Archive/Designing Before Folding: Morphological Design Principles for Thermally Formed Passive Adaptive Grippers
Designing Before Folding: Morphological Design Principles for Thermally Formed Passive Adaptive Grippers
Avihai Shurin, Ziv Shefer
21 de julho de 2026
en

Abstract

This qualitative study develops morphological design principles for thermally formed passive adaptive grippers within an accessible 4D-printing approach. A practice-based morphological exploration was conducted through 18 PLA+ prototypes fabricated by Fused Deposition Modeling and thermally formed through controlled hot-water immersion. The study treats the two-dimensional pre-forming sheet geometry as the central design variable and examines how variations in flat-pattern organization affect the activated three-dimensional gripper. This shifts attention from optimizing a single predefined gripper toward understanding how form variations generate design knowledge. The prototypes were organized into two morphological families: a convergence-based radial gripping family and a guided cylindrical wrapping family. Functional and morphological readings of the catalogue showed that flat-pattern decisions shape grasp typology, functional role distribution, approach geometry, structural continuity, and the behavioral envelope of the activated form. The study proposes seven morphological design principles linking flat-pattern operations to three-dimensional gripping consequences, while also showing that the two families form a continuum of morphological possibilities rather than discrete categories. Across the prototype lineage, design knowledge accumulates through comparison and can be recombined into more resolved configurations. This paper offers a planning vocabulary for developing passive adaptive gripping structures before performance optimization or application-specific engineering begins.

IPC Classification

B60

Keywords

designingbeforefoldingmorphologicaldesignprinciplesthermallyformedpassiveadaptivegrippersdesignsqualitativedevelopswithinaccessible4d-printingapproachpractice-basedexplorationconductedthroughprototypesfabricated
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