[{"citation":{"mla":"Biermann, Dirk, et al. “Foundations for Considering the Robustness within the CRC TRR 30.” <i>Functionally Graded Materials in Industrial Mass Production | Volume 2</i>, edited by Hans-Peter Heim et al., vol. 2, Verlag Wissenschaftliche Scripten, 2013, pp. 357–66.","ama":"Biermann D, Gausemeier J, Hess S, K{\\ D, Petersen M, Wagner T. Foundations for Considering the Robustness within the CRC TRR 30. In: Heim H-P,  Biermann  Dirk, Homberg W, eds. <i>Functionally Graded Materials in Industrial Mass Production | Volume 2</i>. Vol 2. Functionally Graded Materials in Industrial Mass Production. Verlag Wissenschaftliche Scripten; 2013:357-366.","bibtex":"@inbook{Biermann_Gausemeier_Hess_K{\\_Petersen_Wagner_2013, series={Functionally Graded Materials in Industrial Mass Production}, title={Foundations for Considering the Robustness within the CRC TRR 30}, volume={2}, booktitle={Functionally Graded Materials in Industrial Mass Production | Volume 2}, publisher={Verlag Wissenschaftliche Scripten}, author={Biermann, Dirk  and Gausemeier, J{\\\"u}rgen and Hess, Stefan  and K{\\, Daniel  and Petersen, Marcus and Wagner, T}, editor={Heim, Hans-Peter and  Biermann,  Dirk and Homberg, Werner}, year={2013}, pages={357–366}, collection={Functionally Graded Materials in Industrial Mass Production} }","apa":"Biermann, D., Gausemeier, J., Hess, S., K{\\, D., Petersen, M., &#38; Wagner, T. (2013). Foundations for Considering the Robustness within the CRC TRR 30. In H.-P. Heim,  Dirk  Biermann, &#38; W. Homberg (Eds.), <i>Functionally Graded Materials in Industrial Mass Production | Volume 2</i> (Vol. 2, pp. 357–366). Verlag Wissenschaftliche Scripten.","ieee":"D. Biermann, J. Gausemeier, S. Hess, D. K{\\, M. Petersen, and T. Wagner, “Foundations for Considering the Robustness within the CRC TRR 30,” in <i>Functionally Graded Materials in Industrial Mass Production | Volume 2</i>, vol. 2, H.-P. Heim,  Dirk  Biermann, and W. Homberg, Eds. Verlag Wissenschaftliche Scripten, 2013, pp. 357–366.","short":"D. Biermann, J. Gausemeier, S. Hess, D. K{\\, M. Petersen, T. Wagner, in: H.-P. Heim,  Dirk  Biermann, W. Homberg (Eds.), Functionally Graded Materials in Industrial Mass Production | Volume 2, Verlag Wissenschaftliche Scripten, 2013, pp. 357–366.","chicago":"Biermann, Dirk , J{\\\"u}rgen Gausemeier, Stefan  Hess, Daniel  K{\\, Marcus Petersen, and T Wagner. “Foundations for Considering the Robustness within the CRC TRR 30.” In <i>Functionally Graded Materials in Industrial Mass Production | Volume 2</i>, edited by Hans-Peter Heim,  Dirk  Biermann, and Werner Homberg, 2:357–66. Functionally Graded Materials in Industrial Mass Production. Verlag Wissenschaftliche Scripten, 2013."},"status":"public","page":"357-366","_id":"28453","publisher":"Verlag Wissenschaftliche Scripten","user_id":"71124","editor":[{"last_name":"Heim","first_name":"Hans-Peter","full_name":"Heim, Hans-Peter"},{"full_name":" Biermann,  Dirk","last_name":" Biermann","first_name":" Dirk"},{"last_name":"Homberg","first_name":"Werner","full_name":"Homberg, Werner"}],"volume":2,"publication":"Functionally Graded Materials in Industrial Mass Production | Volume 2","abstract":[{"lang":"eng","text":"The consideration of the robustness is indispensable to ensure a reliable and reproducible manufacturing of functionally graded components. In order to establish a common understanding as basis for the holistic robustness consideration within the Collaborative Transregional Research Centre 30 (CRC Transregio 30), a joint development of methods for analysing and optimising the robustness is necessary. The term \"robustness\", however, has been used differently in the various disciplines of the CRC Transregio 30. Thus, this contribution proposes a common definition of robustness for the whole research centre. In addition, a procedure model for considering the robustness with a collection of methods, that can be combined or adapted by the involved disciplines, is presented. The validation of the recommended procedure model has been conducted by a compression moulding process."