Tsai Hsi Hsun, Liao Yi Lin
Department of Mechanical Engineering, Ming Chi University of Technology, New Taipei City 24301, Taiwan.
Research Center for Intelligent Medical Devices, Ming Chi University of Technology, New Taipei City 24301, Taiwan.
Polymers (Basel). 2022 Feb 4;14(3):616. doi: 10.3390/polym14030616.
The investigation of plastic pallet molding, assisted by a sequential valve gate system, has not yet been performed due to the limitations of the pallet scale. Furthermore, at present, the application of recycled plastics by chemical industries has become extremely popular around the world. This study aimed to determine pallet flatness experimentally and numerically using recycled polypropylene with a large-scale pallet. Short-shot testing on injection molding was performed to obtain short-shot samples for confirmation of the flow front during simulated filling. The real injected pallet profile, which was measured by an ATOS, was compared after confirmation to the numerical profile of the pallet. The pallet's flatness was accurately compared to the real experimental and numerical results. By adjusting the temperature of the cooling channel within the cavity plate to 55 °C, the flatness of the pallet achieved by the newly proposed sequential valve gate-opening scheme was about 7 mm, which meets the height directional warpage standard determined by the pre-set sequential scheme. The numerical flatness is in line with existing flatness values for pallets. Furthermore, the proposed cooling temperature gives the highest yield in terms of pallet molding from the perspective of the stakeholders.
由于托盘尺寸的限制,尚未在顺序阀浇口系统的辅助下对塑料托盘成型进行研究。此外,目前化学工业对再生塑料的应用在全球范围内已极为普遍。本研究旨在使用大型托盘和再生聚丙烯通过实验和数值模拟来确定托盘的平整度。对注塑成型进行短射试验,以获取短射样品,用于确认模拟填充过程中的流动前沿。在确认后,将通过ATOS测量的实际注塑托盘轮廓与托盘的数值轮廓进行比较。将托盘的平整度与实际实验和数值结果进行了精确比较。通过将型腔板内冷却通道的温度调节至55°C,新提出的顺序阀开启方案所实现的托盘平整度约为7mm,符合预设顺序方案确定的高度方向翘曲标准。数值平整度与托盘现有的平整度值相符。此外,从利益相关者的角度来看,所提出的冷却温度在托盘成型方面具有最高的成品率。