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Micro-gels for impact protection

机译:防冲击微凝胶

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摘要

A novel kind of impact protective material, named as impact protective micro-gel (IPM), was synthesized via a precipitation copolymerization of a compound containing boron and silanol. Diphenylmethane diisocyanate (MDI) was introduced as the chain extender to enhance its impact protective performance. Its rheological properties and morphology were investigated. Three-dimensional (3D) spacer warp-knitted fabrics were dip-coated with the IPM made with and without use of MDI, and the impact protective performance of 3D finished fabrics was assessed by drop impact tests. The results show that the adjustment of the MDI content can adjust the real cross-linking density of the IPM due to the entanglement of polymer chains, and an appropriate cross-linking density can endow dilatant properties to the IPM samples. The results also show that the impact protective performance of 3D spacer fabrics finished with the IPM can be significantly improved.
机译:通过含硼和硅烷醇的化合物的沉淀共聚合成了一种新型的冲击防护材料,称为冲击防护微凝胶(IPM)。引入二苯基甲烷二异氰酸酯(MDI)作为扩链剂,以增强其抗冲击性能。研究了其流变性质和形态。将三维(3D)间隔经编织物浸涂有使用和不使用MDI制成的IPM,并通过跌落冲击试验评估3D成品织物的冲击防护性能。结果表明,由于聚合物链的缠结,MDI含量的调节可以调节IPM的实际交联密度,而适当的交联密度可以赋予IPM样品以膨胀性。结果还表明,用IPM整理的3D间隔织物的冲击防护性能可以得到显着改善。

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