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用黑/白稻壳灰增强的绿色天然橡胶复合材料:增强剂对薄膜力学性能和介电性能的影响。

Green Natural Rubber Composites Reinforced with Black/White Rice Husk Ashes: Effects of Reinforcing Agent on Film's Mechanical and Dielectric Properties.

作者信息

Sintharm Praewpakun, Phisalaphong Muenduen

机构信息

Bio-Circular-Green-Economy Technology & Engineering Center, BCGeTEC, Department of Chemical Engineering, Faculty of Engineering, Chulalongkorn University, Bangkok 10330, Thailand.

出版信息

Polymers (Basel). 2021 Mar 13;13(6):882. doi: 10.3390/polym13060882.

Abstract

Green natural rubber (NR) composites reinforced with black rice husk ash (BRHA)/white rice husk ash (WRHA), using alginate as a thickening and dispersing agent and crosslinking by CaCl, was developed to improve mechanical, chemical and dielectric properties of NR-based films by using a latex aqueous microdispersion process. A maximum of 100 per hundred rubbers (phr) of rice husk ashes (RHAs) could be integrated in NR matrix without phase separation. Mechanical properties of the composite films were considerably enhanced, compared to the neat NR film. The composite films reinforced with WRHA demonstrated relatively better mechanical properties than those reinforced with BRHA, whereas the composites filled with BRHA demonstrated higher elongation at break. The crosslinking by CaCl improved the film tensile strength but lowered the film elasticity. The reinforcement strongly improved chemical resistance of the composite films in toluene. The films are biodegradable in soil, with weight loss of 7.6-18.3% of the initial dry weight after 3 months. Dielectric constant and dielectric loss factors of the composite films were enhanced with RHAs loading. According to the obtained properties, the composites offer potential for further development as stretchable conductive substrate or semiconducting polymer films for electronic applications.

摘要

以藻酸盐为增稠和分散剂,通过氯化钙交联,开发了用黑米糠灰(BRHA)/白米糠灰(WRHA)增强的绿色天然橡胶(NR)复合材料,通过胶乳水性微分散工艺改善基于NR的薄膜的机械、化学和介电性能。在NR基体中最多可加入100份每百份橡胶(phr)的稻壳灰(RHA)而不发生相分离。与纯NR薄膜相比,复合薄膜的机械性能有显著提高。用WRHA增强的复合薄膜表现出比用BRHA增强的复合薄膜相对更好的机械性能,而填充BRHA的复合材料表现出更高的断裂伸长率。氯化钙交联提高了薄膜的拉伸强度,但降低了薄膜的弹性。增强作用显著提高了复合薄膜在甲苯中的耐化学性。这些薄膜在土壤中可生物降解,3个月后重量损失为初始干重的7.6-18.3%。复合薄膜的介电常数和介电损耗因数随RHA含量的增加而提高。根据所获得的性能,这些复合材料具有进一步开发成为用于电子应用的可拉伸导电基板或半导体聚合物薄膜的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/409f/8000407/f332352bfb13/polymers-13-00882-g002.jpg

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