Burger A, Ramberger R, Schmidt W
Pharmazie. 1981;36(1):41-6.
Three polymorphic meprobamate-modifications (I, II, III) of different particle size were compressed without other ingredients on a hydraulic press under 30, 60, 120, and 240 N/mm2. The rather soft substance shows a high degree of densification and above ca. 60 N/mm2 also good consolidation properties. The void volumes of the compacts obey the equation of Kawakita and are increasing in all cases in the sequence I leads to III leads to II. The radial breaking strength generally decreases in the same succession and depends linearly on the logarithm of compaction pressure. It is noteworthy, that the modification with the highest density (I) has the highest plasticity and is also compacted most easily. Modification II which is slightly harder and has a density between modifications I and III, shows the greatest differences in the compaction behaviour, as compared to modification I. Its breaking strength is also increasing faster with compaction pressure than the other modifications.
三种不同粒径的多晶型甲丙氨酯变体(I、II、III)在没有其他成分的情况下,于液压机上分别在30、60、120和240 N/mm2压力下进行压制。这种相当软的物质显示出高度的致密化,并且在约60 N/mm2以上也具有良好的固结性能。压实体的空隙体积符合河合方程,在所有情况下均按I导致III导致II的顺序增加。径向断裂强度通常按相同顺序降低,并且与压制压力的对数呈线性关系。值得注意的是,密度最高的变体(I)具有最高的可塑性,并且也最容易压实。变体II稍硬,密度介于变体I和III之间,与变体I相比,其压实行为表现出最大差异。其断裂强度也比其他变体随压制压力增加得更快。