Feasibility Study of Laser-Assisted Incremental Forming for Carbon Fiber Reinforced Thermo Plastic Based on 3D-CAD Data

Hidetake Tanaka, K. Yamada, Tatsuki Ikari
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Abstract

A three-dimensional (3D) printer can be used to form various shapes in a single process. However, shell shape formation is difficult because of the low adhesion strength between the layers in 3D printing, and sufficient stiffness cannot be maintained. Therefore, the authors focused on laser-assisted incremental forming, which enables the formation of shell shapes from sheet materials, and used carbon fiber reinforced thermo plastic (CFRTP) for the samples. In the study, a laser-assist incremental forming system based on 3D computer-aided design (CAD) data was developed. The system comprises computer-aided manufacturing (CAM) system, which generates a tool path based on CAD data and evaluates the formability between the CAD data and 3D-scanned data, including alignment compensation. The feasibility of the developed system was demonstrated through a set of forming experiments.
基于3D-CAD数据的碳纤维增强热塑性塑料激光辅助增量成形可行性研究
三维(3D)打印机可以在一个过程中形成各种形状。然而,在3D打印中,由于层与层之间的粘附强度较低,使得壳体形状难以形成,无法保持足够的刚度。因此,作者将重点放在了激光辅助增量成形上,这种方法可以从片状材料中形成外壳形状,并使用碳纤维增强热塑性塑料(CFRTP)来制备样品。研究了基于三维计算机辅助设计(CAD)数据的激光辅助增量成形系统。该系统由计算机辅助制造(CAM)系统组成,该系统根据CAD数据生成刀具轨迹,并评估CAD数据与3d扫描数据之间的可成形性,包括对中补偿。通过一组成形实验,验证了所开发系统的可行性。
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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