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Effect of Hybrid Talc-Basalt Fillers in the Shell Layer on Thermal and Mechanical Performance of Co-Extruded Wood Plastic Composites

机译:杂交滑石玄武岩填料在共挤出木塑复合材料中壳层壳层壳体层的影响

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Hybrid basalt fiber (BF) and Talc filled high density polyethylene (HDPE) and co-extruded wood-plastic composites (WPCs) with different BF/Talc/HDPE composition levels in the shell were prepared and their mechanical, morphological and thermal properties were characterized. Incorporating BFs into the HDPE-Talc composite substantially enhanced the thermal expansion property, flexural, tensile and dynamic modulus without causing a significant decrease in the tensile and impact strength of the composites. Strain energy estimation suggested positive and better interfacial interactions of HDPE with BFs than that with talc. The co-extruded structure design improved the mechanical properties of WPC due to the protective shell layer. The composite flexural and impact strength properties increased, and the thermal expansion decreased as BF content increased in the hybrid BF/Talc filled shells. The cone calorimetry data demonstrated that flame resistance of co-extruded WPCs was improved with the use of combined fillers in the shell layer, especially with increased loading of BFs. The combined shell filler system with BFs and Talc could offer a balance between cost and performance for co-extruded WPCs.
机译:制备杂交玄武岩纤维(BF)和滑石填充的高密度聚乙烯(HDPE)和共挤出的木塑复合材料(HDPE),具有不同的壳体中的不同BF /滑石/ HDPE组合物水平,其机械,形态学和热性能进行了特征。将BFS进入HDPE-TALC复合材料,大大提高了热膨胀性能,弯曲,拉伸和动态模量,而不会导致复合材料的拉伸和冲击强度显着降低。应变能量估计表明HDPE与BFS的正界面和更好的界面相互作用而不是用滑石。共挤出结构设计改善了由于保护壳层的WPC的机械性能。随着BF含量在杂交BF /滑石填充壳中增加,复合弯曲和冲击强度性能增加,热膨胀减少。锥形量热法数据证明了共挤出WPC的阻燃性随着壳层中的组合填料而改善,特别是随着BFS的载荷增加。具有BFS和滑石的组合壳体填充系统可以在共挤出WPC的成本和性能之间提供平衡。

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