Parametric 3D-fitted Frames for Packaging Heritage Artefacts

A. Sá, K. Rodriguez-Echavarria, Martin Griffin, D. Covill, J. Kaminski, D. Arnold
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引用次数: 18

Abstract

Packing fragile heritage artefacts is a challenge almost all heritage organisations have to deal with when faced with the task of transporting or storing the artefacts. The packaging solution requires fitting the artefact correctly in order to ensure the protection and safety of the item; but also to be easy and cost effective to produce. Different techniques have been traditionally used, such as double boxing, padding negative spaces and cushioning braces. However, the introduction of 3D technologies for documenting these artefacts enables innovative uses of this data for packaging purposes. Hence, this paper proposes the use of the generative modelling language in order to produce unique 3D-fitted containers for packaging heritage artefacts which fit tightly the artefact, and can be made to be reusable and more durable than traditional packaging solutions. We propose to adopt an octet lattice as a low density internal structure to the proposed container. By combining the parametric package design, 3D meshes acquisition and 3D printing techniques, we present a technology based solution to the traditional problem of protecting these valuable artefacts for transportation and/or storing purposes.
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用于包装遗产文物的参数化3d框架
包装易碎的文物是几乎所有文物组织在运输或储存文物时都要面对的挑战。包装解决方案要求正确安装人工制品,以确保项目的保护和安全;但也要容易和成本效益的生产。传统上使用了不同的技术,例如双重拳击,填充负空间和缓冲支架。然而,用于记录这些人工制品的3D技术的引入使得这些数据用于包装目的的创新使用成为可能。因此,本文提出使用生成式建模语言,以便为包装遗产文物生产独特的3d容器,这些容器与文物紧密贴合,并且可以被重复使用,比传统包装解决方案更耐用。我们建议采用八元晶格作为低密度的内部结构,以拟议的容器。通过结合参数化包装设计,3D网格获取和3D打印技术,我们提出了一个基于技术的解决方案,以保护这些有价值的文物的运输和/或存储目的的传统问题。
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VIS Keynote Address: Data Visualization Literacy VIS Capstone Address: Visualizing Temporality and Chronologies for the Humanities VIS Keynote Address : When Visualization Met Augmented Reality VIS Capstone Address : Can I believe what I see?-Information theoretic algorithm validation VIS Keynote Address: Analytics Inspired Visualization: a Holistic In-situ Scientific Workflow at Extreme Scale
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