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Influence Of The Processing Conditions On The Mechanical Properties Of PA 6 - Halloysite Nanotubes Nanocomposites For Injection Moulding

机译:加工条件对注射成型PA 6 - Holloysite纳米管纳米复合材料的力学性能的影响

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Nowadays polymer based nanocomposites are very interesting to manufacture products of less weight and higher mechanical properties and specific performance depending on the morphology of nano scaled reinforcement. Most of these potential improvements are focused to the challenges newer products require like HEV (hybrid or electrical vehicles) for example. The development of these new products requires the full characterization of the rheological and mechanical behavior of the materials and the correct preparation of the raw material for further processing. As an example two nanocomposite blends were prepared letting down a masterbach of PA6+30% HNT (Halloysite nanotubes) to 3% and 6% of HNT content in a PA6 matrix of (BADADUR). The letting down process was developed in an extrusion-compounding machine (COPERION ZSK 26) and the rheological behavior was determined in a capillar rheometer obtaining the viscosity curves of the material needed for injection molding simulation. The products obtained were used for injection molding of test specimens in an electrical injection machine (JSW EL II 85). In addition, the letting down process was done directly in the injection machine in order to establish the relevance of the previous extrusion process. The probes obtained were analyzed by DSC and FTIR to determine the functional groups of the resultant product and SEM and TEM to determine the quality of the dispersion of the nanotubes. The probes were finally tested to determine its stiffness and tensile properties. The results showed the feasibility to develop parts made of nanocomposite with improved performance with scaled industry equipment with natural reinforcements.
机译:如今,基于聚合物的纳米复合材料非常有趣,可以根据纳米缩放增强的形态制造重量和更高的机械性能和具体性能的产品。大多数这些潜在的改进专注于挑战更新的产品,例如HEV(混合或电动车辆)。这些新产品的开发需要完全表征材料的流变和力学行为以及用于进一步加工的原料的正确制备。作为一种实施例,制备两种纳米复合材料共混物,使PA6 + 30%HNT(Holloysite Nanotubes)的MasterBACH(Lolboysite Nanotubes)的MasterBACH在(BADADUR)的PA6基质中以3%和6%的HNT含量。在挤出复合机(Coperion ZSK 26)中开发出呼吸的过程,并且在毛细管流变仪中测定流变行为,获得注射成型模拟所需的材料的粘度曲线。所得产品用于注射电气注射机中试样的注射成型(JSW EL II 85)。此外,放置停止过程直接在注射机中完成,以便建立先前的挤出过程的相关性。通过DSC和FTIR分析所得探针,以确定所得产物和SEM和TEM的官能团,以确定纳米管的分散的质量。最终测试探针以确定其刚度和拉伸性能。结果表明,开发由纳米复合材料制成的零件的可行性,具有改进的性能,具有具有天然增强的缩放工业设备。

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