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UV BLOCKING ADDITIVE COMBINATIONS FOR EXTENDED SERVICE TIME

机译:紫外线阻止添加剂组合,用于扩展服务时间

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The use of UV Absorbers (UVA) as light stabilizers for polyolefin is well documented. Less known, but not less important is their use as a barrier to UV light. These organic molecules "dissolve" in the plastic medium, thus maintaining high absorption of UV radiation, and, when properly chosen, do not interfere with the visible radiation. Their solubility, though, when combined with their polar character, renders them incompatible with the non-polar polyolefin matrix. The end result being a limited life span of the blocking effect in greenhouse films. Certain inorganic compounds absorb and reflect much of the UV radiation and they disperse (and not dissolve!) as particles, within the polymeric matrix. Being large and heavy (relative to molecules) these particles are practically non-migrating. However that particulate property may cause the film to lose part of its clarity. One way of resolving the problem is by combining these two types of UV blocking additives in order to get an optimal effect. Previously we have reported data collected under accelerated, artificial exposure, and now we can already report preliminary results of our natural exposure results. Presentation of the results of these two different exposure methods will demonstrate lack of correlation between them. We shall try to elaborate this discrepancy.
机译:用UV吸收剂(UVA)作为聚烯烃的光稳定剂被良好记录。较少,但不太重要的是它们作为紫外线屏障的用途。 These organic molecules "dissolve" in the plastic medium, thus maintaining high absorption of UV radiation, and, when properly chosen, do not interfere with the visible radiation.但是,它们的溶解度,但是当与它们的极性特征结合时,使它们与非极性聚烯烃基质不相容。最终结果是温室薄膜中堵塞效果的有限寿命。某些无机化合物吸收并反射大部分UV辐射,并且它们在聚合物基质中分散(并且不溶解!)作为颗粒。大且重(相对于分子)这些颗粒实际上是非迁移的。然而,颗粒物质可能导致薄膜丢失其清晰度的一部分。解决问题的一种方法是将这两种类型的UV阻塞添加剂组合以获得最佳效果。以前我们报告了在加速,人工曝光下​​收集的数据,现在我们可以报告我们的自然暴露结果的初步结果。介绍这两种不同的曝光方法的结果将表现出它们之间缺乏相关性。我们将尝试详细说明这种差异。

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