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Influence of Electron Beam Radiation on Mechanical and Thermal Properties of Styrene-Butadiene-Styrene Block Copolymer

机译:电子束辐射对苯乙烯-丁二烯-苯乙烯嵌段共聚物力学和热性能的影响

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摘要

Electron beam crosslinking of elastomers is a special type of crosslinking technique that has gained importance over conventional chemical crosslinking method, because the former process is fast, pollution free, and simple. The technique involves the impingement of high-energy electrons generated from electron accelerators and the subsequent production of free radicals on target elastomers. These radicals result in crosslinking of elastomers via radical-radical coupling. In the process, some chain scission may also take place. In this work, a high-vinyl (similar to 50%) styrene-butadiene-styrene (S-B-S) block copolymer was used as the base polymer. An attempt was made to see the effect of electron beam radiation on the mechanical and thermal properties of the block copolymer. Radiation doses were varied from 25 to 300 kGy. Mechanical properties like tensile strength, elongation at break, modulus at different elongations, hardness, tear strength, crosslink density, and crosslink to chain scission of the irradiated samples were studied and compared with those of unirradiated ones. In this S-B-S block copolymer, a relatively low-radiation dose was found effective in improving the level of mechanical properties. Differential scanning calorimeter and dynamic mechanical analyzer were used to study the thermal characteristics of the irradiated polymer. Influence of a stabilizer at different concentrations on the properties of S-B-S at varied radiation doses were also focused on.
机译:弹性体的电子束交联是一种特殊类型的交联技术,与传统的化学交联方法相比,它具有更高的重要性,因为前者的过程快速,无污染且简单。该技术涉及撞击由电子促进剂产生的高能电子,以及随后在目标弹性体上产生自由基。这些自由基通过自由基-自由基偶联导致弹性体交联。在此过程中,也可能发生断链。在这项工作中,将高乙烯基(约50%)的苯乙烯-丁二烯-苯乙烯(S-B-S)嵌段共聚物用作基础聚合物。试图观察电子束辐射对嵌段共聚物的机械和热性能的影响。辐射剂量从25到300 kGy不等。研究了受辐照样品的机械性能,如拉伸强度,断裂伸长率,不同伸长率下的模量,硬度,撕裂强度,交联密度和交联至断链的断链现象,并与未辐照样品进行了比较。在该S-B-S嵌段共聚物中,发现较低的辐射剂量有效地改善了机械性能水平。用差示扫描量热仪和动态力学分析仪研究了辐照聚合物的热特性。还着眼于不同浓度的稳定剂对不同辐射剂量下S-B-S性质的影响。

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