天然橡胶
化学
离子键合
锌
丁基橡胶
焊接性
化学工程
高分子化学
离子
有机化学
合金
工程类
作者
Mohd Hafiz Zainol,Raa Khimi Shuib,Ismail Ibrahim,Fairul Sharin Abd Razak,Noor Faezah Mohd Sani,Trans Dai Lam
标识
DOI:10.1515/pac-2024-0025
摘要
Abstract Natural rubber (NR) is a complex material that is often discarded due to its three-dimensional structure. Recycling of rubber is difficult due to its complex structure, and only 1.7 million tonnes of waste, such as tyres and gloves, are considered recyclable. This study aims to develop self-healing rubber, which allows a product to recover without affecting structural reliability. Commercial NR was ionically crosslinked with zinc thiolate, forming an ionic crosslink network between rubber chains and zinc thiolate ions. The ionic crosslinks allow the rearrangement of rubber molecular chains under external heat, providing self-healing capabilities. The highest ionic crosslink density was found in NR with 35 phr zinc thiolate. The self-healing NR can recover 90 % of its initial properties at room temperature for 10 min and can be reprocessed and recycled three times without compromising its properties. It also shows excellent weldability, making it a promising material for repairing existing rubber products in heavy engineering applications.
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