Li Jiquan, Bei Jie, Liu Wenyong, Xia Xinxin, Zhou Bida, Peng Xiang, Jiang Shaofei
College of Mechanical Engineering, Zhejiang University of Technology, Hangzhou 310014, China.
National International Joint Research Center of Special Purpose Equipment and Advanced Processing Technology, Zhejiang University of Technology, Hangzhou 310014, China.
Polymers (Basel). 2021 May 31;13(11):1814. doi: 10.3390/polym13111814.
Warpage is a typical defect for injection-molded parts, especially for crystalline parts molded by rapid heat cycle molding (RHCM). In this paper, a prediction method is proposed for predicting the warpage of crystalline parts molded by the RHCM process. Multi-layer models were established to predict warpage with the same thicknesses as the skin-core structures in the molded parts. Warpages were defined as the deformations calculated by the multi-layer models. The deformations were solved using the classical laminated plate theory by Abaqus. A model was introduced to describe the elastic modulus with the influence of temperature and crystallinity. The simulation process was divided into two procedures, before ejection and after ejection. Thermal stresses and thermal strains were simulated, respectively, in the procedure before ejection and after ejection. The prediction results were compared with the experimental results, which showed that the average errors between predicted warpage and average experimental warpage are, respectively, 7.0%, 3.5%, and 4.4% in conventional injection molding (CIM), in RHCM under a 60 °C heating mold (RHCM60), and in RHCM under a 90 °C heating mold (RHCM90).
翘曲是注塑成型零件的典型缺陷,对于采用快速热循环成型(RHCM)工艺成型的结晶性零件尤为如此。本文提出了一种预测采用RHCM工艺成型的结晶性零件翘曲的方法。建立了多层模型来预测翘曲,其厚度与成型零件中的皮芯结构相同。翘曲定义为由多层模型计算出的变形。这些变形通过Abaqus采用经典层合板理论求解。引入了一个模型来描述弹性模量随温度和结晶度的影响。模拟过程分为两个阶段,即顶出前和顶出后。分别在顶出前和顶出后的阶段模拟热应力和热应变。将预测结果与实验结果进行比较,结果表明,在传统注塑成型(CIM)、60°C加热模具的RHCM(RHCM60)以及90°C加热模具的RHCM(RHCM90)中,预测翘曲与平均实验翘曲之间的平均误差分别为7.0%、3.5%和4.4%。