Project Details
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EXC 1075:  Merge Technologies for Multifunctional Lightweight Structures - MERGE

Subject Area Production Technology
Mechanics and Constructive Mechanical Engineering
Term from 2012 to 2019
Project identifier Deutsche Forschungsgemeinschaft (DFG) - Project number 194654001
 
Final Report Year 2020

Final Report Abstract

Future technological and product developments will be measured by their enhancement of resource and energy efficiency for the purpose of sustainable climate protection with significant reduction in greenhouse gas emissions. Key technologies for mass production of lightweight components are pivotal to implementing the required measures. The main objective of the Cluster of Excellence “MERGE Technologies for Multifunctional Lightweight Structures” is to combine basic technologies suitable for the resource-efficient mass production of lightweight structures with high performance density and high functional density. The cluster's mission is to exploit the existing savings potential, both in the production process, by using merged technologies, and during the use phase, by reducing the weight of components. In so doing, MERGE is following the long-term strategy of Bivalent Resource Efficiency (BRE strategy). The research work focuses on combination technologies for in-line and in-situ processing of metal, plastics and textiles. All of these processes are characterized by their suitability for mass production, which henceforth have to align with mass customization. In addition, the functionality of lightweight structures will be increased by integrating micro- and nano-systems. This enables the potential for energy saving and lightweight construction to be fully utilized, while simultaneously considering consistent digitalization – from product creation, to the use phase, right through to remanufacturing. The hybridization of processes and structures requires, among others, cross-process design of tailor-made interfaces, multi-criteria simulation-based optimization, and an assessment of sustainability that uses a systemic approach. Close collaboration takes place between engineering and natural sciences on the one hand, and between technology- and design-related disciplines on the other hand within the established Merge Central Institution at Chemnitz University of Technology (CUT), which serves as a platform for interdisciplinary research. The institutional concentration of the research partners at a single location – the Technology Campus – benefits the transfer of knowledge for process merging and has led to a prioritization of CUT by defining the core competencies of “Materials and Intelligent Systems” and “Resource-Efficient Manufacturing and Lightweight Construction”. The profile sharpening is facilitated by numerous measures within MERGE which have been specifically established for this purpose: International Master's Programme, new full professors and endowed chairs, Open-Access Journal, Scientific and Industrial Advisory Boards, MTC e. V., and the MERGEurope International Lightweight Innovation Network. The expansion of the MERGE Technology Centre, which was launched 2016, is already a central component of the university’s strategic focus and that of the Free State of Saxony.

Link to the final report

https://doi.org/10.2314/KXP:1698767064

Publications

  • CAPAAL and CAPET – New Materials of High-Strength, High-Stiff Hybrid Laminates. In: Fathi, M. (Hrsg.): Integrated Systems, Design and Technology 2010. Springer Verlag, Berlin, 2011, S. 23-36
    Wielage, B.; Nestler, D.; Steger, H.
    (See online at https://doi.org/10.1007/978-3-642-17384-4_3)
  • Ceramic Fibers Based on SiC and SiCN Systems: Current Research, Development, and Commercial Status. Advanced Engineering Materials. 16
    Octavio, F.; Rajendra, B.; Daisy, N.; Walter, K.; Günter, M.
    (See online at https://doi.org/10.1002/adem.201400069)
  • Evaluation of different carbon precursors for the liquid silicon infiltration process. High Temperature Ceramic Matrix Composites 8: Ceramic Transactions 1044-1122, Volume 248, Wiley, Xian, 2014, S. 409–416
    Roder, K.; Todt, A.; Nestler, D.; Wielage, B.
    (See online at https://doi.org/10.1002/9781118932995.ch44)
  • Modelling head impact safety performance of polymer-based foam protective devices. Procedia Engineering, Sheffield, 2014, S. 80-85
    Schwanitz, S.; Costabile, G. ; Amodeo, G. ; Odenwald, S. ; Lanzotti, A.
