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具有降低火灾危险性的聚氯丁二烯/聚丁二烯/纳米锌(CR/BR/nZn)组合物的交联特性、形态、动力学以及力学和热性能

Cross-Linking Characteristics, Morphology, Dynamics, and Mechanical and Thermal Properties of Polychloroprene/Polybutadiene/Nano-Zinc (CR/BR/nZn) Compositions with Reduced Fire Hazard.

作者信息

Smejda-Krzewicka Aleksandra, Rybiński Przemysław, Żukowski Witold, Bradło Dariusz, Wencel Kinga, Berkowicz-Płatek Gabriela

机构信息

Institute of Polymer and Dye Technology, Lodz University of Technology, Stefanowskiego Street 16, 90-537 Lodz, Poland.

Institute of Chemistry, The Jan Kochanowski University, Żeromskiego Street 5, 25-369 Kielce, Poland.

出版信息

Materials (Basel). 2023 Aug 24;16(17):5804. doi: 10.3390/ma16175804.

Abstract

The properties of unconventional blends of crystallizable and thermo-cross-linkable polychloroprene (CR) with polybutadiene (BR) were investigated in this study. The compositions were prepared using the method of reactive processing and cross-linking in the presence of nano-sized zinc (nZn). The purpose of the research was to assess the efficacy of nano-zinc as a curing agent of polychloroprene and polybutadiene (CR/BR) composites and to obtain rubber goods characterized by increased flame resistance. The blends were filled with nano-silica (aerosil) and fillers of natural origin (chalcedonite or silitin). The cross-linking process was characterized by determining the kinetics curves, the equilibrium swelling, and the Mooney-Rivlin elasticity constants. The morphology of the vulcanizate surface was specified by scanning electron microscopy (SEM). The dynamic and mechanical properties, flammability, and toxicity of gaseous substances involved in thermal decomposition were determined. Mass changes and thermal effects were studied using simultaneous thermal analysis (STA). It was confirmed that nano-zinc is an efficient curing agent for the polychloroprene and polybutadiene compositions, with a satisfactory degree of cross-linking (α = 0.10, CRI = 4.11 min), good mechanical strength (TS = 5 MPa), satisfactory tear resistance (T = 2.9 N/mm), and very high flame resistance (OI = 30%, HRR = 283 kW/m). Filled products could be used as non-combustible materials, confirming the low fire hazard (1/t = 3.5-6.4 kW/m∙s). The most effective filler of the tested composites was nano-sized silica.

摘要

本研究考察了可结晶且可热交联的聚氯丁二烯(CR)与聚丁二烯(BR)的非常规共混物的性能。采用反应加工和在纳米锌(nZn)存在下交联的方法制备了这些组合物。该研究的目的是评估纳米锌作为聚氯丁二烯和聚丁二烯(CR/BR)复合材料固化剂的效果,并获得具有增强阻燃性的橡胶制品。共混物填充了纳米二氧化硅(气相法白炭黑)和天然来源的填料(玉髓或硅灰石)。通过测定动力学曲线、平衡溶胀和门尼-里夫林弹性常数来表征交联过程。通过扫描电子显微镜(SEM)确定硫化胶表面的形态。测定了热分解过程中气态物质的动态和力学性能、可燃性和毒性。使用同步热分析(STA)研究了质量变化和热效应。证实纳米锌是聚氯丁二烯和聚丁二烯组合物的有效固化剂,具有令人满意的交联度(α = 0.10,CRI = 4.11分钟)、良好的机械强度(TS = 5 MPa)、令人满意的抗撕裂性(T = 2.9 N/mm)和非常高的阻燃性(OI = 30%,HRR = 283 kW/m)。填充产品可用作不燃材料,证实了低火灾危险性(1/t = 3.5 - 6.4 kW/m∙s)。测试复合材料中最有效的填料是纳米二氧化硅。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b54e/10489150/d1f8fec76f71/materials-16-05804-g001.jpg

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