{"date_updated":"2023-04-27T10:30:44Z","quality_controlled":"1","language":[{"iso":"eng"}],"publication":"Materials Research Proceedings","abstract":[{"text":"Abstract. Friction-spinning as an innovative incremental forming process enables large degrees of deformation in tube and sheet metal-forming due to a self-induced heat generation in the forming zone. This paper presents new process designs for energy and resource-efficient forming of gas cylinders by friction-spinning without the use of an external heat supply. The self-generated heat enables friction-spinning process to reduce the energy demand in the manufacture of gas cylinders, which are usually manufactured with external heat (mostly fossil fuels), by 95 %. Typical gas cylinder contours, such as flattened and spherical bottom ends and cylinder necks, are manufactured by friction-spinning of AW 6060 tubular profiles with specifically designed tool path strategies. It is shown that friction-spinning enables the manufacture of typical gas cylinder contours with sufficient wall thickness and the required gas tightness without the input of external heat. Thus, this process can contribute to an increase in the energy and resource efficiency of forming processes. ","lang":"eng"}],"related_material":{"link":[{"url":"https://www.mrforum.com/product/9781644902479-208/","relation":"confirmation"}]},"conference":{"start_date":"2023-04-19","end_date":"2023-04-21","name":"ESAFORM 2023","location":"Krakau"},"title":"Energy and Resource-efficient Forming of Gas Cylinders by Friction-Spinning","year":"2023","author":[{"first_name":"Frederik","id":"64977","full_name":"Dahms, Frederik","last_name":"Dahms"},{"id":"233","first_name":"Werner","last_name":"Homberg","full_name":"Homberg, Werner"}],"publication_identifier":{"issn":["2474-395X"]},"user_id":"64977","_id":"44035","status":"public","date_created":"2023-04-17T07:40:54Z","doi":"10.21741/9781644902479-208","publication_status":"published","department":[{"_id":"156"}],"citation":{"ama":"Dahms F, Homberg W. Energy and Resource-efficient Forming of Gas Cylinders by Friction-Spinning. In: Materials Research Proceedings. Materials Research Forum LLC; 2023. doi:10.21741/9781644902479-208","bibtex":"@inproceedings{Dahms_Homberg_2023, title={Energy and Resource-efficient Forming of Gas Cylinders by Friction-Spinning}, DOI={10.21741/9781644902479-208}, booktitle={Materials Research Proceedings}, publisher={Materials Research Forum LLC}, author={Dahms, Frederik and Homberg, Werner}, year={2023} }","apa":"Dahms, F., & Homberg, W. (2023). Energy and Resource-efficient Forming of Gas Cylinders by Friction-Spinning. Materials Research Proceedings. ESAFORM 2023, Krakau. https://doi.org/10.21741/9781644902479-208","ieee":"F. Dahms and W. Homberg, “Energy and Resource-efficient Forming of Gas Cylinders by Friction-Spinning,” presented at the ESAFORM 2023, Krakau, 2023, doi: 10.21741/9781644902479-208.","mla":"Dahms, Frederik, and Werner Homberg. “Energy and Resource-Efficient Forming of Gas Cylinders by Friction-Spinning.” Materials Research Proceedings, Materials Research Forum LLC, 2023, doi:10.21741/9781644902479-208.","short":"F. Dahms, W. Homberg, in: Materials Research Proceedings, Materials Research Forum LLC, 2023.","chicago":"Dahms, Frederik, and Werner Homberg. “Energy and Resource-Efficient Forming of Gas Cylinders by Friction-Spinning.” In Materials Research Proceedings. Materials Research Forum LLC, 2023. https://doi.org/10.21741/9781644902479-208."},"publisher":"Materials Research Forum LLC","type":"conference"}