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首页> 外文期刊>International Journal of Pharmaceutics >An evaluation of process parameters to improve coating efficiency of an active tablet film-coating process
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An evaluation of process parameters to improve coating efficiency of an active tablet film-coating process

机译:评估工艺参数以提高活性片剂薄膜包衣工艺的包衣效率

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摘要

Effects of material and manufacturing process parameters on the efficiency of an aqueous active tablet film-coating process in a perforated pan coater were evaluated. Twenty-four batches representing various core tablet weights, sizes, and shapes were coated at the 350-500 kg scale. The coating process efficiency, defined as the ratio of the amount of active deposited on tablet cores to the amount of active sprayed, ranged from 86 to 99%. Droplet size and velocity of the coating spray were important for an efficient coating process. Factors governing them such as high ratios of the suspension spray rate to atomization air flow rate, suspension spray rate to pattern air flow rate, or atomization air flow rate to pattern air flow rate improved the coating efficiency. Computational fluid dynamics modeling of the droplets showed that reducing the fraction of the smaller droplets, especially those smaller than 10 μm, resulted in a marked improvement in the coating efficiency. Other material and process variables such as coating suspension solids concentration, pan speed, tablet velocity, exhaust air temperature, and the length of coating time did not affect the coating efficiency profoundly over the ranges examined here.
机译:评估了材料和制造工艺参数对多孔锅包衣机中水性活性片剂薄膜包衣工艺效率的影响。以350-500kg的规模涂覆二十四批代表各种核心片剂重量,大小和形状的批次。包衣过程的效率定义为片剂芯上沉积的活性物质量与喷雾的活性物质量之比,范围为86%至99%。涂层喷雾的液滴尺寸和速度对于有效的涂层过程很重要。控制它们的因素,例如悬浮液喷射速率与雾化空气流量的高比率,悬浮液喷射速率与图案空气流量的高比率,或雾化空气流量与图案空气流量的高比率,提高了涂覆效率。液滴的计算流体动力学模型表明,减小较小液滴(尤其是小于10μm的液滴)的比例可显着提高涂层效率。在这里检查的范围内,其他材料和工艺变量(如涂料悬浮液的固体浓度,锅速,压片速度,排气温度和涂料时间的长短)并未对涂料效率产生重大影响。

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