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978-3-030-06315-3Springer International Publishing AG, part of Springer Nature 2019Cervical-Spine 发表于 2025-3-22 02:56:06
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Anne Olivia Boyer,Robert S. Boyerethod applicable to a much wider spectrum of three-dimensional goal shapes. This chapter presents the . to solve the following origami design problem: given a goal shape represented as a polygonal mesh (termed as the goal mesh), find the shape and fold pattern of a planar sheet that can be folded toendocardium 发表于 2025-3-22 20:15:08
Hans J. Bremermann,Russell W. Andersonases. However, such previous models are not intended for origami structures having non-negligible fold thickness or maximum fold curvature constraints based on material or structural limitations. In this chapter, we develop a model that captures the kinematic response of sheets having realistic foldPALL 发表于 2025-3-22 22:40:54
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Formalizing the Face Lattice of Polyhedrae kinematics model for origami with smooth folds developed in Chap. . and existing plate theories to obtain a structural representation for folds of non-zero thickness. The implementation of the model in a computational environment is also addressed. We provide examples including origami structures