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Algorithms for Jewelry Industry 4.0

机译:珠宝行业的算法4.0

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摘要

The industrial and technological revolution and the use of innovative software allowed to build a virtual world from which we can control the physical one. In particular, this development provided relevant benefits in the field of jewelry manufacturing industry using parametric modeling systems. This paper proposes a parametric design method to improve smart manufacturing in 4.0 jewelry industry. By using constrained collection of schemata, the so called Direct Acyclic Graphs (DAGs) and additive manufacturing technologies, we created a process by which customers are able to modify 3D virtual models and to visualize them, according to their preferences. In fact, by using the software packages Mathematica and Grasshopper, we exploited both the huge quantity of mathematical patterns (such as curves and knots), and the parametric space of these structures. A generic DAG, grouped into a unit called User Object, is a design tools shifting the focus from final shape to digital process. For this reason, it is capable to returns a huge number of unique combinations of the starting configurations, according to the customers preferences. The configurations chosen by the designer or by the customers, are 3D printed in wax-based resins and, later, ready to be merged, according to artisan jewelry handcraft. Two cases studio are proposed to show empirical evidences of the designed process to transform abstract mathematical equations into real physical forms.
机译:工业和技术革命以及使用创新软件的使用允许建立一个虚拟世界,我们可以控制实体。特别是,这种发展提供了使用参数建模系统的珠宝制造业领域的相关益处。本文提出了一种参数化设计方法,以改善4.0珠宝行业的智能制造。通过使用约束的架构集合,所谓的直接非循环图(DAG)和添加剂制造技术,我们创建了一个过程,客户能够根据其偏好来修改3D虚拟模型并可视化它们。实际上,通过使用软件包Mathematica和Grasshopper,我们利用了大量的数学模式(例如曲线和结)和这些结构的参数空间。将通用DAG分组为称为用户对象的单位,是一种设计工具,将重点从最终形状转换为数字过程。因此,根据客户偏好,它能够返回起始配置的大量唯一唯一组合。根据Artisan珠宝手工的说法,设计师或客户选择的配置是在蜡的树脂中印有3D,随后,随后,准备被合并,根据Artisan珠宝手工制作。建议两个案例工作室展示了设计过程的实证证明,将抽象数学方程转换成真实的物理形式。

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