    (See online at https://doi.org/10.1016/j.proeng.2014.06.100)
  • 1-Cyano-1′-ethynyl-ferrocene: Synthesis and reaction chemistry. J. Organomet. Chem. 2015 (2015), Nr. 786, S. 1-9
    Strehler, F.; Korb, M.; Poppitz, E. A.; Lang, H.
    (See online at https://doi.org/10.1016/j.jorganchem.2015.02.049)
  • Applications for Ultrascale Computing. Supercomputing Frontiers and Innovations 1 (2015), Nr. 2, S. 19-48
    Bongo, L. A.; Ciegis, R.; Frasheri, N.; Gong, J.; Kimovski, D.; Kropf, P.; Margenov, S.; Mihajlovic, M.; Neytcheva, M.; Rauber, T.; Rünger, G.; Trobec, R.; Wuyts, R.; Wyrzykowski, R.
    (See online at https://doi.org/10.14529/jsfi150102)
  • Computational modelling of the complex dynamics of chemically blown polyurethane foam. Physics of Fluids 27 (2015)
    Ireka, I. E.; Niedziela, D.; Schäfer, K.; Tröltzsch, J.; Steiner, K.; Helbig, F.; Chinyoka, T.; Kroll, L.
    (See online at https://doi.org/10.1063/1.4935788)
  • Crystal structure of an unknown tetrahydrofuran solvate of tetrakis (μ3-cyanato-κ3N:N:N)tetrakis-[(triphenylphosphane-κP)silver(I)]. Acta Crystallographica, Section E: Crystallographic Communications 2015 (2015), Nr. 71(10), S. 1262-1265
    Frenzel P.; Schaarschmidt D.; Jakob A.; Lang H.
    (See online at https://doi.org/10.1107/S2056989015017636)
  • Development and Characterisation of Phenolic Resin Based Liquid Silicon Infiltrated SiC/SiC Composites with SiNx Fibre Coating. 2015, Materials Science Forum. 825-826
    Mainzer, B.; Frieß, M.; Roder, K.; Nestler, D.; Wett, D.; Wöckel, L.; Ebert, T.; Wagner, G.; Spange, S.; Koch, D.
    (See online at https://doi.org/10.4028/www.scientific.net/MSF.825-826.224)
  • Development of hybrid assembled composites with sensory function. CIRP Annals - Manufacturing Technology 2015 (2015), Nr. Vol. 64 Issue 1, S. 25 – 28
    Kräusel, V. ; Graf, A. ; Heinrich, M. ; Decker, R. ; Caspar, M. ; Kroll, L. ; Hardt, W. ; Göschel, A.
    (See online at https://doi.org/10.1016/j.cirp.2015.04.054)
  • Energyefficient Algorithms for Ultrascale Systems. Supercomputing Frontiers and Innovations 2016 (2015), Nr. 2, vol. 2, S. 77-104
    Carretero, J.; Distefano, S.; Petcu, D.; Pop, D.; Rauber, T.; Rünger, G.; Singh, D. E.
    (See online at https://doi.org/10.14529/jsfi150205)
  • Fundamental studies and development on an innovative ceramic-polymer composite material. Materials Science Forum 825-826 (2015), S. 305–313
    Nestler, D; Todt, A.; Wielage, B.; Wagner, G.
    (See online at https://doi.org/10.4028/www.scientific.net/MSF.825-826.305)
  • Highly-sensitive humidity sensors for condition monitoring of hybrid laminates. 20th Symposium on Composites, Vienna (Austria), 2015, S. 579-585
    Seider, T.; Martin, J.; Boeddicker, A.; Ruehling, J.; Wett, D.; Nestler, D. J.; Wagner, G.; Huebler, A.; Otto, T.; Gessner, T.
