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首页> 外文期刊>Journal of pharmaceutical sciences. >Using compression calorimetry to characterize powder compaction behavior of pharmaceutical materials.
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Using compression calorimetry to characterize powder compaction behavior of pharmaceutical materials.

机译:使用压缩量热法来表征药物材料的粉末压实行为。

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摘要

The process by which pharmaceutical powders are compressed into cohesive compacts or tablets has been studied using a compression calorimeter. Relating the various thermodynamic results to relevant physical processes has been emphasized. Work, heat, and internal energy change values have been determined with the compression calorimeter for common pharmaceutical materials. A framework of equations has been proposed relating the physical processes of friction, reversible deformation, irreversible deformation, and inter-particle bonding to the compression calorimetry values. The results indicate that irreversible deformation dominated many of the thermodynamic values, especially the net internal energy change following the compression-decompression cycle. The relationships between the net work and the net heat from the complete cycle were very clear indicators of predominating deformation mechanisms. Likewise, the ratio of energy stored as internal energy to the initial work input distinguished the materials according to their brittle or plastic deformation tendencies.
机译:已经使用压缩量热计研究了将药物粉末压制成粘性压块或片剂的方法。已经强调了将各种热力学结果与相关的物理过程相关联。功热,内热和内能的变化值已通过压缩量热仪确定了常见的药物材料。已经提出了将摩擦,可逆变形,不可逆变形和粒子间键合的物理过程与压缩量热值联系起来的方程框架。结果表明不可逆形变主导了许多热力学值,尤其是压缩-压缩循环后的内部净能量变化。整个循环的净功和净热之间的关系非常清楚地表明了变形机理的主导地位。同样,作为内部能量存储的能量与初始功输入的比值根据材料的脆性或塑性变形趋势来区分它们。

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