首页> 外文期刊>Journal of Applied Polymer Science >Using the Lorenz-Park, Mooney-Rivlin, and dynamic mechanical analysis relationship on natural rubber/leather shavings composites
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Using the Lorenz-Park, Mooney-Rivlin, and dynamic mechanical analysis relationship on natural rubber/leather shavings composites

机译:利用Lorenz-Park、Mooney-Rivlin和动态力学分析关系对天然橡胶/皮革刨花复合材料的分析

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摘要

The tanning industry generates millions of tons of waste every year, which can cause environmental damage as well as problems to human health. In this article, we analyzed the use of leather shavings (20 to 80 parts per hundred rubber) as fillers in Natural Rubber (NR) composites. For this purpose, the interfacial interaction of the filler was quantitatively evaluated based on the cross-link density value calculated by the Flory-Rehner methodology using the Lorenz-Park equation (swelling). Then, the results of this evaluation were compared with those obtained by the Mooney-Rivlin method (by a stress-strain test). According to our findings, the tensile strength at rupture of the composites increased by 100, that is, from 7.0 MPa (NR) to 14.0 MPa, when 80 phr of leather waste were incorporated. In addition, their final deformation decreased around 50 compared to pure gum (no filler). According to the Lorentz-Park equation, values over 0.7 indicate a strong interaction between the leather shavings and the NR matrix. Likewise, a dynamic mechanical analysis confirmed a strong interfacial interaction based on the B parameter. Scanning electron microscopy and Fourier transform infrared spectroscopy were employed to examine the morphology and chemical properties of the composites.
机译:制革行业每年产生数百万吨废物,这会造成环境破坏以及人类健康问题。在本文中,我们分析了皮革刨花(每百份橡胶中20至80份)作为天然橡胶(NR)复合材料填料的使用。为此,根据 Flory-Rehner 方法使用 Lorenz-Park 方程(溶胀)计算的交联密度值,定量评估填料的界面相互作用。然后,将该评估的结果与Mooney-Rivlin方法(通过应力-应变检验)获得的结果进行比较。根据我们的研究结果,当掺入80 phr的皮革废料时,复合材料的断裂拉伸强度增加了100%,即从7.0 MPa(NR)增加到14.0 MPa。此外,与纯树胶(无填充剂)相比,它们的最终变形减少了约 50%。根据洛伦兹-帕克方程,值大于 0.7 表示皮革刨花和 NR 基质之间存在强烈的相互作用。同样,动态力学分析证实了基于B参数的强界面相互作用。采用扫描电子显微镜和傅里叶变换红外光谱对复合材料的形貌和化学性能进行了研究。

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