Kim Gun-Hee, Lee Jeong-Won, Seo Tae-Il
Molds & Dies Technology R&D Group, Korea Institute of Industrial Technology, 7-47, Songdo-dong, Yeonsu-gu, Incheon 406-840, Korea.
Division of Mechanical System Engineering, University of Incheon, 12-1, Songdo-dong, Yeonsu-gu, Incheon 406-772, Korea.
Materials (Basel). 2013 May 10;6(5):1873-1890. doi: 10.3390/ma6051873.
Plastic worm wheel is widely used in the vehicle manufacturing field because it is favorable for weight lightening, vibration and noise reduction, as well as corrosion resistance. However, it is very difficult for general plastics to secure the mechanical properties that are required for vehicle gears. If the plastic resin is reinforced by glass fiber in the fabrication process of plastic worm wheel, it is possible to achieve the mechanical properties of metallic material levels. In this study, the mechanical characteristic analysis of the glass-reinforced plastic worm wheel, according to the contents of glass fiber, is performed by analytic and experimental methods. In the case of the glass fiber-reinforced resin, the orientation and contents of glass fibers can influence the mechanical properties. For the characteristic prediction of plastic worm wheel, computer-aided engineering (CAE) analysis processes such as structural and injection molding analysis were executed with the polyamide resin reinforcement glass fiber (25 wt %, 50 wt %). The injection mold for fabricating the prototype plastic worm wheel was designed and made to reflect the CAE analysis results. Finally, the durability of prototype plastic worm wheel fabricated by the injection molding process was evaluated by the experimental method and the characteristics according to the glass fiber contents.
塑料蜗轮广泛应用于车辆制造领域,因为它有利于减轻重量、降低振动和噪音以及耐腐蚀。然而,一般塑料很难确保车辆齿轮所需的机械性能。如果在塑料蜗轮的制造过程中用玻璃纤维增强塑料树脂,则有可能达到金属材料级别的机械性能。在本研究中,通过分析和实验方法对玻璃纤维增强塑料蜗轮根据玻璃纤维含量进行了机械特性分析。在玻璃纤维增强树脂的情况下,玻璃纤维的取向和含量会影响机械性能。为了预测塑料蜗轮的特性,对聚酰胺树脂增强玻璃纤维(25重量%、50重量%)进行了诸如结构和注塑成型分析等计算机辅助工程(CAE)分析过程。设计并制作了用于制造塑料蜗轮原型的注塑模具,以反映CAE分析结果。最后,通过实验方法评估了通过注塑成型工艺制造的塑料蜗轮原型的耐久性以及根据玻璃纤维含量的特性。