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Effect of Titanium Dioxide on Material Properties for Renewable Rapeseed and Sunflower Polyurethane

机译:二氧化钛对可再生油菜籽和向日葵聚氨酯材料性能的影响

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Polyurethanes (PUs) have been synthesised successfully from renewable resources namely as rapeseed and sunflower oil using 4,4’-methylen-bis-(phenylisocyanate) (MDI) as the cross-linking agent. The mechanical property of these materials was observed in the Dynamic Mechanical Thermal Analysis (DMTA) test. A high tan delta peak is essential for a good damping material. These PUs can be strongly influenced on the addition of small (2.5-10) percentages of titanium dioxide, TiO2, e.g. the damping was improved on adding TiO2. Upon UV-induced aging, two important changes occur as observed in mechanical damping, such as a decrease in the height of the tan delta peak and a shift of the temperature of the tan delta peak to higher values with increased irradiation time. The loss tan delta peaks for the rapeseed-based PU loaded with 2.5, 5, 7.5, 10% of TiO2 were 0.58, 0.6, 0.68, and 0.71 respectively as compared with neat RSPU at only 0.43. These data show that the damping ability is enhanced through the introduction of TiO2 into the polymer. By doping with TiO2, the mechanical or physical properties of these PUs can be altered systematically, such as to get progressive increases in its stiffness and damping property.
机译:聚氨酯(PU)是使用4,4'-亚甲基双-(苯基异氰酸酯)(MDI)作为交联剂,从菜籽油和葵花籽油等可再生资源成功合成的。在动态机械热分析(DMTA)测试中观察到了这些材料的机械性能。高损耗正切峰对于良好的阻尼材料至关重要。这些PU会严重影响添加少量(2.5-10)的二氧化钛TiO2,例如加入TiO2可以改善阻尼。在紫外线引起的老化后,如机械阻尼所观察到的那样,会发生两个重要变化,例如随着辐照时间的增加,tanδ峰的高度降低,tanδ峰的温度向更高的值移动。与仅0.43的纯RSPU相比,装载有2.5、5、7.5、10%的TiO 2的基于菜籽的PU的损耗tanδ峰分别为0.58、0.6、0.68和0.71。这些数据表明,通过将TiO 2引入聚合物中可以增强阻尼能力。通过掺杂TiO2,可以系统地改变这些PU的机械或物理性能,例如使其刚度和阻尼性能逐渐提高。

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