Polymer composite based on NBR rubber compounded with rubber waste functionalized with potassium oleate

Q4 Engineering
M. Nițuică, M. Stelescu, M. Sönmez, L. Alexandrescu, M. Georgescu, D. Gurau, Mirela Pantazi-Băjenaru
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引用次数: 0

Abstract

Waste is a material that occurs as a result of a biological or technological process that can no longer be used as such. Recycling and reusing waste make it possible to contribute to environmental protection and, of course, to the protection of human health by eliminating toxins during waste incineration. The purpose of this paper is to process and characterize polymer composites based on NBR rubber (butadiene-co-acrylonitrile rubber) and rubber waste functionalized with potassium oleate in terms of rheological characteristics (to determine the optimal vulcanization time), Brabender diagrams and physico-mechanical properties in normal state and after accelerated ageing at 70°C, for 168 h (using elastomer-specific equipment). Functionalized rubber waste (with potassium oleate up to 20% at 60°C) is introduced into the mixture in proportions of 10; 20; 30; 50%. The polymeric composites based on butadiene-co-acrylonitrile elastomer and rubber waste (ground with a cryogenic mill at 10,000 rpm, at the size of 0.35 mm) were compounded on a mixer with a capacity of 350 cm3 according to the working recipes. The mixtures were supplemented with vulcanization activators and accelerators on an electric roller, resulting in formulations in the form of 4 mm thick sheets, which are then subjected to the relevant characterizations according to the standards in force for the footwear industry.
丁腈橡胶与油酸钾功能化橡胶废弃物复配的聚合物复合材料
废物是由于生物或技术过程而产生的不能再使用的材料。废物的回收和再利用可以促进环境保护,当然,通过在废物焚烧过程中消除毒素,也有助于保护人类健康。本文的目的是对NBR橡胶(丁二烯-共丙烯腈橡胶)和油酸钾功能化橡胶废弃物在正常状态和70℃加速老化168 h后的流变特性(确定最佳硫化时间)、Brabender图和物理力学性能(使用弹性体专用设备)进行加工和表征。功能化橡胶废料(60℃时油酸钾含量高达20%)按10的比例加入混合物;20;30;50%。将丁二烯-共丙烯腈弹性体与废橡胶(10000转/分低温磨磨,尺寸为0.35 mm)在容量为350 cm3的混炼机上按工作配方进行复合。这些混合物在电动滚筒上添加硫化活化剂和促进剂,形成4毫米厚的配方,然后根据鞋类行业现行标准进行相关表征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Leather and Footwear Journal
Leather and Footwear Journal Engineering-Industrial and Manufacturing Engineering
CiteScore
0.90
自引率
0.00%
发文量
14
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