    (See online at https://doi.org/10.4028/www.scientific.net/MSF.825-826.579)
  • Multidimensional analysis of process chains regarding the resource-efficient manufacturing of hybrid structures. Procedia CIRP 2015, Nr. 26, S. 595 – 600
    Fanghänel, C.; Rautenstrauch, A.; Symmank, C.; Katzenberger, J.; Putz, M.; Götze, U.; Kräusel, V.; Awiszus, B.
    (See online at https://doi.org/10.1016/j.procir.2014.07.156)
  • New lightweight construction prospects enabled by hydroforming. International Conference on New Forming Technology (ICNFT) , Glasgow, 2015
    Werner, M.; Psyk, V.; Albert, A.; Pröhl, M.; Kurka, P.; Landgrebe, D.; Drossel, W.-G.
    (See online at https://doi.org/10.1051/matecconf/20152106004)
  • New Materials for Sports Equipment Made of Anisotropic Fiber-reinforced Plastics with Stiffness Related Coupling Effect. Procedia Engineering 2015 (2015), Nr. 112, S. 140 – 145
    Kaufmann, J.
    (See online at https://doi.org/10.1016/j.proeng.2015.07.189)
  • Photoluminescence quenching of InP/ZnS quantum dots by charge injection. Quantum Sensing and Nanophotonic Devices XII, San Francisco, California, 2015
    Moebius, M.; Ma, X.; Martin, J.; Doty, M. F.; Otto, T.; Gessner, T.
    (See online at https://doi.org/10.1117/12.2185047)
  • Practical verification of constructional similarity theory. Springer Berlin Heidelberg 2015 (2015)
    Gendarz, P., Kroll, L. & Rabsztyn, D. Forsch
    (See online at https://doi.org/10.1007/978-3-319-50938-9_17)
  • Process combination of hydroforming and injection moulding for the in-situ manufacturing of metal and plastic composite structures. Symposium on Composite, Vienna, 2015
    Albert, A.; Drossel, W.-G.; Zorn, W.; Nendel, W.; Raithel, D.
    (See online at https://doi.org/10.4028/www.scientific.net/MSF.825-826.522)
  • Strain rate effects on the localization of the stress-induced martensitic transformation in pseudoelastic NiTi under uniaxial tension, compression and compression–shear. Materials Science and Engineering A 2015 (2015), Nr. 643, S. 194-202
    Elibol C., Wagner M.F.-X.
    (See online at https://doi.org/10.1016/j.msea.2015.07.039)
  • Surface and fracture surface analysis of thermally bonded metal/composite joints. Materials Science Forum 2015 (2015), Nr. 825-826, S. 328-335
    Nestler, D.; Döhler, C.; Wagner, G.
    (See online at https://doi.org/10.4028/www.scientific.net/MSF.825-826.328)
  • Sustainability through flexibility: Building complex simulation programs for distributed computing systems. Simulation Modelling Practice and Theory, Special Issue on Techniques And Applications For Sustainable Ultrascale Computing Systems 2015, Nr. 58, S. 65-78
    Hofmann, M.; Rünger, G.
    (See online at https://doi.org/10.1016/j.simpat.2015.05.007)
  • Zirconium and Hafnium Twin Monomers for Mixed Oxides. ChemPlusChem 2015, Nr. Volume 80, Issue 3, S. 559–567
    Schliebe, C.; Gemming, T.; Noll, J.; Mertens, L.; Mehring, M.; Seifert, A.; Spange, S.; Lang, H.
    (See online at https://doi.org/10.1002/cplu.201402338)
  • Advances in Deposition of Main-Group and Metal Rare-Earth Oxides from Metal Enolates. In: I. Marek, John Wiley & Sons Ltd. (Hrsg.): Patai’s, Chemistry of Functional Groups. John Wiley & Sons Ltd., Chichester, UK , 2016
    Lang H.; Adner D.; Georgi C.
