Automated tool for cylindrical glass container blow and blow mold design

IF 2.5 3区 材料科学 Q2 MATERIALS SCIENCE, CERAMICS
Oriol Fibla-Figuerola, Adrià Biosca, Vicenç Pedret-Clemente, Horacio Rostro-González, Joaquín Menacho, Andrés-Amador García-Granada
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Abstract

The manufacture of perfumery bottles using the blow-and-blow technique necessitates iterative design and production of intermediate or preparation molds to achieve an appropriate thickness distribution. Designers seek a specific glass thickness at the bottle's bottom as an indicator of quality while ensuring a minimum thickness in the rest of the bottle, particularly the neck, to withstand vertical compressive loads during bottle filling. One cost-reduction strategy involves the use of finite element simulations; however, this technique demands significant engineering time and validation efforts. This study proposes a novel method for designing cylindrical bottles, facilitating the automated generation of preparation mold geometries for manufacturing. Key findings include the successful parameter-based analysis accounting for container capacity, mass, and height-to-diameter aspect ratio which was experimentally validated across several container sizes against traditional experimental iterations. Validation tests demonstrated that the automatically generated geometries yield functional bottle designs capable of withstanding compressive loads. The primary advantage of this approach lies in a substantial reduction in development time, from 32.9 to 18.3 days, providing a significant competitive edge. However, the current methodology is applicable to only 6% of the bottles in the production range. Expanding its applicability will require further database analysis to incorporate additional parameters for other bottle geometries. This limitation underscores the potential for continued refinement and broader industrial adoption.

Abstract Image

自动化工具用于圆柱形玻璃容器吹制及吹制模具设计
使用吹吹技术制造香水瓶需要反复设计和生产中间或准备模具,以达到适当的厚度分布。设计师在瓶底寻找特定的玻璃厚度作为质量指标,同时确保瓶的其余部分,特别是颈部的最小厚度,以承受装瓶过程中的垂直压缩载荷。一种降低成本的策略涉及使用有限元模拟;然而,这种技术需要大量的工程时间和验证工作。本研究提出了一种设计圆柱形瓶的新方法,促进了制造准备模具几何形状的自动化生成。主要发现包括成功的基于参数的分析,考虑了集装箱容量、质量和高度与直径的纵横比,这在几种集装箱尺寸上进行了实验验证,而不是传统的实验迭代。验证试验表明,自动生成的几何形状产生的功能瓶设计能够承受压缩载荷。这种方法的主要优势在于大大减少了开发时间,从32.9天减少到18.3天,提供了显著的竞争优势。然而,目前的方法只适用于生产范围内6%的瓶子。扩大其适用性将需要进一步的数据库分析,以纳入其他瓶子几何形状的附加参数。这一限制强调了持续改进和更广泛的工业采用的潜力。
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来源期刊
International Journal of Applied Glass Science
International Journal of Applied Glass Science MATERIALS SCIENCE, CERAMICS-
CiteScore
4.50
自引率
9.50%
发文量
73
审稿时长
>12 weeks
期刊介绍: The International Journal of Applied Glass Science (IJAGS) endeavors to be an indispensable source of information dealing with the application of glass science and engineering across the entire materials spectrum. Through the solicitation, editing, and publishing of cutting-edge peer-reviewed papers, IJAGS will be a highly respected and enduring chronicle of major advances in applied glass science throughout this century. It will be of critical value to the work of scientists, engineers, educators, students, and organizations involved in the research, manufacture and utilization of the material glass. Guided by an International Advisory Board, IJAGS will focus on topical issue themes that broadly encompass the advanced description, application, modeling, manufacture, and experimental investigation of glass.
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