Smejda-Krzewicka Aleksandra, Rybiński Przemysław, Bradło Dariusz, Żukowski Witold
Institute of Polymer and Dye Technology, Lodz University of Technology, Stefanowskiego 16, 90-537 Lodz, Poland.
Institute of Chemistry, The Jan Kochanowski University, Żeromskiego 5, 25-369 Kielce, Poland.
Materials (Basel). 2023 Jan 31;16(3):1240. doi: 10.3390/ma16031240.
This paper presents the influence of zinc on the cross-linking process, mechanical and dynamic properties, morphologies and balance of thermal degradation of blends containing chloroprene rubber (CR) and butadiene rubber (BR). The novel aspect of this research is a comprehensive approach presenting a new curing agent for the CR/BR blends to increase their cross-linking density and final properties, including non-flammability and low fire hazard. This is due to the need to find an alternative to zinc oxide, which is the standard curing agent for chloroprene rubber. The regulations of the European Union enforce a significant limitation on the use of this compound in elastomer technology, due to its harmful effect on aquatic organisms. In this paper, the CR/BR composites were cured with zinc and filled with natural silica fillers (sillitin or chalcedonite) or synthetic silica filler (aerosil). The investigation focused on the morphology characterization of the obtained compounds, their cross-linking degree, swelling, mechanical and dynamic properties, fire hazard and toxicity. The structure of cured CR/BR blends was characterized via scanning electron microscopy (SEM). The fire resistance studies were performed using cone calorimetry or oxygen index methods, whereas toxicity tests were performed with the use of the FB-FTIR (fluidized bed reactor coupled with FTIR analyzer) method. The results showed that obtained CR/BR products were characterized by satisfactory final properties. The properties determined by the oxygen index and cone calorimetry methods, including the behaviors of the tested CR/BR vulcanizates in fire conditions, showed that the produced compounds were characterized by a low fire hazard and can be classified as non-combustible rubber products. However, the toxicity of the decomposition products, determined at 450, 550 and 750 °C, was very high.
本文介绍了锌对含氯丁橡胶(CR)和丁二烯橡胶(BR)共混物交联过程、力学和动态性能、形态以及热降解平衡的影响。本研究的新颖之处在于采用了一种综合方法,提出了一种用于CR/BR共混物的新型硫化剂,以提高其交联密度和最终性能,包括不燃性和低火灾危险性。这是因为需要找到一种替代氧化锌的物质,氧化锌是氯丁橡胶的标准硫化剂。由于其对水生生物的有害影响,欧盟法规对该化合物在弹性体技术中的使用实施了重大限制。在本文中,CR/BR复合材料用锌进行硫化,并填充天然二氧化硅填料(硅灰石或玉髓)或合成二氧化硅填料(气相法二氧化硅)。研究重点是所得化合物的形态表征、交联度、溶胀、力学和动态性能、火灾危险性和毒性。通过扫描电子显微镜(SEM)对固化后的CR/BR共混物结构进行了表征。使用锥形量热法或氧指数法进行耐火性研究,而使用FB-FTIR(流化床反应器与FTIR分析仪联用)法进行毒性测试。结果表明,所得CR/BR产品具有令人满意的最终性能。通过氧指数和锥形量热法测定的性能,包括测试的CR/BR硫化胶在火灾条件下的行为,表明所生产的化合物具有低火灾危险性,可归类为不燃橡胶产品。然而,在450、550和750℃下测定的分解产物毒性非常高。