Feng Li, Zhao Chunyan
College of Mechanical and Electrical Engineering, Northeast Forestry University, Harbin 150040, China.
Polymers (Basel). 2022 Jul 10;14(14):2814. doi: 10.3390/polym14142814.
Wood plastic composite (WPC) materials are mainly used as building slabs and load-bearing slabs, which will cause creep deformation, structural failure, and safety problems. Therefore, this work used high-density polyethylene and poplar wood flour as the main raw materials to prepare wood-plastic boards. The bending creep tests of wood-plastic sheets were carried out using an orthogonal test method. According to the creep test results, the influences of the WPC ratio molding temperature, pelleting temperature, coupling agent screw speed, and other technological factors on the creep properties of WPC composites under different loads are analyzed, and the influences of WPC creep properties on structural reliability are also analyzed. The results indicate that the wood-plastic ratio and screw speed are significant factors when the load is at 30% bending strength within the 24h creep test. When the load is at 50% bending strength, the wood-plastic ratio and molding temperature are the significant factors. When the load is at 70% bending strength, the wood-plastic ratio is the most significant factor. When the load is at 50% bending strength within the 240 h creep test, the wood-plastic ratio and molding temperature are significant factors. When the load is at 30% bending strength, the influence of each factor on the creeping variable is provided in the following descending order: wood-plastic ratio, molding temperature, granulation temperature, coupling agent, and screw speed, but none of them are significant factors.
木塑复合材料(WPC)主要用作建筑板材和承重板材,这会导致蠕变变形、结构失效和安全问题。因此,本研究以高密度聚乙烯和杨木粉为主要原料制备木塑板。采用正交试验法对木塑板材进行弯曲蠕变试验。根据蠕变试验结果,分析了木塑比、成型温度、造粒温度、偶联剂、螺杆转速等工艺因素对不同载荷下WPC复合材料蠕变性能的影响,同时分析了WPC蠕变性能对结构可靠性的影响。结果表明,在24h蠕变试验中,当载荷为弯曲强度的30%时,木塑比和螺杆转速是显著因素。当载荷为弯曲强度的50%时,木塑比和成型温度是显著因素。当载荷为弯曲强度的70%时,木塑比是最显著因素。在240h蠕变试验中,当载荷为弯曲强度的50%时,木塑比和成型温度是显著因素。当载荷为弯曲强度的30%时,各因素对蠕变量的影响按以下降序排列:木塑比、成型温度、造粒温度、偶联剂、螺杆转速,但它们均不是显著因素。