透過您的圖書館登入
IP:3.145.89.60
  • 期刊
  • OpenAccess

The Elastic Mold Deformation during the Filling and Packing Stage of the Injection Molding Process

並列摘要


The accurate numerical prediction of the mold filling process of long and thin walled parts is dependent on numerous factors. This paper investigates the effect of various influencing variables on the filling pattern by means of simulation and experimental validation. It was found that mold temperature, process settings and venting conditions have little effect on the predicted filling pattern. However, in the actual case study, the filling behavior observed during the experiments was significantly different compared to the numerical prediction. A structural finite element analysis of the moving mold half showed an unacceptable large deformation of the mold plates under injection pressure. A very good correlation between simulation and experiment was attained after improving the stiffness of the mold. Therefore it can be concluded, that the elasticity of the mold may have a significant influence on the filling pattern when long and thin walled products are considered. Furthermore, it was shown, that even an apparently stiff mold can exhibit a distinct deformation during filling and packing stage.

參考文獻


V. Leo, C. Cuvelliez, “The Effect of the packing parameters, gate geometry, and mold elasticity on the final dimensions of a molded part” Polymer Engineering and Science, 36, 1961- 1971 (1996)
R. Pantani, V. Speranza, and G. Titomanlio, “Relevance of mold-induced thermal boundary conditions and cavity deformation in the simulation of injection molding” Polymer Engineering & Science, 41, 2022-2035 (2001)
D. G. Ahn, D. W. Kim, and Y. U. Yoon, “Optimal injection molding conditions considering the core shift for a plastic battery case with thin and deep walls” Journal of Mechanical Science and Technology, 24, 145-148 (2010)
A. J. Giacomin, A. J. Hade, L. M. Johnson, A. W. Mix, Y. C. Chen, H. C. Liao, and S. C. Tseng, “Core deflection in injection molding” Journal of Non-Newtonian Fluid Mechanics, 166, 908-914 (2011)
A. Bakharev, Z. Fan, F. Costa, S. Han, X. Jin and P. Kennedy, “Prediction of core shift effects using mold filling simulation” Proceedings of ANTEC2004 Plastics, Chicago, Illinois, USA, pp. 621-625, May (2004)

被引用紀錄


Ru, H. H. (2012). 高效率濺鍍銅銦鎵硒太陽電池中鎵分佈及晶粒成長之研究 [doctoral dissertation, National Tsing Hua University]. Airiti Library. https://doi.org/10.6843/NTHU.2012.00111
Hsu, S. H. (2014). 模擬研究自組裝鐵-苝四甲酸二酐分子奈米線之自旋耦合 [master's thesis, National Taiwan University]. Airiti Library. https://doi.org/10.6342/NTU.2014.10106
徐創涵(2011)。調控有機分子在金屬表面的電子結構及傳輸行為〔碩士論文,國立臺灣大學〕。華藝線上圖書館。https://doi.org/10.6342/NTU.2011.10728

延伸閱讀