[{"oa":"1","date_updated":"2023-05-05T19:52:14Z","language":[{"iso":"ger"}],"title":"Aufgaben und Zuständigkeiten von allgemeinen und sonderpädagogischen Lehrkräften sowie Fachkräften der Schulsozialarbeit in inklusiven Schulen der Sekundarstufe I. Erste Ergebnisse aus dem BiFoKi-Projekt","publication_status":"published","publication_identifier":{"issn":["0513-9066"]},"department":[{"_id":"479"}],"issue":"4","_id":"34484","intvolume":" 73","page":"164-177","type":"journal_article","year":"2021","citation":{"chicago":"Neumann, Phillip, Sandra Grüter, Lisa Eckel, Birgit Lütje-Klose, Elke Wild, and Julia Gorges. “Aufgaben und Zuständigkeiten von allgemeinen und sonderpädagogischen Lehrkräften sowie Fachkräften der Schulsozialarbeit in inklusiven Schulen der Sekundarstufe I. Erste Ergebnisse aus dem BiFoKi-Projekt.” Zeitschrift für Heilpädagogik 73, no. 4 (2021): 164–77.","ama":"Neumann P, Grüter S, Eckel L, Lütje-Klose B, Wild E, Gorges J. Aufgaben und Zuständigkeiten von allgemeinen und sonderpädagogischen Lehrkräften sowie Fachkräften der Schulsozialarbeit in inklusiven Schulen der Sekundarstufe I. Erste Ergebnisse aus dem BiFoKi-Projekt. Zeitschrift für Heilpädagogik. 2021;73(4):164-177.","apa":"Neumann, P., Grüter, S., Eckel, L., Lütje-Klose, B., Wild, E., & Gorges, J. (2021). Aufgaben und Zuständigkeiten von allgemeinen und sonderpädagogischen Lehrkräften sowie Fachkräften der Schulsozialarbeit in inklusiven Schulen der Sekundarstufe I. Erste Ergebnisse aus dem BiFoKi-Projekt. Zeitschrift für Heilpädagogik, 73(4), 164–177.","bibtex":"@article{Neumann_Grüter_Eckel_Lütje-Klose_Wild_Gorges_2021, title={Aufgaben und Zuständigkeiten von allgemeinen und sonderpädagogischen Lehrkräften sowie Fachkräften der Schulsozialarbeit in inklusiven Schulen der Sekundarstufe I. Erste Ergebnisse aus dem BiFoKi-Projekt}, volume={73}, number={4}, journal={Zeitschrift für Heilpädagogik}, author={Neumann, Phillip and Grüter, Sandra and Eckel, Lisa and Lütje-Klose, Birgit and Wild, Elke and Gorges, Julia}, year={2021}, pages={164–177} }","mla":"Neumann, Phillip, et al. “Aufgaben und Zuständigkeiten von allgemeinen und sonderpädagogischen Lehrkräften sowie Fachkräften der Schulsozialarbeit in inklusiven Schulen der Sekundarstufe I. Erste Ergebnisse aus dem BiFoKi-Projekt.” Zeitschrift für Heilpädagogik, vol. 73, no. 4, 2021, pp. 164–77.","short":"P. Neumann, S. Grüter, L. Eckel, B. Lütje-Klose, E. Wild, J. Gorges, Zeitschrift für Heilpädagogik 73 (2021) 164–177.","ieee":"P. Neumann, S. Grüter, L. Eckel, B. Lütje-Klose, E. Wild, and J. Gorges, “Aufgaben und Zuständigkeiten von allgemeinen und sonderpädagogischen Lehrkräften sowie Fachkräften der Schulsozialarbeit in inklusiven Schulen der Sekundarstufe I. Erste Ergebnisse aus dem BiFoKi-Projekt,” Zeitschrift für Heilpädagogik, vol. 73, no. 4, pp. 164–177, 2021."},"user_id":"95559","ddc":["370"],"abstract":[{"text":"Multiprofessionelle Teams sind notwendiger Bestandteil inklusiver Schulen. Die Verteilung von Aufgaben, welche über die Zusammenarbeit von allgemeinen und sonderpädagogischen Lehrkräften im Unterricht hinausgehen, wurde bislang jedoch selten systematisch untersucht. Im Beitrag werden deskriptive Befunde aus dem Projekt BiFoKi (Bielefelder Fortbildungskonzept zur Kooperation in inklusiven Schulen) zu den Zuständigkeiten von allgemeinen (N = 170) und sonderpädagogischen Lehrkräften (N = 24) sowie Schulsozialarbeiterinnen (N = 11) an inklusiven Sekundar- und Gesamtschulen präsentiert. Sie deuten auf eine Persistenz traditioneller Rollenmuster und Aufgabenverteilungen hin. Bei den befragten sonderpädagogischen Lehrkräften können zwei unterschiedliche Rollenmuster herausgearbeitet werden. Die Schulsozialarbeiterinnen weisen ein enges Arbeitsfeld mit einem Fokus auf Eltern-Schule-Kooperation auf.