M. Nițuică, M. Sönmez, M. Stelescu, L. Alexandrescu, M. Georgescu, D. Gurau, E. Badea, Bogdan Florin Rusu, Andrei Dumitru
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引用次数: 1
摘要
本文介绍了制鞋工业中合成的弹性体和蛋白质废料对丁二烯-共丙烯腈橡胶合成弹性体性能的影响,及其制备和表征方法。将皮革和橡胶废料的混合物进行低温研磨,分3个研磨循环,选择粒度为0.35 mm,转速为14000 rpm。研磨后,用油酸钾在60℃的温度下对皮革和橡胶废混合物进行功能化处理。以丁二烯-共丙烯腈橡胶(NBR)为基础的聚合物化合物和来自鞋类工业的蛋白质和弹性体废料的混合物(比例分别为15%、20%、40%和50%)在内部Brabender混合器上混合,在室温下根据现行标准调节24小时,从流变学、物理和机械的角度(硬度、弹性和抗拉强度)进行测试。也可通过双光束红外分子吸收光谱仪进行FT-IR光谱分析,在4000-400 cm-1范围内,使用FT-IR Thermo Nicolet iS 50,配备有金刚石晶体的ATR。以下特征,可以说,他们目前的最佳价值落在鞋业的标准。
The Influence of Protein and Elastomer Waste Mixture on the NBR-Based Elastomer Compound
The paper presents the influence of a mixture of elastomeric and protein waste from the footwear industry on the properties of elastomeric compounds based on NBR (butadiene-co-acrylonitrile) rubber, as well as their obtaining and characterization. The mixture of leather and rubber waste was cryogenically ground, in three grinding cycles, and the selected size was 0.35 mm, and the rotation speed of 14,000 rpm. After grinding, the leather and rubber waste mixture was functionalized with potassium oleate at a temperature of 60°C. The polymer compounds based on butadiene-co-acrylonitrile rubber (NBR) and the mixture of protein and elastomeric waste (in the ratio of 15, 20, 40, 50%) from the footwear industry were processed by mixing on an internal Brabender mixer, tested from a rheological, physical and mechanical point of view (hardness, elasticity and tensile strength) after conditioning for 24 h at room temperature according to the standards in force, but also by FT-IR spectroscopy performed with a double beam IR molecular absorption spectrometer, in the range 4000-400 cm-1, using the FT-IR Thermo Nicolet iS 50, equipped with ATR with diamond crystal. Following characterisation, it can be said that they present optimal values that fall within the standards for the footwear industry.