ロータリー・タブレティング・マシンの内部構造とダイ・ウォールの圧力の変動の深い理解
Yusuke Imayoshi1, Keigo Hanyu2, Shuji Ohsaki1
1Department of Chemical Engineering, Osaka Metropolitan University, 1-1 Gakuen-cho, Naka-ku, Sakai, Osaka 599-8531, Japan.
International journal of pharmaceutics
|August 27, 2025
まとめ
テーブルの壁の残留圧力は,錠剤の蓋と関連しています. この研究では,X線コンピュータトモグラフィーと圧力モニタリングを用いて,内部の錠剤の亀裂が圧力変動にどのように影響し,錠剤の欠陥を予測する可能性があることを示しました.
科学分野:
- 医薬品科学
- 材料科学
- 機械工学
背景:
- 常見の欠陥である錠剤の蓋は,錠剤の噴出後に残った壁圧力と関連しています.
- 内部構造とダイ壁圧力の関係を理解することは,蓋の欠陥を防ぐために極めて重要です.
研究 の 目的:
- 薬剤用錠剤の内部構造と錠剤処理中の残留壁圧力の相関を調査する.
- 内部裂け目の形成と分布がダイム壁の圧力変動にどのように影響するか分析する.
主な方法:
- タブレット処理中のダイ壁圧力のリアルタイムモニタリング
- X線コンピュータトモグラフィー (X線CT) 画像撮影により,内部の錠剤構造と亀裂の形成を分析します.
- 圧力データと内部亀裂分布の相関分析
主要な成果:
- 低圧 (15 kN) で突然の減少,高圧 (20 kN) で一時的な増加を観察した.
- アセトアミノフェン粒子の乳糖混合物は,高圧で変化した圧力プロファイルを示したが,乳糖のみの錠剤は,高圧で一貫した増加を示した.
- 内部亀裂の位置 (上端と両端) は,特定の圧力低下または一時的な増加と相関し,ストレージゲージの位置は,亀裂の分布を反映した.
結論:
- 内裂の分布は,錠剤投与中の壁圧の変動に大きく影響する.
- 薬剤用錠剤の内部構造と欠陥を予測できる.
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