Optimization of the heating parameters of a robotized hot incremental forming of high impact polystyrene

Valentin DUARTE ROCHA
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Abstract

Abstract. Single point incremental forming (SPIF) is a modern rapid manufacturing technology able to manufacturing complex sheet parts in small quantities. In comparison to conventional deep-drawing process, complex tools can be dispensed in order to reduce tool costs and the time required to achieve the first finished part. This new technology consists of locally and iteratively deforming plastically the sheet material by a punch that is generally hemispherical and of small dimensions, whose trajectory is programmed on a numerically controlled machine or a robot arm. The parts formed are mainly made from metallic materials (steel, aluminum, titanium or copper alloys). Very few studies focus on the incremental forming of thermoplastic parts. Because of the poor formability of thermoplastic parts and the large spring-back at room temperature, the use of heating systems of the work-piece during the forming process is required. In this work, a novel incremental sheet forming assisted by heat transfer was developed to improve the formability of thermoplastic sheet. By means of a series of experimental forming of High Impact Polystyrene pyramid frustum with constant wall angle at different heat temperatures, geometric accuracy was recorded and analyzed. This study aims to evaluate the behavior of polymer material in the hot incremental sheet forming with different pre-heating system using the finite element method.
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优化高抗冲聚苯乙烯机器人热增量成型的加热参数
摘要单点增量成形(SPIF)是一种现代快速制造技术,能够小批量生产复杂的板材零件。与传统的深拉工艺相比,它可以省去复杂的工具,从而降低工具成本,缩短完成第一个零件所需的时间。这一新技术包括用冲头对板材进行局部反复塑性变形,冲头一般为半球形,尺寸较小,其轨迹由数控机床或机械臂编程设定。成型零件主要由金属材料(钢、铝、钛或铜合金)制成。很少有研究关注热塑性塑料零件的增量成形。由于热塑性塑料零件的成型性较差,且在室温下回弹较大,因此需要在成型过程中使用工件加热系统。在这项工作中,开发了一种新型的热传递辅助增量板材成形方法,以改善热塑性板材的成形性。通过在不同的加热温度下对具有恒定壁角的高抗冲聚苯乙烯金字塔形块进行一系列实验成形,记录并分析了几何精度。本研究旨在利用有限元法评估聚合物材料在不同预热系统下的热增量板材成型行为。
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