尼龙与聚乙烯-甲基丙烯酸缩水甘油酯反应共混非粘弹性合金

Daisuke Sato, Y. Kadowaki, J. Ishibashi, Sadayuki Kobayashi, Takashi Inoue
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引用次数: 4

摘要

采用超长(L/D=100, L:螺杆长度,D:螺杆直径)双螺杆挤出机,将聚酰胺(PA)与反应性聚烯烃聚(乙烯-甲基丙烯酸缩水甘油酯)共混。反应共混得到了独特的亚μm聚烯烃颗粒,其中20 nm聚烯烃胶束被遮挡。这表明原位形成的接枝共聚物被拉入分散的颗粒中。该共混物具有超高韧性(Izod冲击试验不断裂)和非粘弹性拉伸性能:较高的变形率导致较低的模量和较大的断裂伸长率。在拉伸应力-应变曲线中,几乎看不到结晶聚合物的尖锐屈服点特征,颈缩应力几乎保持恒定,没有应变硬化。这表明了汽车吸能部件的潜在应用,对行人和司机都很友好。
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Non-viscoelastic Alloy by Reactive Blending of Nylon with Poly(ethylene-co-glycidyl methacrylate)
Polyamide (PA) was blended with a reactive polyolefin, poly(ethylene-co-glycidyl methacrylate), using an extremely long (L/D=100, L: screw length, D: screw diameter) twin-screw extruder. The reactive blending yielded a unique morphology of the sub-μm polyolefin particles in which 20 nm PA micelles were occluded. It implies that the in situ-formed graft copolymer was pulled in the dispersed particles. The blend showed ultra-high toughness (non-break at Izod impact test) and non-viscoelastic tensile property: the higher deformation rate led to the lower modulus and the larger elongation at break. In the tensile stress–strain curve, the sharp yielding point characteristic to crystalline polymer was hardly seen and the necking stress was maintained almost constant without strain hardening. It suggests a potential application for the energy absorbing car parts, to be friendly for pedestrian and driver.
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