@phdthesis{27675,
  author       = {{Evers , Fabian}},
  title        = {{{Der Einfluss stoffschlüssiger Fügeverfahren auf die Verbundfestigkeit flammgeschützter Kunststoffe }}},
  year         = {{2016}},
}

@phdthesis{27676,
  author       = {{Leßmann , Sebastian}},
  title        = {{{Berechnung und Simulation von Feststoffförderprozesse in Einschneckenextrudern bis in den Hochgeschwindigkeitsbereich}}},
  year         = {{2016}},
}

@phdthesis{27677,
  author       = {{Seidel, Stefan}},
  title        = {{{Prozessphasenoptimierte Simulation und Modellierung des Spritzgießsonderverfahrens GITBlow}}},
  year         = {{2016}},
}

@phdthesis{27682,
  author       = {{Krugmann , Jens }},
  title        = {{{Entwicklung und Validierung konstruktiver Merkmale bei thermoplastischen Kunststoffblindverschraubungen mit dichtendem Hinterschnitt }}},
  year         = {{2016}},
}

@phdthesis{27683,
  author       = {{Herken , Tobias}},
  title        = {{{Verarbeitung von PET auf gleichläufigen Doppelschneckenextrudern}}},
  year         = {{2016}},
}

@phdthesis{27684,
  author       = {{Leister , Christian}},
  title        = {{{Ein Beitrag zur Veränderung der Kunststoffoberfläche durch Atmosphärendruck-Plasma}}},
  year         = {{2016}},
}

@article{20941,
  abstract     = {{The influence of a chemical or mechanical surface modification followed by different post-heat treatments on the bond strength of galvanized steel/ aluminum composites is studied. An incremental rolling process is used for joint formation based on plastic deformation. The morphology, the chemical state of the modified surfaces as well as the cross-section, and local potential distribution of the welded zone is characterized by different microscopic and spectroscopic methods. The stability of the joint is analyzed by a shear-force test in combination with microscopic failure analysis. A clear correlation between pre/post-treatment and the joint strength is observed.}},
  author       = {{Hoppe, Christian and Ebbert, Christoph and Grothe, Richard and Schmidt, Hans Christian and Hordych, Illia and Homberg, Werner and Maier, Hans Juergen and Grundmeier, Guido}},
  issn         = {{1527-2648}},
  journal      = {{ADVANCED ENGINEERING MATERIALS}},
  number       = {{8}},
  pages        = {{1371--1380}},
  title        = {{{Influence of the Surface and Heat Treatment on the Bond Strength of Galvanized Steel/Aluminum Composites Joined by Plastic Deformation}}},
  doi          = {{10.1002/adem.201600085}},
  volume       = {{18}},
  year         = {{2016}},
}

@article{20942,
  abstract     = {{Interface modification based on ultra-thin mercapto-propyl(trimethoxy) silane (MPTMS) films is shown to promote joining of copper and aluminum by plastic deformation followed by a heat treatment. The surface morphology and the surface chemistry of the metal substrates were analyzed by means of FE-SEM, XPS, and FT-IRRAS. The spectroscopic data show that the MPTMS film is crosslinked via Si-O-Si bonds and that stable Cu-S and Si-O-Al interfacial bonds are formed. The shear-force tests of the joints led to force displacement curves that are characteristic for a covalently bonded interface. Complementary cross sectional SEM and EDS analysis of the joint proved that a defect-free interface was formed without any measureable interdiffusion of metals across the interface or cracking of an oxide films.}},
  author       = {{Hoppe, Christian and Ebbert, Christoph and Voigt, Markus and Schmidt, Hans Christian and Rodman, Dmytro and Homberg, Werner and Maier, Hans Juergen and Grundmeier, Guido}},
  issn         = {{1527-2648}},
  journal      = {{ADVANCED ENGINEERING MATERIALS}},
  number       = {{6}},
  pages        = {{1066--1074}},
  title        = {{{Molecular Engineering of Aluminum-Copper Interfaces for Joining by Plastic Deformation}}},
  doi          = {{10.1002/adem.201500501}},
  volume       = {{18}},
  year         = {{2016}},
}