    (See online at https://doi.org/10.1002/9780470682531.pat0911)
  • Advances in Deposition of Metals from Metal Enolates. In: I. Marek, John Wiley & Sons Ltd., (Hrsg.): In Patai’s, Chemistry of Functional Groups. Wiley , Chichester, UK, 2016
    H. Lang, D. Adner und C. Georgi
    (See online at https://doi.org/10.1002/9780470682531.pat0901)
  • Advances in Deposition of Transition-Metal Oxides from Metal Enolates. In: In I. Marek, John Wiley & Sons Ltd., (Hrsg.) (Hrsg.): In Patai’s, Chemistry of Functional Groups. John Wiley & Sons Ltd., Chichester, UK , 2016
    Lang, H.; Adner D.; Georgi C.
    (See online at https://doi.org/10.1002/9780470682531.pat0910)
  • Asperical silver nanoparticles by thermal decomposition of a single-source-precursor. Inorganica Chimica Acta 2016, Nr. Volume 446, S. 19–23
    Adner, D.; Noll, J.; Schulze, S.; Hietschold, M.; Lang, H.
    (See online at https://doi.org/10.1016/j.ica.2016.02.059)
  • Bis(β-diketonato)- and allyl-(β-diketonato)-palladium(II) complexes: synthesis, characterization and MOCVD application. RSC Advances 2016, Nr. 6, S. 102557-102569
    Assim, K.; Melzer, M.; Korb, M.; Rüffer, T.; Jakob, A.; Noll, J.; Georgi, C.; Schulz, S. E.; Lang, H.
    (See online at https://doi.org/10.1039/c6ra22887a)
  • Continous splitting of carbon fibre rovings. Journal of Industrial Textiles 2016 (2016), Nr. 45 (2016) 5, S. 930–943
    Mäder, Th.; Trautmann, M.; Nestler, D.; Wielage, B.
    (See online at https://doi.org/10.1177/1528083714545392)
  • Continuous splitting of carbon fibre rovings. 2016, Journal of Industrial Textiles, 45(5), 930–943
    Mäder, T., Trautmann, M., Nestler, D., & Wielage, B.
    (See online at https://doi.org/10.1177/1528083714545392)
  • Crystal structure of (μ-1,4-dicarboxybutane-1,4-dicarboxylato)bis[bis(triphenylphosphane)silver(I)] dichloromethane trisolvate. Acta Crystallographica, Section E 2016 (2016), Nr. E72, S. 215-219
    Frenzel, P.; Korb, M.; Lang, H.
    (See online at https://doi.org/10.1107/S2056989016000797)
  • Crystal structure of bis[tetrakis(triphenylphosphane-κP)silver(I)] (nitrilotriacetato-κ4N,O,O',O'') (triphenylphosphane-κP)argentate(I) with an unknown amount of methanol as solvate. Acta Crystallographica Section E 2016, Nr. E72, S. 318-321
    Noll, J.; Korb, M.; Lang, H.
    (See online at https://doi.org/10.1107/S2056989016001262)
  • Development of wound SiCBNx/SiNx/SiC with near stoichiometric SiC matrix via LSI process. Journal of European Ceramic Society 2016 (2016), Nr. 36 (2016) 7, S. 1571–1580
    Mainzer, B.; Roder, K.; Wöckel, L.; Frieß, M.; Koch, D.; Nestler, D.; Wett, D.; Podlesak, H.; Wagner, G.; Ebert, T.; Spange, S.
    (See online at https://doi.org/10.1016/j.jeurceramsoc.2015.12.015)
  • Effect of Maleic Anhydride Modification on the Mechanical Properties of a Highly Filled Glass Fibre Reinforced, Low-Viscosity Polypropylene for Injection Moulding. Journal of Materials Science Research 5 (2016), Nr. 2, S. 105-114
    Tröltzsch, J.; Stiller, J.; Hase, K.; Roth, I.; Helbig, F.; Kroll, L.
