首页> 外文期刊>Journal of Macromolecular Science. Pure and Applied Chemistry >Improvement of structural and thermal stabilities of PVC and wood/PVC composite by Zn and Pb stearates, and zeolite
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Improvement of structural and thermal stabilities of PVC and wood/PVC composite by Zn and Pb stearates, and zeolite

机译:硬脂酸锌和铅和沸石改善PVC和木材/ PVC复合材料的结构和热稳定性

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Three different chemical stabilizers were introduced into neat PVC and a wood/PVC composite (containing 50 phr wood flour) to improve their thermal and structural stabilities. The changes in CIE yellowness index, polyene index, %wt loss, and decomposition temperature (Td) were monitored. The effects of type and content of thermal stabilizers, thermal ageing time, and the presence of wood flour were our main interests. The experimental results suggested that the additions of Zn and Pb stearates into PVC and wood/PVC composite could improve the thermal stability of the PVC. At the test temperature of 177 degrees C, the additions of Zn and Pb stearates could improve the thermal stabilities of PVC by retarding the upzipped reaction and by reducing the conjugated double bonds in PVC, Pb stearate being the most suitable for thermally stabilizing the PVC. Around the T-d range (similar to 264 degrees C), the addition of Zn stearate reduced the T-d value of PVC whereas that of Pb stearate had no effect on the change in T-d value. Zeolite loading could shift the T-d value of the PVC from 264 to 280 degrees C. The addition of wood particles increased the polyene content and decreased the decomposition temperature of the PVC. The effect of wood flour on the thermal and structural changes of PVC overruled that of thermal stabilizer loading.
机译:将三种不同的化学稳定剂引入纯净的PVC和木材/ PVC复合材料(包含50 phr的木粉)中,以提高其热稳定性和结构稳定性。监测CIE黄度指数,多烯指数,%wt损失和分解温度(Td)的变化。热稳定剂的类型和含量,热老化时间以及木粉的存在是我们的主要兴趣。实验结果表明,在PVC和木材/ PVC复合物中添加硬脂酸锌和铅可以改善PVC的热稳定性。在177摄氏度的测试温度下,添加Zn和Pb硬脂酸酯可通过延迟上拉反应和减少PVC中的共轭双键来提高PVC的热稳定性,其中Pb硬脂酸酯最适合于使PVC热稳定。在T-d范围(类似于264摄氏度)附近,硬脂酸锌的添加降低了PVC的T-d值,而硬脂酸铅的添加对T-d值的变化没有影响。沸石负载可将PVC的T-d值从264℃转移至280℃。木材颗粒的添加增加了多烯含量并降低了PVC的分解温度。木粉对PVC的热和结构变化的影响超过了热稳定剂的负荷。

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