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首页> 外文期刊>Polymer Degradation and Stability >Degradation of carboxylated styrene butadiene rubber based water born paints: Part 2 — Models to predict UV stability and water absorption through central composite design
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Degradation of carboxylated styrene butadiene rubber based water born paints: Part 2 — Models to predict UV stability and water absorption through central composite design

机译:羧化丁苯橡胶基水性涂料的降解:第2部分-通过中心复合设计预测紫外线稳定性和吸水率的模型

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Central composite experimental design methods have been used to examine the simultaneous effects of talc (Viaton Viatalc~® 30), titanium dioxide (modified Rutile, Tioxide~® TR92) and additional hindered phenolic stabiliser (Aquanox~® L, a 50% w/w aqueous dispersion of Winstay~® L) on the water uptake and UV stability of composite films based on a carboxylated styrene butadiene rubber (c-SBR) latex. The talc and TR92 were in situ treated as pre-dispersions with Solsperse~® S27000 and Solplus~® D540 dispersants, respectively. For water uptake related responses, quadratic models were found to provide the most accurate prediction of effects associated with interactions between talc and TR92. It was found that the addition of TR92 to formulations with high talc loading reduced the water uptake, this was attributed a packing effect that arose due to the vast difference in pigment and filler particle size. For responses related to photo-oxidation (Microscal unit/mercury lamp, carboxylic acid carbonyl growth was monitored by IR), linear models gave the best data fit, thus indicating negligible interaction between the three variables. Within the experimental space explored, the level of talc had by far the strongest influence; increasing talc level led to a proportional increase in rate of carbonyl growth. This corroborates previous single variable studies, where the iron impurities present in the talc were suspected to be associated with the pro-degradant effect observed. Interestingly, the addition of dispersants amplified the latter effect and strongly muted the UV stabilising effect of TR92. An optimised formulation based on c-SBR was determined from the response equations and subsequently evaluated; in general the actual response trends matched those predicted. The suitability of experimental design as a tool to discover effects, interactions and responses of the ingredients of a paint system, and to optimise its formulation was thus confirmed.
机译:中心复合实验设计方法已用于检验滑石粉(ViatonViatalc®30),二氧化钛(改性金红石,Tioxide®TR92)和其他受阻酚稳定剂(Aquanox®L,50%w / w)Winstay®L的水分散体对基于羧基化丁苯橡胶(c-SBR)胶乳的复合薄膜的吸水率和紫外线稳定性的影响。将滑石粉和TR92分别用Solsperse?S27000和Solplus?D540分散剂原位处理。对于与水吸收有关的响应,发现二次模型可以最准确地预测与滑石和TR92相互作用相关的效应。已发现向高滑石粉含量的配方中添加TR92会减少吸水率,这归因于由于颜料和填料粒径的巨大差异而产生的堆积效应。对于与光氧化有关的响应(Microscal单元/汞灯,通过IR监测羧酸羰基的生长),线性模型给出了最佳数据拟合,因此表明这三个变量之间的相互作用可忽略不计。在所探索的实验空间中,滑石粉的含量迄今为止影响最大。滑石含量的增加导致羰基生长速率的成比例增加。这证实了先前的单变量研究,其中怀疑滑石中存在的铁杂质与观察到的促降解作用有关。有趣的是,分散剂的加入增强了后者的作用,并大大减弱了TR92的紫外线稳定作用。根据响应方程确定了基于c-SBR的优化配方,然后进行了评估;总的来说,实际的响应趋势与预测的相符。因此证实了实验设计作为发现涂料体系成分的作用,相互作用和响应并优化其配方的工具的适用性。

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