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一种针对具有不同填充率和颜色的3D打印零件进行搅拌摩擦焊的零件设计新方法。

A New Approach in Part Design for Friction Stir Welding of 3D-Printed Parts with Different Infill Ratios and Colors.

作者信息

Koçar Oğuz, Anaç Nergizhan, Baysal Erhan

机构信息

Department of Mechanical Engineering, Faculty of Engineering, Zonguldak Bülent Ecevit University, Zonguldak 67100, Türkiye.

Alaplı Vocational School, Zonguldak Bülent Ecevit University, Zonguldak 67850, Türkiye.

出版信息

Polymers (Basel). 2024 Jun 25;16(13):1790. doi: 10.3390/polym16131790.

Abstract

Parts produced using a 3D printer are combined with friction stir welding (FSW). In the FSW processing of parts with a low infill ratio, welding errors occur due to a lack of material. In this study, plates were created using two different-colored PLA Plus filaments with different infill ratios in the weld area (20%, 60%, and 100%). Triangular pin geometry, different feed rates (20, 40, and 60 mm/min), and different tool rotation speeds (1250, 1750, and 2250 rpm) were used as FSW process parameters. Tensile testing was performed to determine weld strength and hardness measurements, and visual inspections were performed. Color measurements were made on the test samples before and after the welding process, and the relationship between welding performance and color was evaluated. The best welding strength was obtained as 17.83 ± 0.68 MPa at a feed rate of 20 mm/min, a tool rotation speed of 1750 rpm, and a part with a 60% infill ratio in the welding zone. In the sample with the best weld strength, the temperature was measured as 198.97 °C. Color changes in the weld area of parts with 60% and 100% infill ratios were measured between 78.9-82.2 and 79.1-84.5, respectively. It was determined that the color change decreases as the weld strength increases in these parts. The results show that with the proposed new part design, the FSW method can be used at low infill ratios, and the weld strength can be evaluated based on the color changes in the weld zone.

摘要

使用3D打印机制造的零件与搅拌摩擦焊(FSW)相结合。在对填充率较低的零件进行搅拌摩擦焊加工时,由于材料不足会出现焊接误差。在本研究中,使用两种不同颜色的PLA Plus细丝,在焊接区域设置不同的填充率(20%、60%和100%)来制造板材。采用三角形销钉几何形状、不同的进给速度(20、40和60毫米/分钟)以及不同的刀具转速(1250、1750和2250转/分钟)作为搅拌摩擦焊工艺参数。进行拉伸试验以确定焊接强度并测量硬度,同时进行目视检查。在焊接前后对测试样品进行颜色测量,并评估焊接性能与颜色之间的关系。在进给速度为20毫米/分钟、刀具转速为1750转/分钟且焊接区域填充率为60%的零件上,获得了最佳焊接强度,为17.83±0.68兆帕。在焊接强度最佳的样品中,测量到的温度为198.97℃。填充率为60%和100%的零件焊接区域的颜色变化分别在78.9 - 82.2和79.1 - 84.5之间测量。确定在这些零件中,随着焊接强度的增加,颜色变化减小。结果表明,通过提出的新零件设计,搅拌摩擦焊方法可用于低填充率,并且可以根据焊接区域的颜色变化来评估焊接强度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f95/11244055/0e424f3e26ad/polymers-16-01790-g001.jpg

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