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Small angle X-ray scattering investigation of deformation in PMMA toughened with core-shell particles

机译:小角X射线散射研究核壳颗粒增韧PMMA的变形

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Tensile deformation of PMMA toughened with core-shell particles has been investigated by in situ small angle X-ray scattering (SAXS). Each core-shell particle consisted of a PMMA core surrounded by a rubber shell, encased in a thin PMMA outer layer. Toughened PMMA (RTPMMA) specimens containing low and high particle concentrations were compared. The samples were tested under uniaxial tension at strain rates of 0.5 and 5.0 mm min{sup}(-1), at room temperature (20℃). The SAXS pattern of each undeformed RTPMMA specimen consisted of circular concentric fringes which correspond to the form factor of the core-shell particles. Highly localised failure within the particles was observed when low particle concentration samples were deformed beyond the yield point. This localised failure occurred at the poles of the particles at, or adjacent to, the core/shell interface. As the sample was stretched further, the failure was then seen to extend either side of the poles around, or alongside, the interface. In contrast, when the particle concentration was high, the particles stretched considerably without failing. No evidence for crazing was seen in the SAXS patterns obtained from these RTPMMA samples tested under the conditions used. Crazing was therefore not considered to be a major deformation mechanism.
机译:通过原位小角度X射线散射(SAXS)研究了用核壳颗粒增韧的PMMA的拉伸变形。每个核-壳颗粒由被橡胶壳包围的PMMA核组成,包裹在一个薄的PMMA外层中。比较了含有低和高颗粒浓度的增韧PMMA(RTPMMA)标本。在室温(20℃)下,以0.5和5.0 mm min {sup}(-1)的应变速率在单轴张力下测试样品。每个未变形的RTPMMA标本的SAXS模式由圆形的同心条纹组成,这些条纹对应于核-壳颗粒的形状因子。当低颗粒浓度的样品变形超过屈服点时,观察到颗粒内的高度局部破坏。这种局部故障发生在核/壳界面处或邻近核/壳界面的粒子的两极。随着样品进一步拉伸,然后观察到破坏在两极的两侧围绕界面延伸或沿着界面延伸。相反,当颗粒浓度高时,颗粒会大量拉伸而不会失效。在使用条件下测试的这些RTPMMA样品获得的SAXS图案中没有发现裂纹的迹象。因此,裂纹不被认为是主要的变形机制。

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