\r\n","lang":"ger"},{"lang":"eng","text":"Multiprofessional teams are a vital part of inclusive schools. However, the distribution of tasks that goes beyond the cooperation of teachers and special educators in the classroom has rarely been investigated systematically. This article presents preliminary findings from the BiFoKi project (Bielefeld Training on Co operation in inclusive Schools) on the responsibilities of general teachers (N = 170), special educators (N = 24) and school social workers (N = 11) in inclusive secondary and comprehensive schools. They indicate the persistence of traditional role patterns and task distributions between these three groups. Two different roles of special educators can be identified. The school social workers have a particularly narrow field of work with a focus on parent school cooperation."}],"article_type":"original","extern":"1","date_created":"2022-12-17T12:11:42Z","has_accepted_license":"1","status":"public","volume":73,"file":[{"access_level":"open_access","date_created":"2022-12-20T13:10:15Z","file_name":"zfh_04.2021_neumann.pdf","relation":"main_file","content_type":"application/pdf","date_updated":"2023-05-05T19:52:14Z","creator":"bpaulina","file_id":"34609","file_size":369937}],"publication":"Zeitschrift für Heilpädagogik","keyword":["Inklusion","Sonderpädagogik","Sekundarstufe","Gesamtschulen","Kooperation","Schulsozialarbeit","BiFoKi"],"file_date_updated":"2023-05-05T19:52:14Z","author":[{"id":"95559","last_name":"Neumann","full_name":"Neumann, Phillip","first_name":"Phillip"},{"full_name":"Grüter, Sandra","first_name":"Sandra","last_name":"Grüter"},{"first_name":"Lisa","full_name":"Eckel, Lisa","last_name":"Eckel"},{"full_name":"Lütje-Klose, Birgit","first_name":"Birgit","last_name":"Lütje-Klose"},{"first_name":"Elke","full_name":"Wild, Elke","last_name":"Wild"},{"last_name":"Gorges","full_name":"Gorges, Julia","first_name":"Julia"}]},{"conference":{"name":"31st CIRP Design Conference 2021 (CIRP Design 2021)"},"_id":"24080","page":"253-258","year":"2021","type":"conference","citation":{"short":"I. Gräßler, D. Wiechel, D. Roesmann, H. Thiele, in: Procedia CIRP, 2021, pp. 253–258.","ieee":"I. Gräßler, D. Wiechel, D. Roesmann, and H. Thiele, “V-model based development of cyber-physical systems and cyber-physical production systems,” in Procedia CIRP, 2021, pp. 253–258, doi: 10.1016/j.procir.2021.05.119.","chicago":"Gräßler, Iris, Dominik Wiechel, Daniel Roesmann, and Henrik Thiele. “V-Model Based Development of Cyber-Physical Systems and Cyber-Physical Production Systems.” In Procedia CIRP, 253–58, 2021. https://doi.org/10.1016/j.procir.2021.05.119.","apa":"Gräßler, I., Wiechel, D., Roesmann, D., & Thiele, H. (2021). V-model based development of cyber-physical systems and cyber-physical production systems. Procedia CIRP, 253–258. https://doi.org/10.1016/j.procir.2021.05.119","ama":"Gräßler I, Wiechel D, Roesmann D, Thiele H. V-model based development of cyber-physical systems and cyber-physical production systems. In: Procedia CIRP. ; 2021:253-258. doi:10.1016/j.procir.2021.05.119","bibtex":"@inproceedings{Gräßler_Wiechel_Roesmann_Thiele_2021, title={V-model based development of cyber-physical systems and cyber-physical production systems}, DOI={10.1016/j.procir.2021.05.119}, booktitle={Procedia CIRP}, author={Gräßler, Iris and Wiechel, Dominik and Roesmann, Daniel and Thiele, Henrik}, year={2021}, pages={253–258} }","mla":"Gräßler, Iris, et al. “V-Model Based Development of Cyber-Physical Systems and Cyber-Physical Production Systems.” Procedia CIRP, 2021, pp. 253–58, doi:10.1016/j.procir.2021.05.119."