS. Zenodo, 2025. [PUMA: aocs atlas crc1667 dynamics gnc ifr imported satellite sfb1667 simulation] URL
SADYCOS. Zenodo, 2025. [PUMA: myown sfb1667 atlas simulation aocs imported dynamics ifr gnc satellite] URL
Calibration of Fiber Orientation Simulations for LFT-A New Approach. JOURNAL OF COMPOSITES SCIENCE, (4)42020. [PUMA: thermoplastics;parameter-optimization;process calibration;fiber fiber microstructure;fiber simulation design;long models;lightweight reinforced orientation]
Dynamic Modeling and Simulation of a Facade Integrated Adsorption System for Solar Cooling of Lightweight Buildings. MPDI-Energies, 2024. [PUMA: Adsorption Buildings Cooling Dynamic Facade Integrated Lightweight Modeling Simulation Solar System a and for of]
Modellierung und Simulation eines fassadenintegrierten Adsorptionssystems zur solaren Gebäudekühlung. 2021. [PUMA: Adsorptionssystems Gebäudekühlung Modellierung Simulation eines fassadenintegrierten solaren und zur]
Modeling and simulation of a facade-integrated adsorption system for solar cooling of lightweight buildings. 2022. [PUMA: Modeling a adsorption and buildings cooling facade-integrated for lightweight of simulation solar system]
Modeling and simulation of a facade-integrated thermochemical energy storage system for solar cooling of buildings. 2024. [PUMA: Modeling a and buildings cooling energy facade-integrated for of simulation solar storage system thermochemical]
Modeling and simulation of a facade-integrated thermochemical energy storage system for solar cooling of buildings. 2024. [PUMA: Modeling a and buildings cooling energy facade-integrated for of simulation solar storage system thermochemical]
Simulation of a closed low-pressure honeycomb adsorber for thermal energy storage. International Journal of Heat and Mass Transfer, Elsevier, 2018, 2018. [PUMA: Simulation a adsorber closed energy for honeycomb low of pressure storage thermal]
Modeling and simulation of closed low-pressure zeolite adsorbers for thermal energy storage. International Journal of Heat and Mass Transfer, Elsevier, 2019,, 2019. [PUMA: Modeling adsorbers and closed energy for low-pressure of simulation storage thermal zeolite]
Dynamic Modeling and Simulation of a Facade-Integrated Adsorption System for Solar Cooling of Lightweight Buildings. Energies, MPDI, 2024. [PUMA: Adsorption Buildings Cooling Dynamic Facade-Integrated Lightweight Modeling Simulation Solar System a and for of]