Krawiec Piotr, Czarnecka-Komorowska Dorota, Warguła Łukasz, Wojciechowski Szymon
Institute of Machine Design, Poznan University of Technology, 61138 Poznan, Poland.
Polymer Processing Division, Institute of Materials Technology, Poznan University of Technology, 61138 Poznan, Poland.
Materials (Basel). 2021 Mar 29;14(7):1682. doi: 10.3390/ma14071682.
The paper presents the procedure of generating geometrical features on the contours of non-circular pulleys through the selection of materials and technological parameters for easy and efficient production of these parts. Based on the models designed in the computer aided design (CAD) system, several prototype non-standard pulleys were made, which were assessed for functional characteristics and correct operation of non-linear gears. The effect of additive technology on the geometric specification of non-circular pulleys was also assessed. The results showed that thanks to the use of additive methods, the need for costly manufacturing of such wheels with subtractive methods was eliminated. Additionally, it is not necessary to design specialized cutting tools or to use conventional or numerically controlled machine tools to manufacture these wheels. The test results showed that in case of selective laser sintering (SLS) the highest accuracy of mapping (0.01 mm) of geometrical features of the surface was obtained. This result is confirmed by the assessment of the morphology of the surface of the teeth of gears made with this technique, characterized by a uniform structure of the working surface of the wheel while maintaining a high tolerance of the outer profile of gear for selective laser sintering at the level of ±0.03 mm. Research has shown that most of the additive methods used to manufacture non-circular pulleys meet the required geometrical features and due to the short production time of these pulleys, these methods also facilitate quick verification of the designed pulley geometry.
本文介绍了通过选择材料和工艺参数,在非圆形皮带轮轮廓上生成几何特征的过程,以便轻松高效地生产这些零件。基于计算机辅助设计(CAD)系统中设计的模型,制作了几个非标准皮带轮原型,并对其进行了功能特性评估以及非线性齿轮正确运行情况的评估。还评估了增材制造技术对非圆形皮带轮几何规格的影响。结果表明,由于采用了增材制造方法,消除了使用减法制造此类皮带轮的高成本需求。此外,无需设计专用切削刀具或使用传统或数控机床来制造这些皮带轮。测试结果表明,在选择性激光烧结(SLS)的情况下,表面几何特征的映射精度最高(0.01毫米)。用该技术制造的齿轮齿面形态评估证实了这一结果,其特点是轮的工作表面结构均匀,同时选择性激光烧结齿轮外轮廓的公差保持在±0.03毫米的高水平。研究表明,用于制造非圆形皮带轮的大多数增材制造方法都符合所需的几何特征,并且由于这些皮带轮的生产时间短,这些方法还便于快速验证设计的皮带轮几何形状。