@inproceedings{22019,
  abstract     = {{The mechanical characterization of fused deposition modeling (FDM) parts is mostly done by static tests. In many applications, parts are also dynamically loaded. Here, fatigue tests can help to identify the expected lifetime of a part. This article discusses the fatigue behavior of FDM specimens manufactured with Ultem 9085. For this, tensile bars are manufactured according to ASTM D638 in different build orientations. Tests are performed in a range of pulsating tensile stresses, and S-N curves are documented for different build orientations. For higher loads, the FDM anisotropy characterizes the lifetime of used specimens, which is similar to static tensile bars. For lower loads, including a higher number of cycles to failure, S-N curves of different build orientations converge. In further tests, tensile bars were chemically smoothed with chloroform vapor. Chemical smoothing reduces surface roughness and increases tensile strength of specimens in the upright build direction. Fatigue tests of chemically treated specimens show no significant lifetime increase.}},
  author       = {{Fischer, M. and Schöppner, Volker}},
  booktitle    = {{27th Annual International Solid Freeform Fabrication Symposium }},
  pages        = {{563–568}},
  title        = {{{Fatigue Behavior of FDM Parts Manufactured with Ultem 9085}}},
  doi          = {{10.1007/s11837-016-2197-2}},
  volume       = {{27}},
  year         = {{2016}},
}

@article{22025,
  abstract     = {{Das Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS etablierte in enger Kooperation mit Partnern in den letzten Jahren erfolgreich eine geschlossene Technologiekette zur Umsetzung maßgeschneiderter mikrophysiologischer Systeme. Darauf aufbauend wurde eine universelle Mikrobearbeitungsplattform zum automatisierten Fertigen konzipiert und entwickelt. Dies umfasst neue Technologien für Schlüsselprozesse wie das Herstellen mikrofluidischer Komponenten mittels ARBURG Kunststoff-Freiformen sowie das Erzeugen funktionaler Strukturen und das Einbringen von Produktschutzmerkmalen auf innenliegenden Polymergrenzflächen mittels Direktem Laserinterferenz-Verfahren.}},
  author       = {{Moritzer, Elmar and Hirsch, André and Günther, K. and Teutoburg-Weiss, S. and Lasagni, A.F. and Klotzbach, U. and Sonntag, F.}},
  isbn         = {{978-3-95908-078-1}},
  journal      = {{6. Dresdner Medizintechnik-Symposium, Biomedizinische Technik - interdisziplinär, integrativ und innovativ}},
  pages        = {{65--70}},
  title        = {{{Universelle Mikrobearbeitungsplaffform und Basistechnologien für das Fertigen und Markieren mikrophysiologischer Systeme}}},
  volume       = {{6}},
  year         = {{2016}},
}

@inproceedings{22039,
  abstract     = {{The material Ultem 9085 is a flame-retardant thermoplastic polymer, which can be processed with Fused Deposition Modeling (FDM). Due to ist high strength-to-weight ratio and FST rating, Ultem 9085 parts are used in aviation. Process related staircase effects on rounded and slanting part areas require a surface treatment for end use parts. These processes include smoothing by mass finishing or coating in order to reduce surface roughness. An alternative smoothing technique is chemical surface treatment, such as the use of Acetone for ABS materials. In this paper, the surface of Ultem 9085 parts is treated with Chloroform vapor in order to solve material at the surface and smooth it. Therefore, specimens built in different build orientations are treated and tested with regard to surface roughness values and mechancial strength properties. The analysis of surface roughness and treatment time shows a significantly higher efficiency for chemical treatment in comparison to mass finishing. By employing chemical treatment, it is possible to reduce surface roughness by more than 80 % to Rz values of approximately 15 µm. Mechanical tests and measurements of the Melt Volume Rate (MVR) show no material destruction for chemical surface treatment at room temperature for less than 150 min.}},
  author       = {{Fischer, M. and Seewald, O. and Schöppner, Volker}},
  booktitle    = {{Rapid Tech - International Trade Show & Conference for Additive Manufacturing}},
  pages        = {{121--133}},
  publisher    = {{Carl Hanser Verlag GmbH & Co. KG}},
  title        = {{{Chemical Surface Treatment of Ultem 9085 Parts}}},
  doi          = {{10.3139/9783446450608.010}},
  year         = {{2016}},
}

@inproceedings{15978,
  author       = {{Tasdemirci, Alper and Tüzgel, Firat and Güzel, Erkan and Akbulut Irmak, Emine Fulya and Güden, Mustafa}},
  location     = {{Exeter, London}},
  publisher    = {{The British Society for Strain Measurement}},
  title        = {{{The Investigation of the Dynamic Deformation Behaviour of a 304L Steel Plate with Direct-Pressure Pulse Experiments}}},
  year         = {{2016}},
}

