论文标题

开源3-D细丝直径传感器,用于回收,绕组和添加剂制造机

Open Source 3-D Filament Diameter Sensor for Recycling, Winding and Additive Manufacturing Machines

论文作者

Petsiuk, Aliaksei L., Pearce, Joshua M.

论文摘要

为了克服将塑料废物升级为分布式回收和增材制造系统中的3-D打印丝的挑战,本研究设计,构建,测试和验证了开源的3-D细丝直径传感器,用于回收和绕组机。可回收3-D-DRINTER细丝直径的多轴光学控制的模块化系统使得可以分析处理后灯丝的表面结构,除了沿整个线轴长度的测量史以及标记缺陷区域的测量史。该传感器是作为独立模块开发的,并集成到回收站中。直径传感器在不同种类的聚合物(ABS,PLA)的不同来源(可回收的3-D印刷品和原始塑料废物)和不同颜色(包括透明塑料)上进行了测试。将使用相机的直径测量结果与手动测量结果进行了比较,并使用一维数字轻型卡尺获得的测量结果。结果发现,开发的开源丝传感方法使用户可以与基本的一维光传感器相比获得更多的信息,并不仅使用接收的数据以进行更精确的直径测量,而且还可以详细分析回收灯丝表面。开发的方法可确保更大的塑料回收技术可用于制造社区,并刺激复合材料创造的增长。提出的系统可以极大地增强用户的可能性,并作为完整回收控制系统的起点,该系统将调节电机参数以实现具有可接受的偏差的所需丝直径,甚至控制打印机上的挤出速率,以从灯丝不规则不规则的情况下恢复。

To overcome the challenge of upcycling plastic waste into 3-D printing filament in the distributed recycling and additive manufacturing systems, this study designs, builds, tests and validates an open source 3-D filament diameter sensor for recycling and winding machines. The modular system for multi-axis optical control of the diameter of the recycled 3-D-printer filament makes it possible to analyze the surface structure of the processed filament, save the history of measurements along the entire length of the spool, as well as mark defective areas. The sensor is developed as an independent module and integrated into a recyclebot. The diameter sensor was tested on different kinds of polymers (ABS, PLA) different sources of plastic (recycled 3-D prints and virgin plastic waste) and different colors including clear plastic. The results of the diameter measurements using the camera were compared with the manual measurements, and the measurements obtained with a one-dimensional digital light caliper. The results found that the developed open source filament sensing method allows users to obtain significantly more information in comparison with basic one-dimensional light sensors and using the received data not only for more accurate diameter measurements, but also for a detailed analysis of the recycled filament surface. The developed method ensures greater availability of plastics recycling technologies for the manufacturing community and stimulates the growth of composite materials creation. The presented system can greatly enhance the user possibilities and serve as a starting point for a complete recycling control system that will regulate motor parameters to achieve the desired filament diameter with acceptable deviations and even control the extrusion rate on a printer to recover from filament irregularities.

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