Zhao Mengtao, Luo Anqi, Zhou Yu, Liu Zeng, Wang Yuting, Luo Linxiu, Jiang Yanling, Tang Jincao, Lu Zheng, Guan Tianbing, Chen Libo, Sun Huimin, Dai Chuanyun
Chongqing Key Laboratory of Industrial Fermentation Microorganisms, College of Chemistry and Chemical Engineering, Chongqing University of Science and Technology, Chongqing, 401331, China.
NMPA Key Laboratory for Quality Research and Evaluation of Pharmaceutical Excipients, National Institutes for Food and Drug Control, Beijing, 100050, China.
Sci Rep. 2023 Nov 20;13(1):20247. doi: 10.1038/s41598-023-47239-w.
This research focuses on the evolution of mechanical behavior of bimodal mixtures undergoing compaction and diametrical compression. The clusters were built and discrete element method (DEM) was used to investigate the densification process and micromechanics of bimodal mixtures. Additionally, a more comprehensive investigate of the respective breakage of the bimodal mixtures has been carried out. On this basis, qualitative and quantitative analysis of the compressive force, force chain, contact bonds and density field evolution characteristics of the clusters are investigated during the compression process. The entire loading process of the clusters is divided into three stages: rearrangement, breakage and elastic-plastic deformation. Additionally, there are differences in the evolution of micromechanics behavior of different particles in the bimodal mixture, with pregelatinized starch breakage and deformation occurring before microcrystalline cellulose. With the tablet deformation, the fragmentation process of the tablet started at the point of contact and extended toward the center, and the curvature of the force chain increased. This approach may potentially hold a valuable new information relevant to important transformation forms batch manufacturing to advanced manufacturing for the oral solid dosage form.
本研究聚焦于双峰混合物在压实和径向压缩过程中力学行为的演变。构建了聚集体并采用离散元法(DEM)来研究双峰混合物的致密化过程和细观力学。此外,还对双峰混合物各自的破碎情况进行了更全面的研究。在此基础上,研究了聚集体在压缩过程中压缩力、力链、接触键和密度场演变特征的定性和定量分析。聚集体的整个加载过程分为三个阶段:重排、破碎和弹塑性变形。此外,双峰混合物中不同颗粒的细观力学行为演变存在差异,预胶化淀粉的破碎和变形先于微晶纤维素发生。随着片剂变形,片剂的破碎过程从接触点开始并向中心扩展,力链的曲率增加。这种方法可能潜在地持有与口服固体制剂从传统批量生产向先进制造的重要转变形式相关的有价值新信息。