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572 Publications


2022 | Journal Article | LibreCat-ID: 34216
Meschut, G., Merklein, M., Brosius, A., Drummer, D., Fratini, L., Füssel, U., Gude, M., Homberg, W., Martins, P. A. F., Bobbert, M., Lechner, M., Kupfer, R., Gröger, B., Han, D., Kalich, J., Kappe, F., Kleffel, T., Köhler, D., Kuball, C.-M., … Wolf, M. (2022). Review on mechanical joining by plastic deformation. Journal of Advanced Joining Processes, 5, Article 100113. https://doi.org/10.1016/j.jajp.2022.100113
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2022 | Conference Paper | LibreCat-ID: 42874
Göddecke, J., Meschut, G., Göhrs, T., & Große Gehling, M. (2022). Methodenentwicklung zur Auslegung geklebter Verbindungen aus hochfestem Stahl unter Berücksichtigung betriebsrelevanter Beanspruchungen im Landmaschinen- und Anlagenbau (DECHEMA, Gesellschaft für Chemische Technik und Biotechnologie e.V., Ed.).
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2022 | Conference Paper | LibreCat-ID: 42875
Göddecke, J., & Meschut, G. (2022). Dämpfungseigenschaften geklebter Strukturen unter dynamischer Beanspruchung (Deutscher Verband für Schweißen und verwandte Verfahren e.V. (DVS), Ed.).
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2022 | Journal Article | LibreCat-ID: 43156
Meschut, G., Merklein, M., Brosius, A., & Bobbert, M. (2022). Mechanical joining in versatile process chains. Production Engineering, 16(2–3), 187–191. https://doi.org/10.1007/s11740-022-01125-y
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2022 | Journal Article | LibreCat-ID: 43155
Schmolke, T., Meschut, G., Meinderink, D., Rieker, F., & Grundmeier, G. (2022). Untersuchung von Klebverbindungen  für Batteriegehäuse. adhäsion KLEBEN & DICHTEN, 66(6), 40–43. https://doi.org/10.1007/s35145-022-0596-9
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2022 | Journal Article | LibreCat-ID: 43157
Werner, M., Wagner, J., Ribbeck, F., Hensel, S., Goth, K., Graf, T., & Meschut, G. (2022). Influence of the incident angle on the OCT measurement during remote laser beam welding. Procedia CIRP, 111, 513–517. https://doi.org/10.1016/j.procir.2022.08.081
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2022 | Journal Article | LibreCat-ID: 34241
Kappe, F., Wituschek, S., Bobbert, M., Lechner, M., & Meschut, G. (2022). Joining of multi-material structures using a versatile self-piercing riveting process. Production Engineering. https://doi.org/10.1007/s11740-022-01151-w
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2022 | Journal Article | LibreCat-ID: 30100
Zirngibl, C., Kügler, P., Popp, J., Bielak, C. R., Bobbert, M., Drummer, D., Meschut, G., Wartzack, S., & Schleich, B. (2022). Provision of cross-domain knowledge in mechanical joining using ontologies. Production Engineering. https://doi.org/10.1007/s11740-022-01117-y
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2022 | Journal Article | LibreCat-ID: 30884
Rossel, M. S., & Meschut, G. (2022). Investigation of the friction conditions of self-pierce rivets by means of a compression-torsion tribometer. Production Engineering. https://doi.org/10.1007/s11740-022-01126-x
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2022 | Book Chapter | LibreCat-ID: 34275
Kappe, F., Wituschek, S., de Pascalis, V., Bobbert, M., Lechner, M., & Meschut, G. (2022). Numerical Investigation of the Influence of a Movable Die Base on Joint Formation in Semi-tubular Self-piercing Riveting. In Materials Design and Applications IV. Springer International Publishing. https://doi.org/10.1007/978-3-031-18130-6_10
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2022 | Journal Article | LibreCat-ID: 34244
Kappe, F., Zirngibl, C., Schleich, B., Bobbert, M., Wartzack, S., & Meschut, G. (2022). Determining the influence of different process parameters on the versatile self-piercing riveting process using numerical methods. Journal of Manufacturing Processes, 84, 1438–1448. https://doi.org/10.1016/j.jmapro.2022.11.019
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2022 | Journal Article | LibreCat-ID: 29858
Kappe, F., Schadow, L., Bobbert, M., & Meschut, G. (2022). Increasing flexibility of self-piercing riveting by reducing tool–geometry combinations using cluster analysis in the application of multi-material design. Proceedings of the Institution of Mechanical Engineers Part L Journal of Materials Design and Applications. https://doi.org/10.1177/14644207211070992
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2022 | Journal Article | LibreCat-ID: 29857
Kappe, F., Wituschek, S., Bobbert, M., & Meschut, G. (2022). Determining the properties of multi‑range semi‑tubular self‑piercing riveted joints. Production Engineering. https://doi.org/10.1007/s11740-022-01105-2
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2022 | Conference Paper | LibreCat-ID: 36838
Neumann, S., Meschut, G., Otroshi, M., Kneuper, F., Schulze, A., & Tekkaya, E. (2022). MECHANICALLY JOINED EXTRUSION PROFILES FOR BATTERY TRAYS.
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2022 | Journal Article | LibreCat-ID: 30736
Rossel, M. S., & Meschut, G. (2022). Increasing the accuracy of clinching process simulations by modeling the friction as a function of local joining process parameters. Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications, Article 146442072210742. https://doi.org/10.1177/14644207221074290
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2022 | Journal Article | LibreCat-ID: 28766
Sander, S., Meschut, G., Kroll, U., & Matzenmiller, A. (2022). Methodology for the systematic investigation of the hygrothermal-mechanical behavior of a structural epoxy adhesive. International Journal of Adhesion and Adhesives, Article 103072. https://doi.org/10.1016/j.ijadhadh.2021.103072
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2022 | Journal Article | LibreCat-ID: 30847
Kuball, C.-M., Uhe, B., Meschut, G., & Merklein, M. (2022). Process-adapted temperature application within a two-stage rivet forming process for high nitrogen steel. Proceedings of the Institution of Mechanical Engineers Part L-Journal of Materials-Design and Applications, 1–17. https://doi.org/10.1177/14644207211068693
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2022 | Conference Paper | LibreCat-ID: 44265
Uhe, B., & Meschut, G. (2022). Lösungsstrategien für das Halbhohlstanznieten von höchstfesten und ultrahöchstfesten Stählen mit Aluminiumwerkstoffen (FOSTA, EFB, DVS, Ed.).
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2022 | Journal Article | LibreCat-ID: 30962
Bielak, C. R., Böhnke, M., Bobbert, M., & Meschut, G. (2022). Numerical investigation of a friction  test to determine the friction  coefficients for the clinching process. Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications, Article 146442072210934. https://doi.org/10.1177/14644207221093468
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2022 | Journal Article | LibreCat-ID: 30963
Ewenz, L., Bielak, C. R., Otroshi, M., Bobbert, M., Meschut, G., & Zimmermann, M. (2022). Numerical and experimental identification of fatigue crack initiation sites in clinched joints. Production Engineering, 16(2–3), 305–313. https://doi.org/10.1007/s11740-022-01124-z
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