针对天然橡胶胶乳和丙烯酸乳液混合物的性能优化二氧化钛添加量

Anuwat Worlee, Nabil Hayeemasae, Abdulhakim Masa
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摘要

以 30/70 的固定 PVNR/AC 比率制备了预硫化天然橡胶(PVNR)和丙烯酸乳液(AC)的混合物。在每百份聚合物(php)中添加 0、10、20 和 30 份二氧化钛(TiO2)时,对其各种性能的影响进行了优化。形态分析表明,PVNR 颗粒分散在 AC 基质中,形成了两相体系。二氧化钛的加入使共混物形态更加精细,其中一部分二氧化钛位于共混物组分的界面处。拉伸强度随初始二氧化钛添加量的增加而增加,在添加量为 10ph 时达到最大值,比未添加填料的混合物提高了约 127%。然而,进一步增加填料的添加量会降低拉伸强度,而且在添加量较高时,填料会发生团聚。由于形态的改善以及二氧化钛填料与聚合物基体之间的氢键作用,含二氧化钛的混合物在橡胶区的热稳定性和储存模量也比未填充的混合物有所提高。二氧化钛改善了共混物的水润湿性和粘附性。在木材和金属基材上的最大剥离强度分别比未填充混合物高出约 120% 和 26%。如此显著的改善表明,填充混合物可用作涂层材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimized titanium dioxide loading for properties of natural rubber latex and acrylic emulsion blends
Blends of prevulcanized natural rubber (PVNR) and acrylic emulsion (AC) were prepared at the fixed PVNR/AC ratio of 30/70. Effects of titanium dioxide (TiO2) addition were optimized across the contents 0, 10, 20 and 30 parts per hundred parts of polymer (php) with respect to various properties. Morphological analysis revealed a two-phase system in which the PVNR particles were dispersed in the AC matrix. Incorporation of TiO2 induced a finer blend morphology in which a part of the TiO2 was located at the interfaces of blend components. The tensile strength increased with initial TiO2 loading and reached its maximum at 10 php loading, with an improvement by about 127% over the blend without filler. However, further increase in filler loading reduced the tensile strength, and the filler tended to agglomerate at those higher loadings. Thermal stability and storage modulus in rubbery region of the blends containing TiO2 were also improved over the unfilled blend, due to the improved morphology and the hydrogen bonds between TiO2 filler and polymer matrix. TiO2 improved water wettability and adhesion of the blend. The maximum peel strengths on wood and metal substrates were about 120% and 26% larger than for the reference unfilled blend. Such drastic improvements suggest that the filled blends may find applications as coating materials.
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