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首页> 外文期刊>International Polymer Processing: The Journal of the Polymer Processing Society >Rheology and Extrusion Foaming of Partially Crosslinked Thermoplastic Vulcanizates Silicone
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Rheology and Extrusion Foaming of Partially Crosslinked Thermoplastic Vulcanizates Silicone

机译:部分交联的热塑性硫化硅氧烷的流变型和挤出发泡

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This work focuses on the foaming behavior of thermoplastic vulcanized silicones (TPVs) in which partially crosslinked silicone nodules are dispersed. In these TPVs, silicone nodules dispersed in a low density polyethylene (LDPE) phase have an average size of about 1 mu m. The crosslinking densities of the elastomer phase were selected according to their viscoelastic behavior. Surprisingly, linear and non-linear shear rheology appeared more sensitive to formulations than extensional rheology. Indeed, each formulation has an extensional rheological behavior similar to that of pure LDPE and meets the requirements for foaming applications in terms of elongation at break and melt strength. In accordance with non-linear shear rheology, the foaming behavior of these formulations has been correlated to extrusion foaming parameters that are known to control nucleation, i.e. pre-die pressure and die exit depressurization rate. With an appropriate crosslinking density of silicone nodules, the TPV foamability tends to the foamability of pure LDPE to reach a foam density of 0.54 g/cm(3) with an average cell size of 140 +/- 50 mu m and a cell density of 3.10(5) cells/cm(3). Since partially crosslinked silicone nodules cannot foam, it is assumed that they improve nucleation while allowing sufficient expansion of the LDPE phase.
机译:该工作侧重于热塑性硫化硅氧烷(TPV)的发泡行为,其中分散部分交联的硅氧烷结节。在这些TPV中,分散在低密度聚乙烯(LDPE)相中的硅氧烷结节具有约1μm的平均尺寸。根据其粘弹性行为选择弹性体相的交联密度。令人惊讶的是,线性和非线性剪切流变学似乎比扩张流变学更敏感。实际上,每个配方具有与纯LDPE相似的延长流变行为,并满足在断裂和熔体强度下伸长率的发泡应用的要求。根据非线性剪切流变学,这些制剂的发泡行为与已知核解成核的挤出发泡参数相关,即预压制压力和模具出口减压率。通过适当的硅氧烷结节的交联密度,TPV发泡性倾向于纯LDPE的可发泡性,达到0.54g / cm(3)的泡沫密度,平均细胞尺寸为140 +/-50μm和细胞密度3.10(5)细胞/厘米(3)。由于部分交联的硅氧烷结节不能泡沫,因此假设它们改善成核,同时允许足够的LDPE相扩增。

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