Abdelmagid Alaaeldin A A, Idriss Aboubaker I B, Yang Chun-Mei
School of Civil Engineering, Quanzhou University of Information Engineering, Quanzhou 362008, China.
College of Mechanical and Electrical Engineering, Northeast Forestry University, Harbin 150040, China.
Polymers (Basel). 2024 Jun 25;16(13):1786. doi: 10.3390/polym16131786.
Wood-plastic composites are becoming increasingly recognized for their sustainability and their potential for use in various production processes. Nevertheless, enhancing their mechanical strength continues to be a difficult challenge. The objective of this research was to improve the mechanical strength of wood-plastic composite components manufactured through selective laser sintering (SLS). This was achieved by integrating a sustainable composite material, (PCP), with polyethersulfone (PES) to form a composite referred to as PCPC. This study showcased the effect of various PCP particle sizes on mechanical strengths, dimensional accuracies (DAs), and surface roughness of PCPC parts manufactured using AFS-360 SLS. Single-layer sintering was employed to assess PCPC powder's formability with varying PCP particle sizes, and various tests were conducted to understand the materials' thermal properties and analyze particle dispersion and microstructure. The results demonstrated that PCP particle sizes ≤ 0.125 mm significantly enhanced the mechanical strength, forming quality, and DA compared to other particle sizes and pure PES. Key findings for PCPC parts with PCP ≤ 0.125 mm included a bending strength of 10.78 MPa, a tensile strength of 4.94 MPa, an impact strength of 0.91 kJ/m, and a density of 1.003 g/cm. Post-processing further improved these parameters, confirming that optimizing PCP particle size is crucial for enhancing the mechanical properties and overall quality of PCPC parts produced via SLS.
木塑复合材料因其可持续性以及在各种生产工艺中的应用潜力而越来越受到认可。然而,提高其机械强度仍然是一项艰巨的挑战。本研究的目的是提高通过选择性激光烧结(SLS)制造的木塑复合材料部件的机械强度。这是通过将一种可持续复合材料(PCP)与聚醚砜(PES)结合形成一种称为PCPC的复合材料来实现的。本研究展示了不同PCP粒径对使用AFS - 360 SLS制造的PCPC部件的机械强度、尺寸精度(DA)和表面粗糙度的影响。采用单层烧结来评估不同PCP粒径的PCPC粉末的可成型性,并进行了各种测试以了解材料的热性能并分析颗粒分散和微观结构。结果表明,与其他粒径和纯PES相比,PCP粒径≤0.125 mm显著提高了机械强度、成型质量和尺寸精度。PCP≤0.125 mm的PCPC部件的关键性能包括弯曲强度为10.78 MPa、拉伸强度为4.94 MPa、冲击强度为0.91 kJ/m和密度为1.003 g/cm。后处理进一步改善了这些参数,证实了优化PCP粒径对于提高通过SLS生产的PCPC部件的机械性能和整体质量至关重要。