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辊压/干法造粒:干法制粒中辊压式制粒机与振荡造粒机的比较。

Roll compaction/dry granulation: comparison between roll mill and oscillating granulator in dry granulation.

机构信息

Department of Manufacturing Pharmacy, Faculty of Pharmacy, Mahidol University, Bangkok, Thailand.

出版信息

Pharm Dev Technol. 2012 Jan-Feb;17(1):30-9. doi: 10.3109/10837450.2010.508078. Epub 2010 Aug 23.

Abstract

Different experimental factorial designs were employed to evaluate granule properties obtained from oscillating granulator and roll mill. Four oscillating-granulator parameters were varied, i.e. rotor speed, oscillating angle, aperture of mesh screen and rotor type. Six roll-mill parameters that were throughput, speed ratio in both first and second stages, gap between roll pair in both stages and roll-surface texture were also investigated. Afterwards, the granule properties obtained from two milling types with similar median particle size were compared. All milling parameters in both milling types affected significantly the median particle size, size distribution and amount of fine particles (P < 0.05), except the rotor types of oscillating granulator on fines. Only three milling parameters influenced significantly the flowability (P < 0.05). These were the throughput and the gap size in the first stage of roll mill and the sieve size of oscillating granulator. In comparison between milling types, the differences of granule properties were not practically relevant. However, the roll mill had much higher capacity than the oscillating granulator about seven times, resulting in improving energy savings per unit of product. Consequently, the roll mill can be applied instead of oscillating granulator for roll compaction/dry granulation technique.

摘要

采用不同的实验因子设计来评估振荡造粒机和辊式制粒机制备的颗粒性质。分别考察了振荡造粒机的 4 个参数,即转子速度、振荡角度、筛网孔径和转子类型。还研究了辊式制粒机的 6 个参数,即进料量、第一级和第二级的速比、两级辊隙和辊面纹理。随后,对两种中值粒径相近的制粒方式得到的颗粒性质进行了比较。两种制粒方式的所有制粒参数均显著影响中值粒径、粒径分布和细粉量(P<0.05),除了振荡造粒机的转子类型对细粉没有显著影响。只有三个制粒参数显著影响流动性(P<0.05),分别是辊式制粒机的进料量、第一级辊隙大小和振荡造粒机的筛网尺寸。在制粒方式的比较中,颗粒性质的差异没有实际意义。然而,辊式制粒机的产能比振荡造粒机高约 7 倍,从而提高了单位产品的节能效果。因此,在进行辊压/干法造粒技术时,可以用辊式制粒机代替振荡造粒机。

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