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Tough and elastic thermoplastic organogels and elastomers made of semicrystalline polyolefin-based block copolymers

机译:由半结晶聚烯烃基嵌段共聚物制成的坚韧而有弹性的热塑性有机凝胶和弹性体

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摘要

Development of stereo- and regioselective living alkene polymerization catalysts has led to the capability to produce multiblock copolymers with semicrystalline syndiotactic polypropylene blocks and poly(ethylene-co- propylene) rubbery blocks that have excellent elastomeric properties, both undiluted and as gels with as little as 8 wt % copolymer in mineral oil. During step cycle mechanical processing, the crystals can plastically deform and partially transform from lamellae into rod-like fibrils, which align along the tensile direction, giving rise to very large tangent moduli at large strains. The dimensions of these aligned fibrils can be established from small-angle X-ray scattering and used to construct models of the large strain elasticity, as well as its evolution with plastic strain, based on short fiber composite theory. Wide angle X-ray scattering experiments as well as FTIR measurements suggest that the oriented fibrils have the transplanar (form III) crystal structure. The large toughness of the dilute gels can be attributed to the plastic deformation of the crystalline component, which not only evens out the forces on the rubbery chains running from crystal to crystal but also provides a mechanical hysteresis that is effective in absorbing energy at the tip of a growing crack.
机译:立体选择性和区域选择性活性烯烃聚合催化剂的开发已导致能够生产具有半结晶间同立构聚丙烯嵌段和具有优异弹性体性能的半结晶间同立构聚丙烯嵌段和聚(乙烯-丙烯共聚物)橡胶嵌段的多嵌段共聚物,其凝胶含量低至矿物油中的8 wt%共聚物。在分步循环机械加工过程中,晶体会发生塑性变形,并部分地从片状转变为棒状原纤维,然后沿拉伸方向排列,从而在大应变下产生非常大的切线模量。这些排列的原纤维的尺寸可以通过小角度X射线散射建立,并用于基于短纤维复合理论构建大应变弹性以及其随塑性应变的演化模型。广角X射线散射实验以及FTIR测量表明,定向纤丝具有跨面(晶型III)晶体结构。稀释凝胶的强韧性可归因于结晶成分的塑性变形,这不仅使从晶体到晶体的橡胶链上的力均匀,而且还提供了机械滞后作用,可有效吸收尖端的能量越来越大的裂缝。

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