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Effects of Molecular Weight upon Irradiation-Cross-Linked Poly(vinyl alcohol)/Clay Aerogel Properties

机译:分子量对辐照交联聚乙烯醇/粘土气凝胶性能的影响

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摘要

Facile fabrication of mechanically strong poly(vinyl alcohol) (PVOH)/clay aerogel composites through a combination of increasing polymer molecular weights and gamma irradiation-cross-linking is reported herein. The aerogels produced from high polymer molecular weights exhibit significantly increased compressive moduli, similar to the effect of irradiation-induced cross-linking. The required irradiation dose for fabricating strong PVOH composite aerogels with dense microstructure decreased with increasing polymer molecular weight. Neither thermal stability nor flammability was significantly changed by altering the polymer molecular weight or by modest gamma irradiation, but they were highly dependent upon the polymer/clay ratio in the aerogel. Optimization of the mechanical, thermal, and flammability properties of these composite aerogels could therefore be obtained by using relatively low levels of polymer, with very high polymer molecular weight, or lower molecular weight coupled with moderate gamma irradiation. The facile preparation of strong, low flammability aerogels is an alternative to traditional polymer foams in applications where fire safety is important.
机译:本文报道了通过增加的聚合物分子量和γ辐射-交联的组合来容易地制造机械强度高的聚乙烯醇(PVOH)/粘土气凝胶复合材料。由高分子量聚合物制成的气凝胶表现出显着提高的压缩模量,类似于辐射诱导的交联作用。随着聚合物分子量的增加,制备具有致密的微观结构的坚固的PVOH复合气凝胶所需的辐照剂量降低了。通过改变聚合物分子量或通过适度的γ射线照射,热稳定性和可燃性都没有显着改变,但是它们高度依赖于气凝胶中的聚合物/粘土比率。因此,可以通过使用相对较低含量的聚合物,具有非常高的聚合物分子量或较低的分子量以及适度的伽马射线辐射来获得这些复合气凝胶的机械,热和可燃性的优化。在防火安全很重要的应用中,强力,低易燃性气凝胶的简便制备方法是传统聚合物泡沫的替代品。

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