}],"date_created":"2021-12-08T15:19:41Z","type":"book_chapter","department":[{"_id":"676"}],"year":"2013","title":"Foundations for Considering the Robustness within the CRC TRR 30","publication_identifier":{"isbn":["978-3-942267-91-5"]},"author":[{"full_name":"Biermann, Dirk ","first_name":"Dirk ","last_name":"Biermann"},{"full_name":"Gausemeier, J{\\\"u}rgen","first_name":"J{\\\"u}rgen","last_name":"Gausemeier"},{"last_name":"Hess","first_name":"Stefan ","full_name":"Hess, Stefan "},{"first_name":"Daniel ","last_name":"K{\\","full_name":"K{\\, Daniel "},{"first_name":"Marcus","last_name":"Petersen","full_name":"Petersen, Marcus"},{"first_name":"T","last_name":"Wagner","full_name":"Wagner, T"}],"date_updated":"2022-01-06T06:58:05Z","publication_status":"published","intvolume":"         2","language":[{"iso":"eng"}],"series_title":"Functionally Graded Materials in Industrial Mass Production"},{"citation":{"chicago":"Biermann, Dirk , J{\\\"u}rgen  Gausemeier, Stefan  Hess, Marcus Petersen, and T Wagner. “Synthesis and Multi-Objective Model-Based Optimisation of Process Chains for Manufacturing Components with Functionally Graded Properties.” In <i>Functionally Graded Materials in Industrial Mass Production | Volume 2</i>, edited by Hans-Peter Heim, Dirk  Biermann, and Werner Homberg, 2:341–56. Functionally Graded Materials in Industrial Mass Production. Verlag Wissenschaftliche Scripten, 2013.","short":"D. Biermann, J. Gausemeier, S. Hess, M. Petersen, T. Wagner, in: H.-P. Heim, D.  Biermann, W. Homberg (Eds.), Functionally Graded Materials in Industrial Mass Production | Volume 2, Verlag Wissenschaftliche Scripten, 2013, pp. 341–356.","apa":"Biermann, D., Gausemeier, J., Hess, S., Petersen, M., &#38; Wagner, T. (2013). Synthesis and Multi-Objective Model-based Optimisation of Process Chains for Manufacturing Components with Functionally Graded Properties. In H.-P. Heim, D.  Biermann, &#38; W. Homberg (Eds.), <i>Functionally Graded Materials in Industrial Mass Production | Volume 2</i> (Vol. 2, pp. 341–356). Verlag Wissenschaftliche Scripten.","ieee":"D. Biermann, J. Gausemeier, S. Hess, M. Petersen, and T. Wagner, “Synthesis and Multi-Objective Model-based Optimisation of Process Chains for Manufacturing Components with Functionally Graded Properties,” in <i>Functionally Graded Materials in Industrial Mass Production | Volume 2</i>, vol. 2, H.-P. Heim, D.  Biermann, and W. Homberg, Eds. Verlag Wissenschaftliche Scripten, 2013, pp. 341–356.","ama":"Biermann D, Gausemeier J, Hess S, Petersen M, Wagner T. Synthesis and Multi-Objective Model-based Optimisation of Process Chains for Manufacturing Components with Functionally Graded Properties. In: Heim H-P,  Biermann D, Homberg W, eds. <i>Functionally Graded Materials in Industrial Mass Production | Volume 2</i>. Vol 2. Functionally Graded Materials in Industrial Mass Production. Verlag Wissenschaftliche Scripten; 2013:341-356.","bibtex":"@inbook{Biermann_Gausemeier_Hess_Petersen_Wagner_2013, series={Functionally Graded Materials in Industrial Mass Production}, title={Synthesis and Multi-Objective Model-based Optimisation of Process Chains for Manufacturing Components with Functionally Graded Properties}, volume={2}, booktitle={Functionally Graded Materials in Industrial Mass Production | Volume 2}, publisher={Verlag