首页> 外文期刊>Journal of Applied Polymer Science >Influence of the Rubber Crosslinking Density of a Core–Shell Structure Modifier on the Properties of Toughened Poly(methyl methacrylate)
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Influence of the Rubber Crosslinking Density of a Core–Shell Structure Modifier on the Properties of Toughened Poly(methyl methacrylate)

机译:核-壳结构改性剂的橡胶交联密度对增韧聚甲基丙烯酸甲酯性能的影响

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摘要

Four kinds of core–shell structure acrylic impact modifiers (AIMs) with different rubber crosslinking densities were synthesized. The effects of the rubber crosslinking density of the AIMs on the crack initiation and propagation resistance and the mechanical properties of the AIM/poly(methyl methacrylate) (PMMA) blends were investigated, and we found that the maximum stress intensity factor, crack propagation energy, and Izod impact strength reached maximums when the appropriate rubber crosslinking density of AIM, 2.51 X 1025 crosslinks/m3, was adopted. Transmission electron microscopy photographs of the AIM/PMMA blends showed that the AIMs dispersed uniformly in the PMMA matrix. Meanwhile,through the analysis of optical photos and scanning electron microscopy of the impact fracture surface, we found that the deformation mechanism of the AIM/PMMA blends was local matrix shear yielding initiated by rubber particle cavitation of the AIM. The rubber of the AIM, whose crosslinking density was 2.51 X1025 crosslinks/ m~3, was beneficial to the formation of intensive voids and initiated the local shear yielding of nearby modifiers of the PMMA matrix effectively in impact tests, which led to higher Izod impact strengths.
机译:合成了四种具有不同橡胶交联密度的核-壳结构丙烯酸抗冲改性剂(AIM)。研究了AIMs的橡胶交联密度对AIM /聚甲基丙烯酸甲酯(PMMA)共混物的裂纹萌生和扩展阻力以及力学性能的影响,发现最大应力强度因子,裂纹扩展能当采用适当的AIM橡胶交联密度2.51 X 1025交联/ m3时,悬臂梁式冲击强度达到最大值。 AIM / PMMA共混物的透射电子显微镜照片显示,AIMs均匀分散在PMMA基质中。同时,通过光学照片的分析和冲击断裂面的扫描电镜观察,发现AIM / PMMA共混物的变形机理是由AIM的橡胶颗粒空化引发的局部基体剪切屈服。 AIM的橡胶的交联密度为2.51 X1025交联/ m〜3,有利于形成密集的空隙,并在冲击试验中有效地引发了PMMA基体附近改性剂的局部剪切屈服,从而导致了更高的悬臂梁式冲击长处

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