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首页> 外文期刊>Polymer Testing >Phase morphology, fracture toughness and failure mechanisms in super-toughened PLA/PB-g-SAN/PMMA ternary blends: A quantitative analysis of crack resistance
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Phase morphology, fracture toughness and failure mechanisms in super-toughened PLA/PB-g-SAN/PMMA ternary blends: A quantitative analysis of crack resistance

机译:超强PLA / PB-G-SAN / PMMA三元共混物中的相位形态,断裂韧性和失效机制:抗裂性的定量分析

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The effect of poly(methyl methacrylate) (PMMA) content on the fracture resistance, failure mechanisms and micromechanical deformation of poly(lactic acid) (PLA)/polybutadiene-g-poly(styrene-co-acrylonitrile) (PB-g-SAN) blend was studied. The fracture toughness of samples was characterized by the essential work of fracture (EWF) method. The specific EWF (w(e)) linearly increased with PMMA content up to 30 wt%, indicating improved fracture toughness of ternary blends with PMMA content. The specific plastic work (beta wp) increased at first with PMMA content up to 15 wt% and then decreased at higher loadings of PMMA. The energy dissipated during yielding (w(e,y)) and subsequent tearing (w(e,t)) stages was determined by the energy partitioning approach. Both w(e,y) and w(e,t) components monotonically increased with PMMA content in ternary blends, suggesting enhanced material resistance against crack initiation and subsequent crack propagation. Fracture behavior and toughening mechanisms were studied. Suitable interfacial adhesion, cavitation of rubber particles and irreversible plastic growth of micro-voids caused massive shear yielding of matrix material in the super-toughened blends.
机译:聚(甲基丙烯酸甲酯)(PMMA)含量对聚(乳酸)/聚丁二烯-G-聚(苯乙烯 - 共丙烯腈)(PB-G-SAN)的裂缝抗性,破坏机理和微机械变形的影响(PB-G-SAN )混合是研究过的。通过裂缝(EWF)方法的基本作品的特征是样品的裂缝韧性。特定的EWF(W(e))用PMMA含量线性增加,高达30wt%,表明具有PMMA含量的三元共混物的裂缝韧性改善。特定的塑料工作(βWP)首先以高达15wt%的PMMA含量增加,然后在更高的PMMA的较高载荷下降低。通过能量分配方法确定在屈服(W(e,y))和随后的撕裂(w(e,t))阶段进行的能量。 W(e,y)和w(e,t)组分均用三元共混物中的PMMA含量单调增加,表明增强了抗裂引起和随后的裂纹繁殖的材料抗性。研究了骨折行为和增韧机制。适当的界面粘附,橡胶颗粒的空化和微空隙的不可逆塑性生长引起了超强的共混物中的基质材料的大量剪切产量。

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