Experimental and Simulation Study of Single Point Incremental Forming of Polycarbonate

Saurabh Rai, Rakesh Kumar, H. K. Nirala, K. Francis, Anupam Agrawal
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引用次数: 3

Abstract

Single point incremental forming (SPIF) is more accurate and economical than the conventional forming process for customized products. Majority of the work in SPIF has been carried out on metals. However, polymers are also required to shape. Polycarbonate has wide application in safety glass, bottles, automotive and aircraft industry due to its transparent as well as attractive processing and mechanical properties as compared to other polymeric plastics. In present work, the Polycarbonate (PC) sheet of thickness 1.8 mm is deformed to make a square cup at different angles. Tensile testing is done to analyze the effect of wall angle on the deformed cup. This work illustrates the effect of the SPIF process on material strength in a different directions (vertical and horizontal) of the final deformed product. Tool forces are evaluated using ABAQUS® simulation for SPIF. Numerical simulation approach is used to calculate the fracture energy, which utilizes the force-displacement curve of the specimen and is verified.
聚碳酸酯单点增量成形试验与仿真研究
单点增量成形(SPIF)在定制产品中比传统的成形工艺更精确、更经济。SPIF的大部分工作是在金属上进行的。然而,聚合物也需要塑造。与其他聚合物塑料相比,聚碳酸酯具有透明以及有吸引力的加工和机械性能,因此在安全玻璃,瓶子,汽车和飞机工业中具有广泛的应用。在本研究中,将厚度为1.8 mm的聚碳酸酯(PC)板材在不同角度变形成一个方形杯形。通过拉伸试验分析了壁角对杯形变形的影响。这项工作说明了SPIF工艺在最终变形产品的不同方向(垂直和水平)上对材料强度的影响。使用ABAQUS®SPIF模拟评估工具力。利用试样的力-位移曲线,采用数值模拟方法计算断裂能,并进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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