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Mechanical Properties and Toughening Mechanisms of Epoxy Modified with Polysiloxane-based Core-shell Particles

机译:聚硅氧烷基核壳粒子改性环氧树脂的力学性能和增韧机理

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An epoxy was modified using polysiloxane core-shell rubber (S-CSR) particles with a T_g of -100°C. The particles did not alter the epoxy T_g, but the modulus and the yield stress were reduced. The fracture energies were measured from 20°C to -109°C. The S-CSR linearly increased the fracture energy, and a maximum of 947 J/m~2 was measured at 20°C. The particles significantly toughened the epoxy even at cryogenic temperatures. The toughening mechanisms were identified as shear band yielding and cavitation enabling plastic void growth. A theoretical model was used to predict the toughness over the entire temperature range. The predicted fracture energies were compared well with the experimental data.
机译:使用T_g为-100°C的聚硅氧烷核壳橡胶(S-CSR)颗粒改性环氧树脂。颗粒没有改变环氧T_g,但是模量和屈服应力降低了。断裂能在20°C至-109°C范围内测量。 S-CSR线性增加了断裂能,在20°C下测得最大值为947 J / m〜2。即使在低温下,这些颗粒也能使环氧树脂显着增韧。增韧机理被确定为剪切带屈服和空化,从而使塑料空隙得以生长。使用理论模型来预测整个温度范围内的韧性。预测的断裂能与实验数据进行了很好的比较。

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