    (See online at https://doi.org/10.5539/jmsr.v5n2p111)
  • Effect of new adhesion promoter and mechanical interlocking on bonding strength in metal-polymer composites. IOP Conference Series: Materials Science and Engineering 2016, Nr. Vol. 118, Nr. 1
    Schuberth, A.; Scharf, I.; Lindner, T.; Lampke, T.; Göring, M.; Spange, S.; Töberling, G.; Puschmann, M.; Riedel, F.
    (See online at https://doi.org/10.1088/1757-899X/118/1/012041)
  • Energy-efficiency in a hybrid process of sheet metal forming and polymer injection moulding. Procedia CIRP 2016, Nr. Vol. 40, S. 109-114
    Landgrebe, D.; Kräusel, V.; Rautenstrauch, A.; Albert, A.; Wertheim, R.
    (See online at https://doi.org/10.1016/j.procir.2016.01.068)
  • Extrinsically Carbon Fiber Reinforced Polymer/Aluminum Foam Sandwich Composites. International Journal of Engineering Sciences & Research Technology (IJESRT) 2016 (2016), Nr. Volume 5, Issue 6, S. 500-506
    Hackert, A.; Müller, S.; Ulke-Winter L.; Osiecki, T.; Gerstenberger, C.; Kroll, L.
    (See online at https://doi.org/10.5281/zenodo.55617)
  • Integration of Humidity Sensors into Fibre-reinforced Thermoplastic Composites. Procedia Technology Volume 26, Paderborn, 2016, S. 207-213
    Ebert, F.; Seider, T.; Illing-Guenther, H.; Nendel, K.; Martin, J.; Otto, T.; Gessner, T.; Nestler, D.; Wagner, G.
    (See online at https://doi.org/10.1016/j.protcy.2016.08.028)
  • Investigation on an Inkjet Printed Passive Sensor for Wireless Ice Detection on Wind Rotor Blades. Journal of Imaging Science and Technology 2016, Nr. Volume 60, Number 4, S. 40402-1 - 40402-7
    Hartwig, M.; Gaitzsch, M.; Großmann, T. D.; Heinrich, M.; Kroll, L.; Gessner, T.; Baumann, R. R.
    (See online at https://doi.org/10.2352/J.ImagingSci.Technol.2016.60.4.040402)
  • Low temperature joining of copper by Ag nanopaste: correlation of mechanical properties and process parameters. Welding in the world 60 (2016), Nr. 6, S. 1277-1286
    Hausner, S.; Weis, S.; Wielage, B.; Wagner, G.
    (See online at https://doi.org/10.1007/s40194-016-0381-1)
  • Multiple polymerization – formation of hybrid materials consisting of two or more polymers from one monomer. Polymer Chemistry 2016 (2016), Nr. 7, S. 6826-6833
    Ebert, T.; Wollbrink, A.; Seifert, A.; John, R.; Spange, S.
    (See online at https://doi.org/10.1039/c6py01619g)
  • Optimal Control Problems in Finite Strain Elasticity by Inner Pressure and Fiber Tension. Frontiers in Applied Mathematics and Statistics 2016 (2016), Nr. 2
    Herzog, R.; Günnel, A.
    (See online at https://doi.org/10.3389/fams.2016.00004)
  • Optimal Experimental Design for Linear Elastic Model Parameter Identification of Injection Molded Short Fiber-Reinforced Plastics. International Journal for Numerical Methods in Engineering 2016 (2016)
    Herzog, R.; Ospald, F.
    (See online at https://doi.org/10.1002/nme.5371)
  • Process combinations for the manufacturing of metal-plastic hybrid parts. IOP Conference Series: Materials Science and Engineering 2016, Nr. Vol. 118, Nr. 1
    Drossel, W.-G.; Lies, C., Albert, A., Haase, R.; Müller, R.; Scholz, P.