},"main_file_link":[{"url":"https://www.sciencedirect.com/science/article/pii/S2212827121005916","open_access":"1"}],"user_id":"67161","abstract":[{"lang":"eng","text":"Challenges of the development of mechatronic systems and corresponding production systems have increased steadily. Changes are primarily due to increased product complexity and the connection to the internet of things and services, enabling Cyber-Physical Systems (CPS) and Cyber-Physical Production Systems (CPPS). Major innovations of the revised VDI guideline 2206 for developing mechatronic systems are systems thinking as a core element and six checkpoints for structuring deliverables along the V-Model. These checkpoints serve for orientation in result progress and thus enable a structured and complete development process. However, tasks and checkpoints of the new guideline focus on the product development itself without integrating the development of related CPPS, enabling optimization simultaneously to system development. Implications are derived by a three-step analysis. The paper at hand contributes fundamental extensions of the checkpoint questions regarding integrated CPPS development. These questions provide methodical support for system developers of CPPS for CPS by enabling the project manager to check the status, schedule further development steps and evaluate the maturity of the whole, integrated development."}],"date_created":"2021-09-09T13:27:59Z","status":"public","keyword":["Cyber-Physical Production System (CPPS)","V-Model","Product System Development","Integrated Development","VDI 2206"],"publication":"Procedia CIRP","quality_controlled":"1","author":[{"id":"47565","last_name":"Gräßler","full_name":"Gräßler, Iris","orcid":"0000-0001-5765-971X","first_name":"Iris"},{"first_name":"Dominik","full_name":"Wiechel, Dominik","last_name":"Wiechel","id":"67161"},{"id":"54680","last_name":"Roesmann","full_name":"Roesmann, Daniel","first_name":"Daniel"},{"full_name":"Thiele, Henrik","first_name":"Henrik","id":"33419","last_name":"Thiele"}],"doi":"10.1016/j.procir.2021.05.119","oa":"1","date_updated":"2023-05-09T18:22:49Z","language":[{"iso":"eng"}],"title":"V-model based development of cyber-physical systems and cyber-physical production systems","publication_status":"published","publication_identifier":{"issn":["2212-8271"]},"department":[{"_id":"152"}]},{"publication_identifier":{"eisbn":["978-3-9819263-5-4"]},"publication_status":"published","project":[{"_id":"12","name":"SFB 901 - Subproject B4"},{"_id":"3","name":"SFB 901 - Project Area B"},{"_id":"1","name":"SFB 901"}],"department":[{"_id":"78"}],"title":"Malicious Routing: Circumventing Bitstream-level Verification for FPGAs","place":"Alpexpo | Grenoble, France","language":[{"iso":"eng"}],"doi":"10.23919/DATE51398.2021.9474026","oa":"1","date_updated":"2023-05-11T09:16:34Z","status":"public","has_accepted_license":"1","date_created":"2020-12-07T14:03:00Z","author":[{"full_name":"Ahmed, Qazi Arbab","orcid":"0000-0002-1837-2254","first_name":"Qazi Arbab","id":"72764","last_name":"Ahmed"},{"last_name":"Wiersema","id":"3118","first_name":"Tobias","full_name":"Wiersema, Tobias"},{"full_name":"Platzner, Marco","first_name":"Marco","id":"398","last_name":"Platzner"}],"publisher":"2021 Design, Automation and Test in Europe Conference (DATE)","file_date_updated":"2023-05-11T09:16:15Z","publication":"2021 