Kopal Ivan, Vršková Juliana, Labaj Ivan, Ondrušová Darina, Hybler Peter, Harničárová Marta, Valíček Jan, Kušnerová Milena
Faculty of Industrial Technologies in Púchov, Alexander Dubček University of Trenčín, Ivana Krasku 491/30, 020 01 Puchov, Slovakia.
Progresa Final SK, s.r.o., Ferienčíková 18, 811 08 Bratislava, Slovakia.
Materials (Basel). 2018 Nov 28;11(12):2405. doi: 10.3390/ma11122405.
Irradiation by ionizing radiation is a specific type of controllable modification of the physical and chemical properties of a wide range of polymers, which is, in comparison to traditional chemical methods, rapid, non-polluting, simple, and relatively cheap. In the presented paper, the influence of high-energy ionizing radiation on the basic mechanical properties of the melamine resin, phenol-formaldehyde resin, and nitrile rubber blend has been studied for the first time. The mechanical properties of irradiated samples were compared to those of non-irradiated materials. It was found that radiation doses up to 150 kGy improved the mechanical properties of the tested materials in terms of a significant increase in stress at break, tensile strength, and tensile modulus at 40% strain, while decreasing the value of strain at break. At radiation doses above 150 kGy, the irradiated polymer blend is already degrading, and its tensile characteristics significantly deteriorate. An radiation dose of 150 kGy thus appears to be optimal from the viewpoint of achieving significant improvement, and the radiation treatment of the given polymeric blend by a beam of accelerated electrons is a very promising alternative to the traditional chemical mode of treatment which impacts the environment.
电离辐射照射是对多种聚合物的物理和化学性质进行可控改性的一种特定方式,与传统化学方法相比,它具有快速、无污染、操作简单且成本相对较低的特点。在本文中,首次研究了高能电离辐射对三聚氰胺树脂、酚醛树脂和丁腈橡胶共混物基本力学性能的影响。将辐照样品的力学性能与未辐照材料的力学性能进行了比较。结果发现,高达150 kGy的辐射剂量可提高测试材料的力学性能,表现为断裂应力、拉伸强度和40%应变时的拉伸模量显著增加,而断裂应变值降低。当辐射剂量高于150 kGy时,辐照后的聚合物共混物开始降解,其拉伸性能显著恶化。因此,从实现显著改善的角度来看,150 kGy的辐射剂量似乎是最佳的,并且通过加速电子束对给定聚合物共混物进行辐射处理是对环境有影响的传统化学处理方式的一种非常有前景的替代方法。