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首页> 外文期刊>Journal of Rubber Research >Effect of N, N '-m-phenylene bismaleimide on mechanical performance of waste rubber powder sintered by high-pressure high-temperature method
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Effect of N, N '-m-phenylene bismaleimide on mechanical performance of waste rubber powder sintered by high-pressure high-temperature method

机译:N,N'-M-亚苯基二铋对高压高温法烧结废弃橡胶粉机械性能的影响

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摘要

Waste rubber with three-dimensional structure is insoluble and non-melting, which creates recycling problem. The technique called "high-pressure high-temperature sintering" (HPHTS) can convert vulcanized rubber powder into usable rubber products. However, reversion occurs when vulcanizates are exposed to a prolonged treatment at high temperature. This reversion results in the decrease of mechanical properties of sintered waste rubber powder (WRP) samples. To address this problem, a method of enhancing the mechanical properties of sintered WRP by incorporating different content of maleic anhydride (MA) and N, N '-m-phenylene bismaleimide (BMI) is discussed in this paper. The results show that BMI and MA can slow down the formation of the conjugated double bonds. Through Diels-Alder reaction, BMI inhibits conjugated double bonds formation and improves the adhesion between particles and particles, which is beneficial to improvement of final properties. Therefore, BMI improves the mechanical properties of sintered WRP greatly.
机译:具有三维结构的废橡胶是不溶性和不熔化的,这会产生回收问题。称为“高压高温烧结”(HPHT)的技术可以将硫化橡胶粉转化为可用的橡胶制品。然而,当硫化胶在高温下暴露于长时间处理时发生逆转。这种逆转导致烧结废橡胶粉末(WRP)样品的力学性能降低。为了解决该问题,本文讨论了通过掺入不同含量的不同含量加强烧结WRP的机械性能的方法。结果表明,BMI和MA可以减缓共轭双键的形成。通过Diels-Alder反应,BMI抑制缀合的双键形成并改善颗粒和颗粒之间的粘附性,这有利于改善最终性质。因此,BMI大大提高了烧结器的机械性能。

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