    (See online at https://doi.org/10.1088/1757-899X/118/1/012042)
  • Using quantum dot photoluminescence for load detection. AIP Advances 2016, Nr. 6, S. 6
    Moebius, M.; Martin, J.; Hartwig, M.; Baumann, R.R.; Otto, T.; Gessner, T.
    (See online at https://doi.org/10.1063/1.4961145)
  • A fiber orientation-adapted integration scheme for computing the hyperelastic Tucker average for short fiber reinforced composites. Computational Mechanics
    Goldberg, N.; Ospald, F.; Schneider, M.
    (See online at https://doi.org/10.1007/s00466-017-1425-0)
  • A numerical and experimental comparison of test methods for the shear strength in hybrid metal/thermoplastic-compounds. IOP Conf. Ser.: Mater. Sci. Eng 2017 (2017), Nr. 181, S. 1-13
    Saborowski, E.; Scholze, M.; Lindner, T.; Lampke, T.
    (See online at https://doi.org/10.1088/1757-899X/181/1/012031)
  • Amino Group Bearing Organic- Inorganic Hybrid Materials for Joining Aluminium Alloys and Thermoplastic Fiber-Reinforced Parts. Advanced Materials Interfaces 2017 (2017), Nr. 4 (16), S. 1-12
    Göring, M.; Schreiter, K.; Schuberth, A.; Windberg, T.; Jung, H.; Anders, S.; Müller, P.; Nickel, D.; Nestler, D.; Kroll, L.; Wielage, B.; Lampke, T.; Spange, S.
    (See online at https://doi.org/10.1002/admi.201601115)
  • Aqueous Poly(N-Vinylformamide-co-Vinylamine) as a Suitable Adhesion Promoter for Wood Veneer/Biopolyethylene Composite Materials. Bioresources 2017 (2017), Nr. 12, S. 8134-8159
    John, R.; Trommler, K.; Schreiter, K.; Siegel, C.; Simon, F.; Wagenführ, A.; Spange, S.
    (See online at https://doi.org/10.15376/biores.12.4.8134-8159)
  • Continuous film stacking and thermoforming process for hybrid CFRP/aluminum laminates. Procedia CIRP 2017, Nr. 66, S. 107-112
    Nestler, D.; Trautmann, M.; Zopp, C.; Tröltzsch, J.; Osiecki, T.; Nendel, S.; Wagner, G.; Kroll, L.
    (See online at https://doi.org/10.1016/j.procir.2017.03.221)
  • Continuous Manufacturing of Piezoceramic Hybrid Laminates for Functionalised Formed Structural Components. Technologies for Lightweight Structures 2017 (2017), Nr. 1, S. 1-13
    Ullmann, F.; Decker, R.; Graf, A.; Kräusel, V.; Heinrich, M.; Hardt, W.; Kroll, L.; Landgrebe, D.
    (See online at https://doi.org/10.21935/tls.v1i1.64)
  • Development of Nonwoven Preforms Made of Pure Recycled Carbon Fibres (rCF) for Applications of Composite Materials. Key Engineering Materials, 21st Symposium on Composites, 2017, S. 555–561
    Hofmann, M.; Wenzel, D.; Gulich, B.; Illing-Günther, H.; Nestler, D.
    (See online at https://doi.org/10.4028/www.scientific.net/KEM.742.555)
  • Hybrid N-Butylamine-Based Ligands for Switching the Colloidal Solubility and Regimentation of Inorganic- Capped Nanocrystals. ACS Nano 2017, Nr. 11, S. 1559-1579
    Sayevich, V.; Guhrenz, C.; Dzhagan, V. M.; Sin, M.; Werheid, M.; Cai, B.; Borchardt, L.; Widmer, J.; Zahn, D. R. T.; Brunner, E.; Lesnyak, V.; Gaponik, N.; Eychmüller, A.
