The Researches and Applications of Reverse Engineering in the Protection and Inheritance of National Handcrafts

Dehai Zhang, Junheng Li, Huimin Zhu, Shujun Liu, K. Yu, Z. Guo, Liang Fu
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引用次数: 3

Abstract

National handcrafts are well-known at home and Abroad for their fine ingredients, exquisite blending of colors, and excellent skilled shaping and painting. What is more, they have great value and are deeply popular with people around the world. National handcrafts, as a cultural crystallization, must be protected. In order to better realize the protection, we try to apply the technology of reverse engineering to the protection. This article mainly takes a handcraft, Yan Zi YU (meaning “swallow fish”), as an example to expound and demonstrate the process of reverse engineering technology. During this process, by using scanning technology of reverse engineering, the collection and splicing of the point cloud data, the theoretical analysis of the NURBS surface in the reconstruction phase, and other practical operations in other stages, reverse engineering can be used to regenerate 3D modal data of the swallow fish and to inspect and analyse the errors in it through Geomagic Quality to ensure that the new model meets the precision requirements. Therefore, the reverse engineering technology can be completely applied to the protection of national handcrafts so that they can fully demonstrate their own value and function. If the precision of reverse engineering detection can reach nanometric level, a breakthrough will promote the protection of cultural relics.
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逆向工程在民族手工艺保护与传承中的研究与应用
民族手工艺品以其精细的原料、细腻的色彩交融、高超的造型和绘画技巧而闻名于国内外。更重要的是,它们具有巨大的价值,深受世界各地人们的欢迎。民族手工艺品作为一种文化结晶,必须得到保护。为了更好地实现保护,我们尝试将逆向工程技术应用于保护中。本文主要以一件名为“燕子鱼”的工艺品为例,对逆向工程技术的过程进行了阐述和论证。在此过程中,通过使用逆向工程的扫描技术、点云数据的收集和拼接、NURBS曲面在重建阶段的理论分析以及其他阶段的实际操作,逆向工程可以用于重建燕子鱼的三维模态数据,并通过Geomagic Quality对其中的误差进行检测和分析,以确保新模型满足精度要求。因此,逆向工程技术可以完全应用于民族手工艺品的保护,使其充分展示自身的价值和功能。如果逆向工程检测的精度能够达到纳米级,一项突破将促进文物保护。
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来源期刊
Nanoscience and Nanotechnology Letters
Nanoscience and Nanotechnology Letters Physical, Chemical & Earth Sciences-MATERIALS SCIENCE, MULTIDISCIPLINARY
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审稿时长
2.6 months
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