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Preparation and characterization of aqueous polyurethane oil/polyacrylate latex interpenetrating polymer network

机译:水性聚氨酯油/聚丙烯酸酯胶乳渗透性聚合物网络的制备与表征

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A series of aqueous polyurethane oil (network I) /polyacrylate (network II) latex interpenetrating polymer networks (LIPNs) were synthesized via the technology of latex interpenetrating polymer network combined seed emulsion polymerization process. Fourier transform infrared (FTIR) spectroscopy, laser particle size distributing analyzer and universal tension machine were utilized to characterize the bulk structures and mechanical properties of LIPNs. For used as damping material, the damping performance of LIPNs were analyzed by dynamic mechanical analysis (DMA). It was found that the damping temperature region of LIPN was wider than those of aqueous polyurethane oil, the temperature region with greater tanSchanged with the TPGDA content and hard-/soft-segment mass weight ratio (m_(MMA)/m_(BA)) and the glass transition temperature (T_g) of the network I and network II in LIPN occurred within shift each other, even overlap with increasing m_(MMA)/m_(BA) value. The results show that LIPNs synthesized through the combined process have greater tan8 and wider damping temperature region, which is suitable for the use of damping coatings.
机译:通过乳胶渗透性聚合物网络组合的种子乳液聚合方法,合成了一系列水性聚氨酯油(网络I)/聚丙烯酸酯(网络II)胶乳渗透聚合物网络(LIPNS)。傅里叶变换红外(FTIR)光谱,激光粒度分配分析仪和通用张力机器用于表征唇部结构和机械性能。用于用作阻尼材料,通过动态机械分析(DMA)分析LiPNS的阻尼性能。发现LiPn的阻尼温度区域比水性聚氨酯油的阻尼温度区域宽,温度区域与TPGDA含量和硬/软段质量重量比(MMS)/ M_(BA)更大的温度区域并且,网络I和网络II的玻璃化转变温度(T_G)在彼此相互移位内发生,甚至与增加M_(MMA)/ M_(BA)值重叠。结果表明,通过组合过程合成的Lipns具有更大的Tan8和更宽的阻尼温度区域,适用于使用阻尼涂层。

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