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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Effect of various coupling agents on properties of alumina-filled PP composites
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Effect of various coupling agents on properties of alumina-filled PP composites

机译:各种偶联剂对氧化铝填充聚丙烯复合材料性能的影响

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The effect of coupling agents on the properties of alumina-filled polypropylene (PP) has been studied. Several types of coupling agents such as silane Z-6020 ((Aminoethylaminopropyl) trimethoxysilane), 3-GPS (3-(Glycidyloxypropyl) trimethoxysilane), and titanium dioxide powder (TiO2) were employed either during compounding or before compounding i.e., at pre-treatment stage. The silane coupling agent was first diluted into ethanol in appropriate ratio and subsequently dried before compounding. In the case of titanate, the powder was directly mixed with alumina-PP compound during mixing using Brabender internal mixer. Series of mechanical tests such as tensile and flexural testing were carried out using Instron model 3366 machine in accordance to ASTM D368 and D790-92 respectively. It has been found that the tensile strength of alumina-filled PP composite has increased considerably when both types of coupling agents are added. PP filled alumina composite with titanium as coupling agent showed a greater value of tensile strength as compared to silane-treated and untreated alumina-filled PP composites. Similarly, the flexural strength recorded was higher as compared to the untreated system with silane-treated alumina-filled composites showing the most positive results of all the systems. Consequently, study on the impact properties showed that titanium has notably improved the impact resistance of alumina-filled PP composite as compared to silane-treated composite. Study on the scanning electron micrograph revealed that improved texture on the treated composite has allowed greater plastic deformation to occur with improved adhesion and interaction between filler and matrix.
机译:研究了偶联剂对氧化铝填充的聚丙烯(PP)性能的影响。在混合过程中或在混合之前(即在预混合时),使用了几种类型的偶联剂,例如硅烷Z-6020((氨基乙基氨基丙基)三甲氧基硅烷),3-GPS(3-(缩水甘油氧基丙基)三甲氧基硅烷)和二氧化钛粉末(TiO2)。治疗阶段。首先将硅烷偶联剂以适当的比例稀释到乙醇中,然后在配混之前干燥。对于钛酸酯,在混合过程中使用Brabender内部混合器将粉末直接与氧化铝-PP化合物混合。使用Instron 3366型机器分别按照ASTM D368和D790-92进行了一系列机械测试,例如拉伸和弯曲测试。已经发现,当添加两种类型的偶联剂时,氧化铝填充的PP复合材料的拉伸强度已经显着提高。与硅烷处理和未处理的氧化铝填充的聚丙烯复合材料相比,以钛为偶联剂的PP填充的氧化铝复合材料显示出更大的拉伸强度。类似地,与未处理的系统相比,记录的抗弯强度更高,未处理的系统具有硅烷处理的氧化铝填充的复合材料,显示出所有系统中最积极的结果。因此,对冲击性能的研究表明,与硅烷处理的复合材料相比,钛显着提高了氧化铝填充的PP复合材料的抗冲击性。扫描电子显微照片的研究表明,经处理的复合材料的改善的织构允许更大的塑性变形发生,同时改善了填料与基体之间的附着力和相互作用。

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