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Studies on the reduction of tensile strength of tablets after roll compaction/dry granulation.

机译:辊压/干法制粒后降低片剂抗张强度的研究。

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摘要

Roll compaction/dry granulation is a widely used technique for granulation. A major drawback is the reduction of tablet tensile strength compared to other granulation methods. The purpose of this study was to determine the reasons for the partial loss in compactibility. Microcrystalline cellulose of different particle sizes was roll-compacted/dry-granulated. The granules were sieved to obtain two sieve cuts and then compressed into tablets. The particle-size distribution within the sieve cut was determined using image analysis. The specific surface area of sieve cut was obtained by nitrogen adsorption. Heckel equation was used to determine the change in compressibility. The work-hardening phenomenon was found to be caused by a combination of particle-size enlargement and hardening of material. Although particle size of granules was equal, the use of smaller particles as raw material resulted in tablets with higher tensile strength due to higher specific surface area. Both work-hardening and particle-size enlargement cause the partial loss in compactibility. The reduction in tensile strength could be compensated by producing smaller granules or using raw materials with small particle sizes.
机译:辊压/干法制粒是广泛用于制粒的技术。与其他制粒方法相比,主要缺点是降低片剂的拉伸强度。这项研究的目的是确定致密性部分损失的原因。将不同粒度的微晶纤维素辊压/干法制粒。将颗粒过筛以获得两个筛分,然后压制成片剂。使用图像分析确定筛分内的粒度分布。通过氮吸附获得筛分的比表面积。使用Heckel方程确定可压缩性的变化。发现加工硬化现象是由粒度增大和材料硬化共同引起的。尽管颗粒的粒径相等,但是使用较小的颗粒作为原料由于较高的比表面积导致片剂具有较高的拉伸强度。加工硬化和颗粒尺寸增大都会导致可压实性的部分损失。拉伸强度的降低可以通过生产较小的颗粒或使用粒径小的原料来弥补。

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