This work describes a new method to measure breakage strength and elastic modulus of single crystal cantilevers using atomic force microscopy. Crystal breakage is an important but poorly understood factor in mechanical processing of organic crystals. In this study, 300μm long beta glutamic acid, needle-shaped crystal cantilevers are bend and broken in an Atomic Force Microscope. We report the first directly measured distribution of breakage strength and Young’s modules of an organic crystal material. The distribution follows a Weibull distribution; 50% of the crystals break at less than 22.4MPa and have a Young’s modulus below 1.90GPa and we observed that stronger crystals are stiffer, and thicker crystals break easier. The data generated f...
The mechanical properties (critical stress intensity factor, hardness and Young's modulus) of 4 crys...
CONSPECTUS: Mechanical properties of organic molecular crystals have been noted and studied over the...
The mechanical properties (critical stress intensity factor, hardness and Young's modulus) of 4 crys...
This work describes a new method to measure breakage strength and elastic modulus of single crystal ...
The current emphasis of crystal engineering, which has evolved over the past three decades through c...
The flexural strength of gypsum is reported for freestanding single crystals in three-point bending ...
Bending of crystals of molecular solids occurs when the strength of intermolecular interactions in o...
Nanoindentation is a technique for measuring the elastic modulus and hardness of small amounts of ma...
In order to better understand the mechanical properties of crystalline materials, we performed a lar...
Nanoindentation has made it possible to test material properties of extremely brittle molecular crys...
This review article summarizes the recent advances in measuring and understanding the indentation-in...
Crystal engineering is widely applied in the design of new solids with desired physical and chemical...
Although deformation has been extensively studied in a wide range of materials, deformation in molec...
The mechanical properties of individual nanocrystals and small micron-sized single crystals of metal...
Nanoindentation is a technique for measuring the elastic modulus and hardness of small amounts of ma...
The mechanical properties (critical stress intensity factor, hardness and Young's modulus) of 4 crys...
CONSPECTUS: Mechanical properties of organic molecular crystals have been noted and studied over the...
The mechanical properties (critical stress intensity factor, hardness and Young's modulus) of 4 crys...
This work describes a new method to measure breakage strength and elastic modulus of single crystal ...
The current emphasis of crystal engineering, which has evolved over the past three decades through c...
The flexural strength of gypsum is reported for freestanding single crystals in three-point bending ...
Bending of crystals of molecular solids occurs when the strength of intermolecular interactions in o...
Nanoindentation is a technique for measuring the elastic modulus and hardness of small amounts of ma...
In order to better understand the mechanical properties of crystalline materials, we performed a lar...
Nanoindentation has made it possible to test material properties of extremely brittle molecular crys...
This review article summarizes the recent advances in measuring and understanding the indentation-in...
Crystal engineering is widely applied in the design of new solids with desired physical and chemical...
Although deformation has been extensively studied in a wide range of materials, deformation in molec...
The mechanical properties of individual nanocrystals and small micron-sized single crystals of metal...
Nanoindentation is a technique for measuring the elastic modulus and hardness of small amounts of ma...
The mechanical properties (critical stress intensity factor, hardness and Young's modulus) of 4 crys...
CONSPECTUS: Mechanical properties of organic molecular crystals have been noted and studied over the...
The mechanical properties (critical stress intensity factor, hardness and Young's modulus) of 4 crys...