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Sheet molding compound resins from soybean oil: Thickening Behavior and mechanical properties

机译:由大豆油制成的片状模塑复合树脂:增稠行为和机械性能

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Thermosetting resins for sheet molding compound (SMC) and bulk molding compound applications were synthesized from soybean oil. The SMC resins were prepared from maleated hydroxylated soybean oil (MHSO) and maleated acrylated epoxidized soybean oil (MAESO) with styrene. When thickened with divalent cations such as MgO, these resins exhibited a substantial rise in viscosity at room temperature because of complexation of MgO with the terminal acid groups on maleic anhydride. The resulting high viscosity sheet upon heating rapidly reduced its viscosity as the labile MgO-acid groups thermally disassociated. The flexural strength a and moduli E of these polymers varied from 61 to 87 MPa and from 1.6 to 2.4 GPa, respectively and the tensile strength and moduli varied from 27 to 44 MPa and from 1.6 to 2.5 GPa, respectively. The mechanical and fracture properties of these polymers were related to the amount of functional groups f, on the fatty acid backbone, and followed the Rigidity Percolation and Twinkling Fractal Theories,sigma similar to [EV](1/2), where v similar to [f - 1]. The fracture energy G(IC) decreased significantly with increasing crosslink density, as G(IC) v - and the plastic zone r(p) decreased as r(p) similar to v(-3). The new bio-based resins possessed mechanical and thermal properties comparable with petroleum-based unsaturated polyesters.
机译:由大豆油合成了用于片状模塑料(SMC)和块状模塑料的热固性树脂。 SMC树脂由马来酸化羟基大豆油(MHSO)和马来酸化丙烯酸环氧化大豆油(MAESO)与苯乙烯制成。当用二价阳离子如MgO增稠时,由于MgO与马来酸酐上的末端酸基络合,这些树脂在室温下粘度显着提高。由于不稳定的MgO-酸基团热解离,因此加热后得到的高粘度片材迅速降低了其粘度。这些聚合物的抗弯强度a和模量E分别为61至87MPa和1.6至2.4GPa,拉伸强度和模量分别为27至44MPa和1.6至2.5GPa。这些聚合物的机械和断裂性能与脂肪酸主链上的官能团f的数量有关,并遵循刚性渗滤和瞬态分形理论,sigma与[EV](1/2)相似,其中v与[f-1]。断裂能G(IC)随交联密度的增加而显着降低,因为G(IC)v-和塑性区r(p)随r(p)的降低而类似于v(-3)。新型生物基树脂具有与石油基不饱和聚酯相当的机械和热性能。

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