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首页> 外文期刊>Chemical and Pharmaceutical Bulletin >Studies on the Granulation Process of Granules for Tableting with a High Speed Mixer. II. Influence of Particle Size of Active Substance on Granulation
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Studies on the Granulation Process of Granules for Tableting with a High Speed Mixer. II. Influence of Particle Size of Active Substance on Granulation

机译:高速混合机压片颗粒的制粒工艺研究。二。活性物质粒径对制粒的影响

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摘要

In the process of granulation for tableting using theophylline as a model drug, the power consumption pattern and the physical properties of the granules were examined with varied particle sizes of theophylline. During kneading of the physical mixtures containing these varied particle sizes into granules for tableting, the first peak of the power consumption curve declined with decreasing particle size of the physical mixtures and a second peak appeared for physical mixtures with smaller particle sizes. The optimal kneading end point for granules was at the end of the first peak for mixtures with larger particles and at the beginning of the second peak for those with smaller particles. The best granules for tableting prepared from individual physical mixtures at different end points had maximum pore volume and consisted of a mixture of similar size of porous loose agglomerates and bulk powder as reported previously. This inner structure of granules is assumed to induce plastic deformation and particle movement upon compression and to result in high mechanical tablet strength.
机译:在以茶碱为模型药物进行制粒的制粒过程中,通过改变茶碱的粒径来检查颗粒的功耗模式和物理性质。在将包含这些不同粒径的物理混合物捏合成颗粒进行压片时,功耗曲线的第一个峰值随物理混合物粒径的减小而下降,而第二个峰值出现在粒径较小的物理混合物中。对于颗粒较大的混合物,颗粒的最佳捏合终点是在第一个峰的末端,而对于颗粒较小的混合物,其最佳捏合终点是在第二个峰的起点。由不同终点的单个物理混合物制得的最佳压片颗粒具有最大的孔体积,并由具有类似大小的多孔疏松团聚物和散装粉末的混合物组成,如先前报道。假定颗粒的这种内部结构在压缩时引起塑性变形和颗粒运动,并导致较高的机械片剂强度。

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