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STUDY ON POLYMER BONDED 3-NITRO-1,2,4-TRIAZOL-5-ONE

机译:聚合物键合3-硝基-1,2,4-三唑-5-酮的研究

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The molecule interaction of adhesion interface and the surface properties of PB-NTO were first studied with XPS, FT-IR and other conventional analytic methods. As the result, the formation of hydrogen bond between polymer and > N-H of NTO is discovered. Hydrogen bond between NTO and different polymer was distinguished from each other. The stronger hydrogen bond, the less PB-NTO caused metal to corrode. Efficient action of metal to corrode was the hydrogen atom in NTO by analysis of corrosive material. The sequence of the hydrogen bond was as follows: NTO/PU > NTO/F246G > NTO/F2311 > NTO/PVB > NTO/AS > NTO/PS. When saturated NTO solution was used as the carrier instead of pure water, effective percentage of NTO had not lost in PB-NTO. This method overcomes the technological quiz in which safe water suspension could not be used in bonded NTO.
机译:首先使用XPS,FT-IR和其他常规分析方法研究了粘附界面的分子相互作用和PB-NTO的表面性质。结果,发现在聚合物和NTO的> N-H之间形成氢键。 NTO和不同聚合物之间的氢键彼此不同。氢键越强,PB-NTO越少,导致金属腐蚀。通过腐蚀材料分析,金属腐蚀的有效作用是NTO中的氢原子。氢键的顺序如下:NTO / PU> NTO / F246G> NTO / F2311> NTO / PVB> NTO / AS> NTO / PS。当使用饱和的NTO溶液代替纯水作为载体时,PB-NTO中不会损失有效百分比的NTO。此方法克服了在粘结的NTO中无法使用安全水悬浮液的技术难题。

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