NextGen Materials 2025: The Convergence of Living Essence and Engineered Innovation
Lecture
23.09.2025 (CEST)
Modelling of 4D printed shape memory polymers and constrained inverse motion optimization
HH

Henrik Hembrock (M.Sc.)

Fraunhofer ITWM

Hembrock, H. (Speaker)¹; Andrae, H.¹; Chalissery, D.²; Galambos, T.²; Leichner, A.¹; Müller, R.³; Pretsch, T.²; Schleyer, M.⁴; Temme, K.²
¹Fraunhofer ITWM, Kaiserslautern; ²Fraunhofer IAP, Potsdam; ³TU Darmstadt; ⁴Fraunhofer IWM, Freiburg
Vorschau
17 Min. Untertitel (CC)

An approach to modeling one-way shape memory polymers obtained from fused filament fabrication 4D printing, considering an intermediate configuration to describe stored deformation. An optimization technique is developed to modify the temporary shape to archive certain properties of an geometricaly constrained permanent shape after thermal activation.

Abstract

Abstract

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