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L-赖氨酸盐酸盐二水合物片状晶体的塑性与滑移系

Plasticity and slip system of plate-shaped crystals of L-lysine monohydrochloride dihydrate.

作者信息

Bandyopadhya Rebanta, Grant David J W

机构信息

Department of Pharmaceutics, College of Pharmacy, University of Minnesota, Minneapolis 55455-0343, USA.

出版信息

Pharm Res. 2002 Apr;19(4):491-6. doi: 10.1023/a:1015151830473.

Abstract

PURPOSE

To identify the slip system of L-lysine monohydrochloride dihydrate (LH) and to relate it to the deformation behavior under uniaxial compression.

METHODS

The indentation hardness of the [100] face and the indentation moduli of the [100] and [011] faces of plate-shaped single crystals of LH (LHP) were determined using Knoop and Berkovich indenters, respectively. The deformation behavior during uniaxial compression was studied by the punch-stress vs. punch-displacement profile and by electron microscopy of the deformed crystals within cracked compacts.

RESULTS

The different indentation (elastic) moduli of the [100] and [011] faces of the crystals are consistent with the molecular packing density along these planes and suggest anisotropy. The existence of the [001] <100> slip system is proposed based on the pattern of changing indentation hardness with varying orientation of the Knoop indenter. A jagged uniaxial compression profile suggests deformation by mechanical twinning and not simple slip. The hypothesis of deformation by mechanical twinning is supported by the appearance of twin bands along the crystal faces as observed by electron microscopy of the cracked compacts.

CONCLUSIONS

During compression, most LHP crystals have their [100] faces oriented normal to, or inclined to, the compression axis, thereby facilitating plastic deformation along the [001] <100> slip system by mechanical twinning. Due to the low attachment energy between them, the [001] planes can also act as cleavage planes. This study demonstrates that knowledge of the crystal structure and slip systems can be used to model the tableting and compaction behavior of molecular crystals, such as LH.

摘要

目的

确定L-赖氨酸盐酸盐二水合物(LH)的滑移系,并将其与单轴压缩下的变形行为相关联。

方法

分别使用努氏压头和贝氏压头测定LH板状单晶(LHP)[100]面的压痕硬度以及[100]面和[011]面的压痕模量。通过冲头应力与冲头位移曲线以及对破裂压坯中变形晶体的电子显微镜观察来研究单轴压缩过程中的变形行为。

结果

晶体[100]面和[011]面不同的压痕(弹性)模量与沿这些平面的分子堆积密度一致,并表明存在各向异性。基于努氏压头不同取向时压痕硬度变化的模式,提出了[001]<100>滑移系的存在。锯齿状的单轴压缩曲线表明是通过机械孪晶而不是简单滑移发生变形。通过对破裂压坯的电子显微镜观察发现沿晶面出现孪晶带,这支持了机械孪晶变形的假设。

结论

在压缩过程中,大多数LHP晶体的[100]面垂直于或倾斜于压缩轴,从而通过机械孪晶促进沿[001]<100>滑移系的塑性变形。由于它们之间的附着能较低,[001]平面也可作为解理面。本研究表明,晶体结构和滑移系的知识可用于模拟分子晶体(如LH)的压片和压实行为。

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