天然/脱硫废橡胶混合物的拉伸和弹性特性

IF 4.3 3区 化学 Q2 POLYMER SCIENCE Macromolecular Rapid Communications Pub Date : 2024-09-23 DOI:10.1002/marc.202400422
Agathe Lewandowski, Nicolas Candau, María Lluisa Maspoch
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引用次数: 0

摘要

环保型冷却材料的需求和材料的回收利用是亟待解决的两大难题。本文研究了轮胎橡胶处理(低温研磨和脱硫化)对天然橡胶(NR)/轮胎橡胶(GTR)的拉伸和弹性特性的影响。傅立叶变换红外光谱(FTIR)显示,S─S、C─S 和 C─C 键的减少证明了交联断裂和橡胶链断裂导致的 GTR 颗粒过筛(-4 mol.cm-3)。与原始 NR 相比,NR/GTR 混合物显示出较高的弹性热效应,这可归因于 GTR 中较高的炭黑含量(52 wt.%)以及 GTR 的高度脱硫。NR/GTR 混合物的加热温度为 +8 °C,冷却温度大于 6 °C,材料的性能系数 COPmat = 2.8-3,而原始 NR 的性能系数为 2.6。低温胶结和微波脱硫的共同作用被认为是改善天然橡胶/废橡胶混合物拉伸和弹性性能的一种方法,可将其集成到用于加热/冷却应用的弹性设备中。
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Tensile and Elastocaloric Properties of Natural/Devulcanized Waste Rubber Blends

The need for eco-friendly cooling materials and material recycling are two urgent challenges to address. In this paper, the role of the ground tyre rubber treatment (cryo-grinding and devulcanization) is investigated on the tensile and elastocaloric properties of Natural rubber (NR)/ ground tyre rubber (GTR). The GTR particles that are sieved (<63µm) and devulcanized by microwave irradiation (1 min at 800Watts) exhibit a low network chain density (0.53 × 10−4 mol.cm−3) resulting from crosslinks breakage and rubber chains scission, as supported by FTIR showing a decrease of S─S, C─S, and C─C bonds. The NR/GTR blends show a high elastocaloric effect as compared to the pristine NR, which can be ascribed to the high content of carbon black in the GTR (52 wt.%) and also the high level of devulcanization of the GTR. NR/GTR blends reach a heating of +8 °C and a cooling of >−6 °C, resulting in a material's coefficient of performance COPmat = 2.8–3 compared to 2.6 for the pristine NR. The concomitant effect of cryogrinding and microwave devulcanization is proposed as a way to improve the tensile and elastocaloric properties of natural rubber/waste rubber blends for their possible integration into elastocaloric devices for heating/cooling applications.

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来源期刊
Macromolecular Rapid Communications
Macromolecular Rapid Communications 工程技术-高分子科学
CiteScore
7.70
自引率
6.50%
发文量
477
审稿时长
1.4 months
期刊介绍: Macromolecular Rapid Communications publishes original research in polymer science, ranging from chemistry and physics of polymers to polymers in materials science and life sciences.
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