    (See online at https://doi.org/10.1021/acsnano.6b06996)
  • Influence of Hardener Content and Curing Parameters on the Microstructure and Mechanical Properties of Porous C/C Composites. Key Engineering Materials, 21st Symposium on Composites, 2017, S. 246–252, ISSN: 1662-9795
    Todt, A.; Roder, K.; Nier, N.; Wielage, B.; Wagner, G.; Nestler, D.
    (See online at https://doi.org/10.4028/www.scientific.net/KEM.742.246)
  • Influence of the Annealing Process Parameters in the Production of New Short- Fibre-Reinforced C/C-SiC Composites, In: Advances in High Temperature Ceramic Matrix Compo sites and Materials for Sustainable Development. Ceramic Transactions 2017 (2017), Nr. Volume CCLXIII, 2017, S. 85–96
    Nier, N.; Nestler, D.; Gurk, H.; Roder, K.; Wagner, G.; Päßler, E.; Kroll, L.; Weißhuhn, J.; Spange, S.
    (See online at https://doi.org/10.1002/9781119407270.ch9)
  • Influencing the Mechanical Properties of Weak Matrix C/C Composites by Means of Microstructural Design, In: Advances in High Temperature Ceramic Matrix Compo sites and Materials for Sustainable Development. Ceramic Transactions 2017 (2017), Nr. Volume CCLXIII, S. 125–135
    Todt, A.; Nestler, D.; Roder, K.; Nier, N.; Wielage, B.; Wagner, G.
    (See online at https://doi.org/10.1002/9781119407270.ch13)
  • Integrating generic FEM simulations into complex simulation applications. Scalable Computing: Practice and Experience, Special issue on High Performance Computing Solutions for Complex Problems 2017 (2017), Nr. 18, S. 133-144
    Dietze, R.; Hofmann, M.; Rünger, G.
    (See online at https://doi.org/10.12694/scpe.v18i2.1285)
  • Life Cycle Engineering and Management – Fostering the Management-orientation of Life Cycle Engineering Activities. Procedia CIRP 61 (2017), S. 134–139
    Götze, U.; Peças, P.; Schmidt, A.; Symmank, C.; Henriques, E.; Ribeiro, I.; Schüller, M.
    (See online at https://doi.org/10.1016/j.procir.2016.11.240)
  • Lightweight Wheel Disc with Carbon Aluminium Foam Sandwich. Lightweight Design worldwide 2017 (2017), Nr. March 2017, Volume 10, Issue 1, S. pp. 6-11
    Hackert, A.; Müller, S.; Kroll, L.
    (See online at https://doi.org/10.1007/s41777-017-0016-2)
  • Machine Learning Algorithms for Impact Localization on Formed Piezo Metal Composites. 2017 International Siberian Conference on Control and Communications, Astana, Kasachstan, 2017, S. 1–5
    Ullmann, F.; Hardt, W.; Zhmud, V.
    (See online at https://doi.org/10.1109/SIBCON.2017.7998552)
  • Manufacturing of Textile-Based Unidirectional Prepreg for Raw Material and Material Development of Carbon Fibre Reinforced Thermoplastics. Key Engineering Materials, , 2017, S. 742 (2017), 498–505
    Kolonko, A.; Helbig, F.; Tröltzsch, J.; Nestler, D.; Kroll, L.
    (See online at https://doi.org/10.4028/www.scientific.net/KEM.742.498)
  • Model-based Optimization of the Energy Efficiency of Multi-threaded Applications. Proceedings of the 8th International Green and Sustainable Computing Conference (IGSC 2017), Orlando, USA, 2017, S. 1-6
    Rauber, T.; Rünger, G.; Stachowski, M.
    (See online at https://doi.org/10.1109/IGCC.2017.8323578)
  • Morphology-induced phonon spectra of CdSe/ CdS nanoplatelets: core/shell vs. core– crown. Nanoscale 2017, Nr. 8, S. 17204-17212
    Dzhagan, V.; Milekhin, A. G.; Valakh, M. Y.; Pedetti, S.; Tessier, M.; Dubertrete, B.; Zahn, D. R. T.
