Full name Familienname, Vorname
Autengruber, Maximilian
 
Main Affiliation Organisations­zuordnung
 

Results 1-20 of 30 (Search time: 0.006 seconds).

PreviewAuthor(s)TitleTypeIssue Date
1Brandstaetter-2023-Journal of Building Engineering-vor.pdf.jpgBrandstätter, Florian ; Kalbe, Kristo ; Autengruber, Maximilian ; Lukacevic, Markus ; Kalamees, Targo ; Ruus, Aime ; Annuk, Alvar ; Füssl, Josef Numerical simulation of CLT moisture uptake and dry-out following water infiltration through end-grain surfacesArticle Artikel 1-Dec-2023
2Füssl, Josef ; Lukacevic, Markus ; Brandstätter, Florian ; Vida, Christoffer ; Pech, Sebastian ; Autengruber, Maximilian ; Eberhardsteiner, Josef Advanced Concepts for Modelling Failure and Transport Processes in Wood and Wood-Based ProductsPresentation Vortrag6-Sep-2023
3Duan, Qi ; Zhang, Wei-Cai ; Liu, Jie ; Jin, Feng ; Dong, Xian-Zi ; Bin, Fan-Chun ; Steinbauer, Patrick ; Zerobin, Elise ; Guo, Min ; Li, Teng ; Baudis, Stefan ; Zheng, Mei-Ling 22 nm Resolution Achieved by Femtosecond Laser Two-Photon Polymerization of a Hyaluronic Acid Vinyl Ester HydrogelArticle Artikel 7-Jun-2023
4Brandstaetter-2023-Wood Science and Technology-vor.pdf.jpgBrandstätter, Florian ; Autengruber, Maximilian ; Lukacevic, Markus ; Füssl, Josef Prediction of Moisture-Induced Cracks in Wooden Cross Sections Using Finite Element SimulationsArticle Artikel 3-May-2023
5Brandstätter, Florian ; Autengruber, Maximilian ; Lukacevic, Markus ; Füssl, Josef Numerical Simulation of Moisture-Induced Cracking in Indoor ClimateInproceedings Konferenzbeitrag2023
6Eberhardsteiner, Josef ; Pech, Sebastian ; Autengruber, Maximilian ; Vida, Christoffer ; Lukacevic, Markus ; Königsberger, Markus ; Füssl, Josef Numerical Modeling in Timber Engineering – Moisture Transport and Quasi-Brittle FailureArticle Artikel 2023
7Autengruber, Maximilian ; Lukacevic, Markus ; Füssl, Josef Long-Term Hygromechanical Behavior of Wood Exposed to Changing Climatic ConditionsPresentation VortragJul-2022
8Lukacevic, Markus ; Autengruber, Maximilian ; Pech, Sebastian ; Brandstätter, Florian ; Füssl, Josef Structural Performance Accessed by Computational MechanicsPresentation VortragJun-2022
9Brandstätter, Florian ; Autengruber, Maximilian ; Lukacevic, Markus ; Füssl, Josef Numerical Simulation of Moisture-Induced Cracking in Wood exposed to Indoor Climate ConditionsKonferenzbeitrag Inproceedings2022
10Autengruber, Maximilian ; Lukacevic, Markus ; Eberhardsteiner, Josef ; Füssl, Josef Computergestützte Modellierung von Feuchtetransportprozessen in HolzwerkstoffenArticle Artikel 2022
11Autengruber-2021-Engineering Structures-vor.pdf.jpgAutengruber, Maximilian ; Lukacevic, Markus ; Wenighofer, Gregor ; Mauritz, Raimund ; Füssl, Josef Finite-element-based concept to predict stiffness, strength, and failure of wood composite I-joist beams under various loads and climatic conditionsArticle Artikel 15-Oct-2021
12Autengruber-2021-Heat and mass transfer model for wood including free wate...-am.pdf.jpgAutengruber, Maximilian ; Lukacevic, Markus ; Füssl, Josef Heat and mass transfer model for wood including free water transportInproceedings Konferenzbeitrag Aug-2021
13Autengruber, Maximilian ; Lukacevic, Markus ; Wenighofer, Gregor ; Mauritz, Raimund ; Füssl, Josef Finite-element-based concept to predict stiffness, strength, and failure of wood composite I-joist beams under various loads and climatic conditionsArtikel Article 2021
14Autengruber, Maximilian Numerical Simulation of Moisture Transport in Wood Including Free Water TransportPräsentation Presentation2021
15Lukacevic, Markus ; Autengruber, Maximilian ; Raimer, Thomas ; Eberhardsteiner, Josef ; Füssl, Josef Effect of Cast-In-Place Concrete Application on Moisture Distribution in Timber-Concrete Composite Floors with Notched Connections, Investigated Via Finite Element SimulationsArtikel Article 2021
16Autengruber, Maximilian ; Lukacevic, Markus ; Vida, Christoffer ; Pech, Sebastian ; Füssl, Josef Computergestützte Modellierung im Holzbau - Herausforderungen und MöglichkeitenKonferenzbeitrag Inproceedings2021
17Autengruber, Maximilian ; Lukacevic, Markus ; Gröstlinger, Christof ; Eberhardsteiner, Josef ; Füssl, Josef Numerical Assessment of Wood Moisture Content-Based Assignments to Service Classes in EC5 and a Prediction Concept of Moisture-Induced Stresses Solely Using Relative Humidity DataArtikel Article 2021
18Autengruber, Maximilian ; Lukacevic, Markus ; Gröstlinger, Christof ; Füssl, Josef Finite-Element-Based Prediction of Moisture-Induced Crack Patterns for Cross Sections of Solid Wood and Glued Laminated Ttmber Exposed to a Realistic Climate ConditionArtikel Article 2021
19Autengruber Maximilian - 2021 - Numerical simulation concepts for moisture...pdf.jpgAutengruber, Maximilian Numerical simulation concepts for moisture transport in wood and wood-based products, below and above the fiber saturation point, to predict moisture-induced failure mechanismsThesis Hochschulschrift 2021
20Autengruber, Maximilian ; Lukacevic, Markus ; Füssl, Josef Finite-Element-Based Moisture Transport Model for Wood Including Free Water Above the Fiber Saturation PointArtikel Article 2020

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