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首页> 外文期刊>Journal of Materials Science >Influence of surface treatment on hybrid wollastonite-polyethylene composite resins for rotational moulding
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Influence of surface treatment on hybrid wollastonite-polyethylene composite resins for rotational moulding

机译:表面处理对硅灰石-聚乙烯杂化复合树脂滚塑的影响

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摘要

The purpose of this research was to develop a reinforcing material for polyethylene-based composite manufacture by rotational moulding. Wollastonite, sisal fibres and PE are premixed by blending and compounding with a single screw extruder and then granulated to particles with diameter about 0.5 mm prior to rotational moulding, for which the mixture is placed in a mould that is heated from the outside to 250 °C for a period of about 10 min. Aminosilane was used as a surface treatment for wollastonite. It was found that incorporating wollastonite microfibres improved the tensile properties of the system. When wollastonite fibres were coated with aminosilane, the impact strength and processability were enhanced greatly. Sisal fibres were added to improve the impact properties. Scanning electron microscopy revealed good adhesion between the coated fibre reinforcement and the polyethylene matrix at the fracture surface. The mechanism of this phenomenon is discussed.
机译:这项研究的目的是开发一种用于通过旋转模塑制造聚乙烯基复合材料的增强材料。用单螺杆挤出机将硅灰石,剑麻纤维和PE进行预混和混合,然后在旋转模塑之前将其造粒为直径约0.5 mm的颗粒,然后将其放入从外部加热至250°的模具中C约10分钟。氨基硅烷被用作硅灰石的表面处理。发现掺入硅灰石微纤维改善了系统的拉伸性能。用氨基硅烷包覆硅灰石纤维后,其冲击强度和加工性能大大提高。添加剑麻纤维以改善冲击性能。扫描电子显微镜显示在断裂表面涂覆的纤维增强材料和聚乙烯基体之间具有良好的粘合性。讨论了这种现象的机理。

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