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The Use of POSS-Based Nanoadditives for Cable-Grade PVC: Effects on Its Thermal Stability

机译:基于POSS的纳米添加剂在电缆级PVC中的应用:对其热稳定性的影响

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摘要

Plasticized–Poly(vinyl chloride) (P-PVC) for cables and insulation requires performances related to outdoor, indoor and submarine contexts and reduction of noxious release of HCl-containing fumes in case of thermal degradation or fire. Introducing suitable nanomaterials in polymer-based nanocomposites can be an answer to this clue. In this work, an industry-compliant cable-grade P-PVC formulation was added with nanostructured materials belonging to the family of Polyhedral Oligomeric Silsesquioxane (POSS). The effects of the nanomaterials, alone and in synergy with HCl scavenging agents as zeolites and hydrotalcites, on the thermal stability and HCl evolution of P-PVC were deeply investigated by thermogravimetric analysis and reference ASTM methods. Moreover, hardness and mechanical properties were studied in order to highlight the effects of these additives in the perspective of final industrial uses. The data demonstrated relevant improvements in the thermal stability of the samples added with nanomaterials, already with concentrations of POSS down to 0.31 phr and interesting additive effects of POSS with zeolites and hydrotalcites for HCl release reduction without losing mechanical performances.
机译:用于电缆和绝缘的增塑聚氯乙烯(P-PVC)要求具有与室外,室内和海底环境相关的性能,并要求在热降解或火灾情况下减少含HCl烟雾的有害释放。在聚合物基纳米复合材料中引入合适的纳米材料可以解决这个问题。在这项工作中,添加了符合行业标准的电缆级P-PVC配方,并添加了多面体寡聚倍半硅氧烷(POSS)家族的纳米结构材料。通过热重分析和参考ASTM方法,深入研究了纳米材料单独或与HCl清除剂(如沸石和水滑石)协同作用对P-PVC的热稳定性和HCl释放的影响。此外,还研究了硬度和机械性能,以便从最终工业用途的角度突出这些添加剂的作用。数据表明,添加纳米材料的样品的热稳定性有了显着改善,而POSS的浓度已降至0.31 phr,并且POSS与沸石和水滑石具有令人感兴趣的加合作用,可减少HCl的释放,而不会损失机械性能。

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