@article{16139,
  author       = {{Schweizer, Swetlana and Tröster, Thomas}},
  journal      = {{Carbon Composites Magazin}},
  number       = {{2}},
  pages        = {{23}},
  title        = {{{Recyclingkonzepte für hybride Strukturen}}},
  year         = {{2016}},
}

@article{16142,
  abstract     = {{<jats:p>The increasing use of hybrid materials requires efficient manufacturing processes. With the concept of the intrinsic hybrids the shaping or forming of the part is combined with the hybridization in the same process step and thereby the same tool. Hence new tooling concepts, which realise the process requirements, are necessary. This paper describes tooling concepts and design methods for the manufacturing of intrinsic hybrid parts. Different solutions for rotational and planar parts with thermosetting or thermoplastic matrix material are presented. Additionally the integration of inserts in such tools is discussed. Finally the main challenges for the design of tools for intrinsic hybrids will be presented.</jats:p>}},
  author       = {{Wang, Zheng and Riemer, Matthias and Koch, Simon Frederik and Barfuss, Daniel and Grützner, Raik and Augenthaler, Florian and Schwennen, Jan}},
  issn         = {{1662-8985}},
  journal      = {{Advanced Materials Research}},
  pages        = {{247--254}},
  title        = {{{Intrinsic Hybrid Composites for Lightweight Structures: Tooling Technologies}}},
  doi          = {{10.4028/www.scientific.net/amr.1140.247}},
  year         = {{2016}},
}

@article{16144,
  abstract     = {{<jats:p>This publication describes new process chain approaches for the manufacturing of intrinsic hybrid composites for lightweight structures. The introduced process chains show a variety of different part and sample types, like insert technology for fastening of hollow hybrid shafts and profiles. Another field of research are hybrid laminates with different layers of carbon fiber reinforced plastics stacked with aluminum or steel sheets. The derived process chains base on automated fiber placement, resin transfer molding, deep drawing, rotational molding and integral tube blow molding.</jats:p>}},
  author       = {{Koch, Simon Frederik and Barfuss, Daniel and Bobbert, Mathias and Groß, Lukas and Grützner, Raik and Riemer, Matthias and Stefaniak, Daniel and Wang, Zheng}},
  issn         = {{1662-8985}},
  journal      = {{Advanced Materials Research}},
  pages        = {{239--246}},
  title        = {{{Intrinsic Hybrid Composites for Lightweight Structures: New Process Chain Approaches}}},
  doi          = {{10.4028/www.scientific.net/amr.1140.239}},
  year         = {{2016}},
}

@phdthesis{16145,
  author       = {{Reuter, C.}},
  isbn         = {{978-3-8440-4797-4}},
  title        = {{{Versagensverhalten und Energieabsorptionssimulation von Faser-Kunststoff-Verbunden und Aluminium-FKV-Hybridwerkstoffen}}},
  year         = {{2016}},
}

@article{16146,
  author       = {{Grienitz, Volker and Tröster, Thomas and Meiners, Stefan}},
  issn         = {{0001-2785}},
  journal      = {{ATZ - Automobiltechnische Zeitschrift}},
  pages        = {{36--41}},
  title        = {{{Technikevaluation für die generative Fertigung eines Serien-Radträgers}}},
  doi          = {{10.1007/s35148-016-0090-5}},
  year         = {{2016}},
}

@inproceedings{16264,
  author       = {{Wang, Z. and Tröster, Thomas}},
  location     = {{Kaiserslautern}},
  title        = {{{Parameterstudien an intrinsisch hergestellten Metall-FVK-Hybridstrukturen mittels RTM-Verfahren}}},
  year         = {{2016}},
}

@inproceedings{16266,
  author       = {{Striewe, Jan André and Reuter, C. and Oberkönig, C. and Lauter, C. and Tröster, Thomas}},
  location     = {{Merseburg}},
  title        = {{{Experimentelle Untersuchung und Analyse des Energieabsorptionsverhaltens axial belasteter Faserverbundkunststoffe}}},
  year         = {{2016}},
}

@inproceedings{16267,
  author       = {{Striewe, Jan André and Lauter, C. and Reuter, C. and Tröster, Thomas}},
  location     = {{Porto}},
  title        = {{{Manufacturing and Crashworthiness of Fabric Reinforced Thermoplastic Composites}}},
  year         = {{2016}},
}

