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The fracture behavior of rubbery vulcanizates - I: single component versus blend systems

机译:橡胶状硫化橡胶的断裂行为-I:单组分与共混体系

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The tear energy and heat build up of NR, SBR and BR vulcanizates and their corresponding blends were measured at several temperatures via modified trouser tear and Goodrich flexometer experiments. In all single component samples, by increasing temperature from -10 to 125 ℃, the fracture energy decreases, goes through a minimum and increases again. Nevertheless, in SBR and BR, a level off and a level off followed by second drop occur at higher temperatures, respectively. On the other hand, for aforementioned samples the heat build up decreases monotonically by raising the temperature. For two-component blends, the fracture energy and heat build up show different dependencies on temperature in comparison to single component systems. The fracture energy either increases, does not change at first and then decreases, or does not change as the temperature increases. While the heat build up is more or less constant by raising the temperature up to a certain point and then decreases but by a different path from single component vulcanizates. These peculiar behaviors are attributed to the competition between residual stress release and reduction of viscose loss term, while the temperature increases.
机译:NR,SBR和BR硫化橡胶及其相应混合物的撕裂能量和热量积累是通过改进的裤子撕裂和Goodrich弯曲仪实验在几个温度下测量的。在所有单组分样品中,通过将温度从-10℃升高到125℃,断裂能会降低,达到最小值并再次增加。然而,在SBR和BR中,在较高温度下分别发生稳定和稳定,然后第二次下降。另一方面,对于上述样品,通过升高温度,热量累积单调减少。对于两组分共混物,与单组分体系相比,断裂能和热量积累对温度的依赖性不同。断裂能要么先增加,先不改变,然后再降低,要么不随温度升高而改变。通过将温度升高到某个点然后再通过与单组分硫化橡胶不同的途径降低热量,热量的积累或多或少是恒定的。这些奇特的行为归因于残余应力释放与粘胶损耗项减少之间的竞争,而温度却升高。

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