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Plastic deformation of glassy polymers: Correlation between shear activation volume and entanglement density

机译:玻璃态聚合物的塑性变形:剪切活化体积和缠结密度之间的关系

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The structural relaxation caused by the plastic deformation of polymer glasses is not yet fully understood. In particular, the size scale of the localized plastic relaxation events is currently unknown. In this work, the effect of molecular entanglement density on the shear activation volume of glassy polymers has been studied. The shear activation volumes of miscible polystyrene-poly(2,6-dimethyl-1,4-phenylene oxide) (PS-PPO) blends at different PS/PPO ratios have been determined experimentally by both plane-strain and uniaxial compression at constant strain rates. We find that the same correlation between the shear activation volume V-eq* and the entanglement density rho(e) holds for the blend as well as for various pure glassy polymers: V-eq* = C(rho(e)m(-3)), + V-0, with C = 8.2 +/- 0.4 nm(3), alpha = 0.6 +/- 0.03, and V-0 < 0.1 nm(3) eq. The shear activation volume is closely related to the size of the plastic shear zones; therefore, this correlation suggests that the cooperativity of the elementary processes of plastic deformation in glassy polymers scales with rho(e). [References: 45]
机译:尚未完全理解由聚合物玻璃的塑性变形引起的结构松弛。特别地,局部塑性松弛事件的大小尺度目前是未知的。在这项工作中,已经研究了分子缠结密度对玻璃状聚合物剪切活化体积的影响。已通过平面应变和恒定应变下的单轴压缩实验确定了在不同PS / PPO比下可混溶的聚苯乙烯-聚(2,6-二甲基-1,4-苯撑氧)(PS-PPO)共混物的剪切活化体积费率。我们发现,共混物以及各种纯玻璃态聚合物的剪切活化体积V-eq *和缠结密度rho(e)之间具有相同的相关性:V-eq * = C(rho(e)/ nm( -3)),+ V-0,其中C = 8.2 +/- 0.4 nm(3),α= 0.6 +/- 0.03,V-0 <0.1 nm(3)当量。剪切活化体积与塑性剪切区的大小密切相关。因此,这种相关性表明玻璃态聚合物中塑性变形的基本过程的协同性与rho(e)呈比例关系。 [参考:45]

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