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Compression, compaction, and disintegration properties of low crystallinity celluloses produced using different agitation rates during their regeneration from phosphoric acid solutions

机译:低结晶度纤维素从磷酸溶液再生过程中使用不同搅拌速率生产的压缩,压实和崩解特性

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摘要

The tabletting characteristics of low crystallinity celluloses (LCPC)-LCPC-700, LCPC-2000, and LCPC-4000-prepared using agitation rates of 700, 2000, and 4000 rpm, respectively, during their regeneration from phosphoric acid, were evaluated and compared with those of Avicel PH-102 and Avicel PH-302. The mean deformation pressure values calculated from the linear region of the Athy-Heckel curves indicated LCPC-4000 to be the most ductile material. The area under the Athy-Heckel curve for LCPC-4000 was 330 MPa, whereas LCPC-700 and LCPC-2000 showed a corresponding value similar to that of Avicel PH-102 and Avicel PH-302 (192–232 MPa). The tensile strength of LCPC and Avicel compacts increased linearly with increasing applied pressures. A comparison of the area under the tensile strength-compression pressure curves indicated that LCPC-4000 formed the strongest tablets. The strengths of LCPC-700 and LCPC-2000 compacts, in contrast, were slightly lower than that of Avicel PH-302 and Avicel PH-102, respectively. The compacts of both LCPC-4000 and Avicel PH-102 were intact in water for 6 hours, whereas LCPC-2000 and Avicel PH-302 compacts disintegrated in 4 minutes and 2 minutes, respectively. In conclusion, LCPC-4000 was the most ductile material and exhibited the highest compression and compaction characteristics. The corresponding properties of LCPC-700 and LCPC-2000, in contrast, were comparable to that of Avicel PH-102 or Avicel PH-302.
机译:评估并比较了低结晶度纤维素(LCPC)-LCPC-700,LCPC-2000和LCPC-4000在磷酸再生过程中分别以700、2000和4000 rpm的搅拌速率制片的压片特性与Avicel PH-102和Avicel PH-302的产品一样。根据Athy-Heckel曲线的线性区域计算得出的平均变形压力值表明LCPC-4000是最易延展的材料。 LCPC-4000在Athy-Heckel曲线下的面积为330 MPa,而LCPC-700和LCPC-2000的相应值类似于Avicel PH-102和Avicel PH-302(192–232 MPa)。 LCPC和Avicel压块的拉伸强度随着施加压力的增加而线性增加。拉伸强度-压缩压力曲线下面积的比较表明,LCPC-4000形成最强的片剂。相比之下,LCPC-700和LCPC-2000压块的强度分别略低于Avicel PH-302和Avicel PH-102。 LCPC-4000和Avicel PH-102的压块在水中完整保存6小时,而LCPC-2000和Avicel PH-302压块分别在4分钟和2分钟内崩解。总之,LCPC-4000是最易延展的材料,具有最高的压缩和压实特性。相反,LCPC-700和LCPC-2000的相应性能与Avicel PH-102或Avicel PH-302相当。

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