Muszyński Paweł, Poszwa Przemysław, Gessner Andrzej, Mrozek Krzysztof
Institute of Mechanical Engineering, Poznan University of Technology, Piotrowo 3, 61-138 Poznan, Poland.
Institute of Materials Technology, Poznan University of Technology, Piotrowo 3, 61-138 Poznan, Poland.
Materials (Basel). 2021 May 13;14(10):2543. doi: 10.3390/ma14102543.
Injection molding is a polymer processing technology used for manufacturing parts with elastic hinges. Elastic hinges are widely used in FMCG (Fast Moving Consumer Goods) packaging (e.g., bottle closures of shampoos, sauces) and in the electrical engineering industry. Elastic hinge is a thin film that connect two regions of the injection molded part, where significant shear rates are present, which can lead to the degradation of polymers and the decrease in mechanical properties. Selective induction heating is the method that improves the flow of the polymer melt through thin regions by the local increase in mold temperature. In this study, selective induction heating was used to improve mechanical properties of elastic hinges by the reduction of material degradation due to high shear rates. To verify the change of shear rates, selective induction heating simulation and injection molding simulations were performed. The linear relation between mold temperature and maximum shear rate in the cross-section was identified and the mechanical tests showed significant differences in hinge stiffness, tensile strength and elongation at break.
注塑成型是一种用于制造带有弹性铰链部件的聚合物加工技术。弹性铰链广泛应用于快速消费品(FMCG)包装(如洗发水、酱料的瓶盖)以及电气工程行业。弹性铰链是连接注塑部件两个区域的薄膜,在这两个区域存在显著的剪切速率,这可能导致聚合物降解和机械性能下降。选择性感应加热是一种通过局部提高模具温度来改善聚合物熔体在薄区域流动的方法。在本研究中,选择性感应加热用于通过减少高剪切速率导致的材料降解来提高弹性铰链的机械性能。为了验证剪切速率的变化,进行了选择性感应加热模拟和注塑成型模拟。确定了模具温度与横截面最大剪切速率之间的线性关系,并且机械测试表明铰链刚度、拉伸强度和断裂伸长率存在显著差异。