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Preparation and Characterization of Nano-CaCO3 Encapsulated with Polyacrylic and Its Application in PVC Toughness

机译:聚丙烯酸酯包覆的纳米碳酸钙的制备,表征及其在PVC韧性中的应用

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摘要

The properties and morphology of nano-calcium carbonate (nano-CaCO3) modified with the titanate coupling agent isopropyl trioleoyl titanate (IPTT) were characterized by Fourier transform infrared, thermogravimetric analyses, surface tension, and transmission electron microscopy. The results showed that the grafting ratio of IPTT on the surface of nano-CaCO3 (IPTT-Ca) increased with IPTT content. IPTT-Ca/PBA/PMMA (IPTT-Ca/ACR, PBA/PMMA core-shell polymer, referred to ACR) latexes were prepared by seeded emulsion polymerization. They were then used to mix with PVC resin. The outer layer (PMMA) enhanced the dispensability of IPTT-Ca/ACR in the PVC matrix by increasing the interfacial interaction of these composite particles with PVC. The notched impact strengths of the blends were influenced by the weight ratio of IPTT-Ca to BA/MMA monomers, the weight ratio of BA/MMA. The relationships between the mechanical properties and the core-shell composite structures were elaborated.
机译:通过傅立叶变换红外光谱,热重分析,表面张力和透射电子显微镜对钛酸酯偶联剂异丙基三油酰钛酸酯(IPTT)改性的纳米碳酸钙(nano-CaCO3)的性质和形貌进行了表征。结果表明,随着IPTT含量的增加,纳米CaCO3(IPTT-Ca)表面IPTT的接枝率增加。通过种子乳液聚合制备IPTT-Ca / PBA / PMMA(IPTT-Ca / ACR,PBA / PMMA核壳聚合物,称为ACR)胶乳。然后将它们与PVC树脂混合。外层(PMMA)通过增加这些复合颗粒与PVC的界面相互作用,增强了IPTT-Ca / ACR在PVC基体中的分散性。共混物的缺口冲击强度受IPTT-Ca与BA / MMA单体的重量比,BA / MMA的重量比的影响。阐述了力学性能与核壳复合结构之间的关系。

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