Llewelyn Gethin, Rees Andrew, Griffiths Christian, Jacobi Martin
College of Engineering, Swansea University, Swansea, Wales SA1 8EN, UK.
Trexel GmbH, Ahlefelderstr. 64, D-51645 Gummersbach, Germany.
Materials (Basel). 2020 May 20;13(10):2358. doi: 10.3390/ma13102358.
The pursuit of polymer parts produced through foam injection moulding (FIM) that have a comparable surface roughness to conventionally processed components are of major relevance to expand the application of FIM. Within this study, 22% talc-filled copolymer polypropylene (PP) parts were produced through FIM using both a physical and chemical blowing agent. A design of experiments (DoE) was performed whereby the processing parameters of mould temperatures, injection speeds, back-pressure, melt temperature and holding time were varied to determine their effect on surface roughness, Young's modulus and tensile strength. The results showed that mechanical performance can be improved when processing with higher mould temperatures and longer holding times. Also, it was observed that when utilising chemical foaming agents (CBA) at low-pressure, surface roughness comparable to that obtained from conventionally processed components can be achieved. This research demonstrates the potential of FIM to expand to applications whereby weight saving can be achieved without introducing surface defects, which has previously been witnessed within FIM.
追求通过泡沫注射成型(FIM)生产的聚合物部件具有与传统加工部件相当的表面粗糙度,这对于扩大FIM的应用具有重要意义。在本研究中,使用物理和化学发泡剂通过FIM生产了填充22%滑石粉的共聚聚丙烯(PP)部件。进行了实验设计(DoE),改变模具温度、注射速度、背压、熔体温度和保压时间等加工参数,以确定它们对表面粗糙度、杨氏模量和拉伸强度的影响。结果表明,在较高模具温度和较长保压时间下加工时,机械性能可以得到改善。此外,观察到在低压下使用化学发泡剂(CBA)时,可以获得与传统加工部件相当的表面粗糙度。这项研究证明了FIM扩展到能够在不引入表面缺陷的情况下实现减重应用的潜力,这在之前的FIM研究中已经得到证实。