首页> 外文学位 >Research on the use of particles coming from almond husk as fillers for vinyl plastisols to manufacture hollow pieces with similar surface finishing than wood by using a rotational moulding process (Spanish text).
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Research on the use of particles coming from almond husk as fillers for vinyl plastisols to manufacture hollow pieces with similar surface finishing than wood by using a rotational moulding process (Spanish text).

机译:关于使用杏仁壳颗粒作为乙烯基塑料溶胶的填料的研究,通过使用滚塑工艺来制造表面粗糙度与木材相似的空心件(西班牙文)。

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摘要

PVC pastes or plasticized PVC offer great possibilities in the industrial field in which this research work has been developed since they show great relevance in plastic processing. On one hand, it is important to study these materials from different points of view: quality improvement, wide range of performance, high versatility, low costs,.... On the other hand, most of the industrial fields that usually employ these polymeric materials are characterized by developing products on which aesthetic considerations and surface finishing acquire special relevance. These industrial fields include all those on which new designs require complex shapes and new and novelty surface finishing such as interior design (furniture, wood products,...) toys industry, houseware, shoe industry,....; The main aim of this work is to improve the use of PVC plastisols in these industrial fields by optimizing formulations with new additives (low toxicity plasticizers) and fillers (lignocellulosic wastes) to obtain new materials that minimize damages to environment. In this work, we have developed new plastisol formulations based on the use of low toxicity plasticizers to obtain more ecological plastisols. We have used a biodegradable plasticizer DINCH which is a derivative of a dicarboxilate as substitute of traditional plasticizers based on phthalates. As we are working with relatively new plasticizers (specially at industrial level) we have performed a whole study of its properties by using different experimental analysis techniques such as differential scanning calorimetry (DSC), thermogravimetric analysis (TGA), dynamical-mechanical analysis (DMA) and espectrofotometric techniques (visible and infrared). Furthermore a complete mechanical characterization has been carried out to analyze the most important parameters that influence on materials properties such as processing parameters (temperature and time) and plastisol formulations (mainly plasticizer content).; We have also performed a comparative study regarding the results obtained with the most used plasticizer at industrial level, di-octyl phthalate (DOP). After this characterization, a study on the addition of cellulosic fillers was carried out to obtain materials with similar surface finishing than wood products. We used three different lignocellulosic fillers coming from wastes: almond husk residues since these wastes are quite abundant in our influence zone, rice husk and sawdust residues since they are produced everywhere in high amounts. It was studied the influence of the morphology and particle size on the final properties of the prepared mixtures to optimize formulations. These new plastisol formulations allow obtaining new materials in a wide range of mechanical properties, easy processing, interesting surface finishing and partially biodegradable, more careful with environment.
机译:PVC糊料或增塑的PVC在开展这项研究工作的工业领域中提供了巨大的可能性,因为它们在塑料加工中显示出极大的意义。一方面,重要的是要从不同的角度研究这些材料:质量提高,性能范围广,多功能性强,成本低....另一方面,通常使用这些聚合物的大多数工业领域材料的特点是开发出产品,这些产品在美学和表面处理方面都具有特殊的意义。这些工业领域包括所有需要进行新设计的复杂形状和新颖新颖的表面处理领域,例如室内设计(家具,木材产品等),玩具业,家庭用品,制鞋业等。这项工作的主要目的是通过优化新型添加剂(低毒性增塑剂)和填充剂(木质纤维素废料)的配方来获得新的材料,以最大程度地减少对环境的损害,从而改善这些工业领域中PVC增塑溶胶的使用。在这项工作中,我们基于使用低毒性增塑剂开发了新的增塑溶胶配方,从而获得了更多的生态增塑溶胶。我们已经使用了一种可生物降解的增塑剂DINCH,它是二羧酸的衍生物,替代了传统的基于邻苯二甲酸盐的增塑剂。由于我们正在使用相对较新的增塑剂(特别是在工业水平上),因此我们通过使用不同的实验分析技术(例如差示扫描量热法(DSC),热重分析(TGA),动态力学分析(DMA))对它的性能进行了完整的研究。 )和电子光谱技术(可见光和红外光)。此外,已经进行了完整的机械表征,以分析影响材料性能的最重要参数,例如加工参数(温度和时间)和增塑溶胶配方(主要是增塑剂含量)。我们还对工业水平上最常用的增塑剂邻苯二甲酸二辛酯(DOP)的结果进行了比较研究。经过此表征后,对添加纤维素填料进行了研究,以获得与木制品具有相似表面光洁度的材料。我们使用了来自废物的三种不同的木质纤维素填料:杏仁皮残留物,因为这些废物在我们的影响区内非常丰富;稻壳和锯末残留物,因为它们在世界各地都大量生产。研究了形态和粒径对所制备混合物的最终性能的影响,以优化配方。这些新的增塑溶胶配方可提供具有广泛机械性能,易于加工,有趣的表面光洁度和可部分生物降解的新材料,并且在环境方面更加谨慎。

著录项

  • 作者单位

    Universidad Politecnica de Valencia (Spain).;

  • 授予单位 Universidad Politecnica de Valencia (Spain).;
  • 学科 Engineering Materials Science.; Chemistry Polymer.
  • 学位 Dr.
  • 年度 2005
  • 页码 610 p.
  • 总页数 610
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;高分子化学(高聚物);
  • 关键词

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