Design, Automation & Test in Europe Conference & Exhibition (DATE)","file":[{"relation":"main_file","success":1,"date_updated":"2023-05-11T09:16:15Z","content_type":"application/pdf","file_id":"44752","creator":"qazi","file_size":394011,"access_level":"closed","date_created":"2023-05-11T09:16:15Z","file_name":"1812.pdf"}],"ddc":["006"],"user_id":"72764","abstract":[{"lang":"eng","text":"The battle of developing hardware Trojans and corresponding countermeasures has taken adversaries towards ingenious ways of compromising hardware designs by circumventing even advanced testing and verification methods. Besides conventional methods of inserting Trojans into a design by a malicious entity, the design flow for field-programmable gate arrays (FPGAs) can also be surreptitiously compromised to assist the attacker to perform a successful malfunctioning or information leakage attack. The advanced stealthy malicious look-up-table (LUT) attack activates a Trojan only when generating the FPGA bitstream and can thus not be detected by register transfer and gate level testing and verification. However, also this attack was recently revealed by a bitstream-level proof-carrying hardware (PCH) approach. In this paper, we present a novel attack that leverages malicious routing of the inserted Trojan circuit to acquire a dormant state even in the generated and transmitted bitstream. The Trojan's payload is connected to primary inputs/outputs of the FPGA via a programmable interconnect point (PIP). The Trojan is detached from inputs/outputs during place-and-route and re-connected only when the FPGA is being programmed, thus activating the Trojan circuit without any need for a trigger logic. Since the Trojan is injected in a post-synthesis step and remains unconnected in the bitstream, the presented attack can currently neither be prevented by conventional testing and verification methods nor by recent bitstream-level verification techniques."}],"year":"2021","type":"conference","citation":{"short":"Q.A. Ahmed, T. Wiersema, M. Platzner, in: 2021 Design, Automation & Test in Europe Conference & Exhibition (DATE), 2021 Design, Automation and Test in Europe Conference (DATE), Alpexpo | Grenoble, France, 2021.","ieee":"Q. A. Ahmed, T. Wiersema, and M. Platzner, “Malicious Routing: Circumventing Bitstream-level Verification for FPGAs,” presented at the Design, Automation and Test in Europe Conference (DATE’21), Alpexpo | Grenoble, France, 2021, doi: 10.23919/DATE51398.2021.9474026.","chicago":"Ahmed, Qazi Arbab, Tobias Wiersema, and Marco Platzner. “Malicious Routing: Circumventing Bitstream-Level Verification for FPGAs.” In 2021 Design, Automation & Test in Europe Conference & Exhibition (DATE). Alpexpo | Grenoble, France: 2021 Design, Automation and Test in Europe Conference (DATE), 2021. https://doi.org/10.23919/DATE51398.2021.9474026.","apa":"Ahmed, Q. A., Wiersema, T., & Platzner, M. (2021). Malicious Routing: Circumventing Bitstream-level Verification for FPGAs. 2021 Design, Automation & Test in Europe Conference & Exhibition (DATE). Design, Automation and Test in Europe Conference (DATE’21), Alpexpo | Grenoble, France. https://doi.org/10.23919/DATE51398.2021.9474026","ama":"Ahmed QA, Wiersema T, Platzner M. Malicious Routing: Circumventing Bitstream-level Verification for FPGAs. In: 2021 Design, Automation & Test in Europe Conference & Exhibition (DATE). 