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Effect of Manganese on Radiation Vulcanization of Natural Rubber

机译:锰对天然橡胶辐射硫化的影响

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Manganese was added as a promoter to investigate physico-mechanical properties of radiation-vulcanized natural rubber latex (RVNRL) films. RVNRL films were prepared by the addition of Mn with the concentration range 0-30ppm to natural rubber latex and irradiated with various radiation doses (0-20kGy). Tensile strength, tear strength, and cross-linking density of the irradiated rubber films increased with increasing the concentration of Mn ions as well as radiation doses. In contrast, elongation at break, permanent set, and swelling ratio of the films were decreased under the same conditions. The concentration of Mn ions and radiation doses were optimized and found to be 20ppm and 12kGy, respectively. The maximum tensile and tear strengths of irradiated rubber films were observed as 29.12MPa and 44.78N/mm, respectively at the optimum conditions. The mechanical properties of the films increased markedly with the addition of Mn until they attained the highest values of 33.88MPa and 54.77N/mm, respectively. These enhancements, which reached approximately 20% at the most favorable conditions, can be explained by the effect of transition metals in view of Fajan's rules regarding the covalent character of ionic bonds and suggest that the higher the difference in charges between cation and anion, the higher the ability to form distortion or polarization of ions.
机译:添加了锰作为促进剂,以研究辐射硫化天然橡胶胶乳(RVNRL)薄膜的物理机械性能。通过向天然胶乳中添加浓度范围为0-30ppm的Mn并用各种辐射剂量(0-20kGy)进行辐照来制备RVNRL膜。辐照的橡胶膜的拉伸强度,撕裂强度和交联密度随Mn离子浓度和辐照剂量的增加而增加。相反,在相同条件下,膜的断裂伸长率,永久变形和溶胀率降低。优化了Mn离子的浓度和辐射剂量,发现分别为20ppm和12kGy。在最佳条件下,辐照橡胶膜的最大拉伸强度和撕裂强度分别为29.12MPa和44.78N / mm。随着Mn的加入,薄膜的机械性能显着提高,直到达到最高值分别为33.88MPa和54.77N / mm。这些增强作用在最有利的条件下达到了约20%,可以通过过渡金属的作用来解释,这是根据Fajan关于离子键的共价特征的规则进行的,并且表明阳离子和阴离子之间的电荷差异越大,形成离子畸变或极化的能力更高。

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