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首页> 外文期刊>International Journal of Pharmaceutics >Mechanism of moisture induced variations in true density and compaction properties of microcrystalline cellulose.
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Mechanism of moisture induced variations in true density and compaction properties of microcrystalline cellulose.

机译:水分引起微晶纤维素真实密度和压实特性变化的机理。

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摘要

A single lot of MCC powder (Avicel PH102) was equilibrated at 0%, 11.35%, 21.6%, 38.2%, 52%, 57.5%, 75% and 84.3% relative humidity. Each equilibrated powder was compressed. Tablet density and tensile strength were measured as a function of pressure. Powder true density, tabletability, compressibility, compactibility and plasticity were obtained as a function of water content. The true density of MCC ranged 1.42-1.46 g/cm(3) and exhibited a maximum between approximately 3% and approximately 5% (wt%) moisture. Moisture up to approximately 3.3%, corresponding to monolayer coverage, did not induce profound change in MCC plasticity nor bonding strength despite reduced T(g). Consequently, the compaction properties were largely insensitive to moisture variation below 3.3% water. Above 3.3% water, higher moisture content corresponded to improved plasticity, due to the plasticizing effects of water above the critical water content, and consequently larger interparticulate bonding area when compressed. Effects of plasticization by water on bonding area were significant at low compaction pressures but diminish at higher pressures. At above 3.3% water, increasing moisture content also reduced bonding strength. Due to the interplay among the plasticity, compaction pressure and bonding strength, tablet tensile strength peaked in the range of 3.3-5.6% moisture.
机译:将一批MCC粉末(Avicel PH102)的相对湿度平衡为0%,11.35%,21.6%,38.2%,52%,57.5%,75%和84.3%。压缩每种平衡的粉末。测量片剂密度和抗张强度作为压力的函数。获得了粉末的真实密度,可压片性,可压缩性,可压实性和可塑性作为含水量的函数。 MCC的真实密度范围为1.42-1.46 g / cm(3),并显示出大约3%至5%(wt%)水分之间的最大值。尽管T(g)降低,但高达3.3%的水分(对应于单层覆盖)并没有引起MCC可塑性和粘合强度的深刻变化。因此,压实性能对水含量低于3.3%的水分变化不敏感。高于3.3%的水,较高的水分含量对应于改善的可塑性,这是由于高于临界水分含量的水具有增塑作用,因此在压缩时具有更大的微粒间结合面积。在较低的压实压力下,水的增塑作用对粘结面积的影响显着,但在较高的压力下,作用减弱。水含量超过3.3%时,增加水分含量也会降低粘结强度。由于可塑性,压实压力和粘结强度之间的相互影响,片剂的拉伸强度在水分的3.3-5.6%范围内达到峰值。

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