2021 Design, Automation and Test in Europe Conference (DATE); 2021. doi:10.23919/DATE51398.2021.9474026","bibtex":"@inproceedings{Ahmed_Wiersema_Platzner_2021, place={Alpexpo | Grenoble, France}, title={Malicious Routing: Circumventing Bitstream-level Verification for FPGAs}, DOI={10.23919/DATE51398.2021.9474026}, booktitle={2021 Design, Automation & Test in Europe Conference & Exhibition (DATE)}, publisher={2021 Design, Automation and Test in Europe Conference (DATE)}, author={Ahmed, Qazi Arbab and Wiersema, Tobias and Platzner, Marco}, year={2021} }","mla":"Ahmed, Qazi Arbab, et al. “Malicious Routing: Circumventing Bitstream-Level Verification for FPGAs.” 2021 Design, Automation & Test in Europe Conference & Exhibition (DATE), 2021 Design, Automation and Test in Europe Conference (DATE), 2021, doi:10.23919/DATE51398.2021.9474026."},"main_file_link":[{"open_access":"1"}],"_id":"20681","conference":{"end_date":"2021-02-05","location":"Alpexpo | Grenoble, France","start_date":"2021-02-01","name":"Design, Automation and Test in Europe Conference (DATE'21)"}},{"title":"Intermetallic Phases Identification and Diffusion Simulation in Twin-Roll Cast Al-Fe Clad Sheet","publication_status":"published","publication_identifier":{"issn":["1996-1944"]},"department":[{"_id":"158"}],"oa":"1","doi":"10.3390/ma14247771","date_updated":"2023-06-01T14:38:18Z","language":[{"iso":"eng"}],"user_id":"43720","abstract":[{"lang":"eng","text":"Aluminium steel clad materials have high potential for industrial applications. Their mechanical properties are governed by an intermetallic layer, which forms upon heat treatment at the Al-Fe interface. Transmission electron microscopy was employed to identify the phases present at the interface by selective area electron diffraction and energy dispersive spectroscopy. Three phases were identified: orthorhombic Al5Fe2, monoclinic Al13Fe4 and cubic Al19Fe4MnSi2. An effective interdiffusion coefficient dependent on concentration was determined according to the Boltzmann–Matano method. The highest value of the interdiffusion coefficient was reached at the composition of the intermetallic phases. Afterwards, the process of diffusion considering the evaluated interdiffusion coefficient was simulated using the finite element method. Results of the simulations revealed that growth of the intermetallic phases proceeds preferentially in the direction of aluminium."}],"status":"public","date_created":"2022-02-11T17:40:03Z","volume":14,"author":[{"first_name":"Barbora","full_name":"Křivská, Barbora","last_name":"Křivská"},{"last_name":"Šlapáková","full_name":"Šlapáková, Michaela","first_name":"Michaela"},{"last_name":"Veselý","full_name":"Veselý, Jozef","first_name":"Jozef"},{"first_name":"Martin","full_name":"Kihoulou, Martin","last_name":"Kihoulou"},{"last_name":"Fekete","first_name":"Klaudia","full_name":"Fekete, Klaudia"},{"last_name":"Minárik","first_name":"Peter","full_name":"Minárik, Peter"},{"last_name":"Králík","first_name":"Rostislav","full_name":"Králík, Rostislav"},{"first_name":"Olexandr","full_name":"Grydin, Olexandr","last_name":"Grydin","id":"43822"},{"full_name":"Stolbchenko, Mykhailo","first_name":"Mykhailo","last_name":"Stolbchenko"},{"first_name":"Mirko","full_name":"Schaper, Mirko","last_name":"Schaper","id":"43720"}],"publisher":"MDPI AG","quality_controlled":"1","publication":"Materials","keyword":["General Materials Science"],"issue":"24","article_number":"7771","intvolume":" 14","_id":"29815","citation":{"ama":"Křivská B, Šlapáková M, Veselý J, et al. Intermetallic Phases Identification and Diffusion Simulation in Twin-Roll Cast Al-Fe Clad Sheet. Materials. 