    (See online at https://doi.org/10.1039/c6nr06949e)
  • Natural Fibre Reinforced Bioplastics - Innovative Semi-Finished Products for Series Production. Key Engineering Materials, Vol. 742, Bremen, 2017, S. pp 255-262
    Ouali, A.-A.; Rinberg, R.; Kroll, L.; Nendel, W.; Todorov, A.; Cebulla, H.
    (See online at https://doi.org/10.4028/www.scientific.net/KEM.742.255)
  • On an alternative modelling of distributed fibre directions. International Journal of Solids and Structures. 126-127
    Goldberg, N.; Ihlemann, J.
    (See online at https://doi.org/10.1016/j.ijsolstr.2017.07.030)
  • Polypropylene based piezo ceramic compounds for micro injection molded sensors. Key Engineering Materials, 21st Symposium on Composites 2017 2017, Nr. 742, S. 807-814
    Doerffel, C.; Decker, R.; Heinrich, M.; Tröltzsch, J.; Spieler, M.; Nendel, W.; Kroll, L.
    (See online at https://doi.org/10.4028/www.scientific.net/KEM.742.807)
  • Probing the structure of CuInS2-ZnS core-shell and similar nanocrystals by Raman spectroscopy. Applied Surface Science 2017, Nr. 395, S. 24-28
    Dzhagan, V.; Kempken, B.; Valakh, M.; Parisi, J.; Kolny-Olesiak,J.; Zahn, D. R. T.
    (See online at https://doi.org/10.1016/j.apsusc.2016.08.063)
  • Resin and carbon foam production by cationic step-growth polymerization of organic carbonates. Polymer Chemsitry 2017, Nr. 8, S. 404-413
    Wöckel, L.; Seifert, A.; Mende, C.; Roth-Panke, I.; Kroll, L.; Spange, S.
    (See online at https://doi.org/10.1039/c6py01572g)
  • Sandwich Structures Consisting of Aluminum Foam Core and Fiber Reinforced Plastic Top Layers. Advanced Engineering Materials 77 (2017), S. 1700066
    Drebenstedt, C.; Rybandt, S.; Drossel, W.-G.; Trautmann, M.; Wagner, G.
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  • Simulation of RIM-process for Polyurethane Foam Expansion in Fiber Reinforced Sandwich Structures. Procedia CIRP 66 (2017), pp. 62-67
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  • Surface-Enhanced Infrared Absorption by Optical Phonons in Nanocrystal Monolayers on Au Nanoantenna Arrays. The Journal of Physical Chemistry C 2017, Nr. 121, S. 5779-5786
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  • The Development of Lead-Free Sliding Contacts Based on Bronze-Graphite Composites through Powder Injection Moulding. Key Engineering Materials, 21st Symposium on Composites, July 5-7, 2017, Bremen, 2017, S. 742 (2017), 205–212
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  • Towards New Metrics for Appraising Performance and Energy Efficiency of Parallel Scientific Programs. Proceedings of the 13th IEEE International Conference on Green Computing and Communication (GreenCom-2017), Exeter, Vereinigtes Königreich, 2017, S. 466-474
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  • Tuning Energy Effort and Execution Time of Application Software. Proceedings of the 38th International Conference on Information Systems Architecture and Technology (ISAT 2017), Szklarska Poręba, Polen, 2017, S. 239-251
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  • Annealing effects of high sensitive thin strain gauges consisting of nickel carbon nanocomposites. Journal of Reinforced Plastics and Composites 2018, Nr. 37(22), S. 1378-1384
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  • Fiber orientation interpolation for the multiscale analysis of short fiber reinforced composite parts. Computational Mechanics 2018 (2018), Nr. Volume 61, Issue 6, S. 729-750
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