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用于无卤低烟电缆保护管(HFLS导管)的阻燃耐热聚丙烯复合材料

Flame-Retarded and Heat-Resistant PP Compounds for Halogen-Free Low-Smoke Cable Protection Pipes (HFLS Conduits).

作者信息

Porfyris Athanasios D, Vafeiadis Afxentis, Gkountela Christina I, Politidis Christos, Messaritakis Georgios, Orfanoudakis Epameinondas, Pavlidou Silvia, Korres Dimitrios M, Kyritsis Apostolos, Vouyiouka Stamatina N

机构信息

Laboratory of Polymer Technology, School of Chemical Engineering, National Technical University of Athens, Zographou Campus, 15780 Athens, Greece.

Dielectrics Group, School of Applied Mathematical and Physical Sciences, National Technical University of Athens, Zographou Campus, 15780 Athens, Greece.

出版信息

Polymers (Basel). 2024 May 6;16(9):1298. doi: 10.3390/polym16091298.

Abstract

Conduits are plastic tubes extensively used to safeguard electrical cables, traditionally made from PVC. Recent safety guidelines seek alternatives due to PVC's emission of thick smoke and toxic gases upon fire incidents. Polypropylene (PP) is emerging as a viable alternative but requires modification with suitable halogen-free additives to attain flame retardancy (FR) while maintaining high mechanical strength and weathering resistance, especially for outdoor applications. The objective of this study was to develop two FR systems for PP: one comprising a cyclic phosphonate ester and a monomeric N-alkoxy hindered amine adjuvant achieving V0, and another with hypophosphite and bromine moieties, along with a NOR-HAS adjuvant achieving V2. FR performance along with mechanical properties, physicochemical characterization, and dielectric behavior were evaluated prior to and after 2000 h of UV weathering or heat ageing. The developed FR systems set the basis for the production of industrial-scale masterbatches, from which further optimization to minimize FR content was performed via melt mixing with PP towards industrialization of a low-cost FR formulation. Accordingly, two types of corrugated conduits (ø20 mm) were manufactured. Their performance in terms of flame propagation, impact resistance, smoke density, and accelerated UV weathering stability classified them as Halogen Free Low Smoke (HFLS) conduits; meanwhile, they meet EU conduit standards without significantly impacting conduit properties or industrial processing efficiency.

摘要

导管是广泛用于保护电缆的塑料管,传统上由聚氯乙烯(PVC)制成。由于PVC在火灾事故中会释放浓烟和有毒气体,最近的安全指南正在寻求替代品。聚丙烯(PP)正在成为一种可行的替代品,但需要用合适的无卤添加剂进行改性,以实现阻燃性(FR),同时保持高机械强度和耐候性,特别是对于户外应用。本研究的目的是为PP开发两种阻燃体系:一种由环状膦酸酯和单体N-烷氧基受阻胺助剂组成,达到V0级;另一种由次磷酸盐和溴部分以及NOR-HAS助剂组成,达到V2级。在进行2000小时的紫外线老化或热老化之前和之后,对阻燃性能以及机械性能、物理化学特性和介电行为进行了评估。所开发的阻燃体系为工业规模母粒的生产奠定了基础,通过与PP熔融共混进一步优化以最小化阻燃剂含量,朝着低成本阻燃配方的工业化迈进。因此,制造了两种类型的波纹管(ø20 mm)。它们在火焰传播、抗冲击性、烟密度和加速紫外线老化稳定性方面的性能将它们归类为无卤低烟(HFLS)导管;同时,它们符合欧盟导管标准,而不会对导管性能或工业加工效率产生重大影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e31c/11085554/c199f1e9c64a/polymers-16-01298-g003.jpg

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