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首页> 外文期刊>Polymer Testing >Investigating the mechanical, thermal and melt flow index properties of HNTs - LLDPE nano composites for the applications of rotational moulding
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Investigating the mechanical, thermal and melt flow index properties of HNTs - LLDPE nano composites for the applications of rotational moulding

机译:研究HNTS - LLDPE纳米复合材料的机械,热和熔体流动指数特性,用于旋转成型的应用

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摘要

Linear low density polyethylene (LLDPE) is the one of the most popular polymer used for rotational moulding applications such as storage tanks. But, its inferior mechanical properties and thermal stability restrict the longer service. Hence, this study experimentally demonstrates the effect of Halloysite Nanotube (HNTs) concentration on LLDPE composites for enhancing the mechanical and thermal stability. HNTs were uniformly dispersed with LLDPE matrix through ultra-sonication, followed by compression moulding used to prepare the nano composites plates. The prepared composites are shown 19.2% improved tensile strength for 2 wt% HNTs, whereas 28.9% hike in flexural strength observed for 4 wt% HNTs composite, compare to neat LLDPE. Which shows that higher concentrations of HNTs is favourable in improving the flexural strength rather than tensile properties. In addition to that, higher concentrations of HNTs are also helping in improving the storage modulus of the LLDPE composites. The increase in mechanical properties mainly attributed due to effective load carriers (HNTs) in the composite. Besides, HNTs were also contributing for improving the melting point and residual char of the composites, which is indeed for storage tanks durability. The prepared composite was thermally stable at higher temperature up to 230 degrees C, because of HNTs chemical structure, the inner layer of HNTs constitute with Al2O3 and outermost layer constitute with SiO2, both are thermally stable. Stated enhancement proves the potential effect of HNTs reinforcement in the LLDPE composite for rotational moulding applications.
机译:线性低密度聚乙烯(LLDPE)是用于诸如储罐的旋转模塑应用的最流行的聚合物之一。但是,其劣势性能和热稳定性限制了较长的服务。因此,本研究通过实验表明霍罗伊岩纳米管(HNT)浓度对LLDPE复合材料的影响,以提高机械和热稳定性。 HNT通过超超声处理均匀地分散LLDPE基质,然后用​​用于制备纳米复合材料板的压缩成型。制备的复合材料显示为2wt%HNT的抗拉强度的提高19.2%,而28.9%在4wt%HNT复合材料中观察到的弯曲强度,比较纯净的LLDPE。这表明较高浓度的HNT是有利的,即改善弯曲强度而不是拉伸性能。除此之外,较高浓度的HNT还有助于改善LLDPE复合材料的储存模量。由于复合材料中有效的载体载体(HNT),机械性能的增加主要是归因的。此外,HNT也有助于改善复合材料的熔点和残留炭,这确实用于储罐耐久性。制备的复合物在较高温度下热稳定,高达230℃,因为HNT化学结构,HNT的内层构成与SiO 2构成的Al 2 O 3和最外层,两者都是热稳定的。规定的增强证明了HNTS加固在LLDPE复合材料中的潜在影响旋转模塑应用。

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  • 来源
    《Polymer Testing》 |2020年第1期|共8页
  • 作者单位

    Directorate Tech Educ Dept Mech Engn Chennai Tamil Nadu India;

    GKM Coll Engn &

    Technol Dept Mech Engn Chennai Tamil Nadu India;

    Madanapalle Inst Technol &

    Sci Dept Mech Engn Madanapalle Andhra Pradesh India;

    Univ Petr &

    Energy Studies Dept Mech Engn Dehra Dun Uttarakhand India;

    Madanapalle Inst Technol &

    Sci Dept Mech Engn Madanapalle Andhra Pradesh India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 高分子化学(高聚物);
  • 关键词

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