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Strengthening Rotationally Moulded Products: Development of a Rotomouldable Thermoplastic Composite

机译:加强滚塑产品:可滚塑热塑性复合材料的开发

摘要

Rotational moulding is a process with a range of unique benefits, currently experiencing significant growth within industry. A primary limitation of the process, however, is the restricted range of suitable materials and the subsequent limitations placed upon the mechanical performance of rotationally moulded products.The aim of this research project was to develop a rotational moulding material which possessed substantially improved mechanical properties over conventional, rotationally moulded polyethylene grades. This was attempted through the development of a fibre-reinforced thermoplastic composite which was amenable to the rotational moulding process. Although the development of rotationally moulded composites has been previously reported in literature, these materials have largely proven to be unsatisfactory in terms of mechanical performance. The composite material developed here is distinct from those previously reported in that it utilises melt-compounded composite granules of a significantly larger size than are normally considered suitable for rotational moulding. These granules are intended to be moulded as an inner layer within a rotationally moulded product, with the outer moulded layer formed from conventional, unfilled polymer powder. In this way, the average length of the fibres within the moulded article is maximised while retaining the benefits of the melt-compounding process and giving an excellent external moulded finish. In order to achieve a sufficient degree of composite granule flow and coalescence during rotational moulding, it was found necessary to base the composite granules on high melt-flow, injection moulding grades of polypropylene and polyethylene. The most successful of the resultant composite materials was shown to be superior to the previously utilised rotational moulding grade of unfilled, high-density polyethylene by approximately 65% in offset yield strength (0.5% offset) and over 95% in tensile modulus.
机译:滚塑是一种具有一系列独特优势的工艺,目前在行业内正经历着显着增长。然而,该方法的主要限制是合适材料的范围受到限制,并且随后对滚塑产品的机械性能也施加了限制。本研究项目的目的是开发一种滚塑材料,其在机械性能方面大大提高。常规的滚塑聚乙烯牌号。通过开发适于旋转模塑工艺的纤维增强的热塑性复合材料来尝试这种方法。尽管旋转模塑复合材料的开发先前已在文献中进行了报道,但是这些材料在机械性能方面已被大量证明是不令人满意的。这里开发的复合材料与先前报道的那些材料不同,因为它使用的熔融复合复合颗粒的尺寸比通常认为适合于旋转模塑的尺寸大得多。这些颗粒旨在被模制成旋转模制产品内的内层,外模层由常规的未填充的聚合物粉末形成。以此方式,模制制品内的纤维的平均长度被最大化,同时保留了熔融复合工艺的优点并提供了优异的外部模制整理效果。为了在旋转模塑期间获得足够程度的复合颗粒流动和聚结,发现有必要将复合颗粒以高熔体流动,注塑级的聚丙烯和聚乙烯为基础。结果表明,最成功的复合材料要优于以前使用的未填充高密度聚乙烯的滚塑等级,其偏移屈服强度(偏移0.5%)约为65%,拉伸模量超过95%。

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    Betschart Paul Josef;

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  • 年度 2008
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  • 原文格式 PDF
  • 正文语种 en
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