Park Joon Hyoung, Kim Sun Kyoung
Department of Mechanical System Design Engineering, Seoul National University of Science and Technology, Seoul 01811, Republic of Korea.
Polymers (Basel). 2024 Feb 2;16(3):424. doi: 10.3390/polym16030424.
Melt expansion followed by compression has been utilized for high-speed filling. In general, this technology was developed for a machine level. Recently, mold-level technology has been tried. In this study, an expansion injection molding process was examined, which included compressing a polymer melt through cylinder action facilitated by the movement of the platen, followed by the expansion of the polymer melt into a mold cavity. A mold system including temperature control and valve actions, similar to hot runner systems, was designed and built. The test results show good filling when the injection pressure was high. Simulations were also carried out, highlighting consistent pressure and filling trends, while revealing limitations tied to the characteristics of the state model. This research indicates promise for expansion injection molding through platen compression but emphasizes the need for the seamless integration of valve action with the injection molding machine for large-scale production.
先进行熔体膨胀再进行压缩已被用于高速填充。一般来说,这项技术是在机器层面上开发的。最近,模具层面的技术也已得到尝试。在本研究中,对一种膨胀注射成型工艺进行了研究,该工艺包括通过模板移动促进的料筒作用来压缩聚合物熔体,随后聚合物熔体膨胀进入模腔。设计并构建了一个类似于热流道系统的包括温度控制和阀门动作的模具系统。测试结果表明,当注射压力较高时,填充效果良好。还进行了模拟,突出了一致的压力和填充趋势,同时揭示了与状态模型特性相关的局限性。这项研究表明通过模板压缩进行膨胀注射成型具有前景,但强调了在大规模生产中阀门动作与注塑机无缝集成的必要性。