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Effects of scCO(2) foaming process and post-vulcanization method on cellular structure, mechanical properties, and thermal stability of PMVQ foams

机译:scCO(2)发泡工艺及后硫化法对PMVQ泡沫泡孔结构、力学性能及热稳定性的影响

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摘要

In this paper, the microcellular foam materials of methyl vinyl phenyl silicone rubber (PVMQ) were prepared by supercritical foaming technology (SFT) and high temperature compression molding. The effect of supercritical carbon dioxide (scCO(2)) on the vulcanizing properties of PVMQ composite was investigated because vulcanization of microcellular PVMQ foams played an important role on the cellular structure and mechanical properties. It was found that the sulfurization reaction of PVMQ composite was inhibited by scCO(2), which led to reduction of apparent activation energy (E-a) of PVMQ composite. Compared with the existing post-vulcanization process, the introduction of the high temperature molding can effectively improve the degree of vulcanization of microcellular PVMQ foams, which can solve the problem that the cellular structure will be destroyed during the application of external force. What's more, the mechanical properties of microcellular PVMQ foam were obviously improved. The maximum value of tensile strength and the compressive strength of microcellular PVMQ foam with the high temperature molding respectively increase by 34.7 and 133.3 compared with that of microcellular PVMQ foams with existing post-vulcanization.
机译:本文采用超临界发泡技术(SFT)和高温压缩成型法制备了甲基乙烯基苯基硅橡胶(PVMQ)的微孔发泡材料。研究了超临界二氧化碳(scCO(2))对PVMQ复合材料硫化性能的影响,因为微孔PVMQ泡沫的硫化对PVMQ泡沫的泡孔结构和力学性能起着重要作用。结果表明,scCO(2)抑制了PVMQ复合材料的硫化反应,导致PVMQ复合材料的表观活化能(E-a)降低。与现有的后硫化工艺相比,引入高温成型可以有效提高微孔PVMQ泡沫的硫化程度,可以解决在外力作用下会破坏孔结构的问题。此外,微孔PVMQ泡沫的力学性能得到明显改善。与现有后硫化工艺的微孔PVMQ泡沫相比,高温成型的微孔PVMQ泡沫的拉伸强度和抗压强度最大值分别提高了34.7%和133.3%。

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