Lee Chuan Li, Chin Kit Ling, H'ng Paik San, Khoo Pui San, Hafizuddin Mohd Sahfani
Institute of Tropical Forestry and Forest Product, Universiti Putra Malaysia, Serdang 43400, Malaysia.
Faculty of Forestry and Environment, Universiti Putra Malaysia, Serdang 43400, Malaysia.
Polymers (Basel). 2023 Mar 7;15(6):1338. doi: 10.3390/polym15061338.
As the products made from wood-plastic composites (WPCs) become more sophisticated and required more detail profiles, the injection moulding processing method with wood pulp as the reinforcing material is the answer to cater to the rapid change and demands of composite products. The general objective of this study was to study the effects of the material formulation, as well as the injection moulding process parameters, on the properties of a polypropylene composite reinforced with chemi-thermomechanical pulp from oil palm trunks (PP/OPTP composite) via the injection moulding process. The PP/OPTP composite with a material formulation of 70% pulp/26% PP/4% Exxelor PO produced using injection moulding at 80 °C as the mould temperature and with 50 tonnes of injection pressure exhibited the highest physical and mechanical properties. The increment loading of pulp increased the water absorption capacity of the composite. Higher loading of the coupling agent effectively reduced the water absorption capacity and increased the flexural strength of the composite. The increase in mould temperature from unheated to 80 °C prevented excessive heat loss of the flowing material, which enabled the molten material to flow better and filled up all cavities in the mould. The increased injection pressure slightly improved the physical properties of the composite, but the effect on the mechanical properties was insignificant. For the future development of WPCs, further studies should be focused on the viscosity behaviour, as a greater understanding of the processing parameters' effects on the PP/OPTP's viscosity behaviour will lead to improved product design and enable great potential usage of WPCs.
随着木塑复合材料(WPC)制成的产品变得越来越复杂,需要更精细的型材,以木浆为增强材料的注塑加工方法是满足复合材料产品快速变化和需求的答案。本研究的总体目标是通过注塑工艺研究材料配方以及注塑工艺参数对以油棕树干化学热机械浆增强的聚丙烯复合材料(PP/OPTP复合材料)性能的影响。采用注塑成型,在80℃模具温度和50吨注塑压力下生产的材料配方为70%纸浆/26%PP/4%埃克森美孚PO的PP/OPTP复合材料表现出最高的物理和机械性能。纸浆负载量的增加提高了复合材料的吸水能力。偶联剂负载量的增加有效地降低了复合材料的吸水能力,并提高了其弯曲强度。模具温度从未加热提高到80℃可防止流动材料过度散热,使熔融材料流动得更好,并填满模具中的所有型腔。注塑压力的增加略微改善了复合材料的物理性能,但对机械性能的影响不显著。对于木塑复合材料的未来发展,应进一步研究其粘度行为,因为更深入了解加工参数对PP/OPTP粘度行为的影响将有助于改进产品设计,并使木塑复合材料具有巨大的潜在用途。