2021;14(24). doi:10.3390/ma14247771","apa":"Křivská, B., Šlapáková, M., Veselý, J., Kihoulou, M., Fekete, K., Minárik, P., Králík, R., Grydin, O., Stolbchenko, M., & Schaper, M. (2021). Intermetallic Phases Identification and Diffusion Simulation in Twin-Roll Cast Al-Fe Clad Sheet. Materials, 14(24), Article 7771. https://doi.org/10.3390/ma14247771","chicago":"Křivská, Barbora, Michaela Šlapáková, Jozef Veselý, Martin Kihoulou, Klaudia Fekete, Peter Minárik, Rostislav Králík, Olexandr Grydin, Mykhailo Stolbchenko, and Mirko Schaper. “Intermetallic Phases Identification and Diffusion Simulation in Twin-Roll Cast Al-Fe Clad Sheet.” Materials 14, no. 24 (2021). https://doi.org/10.3390/ma14247771.","mla":"Křivská, Barbora, et al. “Intermetallic Phases Identification and Diffusion Simulation in Twin-Roll Cast Al-Fe Clad Sheet.” Materials, vol. 14, no. 24, 7771, MDPI AG, 2021, doi:10.3390/ma14247771.","bibtex":"@article{Křivská_Šlapáková_Veselý_Kihoulou_Fekete_Minárik_Králík_Grydin_Stolbchenko_Schaper_2021, title={Intermetallic Phases Identification and Diffusion Simulation in Twin-Roll Cast Al-Fe Clad Sheet}, volume={14}, DOI={10.3390/ma14247771}, number={247771}, journal={Materials}, publisher={MDPI AG}, author={Křivská, Barbora and Šlapáková, Michaela and Veselý, Jozef and Kihoulou, Martin and Fekete, Klaudia and Minárik, Peter and Králík, Rostislav and Grydin, Olexandr and Stolbchenko, Mykhailo and Schaper, Mirko}, year={2021} }","short":"B. Křivská, M. Šlapáková, J. Veselý, M. Kihoulou, K. Fekete, P. Minárik, R. Králík, O. Grydin, M. Stolbchenko, M. Schaper, Materials 14 (2021).","ieee":"B. Křivská et al., “Intermetallic Phases Identification and Diffusion Simulation in Twin-Roll Cast Al-Fe Clad Sheet,” Materials, vol. 14, no. 24, Art. no. 7771, 2021, doi: 10.3390/ma14247771."},"type":"journal_article","year":"2021","main_file_link":[{"open_access":"1","url":"https://www.mdpi.com/1996-1944/14/24/7771/htm"}]},{"language":[{"iso":"eng"}],"oa":"1","doi":"10.1002/celc.202100216","date_updated":"2023-06-01T14:39:27Z","publication_identifier":{"issn":["2196-0216","2196-0216"]},"publication_status":"published","department":[{"_id":"158"},{"_id":"301"}],"title":"Zinc Anodizing: Structural Diversity of Anodic Zinc Oxide Controlled by the Type of Electrolyte","type":"journal_article","citation":{"short":"K. Engelkemeier, A. Sun, D. Voswinkel, O. Grydin, M. Schaper, W. Bremser, ChemElectroChem (2021) 2155–2168.","ieee":"K. Engelkemeier, A. Sun, D. Voswinkel, O. Grydin, M. Schaper, and W. Bremser, “Zinc Anodizing: Structural Diversity of Anodic Zinc Oxide Controlled by the Type of Electrolyte,” ChemElectroChem, pp. 2155–2168, 2021, doi: 10.1002/celc.202100216.","chicago":"Engelkemeier, Katja, Aijia Sun, Dietrich Voswinkel, Olexandr Grydin, Mirko Schaper, and Wolfgang Bremser. “Zinc Anodizing: Structural Diversity of Anodic Zinc Oxide Controlled by the Type of Electrolyte.” ChemElectroChem, 2021, 2155–68. https://doi.org/10.1002/celc.202100216.","apa":"Engelkemeier, K., Sun, A., Voswinkel, D., Grydin, O., Schaper, M., & Bremser, W. (2021). Zinc Anodizing: Structural Diversity of Anodic Zinc Oxide Controlled by the Type of Electrolyte. ChemElectroChem, 2155–2168. https://doi.org/10.1002/celc.202100216","ama":"Engelkemeier K, Sun A, Voswinkel D, Grydin O, Schaper M, Bremser W. Zinc Anodizing: Structural Diversity of Anodic Zinc Oxide Controlled by the Type of Electrolyte. ChemElectroChem. Published online 2021:2155-2168. doi:10.1002/celc.202100216","bibtex":"@article{Engelkemeier_Sun_Voswinkel_Grydin_Schaper_Bremser_2021, title={Zinc Anodizing: Structural Diversity of Anodic Zinc Oxide Controlled by the Type of Electrolyte}, DOI={10.1002/celc.202100216}, journal={ChemElectroChem}, publisher={Wiley}, author={Engelkemeier, Katja and Sun, Aijia and Voswinkel, Dietrich and Grydin, Olexandr and Schaper, Mirko and Bremser, Wolfgang}, year={2021}, pages={2155–2168} }","mla":"Engelkemeier, Katja, et al. “Zinc Anodizing: Structural Diversity of Anodic Zinc Oxide Controlled by the Type of Electrolyte.” ChemElectroChem, Wiley, 2021, pp. 2155–68, doi:10.1002/celc.202100216."