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A compressibility and compactibility study of real tableting mixtures: the effect of granule particle size

机译:实际压片混合物的可压缩性和压实性研究:颗粒大小的影响

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摘要

This study investigates the effect of particle size on the compression characteristics of wet- (fluid-bed granulation - FBG) and dry-granulated (slugging - DGS) tableting mixtures. Particle-size distribution, flowability, compressibility, using the Heckel and Walker model, compactibility and elastic recovery as well as friability and disintegration were determined and compared between the two particle size fractions (180400m, 400 710 micro) and initial unsieved mixtures. The results showed that the particle size of granules had no effect on the compressibility of the FBG and DGS mixtures, dueto the high fragmenting nature of the formulation used in this study. On the other hand, compactibility was particle size dependent, as larger-sized fractions showed higher crushing strength, lower friability, and lower elastic recovery. This was attributed to increased fragmentation of larger particles, allowing stronger bonding between uncontaminated surface areas. As a result of better rearrangement of particles, both initial tableting mixtures showed lower compressibility and lower compactibility compared to their sieved fractions.
机译:这项研究调查了粒度对湿式(流化床制粒-FBG)和干式造粒(压片-DGS)压片混合物压缩特性的影响。使用Heckel和Walker模型确定了粒度分布,流动性,可压缩性,可压缩性和弹性回复性以及脆性和崩解性,并比较了两种粒度级分(180400m,400 710 micro)和未筛分的初始混合物。结果表明,由于本研究中所用配方的高破碎性质,颗粒的粒径对FBG和DGS混合物的可压缩性没有影响。另一方面,可压实性取决于颗粒尺寸,因为较大的馏分显示出较高的抗压强度,较低的脆性和较低的弹性回复率。这归因于较大颗粒的碎裂增加,从而使未污染表面积之间的结合更牢固。由于颗粒更好地重排,与筛分的部分相比,两种初始压片混合物均显示出较低的可压缩性和较低的压实性。

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