首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Investigation on resistance to attrition of coated particles by response surface methodology
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Investigation on resistance to attrition of coated particles by response surface methodology

机译:响应面法研究涂层颗粒的耐磨性

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摘要

The purpose of the present study is to obtain better understanding of the influence of the coating thickness, h, coating formulation, Tg, and fluid bed temperature, T_(bed). variables on the resistance to attrition of the coated sodium benzoate reference particles. Three reference coating materials (T_g = 50 - 125 - 150 °C) have been sprayed by using top spray fluid bed coater. Per each coating formulation three different coating levels (h = 1% - 5% - 9% w/w) have been obtained. The coating processes were performed at three different fluid bed temperatures (T_(bed) = 40-55-70 °C). The experiments have been designed according to the response surface methodology (RSM). Both single effects and interactions between single effects on the resistance to attrition (response variable) calculated by means of repeated impact tester were evaluated. From statistical analysis, the coating quantity appears to have a predominant effect on the resistance to attrition of the coated particle in these studied ranges of variables. This relationship is linear and positive, which means that an increasing quantity leads to more resistance to attrition. The interaction coating thickness - coating formulation, the interaction between the fluid bed temperature and the coating formulation and the coating formulation as well as the interaction costing thickness - fluid bed temperature were found to be very significant. On the contrary, no direct effect of the fluid bed temperature on the resistance to attrition is detected.
机译:本研究的目的是更好地了解涂层厚度h,涂层配方Tg和流化床温度T_(bed)的影响。包被的苯甲酸钠参考颗粒的耐磨性的变量。使用顶部喷涂流化床涂布机已喷涂了三种参考涂料(T_g = 50-125-150°C)。对于每种涂料配方,已获得三种不同的涂料含量(h = 1%-5%-9%w / w)。涂覆过程在三种不同的流化床温度(T_(床)= 40-55-70°C)下进行。实验是根据响应面方法(RSM)设计的。评估了单次效应以及单次效应对通过反复冲击测试仪计算得出的耐磨损性(响应变量)之间的相互作用。从统计分析来看,在这些变量研究范围内,涂层量似乎对涂层颗粒的耐磨性具有主要影响。这种关系是线性的和正的,这意味着数量的增加会导致更大的耐磨耗性。发现相互作用的涂层厚度-涂层配方,流化床温度与涂层配方和涂层配方之间的相互作用以及相互作用成本-厚度-流化床温度非常重要。相反,未检测到流化床温度对耐磨耗性的直接影响。

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