},"year":"2021","page":"2155-2168","main_file_link":[{"open_access":"1","url":"https://chemistry-europe.onlinelibrary.wiley.com/doi/10.1002/celc.202100216"}],"_id":"24566","status":"public","date_created":"2021-09-16T15:56:58Z","publisher":"Wiley","quality_controlled":"1","author":[{"id":"21743","last_name":"Engelkemeier","full_name":"Engelkemeier, Katja","first_name":"Katja"},{"last_name":"Sun","full_name":"Sun, Aijia","first_name":"Aijia"},{"first_name":"Dietrich","full_name":"Voswinkel, Dietrich","last_name":"Voswinkel","id":"52634"},{"full_name":"Grydin, Olexandr","first_name":"Olexandr","id":"43822","last_name":"Grydin"},{"first_name":"Mirko","full_name":"Schaper, Mirko","last_name":"Schaper","id":"43720"},{"last_name":"Bremser","full_name":"Bremser, Wolfgang","first_name":"Wolfgang"}],"publication":"ChemElectroChem","user_id":"43720","article_type":"review"},{"status":"public","date_created":"2021-09-06T13:28:04Z","publication_status":"published","author":[{"first_name":"Alexander","orcid":"0000-0001-9047-467X","full_name":"Reitz, Alexander","last_name":"Reitz","id":"24803"},{"last_name":"Grydin","id":"43822","first_name":"Olexandr","full_name":"Grydin, Olexandr"},{"full_name":"Schaper, Mirko","first_name":"Mirko","id":"43720","last_name":"Schaper"}],"quality_controlled":"1","publication":"Materials Data for Smart Forming Technologies","department":[{"_id":"158"},{"_id":"321"}],"user_id":"43720","title":"Characterization of phase transformations during graded thermo- mechanical treatment of steel 22MnB5 by means of optical methods ","language":[{"iso":"eng"}],"year":"2021","citation":{"mla":"Reitz, Alexander, et al. “Characterization of Phase Transformations during Graded Thermo- Mechanical Treatment of Steel 22MnB5 by Means of Optical Methods .” Materials Data for Smart Forming Technologies, 2021.","bibtex":"@article{Reitz_Grydin_Schaper_2021, title={Characterization of phase transformations during graded thermo- mechanical treatment of steel 22MnB5 by means of optical methods }, journal={Materials Data for Smart Forming Technologies}, author={Reitz, Alexander and Grydin, Olexandr and Schaper, Mirko}, year={2021} }","ama":"Reitz A, Grydin O, Schaper M. Characterization of phase transformations during graded thermo- mechanical treatment of steel 22MnB5 by means of optical methods . Materials Data for Smart Forming Technologies. Published online 2021.","apa":"Reitz, A., Grydin, O., & Schaper, M. (2021). Characterization of phase transformations during graded thermo- mechanical treatment of steel 22MnB5 by means of optical methods . Materials Data for Smart Forming Technologies. Meform 2021, Freiberg.","chicago":"Reitz, Alexander, Olexandr Grydin, and Mirko Schaper. “Characterization of Phase Transformations during Graded Thermo- Mechanical Treatment of Steel 22MnB5 by Means of Optical Methods .” Materials Data for Smart Forming Technologies, 2021.","ieee":"A. Reitz, O. Grydin, and M. Schaper, “Characterization of phase transformations during graded thermo- mechanical treatment of steel 22MnB5 by means of optical methods ,” Materials Data for Smart Forming Technologies, 2021.","short":"A. Reitz, O. Grydin, M. 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