Wissenschaftliche Scripten}, author={Biermann, Dirk  and Gausemeier, J{\\\"u}rgen  and Hess, Stefan  and Petersen, Marcus and Wagner, T}, editor={Heim, Hans-Peter and  Biermann, Dirk and Homberg, Werner}, year={2013}, pages={341–356}, collection={Functionally Graded Materials in Industrial Mass Production} }","mla":"Biermann, Dirk, et al. “Synthesis and Multi-Objective Model-Based Optimisation of Process Chains for Manufacturing Components with Functionally Graded Properties.” <i>Functionally Graded Materials in Industrial Mass Production | Volume 2</i>, edited by Hans-Peter Heim et al., vol. 2, Verlag Wissenschaftliche Scripten, 2013, pp. 341–56."},"page":"341-356","_id":"28456","publisher":"Verlag Wissenschaftliche Scripten","user_id":"71124","editor":[{"first_name":"Hans-Peter","last_name":"Heim","full_name":"Heim, Hans-Peter"},{"full_name":" Biermann, Dirk","last_name":" Biermann","first_name":"Dirk"},{"last_name":"Homberg","first_name":"Werner","full_name":"Homberg, Werner"}],"volume":2,"status":"public","date_created":"2021-12-08T15:42:50Z","type":"book_chapter","department":[{"_id":"676"}],"publication":"Functionally Graded Materials in Industrial Mass Production | Volume 2","abstract":[{"text":"Functional gradation denotes the systematic and reproducible microstructure adjustment of a single material component for the customisation of the macroscopic properties (e.g. hardness or ductility). This customisation is tailored with respect to the later intended application of the component. The improved material utilisation enables light weight design and simplifies the recycling by using single material components. Hence, it provides a resource-conserving alternative for modern composite materials and offers an innovative approach for customisable smart products of the future. Manufacturing functionally graded components requires complex thermo-mechanically coupled process chains that increase the effort for the holistic design. To realise the full potential offered by functional gradation, the available planning and optimisation methods as well as the surrogate models developed during the first research period of the Collaborative Transregional Research Centre (CRC Transregio 30) are significantly enhanced. Furthermore, all the methods and surrogate models as well as the process knowledge obtained by laboratory experiments are consolidated in a comprehensive computer-aided framework to provide a continuous support for the engineer during the planning process. This contribution proposes the methodical foundations within the framework along the planning process: Component description, synthesis of suitable manufacturing process chains, and optimisation of the process chain parameters as well as the specification of the production system. The methods are validated based on an exemplary planning task within the CRC Transregio 30.\r\n","lang":"eng"}],"series_title":"Functionally Graded Materials in Industrial Mass Production","language":[{"iso":"eng"}],"year":"2013","title":"Synthesis and Multi-Objective Model-based Optimisation of Process Chains for Manufacturing Components with Functionally Graded Properties","author":[{"first_name":"Dirk ","last_name":"Biermann","full_name":"Biermann, Dirk "},{"full_name":"Gausemeier, J{\\\"u}rgen ","first_name":"J{\\\"u}rgen ","last_name":"Gausemeier"},{"full_name":"Hess, Stefan ","last_name":"Hess","first_name":"Stefan "},{"full_name":"Petersen, Marcus","last_name":"Petersen","first_name":"Marcus"},{"full_name":"Wagner, T","first_name":"T","last_name":"Wagner"}],"publication_identifier":{"isbn":["978-3-942267-91-5"]},"date_updated":"2022-01-06T06:58:05Z","publication_status":"published","intvolume":"         2"}]
