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设定应变下橡胶复合材料老化的改进双网络模型

Improved Dual Network Model for Aging of Rubber Composites under Set Strains.

作者信息

Duncan Aaron M, Akutagawa Keizo, Ramier Julien L, Busfield James J C

机构信息

School of Engineering and Material Science, Queen Mary University of London, Mile End Road, London E1 4NS, U.K.

SLB Cambridge Research, Cambridge CB3 0EL, U.K.

出版信息

Macromolecules. 2023 Aug 22;56(17):6704-6711. doi: 10.1021/acs.macromol.3c01131. eCollection 2023 Sep 12.

Abstract

A new model is presented to predict rubber behavior during chemical aging at fixed strains. The model is validated using a carbon black-filled nitrile butadiene rubber aged in air at 125 °C. The model improves upon Tobolsky's dual network theory, designed for unfilled elastomers undergoing conventional aging but which has also often been used in rubber composites undergoing more complex aging scenarios. This work explores the shortcomings of the original model and demonstrates how the new model overcomes them. The model was validated using uniaxial tensile samples aged at 125 °C for 24-72 h at strains from 0-30%. The permanent set was measured, and the samples were tested on an Instron uniaxial test machine after aging. The cross-link density was estimated by equilibrium swelling. Results show that the new model more accurately models the stress-strain behavior to higher strains and provides more reliable estimates of chain scission and cross-linking after aging.

摘要

提出了一种新模型,用于预测固定应变下橡胶在化学老化过程中的行为。该模型通过在125°C空气中老化的炭黑填充丁腈橡胶进行验证。该模型改进了托博尔斯基的双网络理论,该理论专为未填充的弹性体在传统老化过程中设计,但也经常用于经历更复杂老化情况的橡胶复合材料。这项工作探讨了原始模型的缺点,并展示了新模型如何克服这些缺点。该模型使用在125°C下以0-30%的应变老化24-72小时的单轴拉伸样品进行验证。测量永久变形,并在老化后在英斯特朗单轴试验机上对样品进行测试。通过平衡溶胀估计交联密度。结果表明,新模型能更准确地模拟到更高应变的应力-应变行为,并能提供老化后链断裂和交联更可靠的估计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e70/10501203/c4504830b9ac/ma3c01131_0001.jpg

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