超材料
共形映射
格子(音乐)
计算机科学
刚度
材料科学
扫描仪
结构工程
物理
数学
声学
几何学
工程类
复合材料
光电子学
人工智能
作者
Marco A. Gonzalez Barreto,Enrique Cuan‐Urquizo,Jorge Pérez-González,Joel C. Huegel
标识
DOI:10.1177/09544119221127736
摘要
Selecting the correct material for each application has always been important. Now, with lattice metamaterials engineers can take advantage of the properties of these metamaterials to best suit a specific application. This paper investigates transtibial lower limb socket stress reduction through the implementation of conformal lattice metamaterials. In this work, a model was obtained with a 3D scanner from a plaster cast taken from a participant with a trans-tibial amputation. Then a 3D socket model was created and two conformal patterns were added to the surface of the socket using nTopology ® . Parametric studies to relate the lattice metamaterials constituent elements to their effective structural properties, when such are loaded in-plane and out-of-plane were also included. Pressure test simulations were performed to determine the stresses produced in the sockets. This study concludes with discussion of the results and provides information on how surface conformal patterns can improve socket performance, showing that surface-vertex-centroid patterns increase stiffness and relieve stresses.
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