基于能量的未开发三维体表优化展平

Meiling Zhuang, Xiaofeng Zhang, Jianan Fang
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引用次数: 1

摘要

根据未展开的三角形三维体表上各节点的高斯曲率设计功能分割线。利用Robert Hooke定律和杨氏模量,根据每个三角形被压平前后边缘的变化建立能量模型。提高平面的实用性是重点。结合能量模型对算法进行设计和优化,使三角形被平面化后的未使用能量最小化。最后得到了二维平面沿分割线的平面图和相应的能量分布。具有经纬方向的平面更适合裁剪布匹。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The optimum flattening for undeveloped 3-D body surface based on energy
Functional dividing lines are designed according to the Gauss Curvature of each node on undeveloped triangled 3-D body surface. Robert Hooke Law and Young's Modulus are applied to set up energy model based on the edges change before and after each triangle is flattened. To improve the practicability for flattened surface is the emphasis. In combination with the energy model, the algorithm is designed and optimized to minimize the unused energy after the triangles being flattened. At last the graphics of flattened 2D planes along dividing lines and corresponding energy distributing are got. The flattened 2D planes with longitude and weft direction are more fitted for fabrics cutting which will be laid on it.
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