首页> 外文期刊>Journal of Applied Polymer Science >EFFECT OF THE CORE/SHELL LATEX PARTICLE INTERPHASE ON THE MECHANICAL BEHAVIOR OF RUBBER-TOUGHENED POLY(METHYL METHACRYLATE)
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EFFECT OF THE CORE/SHELL LATEX PARTICLE INTERPHASE ON THE MECHANICAL BEHAVIOR OF RUBBER-TOUGHENED POLY(METHYL METHACRYLATE)

机译:核/壳胶颗粒间相对橡胶增韧聚甲基丙烯酸甲酯的机械行为的影响

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摘要

Two- and three-layer composite latex particles were used to prepare rubber-toughened poly(methyl methacrylate) (RT-PMMA). The interfacial thicknesses of the multilayered particles were varied by using different emulsion polymerization synthesis techniques. The resulting interphases were previously characterized by C-13 nuclear magnetic resonance techniques. The poly(divinyl benzene)/poly(butyl acrylate) (PDVB/PBA) interphase thickness was found to be in the range of 5-7 nm. It was also found that the PBA/PMMA. interphase thickness could be varied from 5 to 7 nm (batch addition of MMA) to 15 to 17 nm (interphase compatibilized with PMMA macromonomer). The interphase thickness was expected to play an important role in the mechanical behavior of PMMA. The effect of the interphase of two- and three-layer particles on the tensile and fracture behavior of PMMA composites was evaluated. The fracture surfaces were examined by scanning electron microscopy. The two-layer PBA/PMMA particles with a thicker interphase (15-17 nm) exhibited higher K-IC values with the PMMA composites compared with PBA/PMMA particles with a thinner interphase (5-7 nm). The three-layer particles were found to be more effective in toughening PMMA compared with the two-layer particles. The differences in toughening behavior are speculated to arise from the morphological effects caused by a thicker interphase, which in turn results in better coverage by the PMMA shell and a more uniform distribution of the toughening particles in the PMMA matrix. (C) 1997 John Wiley & Sons, Inc. [References: 42]
机译:使用两层和三层复合胶乳颗粒来制备橡胶增韧的聚(甲基丙烯酸甲酯)(RT-PMMA)。通过使用不同的乳液聚合合成技术来改变多层颗粒的界面厚度。先前通过C-13核磁共振技术对所得相进行了表征。发现聚(二乙烯基苯)/聚丙烯酸丁酯(PDVB / PBA)的相间厚度在5-7nm的范围内。还发现了PBA / PMMA。相间厚度可以在5至7 nm(分批添加MMA)到15至17 nm(与PMMA大分子相容的相间)之间变化。预计相间厚度在PMMA的机械性能中起重要作用。评估了两层和三层颗粒的界面相对PMMA复合材料的拉伸和断裂行为的影响。通过扫描电子显微镜检查断裂表面。与具有较薄的相间(5-7 nm)的PBA / PMMA颗粒相比,具有更厚的相间(15-17 nm)的两层PBA / PMMA颗粒在PMMA复合材料中表现出更高的K-IC值。发现三层颗粒与两层颗粒相比在增韧PMMA方面更有效。据推测,增韧行为的差异是由相间较厚引起的形态效应引起的,这又导致PMMA壳层具有更好的覆盖度,并且增韧颗粒在PMMA基质中的分布更加均匀。 (C)1997 John Wiley&Sons,Inc. [参考:42]

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